Article(id=1274057422818795564, tenantId=1146029695717560320, journalId=1192105938417971205, issueId=1274057338156769818, articleNumber=null, orderNo=null, doi=10.13343/j.cnki.wsxb.20250873, pmid=null, cstr=null, oa=null, hot=null, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=research-article, receivedDate=1763740800000, receivedDateStr=2025-11-22, revisedDate=null, revisedDateStr=null, acceptedDate=1772726400000, acceptedDateStr=2026-03-06, onlineDate=1781688560441, onlineDateStr=2026-06-17, pubDate=1780502400000, pubDateStr=2026-06-04, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1781688560441, onlineIssueDateStr=2026-06-17, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1781688560441, creator=13701087609, updateTime=1781688560441, updator=13701087609, issue=Issue{id=1274057338156769818, tenantId=1146029695717560320, journalId=1192105938417971205, year='2026', volume='66', issue='6', pageStart='2561', pageEnd='3114', issueExtLink='null', onlineDate='null', pubDate='null', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=1, specialIssue=null, createTime=1781688540257, creator=13701087609, updateTime=1781688602467, updator=13701087609, preIssue=null, nextIssue=null, ext={EN=IssueExt(id=1274057599193486082, tenantId=1146029695717560320, journalId=1192105938417971205, issueId=1274057338156769818, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1274057599193486083, tenantId=1146029695717560320, journalId=1192105938417971205, issueId=1274057338156769818, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null}, startPage=2567, endPage=2579, ext={EN=ArticleExt(id=1274057423322112046, articleId=1274057422818795564, tenantId=1146029695717560320, journalId=1192105938417971205, language=EN, title=Research progress in novel bacterial species and their potential ecological functions in global grassland soils, columnId=1192149543727808575, journalTitle=Acta Microbiologica Sinica, columnName=Review, runingTitle=null, highlight=null, articleAbstract=

Grassland soil microorganisms play a pivotal role in maintaining the health and stability of grassland ecosystems. However, systematic studies on the diversity, geographical distribution, isolation techniques, and functional potential of novel bacterial taxa in grassland soils remain limited. Here, we conducted a meta-analysis of 104 novel bacterial taxa described in 74 studies from grassland ecosystems across 19 countries between 2004 and 2025. We further predicted their functions via whole-genome data and compared them with background soil bacterial communities in grassland soils. Our results showed that novel bacterial taxa in grassland soils were mainly affiliated with the phyla Actinomycetota and Pseudomonadota, and their discovery frequency closely matched the abundance of background soil microorganisms. Their geographical distribution exhibited clear latitudinal zonality, with high-latitude regions being enriched with dormant taxa adaptive to harsh environments. Functional potential analysis suggested that these novel species not only provide the physiological verification of microbial dark matter, but may also play important roles in key ecosystem processes. Several representative taxa showed distinct ecological functional potential. Amnibacterium soli contributes to carbon and nitrogen cycling through efficient hydrolase systems; Chthonobacter albigriseus mediates methane oxidation to mitigate the greenhouse effect; Noviherbaspirillum agri possesses nitrogen-fixing, plant growth-promoting, and salt-alkali adaptation capabilities; and Streptomyces ziwulingensis can contribute to microbial defenses through secondary metabolite production. Together, these findings highlight the ecological and biotechnological potential of core grassland microbial taxa. Future studies integrating multidisciplinary approaches are needed to elucidate the functions and evolution of novel phyllosphere and rhizosphere taxa and bridge the gap between genomic sequences and ecological functions, thus providing microbiological support for improving the productivity and maintaining the ecosystem stability of grassland.

, correspAuthors=null, authorNote=null, correspAuthorsNote=
E-mail:
, copyrightStatement=null, copyrightOwner=null, extLink=null, articleAbsUrl=null, sourceXml=null, magXml=null, pdfUrl=null, pdf=null, pdfFileSize=null, pdfExtLink=null, richHtmlUrl=null, mobilePdfUrl=null, reviewReport=null, pdfFirstPage=null, abstractGraph=null, abstractGraphContent=null, abstractVideo=null, citation=null, cebUrl=null, magXmlContent=null, mapNumber=null, authorCompany=null, fund=null, authors=null, authorsList=Zulihumaer·Rouzi, Yingzhi GAO), CN=ArticleExt(id=1274057425545093172, articleId=1274057422818795564, tenantId=1146029695717560320, journalId=1192105938417971205, language=CN, title=全球草地土壤细菌新种发掘及潜在生态功能研究进展, columnId=1192149543882997826, journalTitle=微生物学报, columnName=综述, runingTitle=null, highlight=null, articleAbstract=

草地土壤微生物(grassland soil microorganisms)在维持生态系统健康与稳定性方面发挥着关键作用。然而,目前针对草地细菌新种的多样性、地理分布、资源挖掘技术以及功能潜力所开展的系统性研究仍较为匮乏。本研究检索了2004-2025年间全球19个国家草地生态系统的74篇新种文献,涉及104株细菌新种,并开展荟萃(meta)分析。结合全基因组信息对其功能进行预测,同时与草地土壤细菌背景群落进行对比。研究结果发现,草地土壤细菌新种以放线菌门和假单胞菌门为核心优势类群,其发现频率与土壤背景微生物丰度高度契合。在地理分布上呈现出纬度地带性特征,高纬度区域富集休眠体类群,以适应极端环境。对功能潜力的解析表明,这些新种不仅实现了对“微生物暗物质”的生理实证,在驱动关键生态功能方面更展现出不可替代的优势。例如,土壤河小杆菌(Amnibacterium soli)等通过高效水解酶系驱动碳氮循环;灰白色草地土杆状菌(Chthonobacter albigriseus)介导甲烷氧化,有助于缓解温室效应;草地新草小螺菌(Noviherbaspirillum agri)等具备固氮促生或盐碱适应能力;子午岭链霉菌(Streptomyces ziwulingensis)可构建生化防御体系。这些研究结果证实了草地核心微生物具有重要的资源价值。未来将整合多学科和多技术手段,解析叶际‑根际新种功能与演化,实现序列到功能的突破,为草原生产力提升与生态稳态维持提供微生物学理论支撑。

, correspAuthors=null, authorNote=null, correspAuthorsNote=null, copyrightStatement=null, copyrightOwner=null, extLink=null, articleAbsUrl=null, sourceXml=5lr1aeSPDMceD5eso1yQ/w==, magXml=CUdzIYjK6EFmv7jHc9rsAg==, pdfUrl=null, pdf=fq2LyYHdUlYDqAuGAETF0g==, pdfFileSize=1680083, pdfExtLink=null, richHtmlUrl=null, mobilePdfUrl=null, reviewReport=null, pdfFirstPage=null, abstractGraph=GRvHGHtWE/mpwipsUEQ/Gg==, abstractGraphContent=null, abstractVideo=null, citation=null, cebUrl=null, magXmlContent=7nYqmpZJ/ZG3psiLHRdOSA==, mapNumber=null, authorCompany=null, fund=null, authors=

作者贡献声明

祖力胡玛尔·肉孜:数据收集及分析、论文撰写和修改;高英志:研究构思和论文修改。

, authorsList=祖力胡玛尔·肉孜, 高英志)}, authors=[Author(id=1274087953178583073, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1274087953476378660, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, authorId=1274087953178583073, language=EN, stringName=Zulihumaer·Rouzi, firstName=null, middleName=null, lastName=Zulihumaer·Rouzi, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=1, 2, address=1.Key Laboratory of Grassland Resources and Ecology in Arid and Desert Regions of the Ministry of Education, College of Grassland Science, Xinjiang Agricultural University, Urumqi, Xinjiang, China
2.National Field Observation and Research Station of Songneng Grassland Ecosystem, Key Laboratory of Vegetation Ecology of the Ministry of Education, Institute of Grassland Science, Northeast Normal University, Changchun, Jilin, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1274087953551876133, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, authorId=1274087953178583073, language=CN, stringName=祖力胡玛尔·肉孜, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=1, 2, address=1.新疆农业大学 草业学院,西部干旱荒漠区草地资源与生态教育部重点实验室,新疆 乌鲁木齐
2.东北师范大学 草地科学研究所,吉林松嫩草地生态系统国家野外科学观测研究站,植被生态科学教育部重点实验室,吉林 长春, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=[AuthorCompany(id=1274087952775929881, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, xref=1., ext=[AuthorCompanyExt(id=1274087952784318490, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087952775929881, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.Key Laboratory of Grassland Resources and Ecology in Arid and Desert Regions of the Ministry of Education, College of Grassland Science, Xinjiang Agricultural University, Urumqi, Xinjiang, China), AuthorCompanyExt(id=1274087952792707099, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087952775929881, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.新疆农业大学 草业学院,西部干旱荒漠区草地资源与生态教育部重点实验室,新疆 乌鲁木齐)]), AuthorCompany(id=1274087953061142556, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, xref=2., ext=[AuthorCompanyExt(id=1274087953069531165, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087953061142556, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=2.National Field Observation and Research Station of Songneng Grassland Ecosystem, Key Laboratory of Vegetation Ecology of the Ministry of Education, Institute of Grassland Science, Northeast Normal University, Changchun, Jilin, China), AuthorCompanyExt(id=1274087953077919774, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087953061142556, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=2.东北师范大学 草地科学研究所,吉林松嫩草地生态系统国家野外科学观测研究站,植被生态科学教育部重点实验室,吉林 长春)])]), Author(id=1274087953912586279, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, orderNo=1, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=gaoyz108@nenu.edu.cn, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1274087954327822377, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, authorId=1274087953912586279, language=EN, stringName=Yingzhi GAO, firstName=Yingzhi, middleName=null, lastName=GAO, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=1, address=1.Key Laboratory of Grassland Resources and Ecology in Arid and Desert Regions of the Ministry of Education, College of Grassland Science, Xinjiang Agricultural University, Urumqi, Xinjiang, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1274087955904880682, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, authorId=1274087953912586279, language=CN, stringName=高英志, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=1, address=1.新疆农业大学 草业学院,西部干旱荒漠区草地资源与生态教育部重点实验室,新疆 乌鲁木齐, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=[AuthorCompany(id=1274087952775929881, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, xref=1., ext=[AuthorCompanyExt(id=1274087952784318490, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087952775929881, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.Key Laboratory of Grassland Resources and Ecology in Arid and Desert Regions of the Ministry of Education, College of Grassland Science, Xinjiang Agricultural University, Urumqi, Xinjiang, China), AuthorCompanyExt(id=1274087952792707099, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087952775929881, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.新疆农业大学 草业学院,西部干旱荒漠区草地资源与生态教育部重点实验室,新疆 乌鲁木齐)])])], keywords=[Keyword(id=1274087956093624363, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=EN, orderNo=1, keyword=grassland ecosystems), Keyword(id=1274087956412391468, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=EN, orderNo=2, keyword=novel bacterial taxa), Keyword(id=1274087956500471853, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=EN, orderNo=3, keyword=microbial function prediction), Keyword(id=1274087956852793390, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=EN, orderNo=4, keyword=microbial biogeography), Keyword(id=1274087957251252271, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=CN, orderNo=1, keyword=草地生态系统), Keyword(id=1274087957666488368, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=CN, orderNo=2, keyword=细菌新种资源), Keyword(id=1274087957767151665, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=CN, orderNo=3, keyword=微生物功能预测), Keyword(id=1274087958085918770, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=CN, orderNo=4, keyword=微生物地理分布)], refs=[Reference(id=1274087961349087295, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2021, volume=2, issue=10, pageStart=720, pageEnd=735, url=null, language=null, rfNumber=[1], rfOrder=0, authorNames=Bardgett RD, Bullock JM, Lavorel S, Manning P, Schaffner U, Ostle N, Chomel M, Durigan G, Fry EL, Johnson D, Lavallee JM, Le Provost G, Luo S, Png K, Sankaran M, Hou XY, Zhou HK, Ma L, Ren WB, Li XL, journalName=Nature Reviews Earth & Environment, refType=null, unstructuredReference=Bardgett RD, Bullock JM, Lavorel S, Manning P, Schaffner U, Ostle N, Chomel M, Durigan G, Fry EL, Johnson D, Lavallee JM, Le Provost G, Luo S, Png K, Sankaran M, Hou XY, Zhou HK, Ma L, Ren WB, Li XL, et al. Combatting global grassland degradation[J]. Nature Reviews Earth & Environment, 2021, 2(10): 720-735., articleTitle=Combatting global grassland degradation, refAbstract=null), Reference(id=1274087961428779072, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2018, volume=359, issue=6373, pageStart=320, pageEnd=325, url=null, language=null, rfNumber=[2], rfOrder=1, authorNames=Delgado-Baquerizo M, Oliverio AM, Brewer TE, Benavent-González A, Eldridge DJ, Bardgett RD, Maestre FT, Singh BK, Fierer N, journalName=Science, refType=null, unstructuredReference=Delgado-Baquerizo M, Oliverio AM, Brewer TE, Benavent-González A, Eldridge DJ, Bardgett RD, Maestre FT, Singh BK, Fierer N. A global atlas of the dominant bacteria found in soil[J]. Science, 2018, 359(6373): 320-325., articleTitle=A global atlas of the dominant bacteria found in soil, refAbstract=null), Reference(id=1274087961516859457, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2021, volume=9, issue=null, pageStart=630722, pageEnd=null, url=null, language=null, rfNumber=[3], rfOrder=2, authorNames=Jiang HM, Chen YC, Hu Y, Wang ZW, Lu XY, journalName=Frontiers in Ecology and Evolution, refType=null, unstructuredReference=Jiang HM, Chen YC, Hu Y, Wang ZW, Lu XY. Soil bacterial communities and diversity in Alpine grasslands on the Xizang Plateau based on 16S rRNA gene sequencing[J]. Frontiers in Ecology and Evolution, 2021, 9: 630722., articleTitle=Soil bacterial communities and diversity in Alpine grasslands on the Xizang Plateau based on 16S rRNA gene sequencing, refAbstract=null), Reference(id=1274087961609134146, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2022, volume=13, issue=null, pageStart=819661, pageEnd=null, url=null, language=null, rfNumber=[4], rfOrder=3, authorNames=Liu SL, Sun YX, Shi FN, Liu YX, Wang FF, Dong SK, Li MQ, journalName=Frontiers in Plant Science, refType=null, unstructuredReference=Liu SL, Sun YX, Shi FN, Liu YX, Wang FF, Dong SK, Li MQ. Composition and diversity of soil microbial community associated with land use types in the agro-pastoral area in the upper Yellow River Basin[J]. Frontiers in Plant Science, 2022, 13: 819661., articleTitle=Composition and diversity of soil microbial community associated with land use types in the agro-pastoral area in the upper Yellow River Basin, refAbstract=null), Reference(id=1274087961693020227, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2011, volume=6, issue=2, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[5], rfOrder=4, authorNames=Nacke H, Thürmer A, Wollherr A, Will C, Hodac L, Herold N, Schöning I, Schrumpf M, Daniel R, journalName=PLoS One, refType=null, unstructuredReference=Nacke H, Thürmer A, Wollherr A, Will C, Hodac L, Herold N, Schöning I, Schrumpf M, Daniel R. Pyrosequencing-based assessment of bacterial community structure along different management types in German forest and grassland soils[J]. PLoS One, 2011, 6(2): e17000., articleTitle=Pyrosequencing-based assessment of bacterial community structure along different management types in German forest and grassland soils, refAbstract=null), Reference(id=1274087961776906308, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2021, volume=71, issue=10, pageStart=1, pageEnd=7, url=null, language=null, rfNumber=[6], rfOrder=5, authorNames=Oren A, Garrity GM, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Oren A, Garrity GM. Valid publication of the names of forty-two phyla of prokaryotes[J]. International Journal of Systematic and Evolutionary Microbiology, 2021, 71(10): 1-7., articleTitle=Valid publication of the names of forty-two phyla of prokaryotes, refAbstract=null), Reference(id=1274087961844015173, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2019, volume=4, issue=8, pageStart=1356, pageEnd=1367, url=null, language=null, rfNumber=[7], rfOrder=6, authorNames=Diamond S, Andeer PF, Li Z, Crits-Christoph A, Burstein D, Anantharaman K, Lane KR, Thomas BC, Pan CL, Northen TR, Banfield JF, journalName=Nature Microbiology, refType=null, unstructuredReference=Diamond S, Andeer PF, Li Z, Crits-Christoph A, Burstein D, Anantharaman K, Lane KR, Thomas BC, Pan CL, Northen TR, Banfield JF. Mediterranean grassland soil C-N compound turnover is dependent on rainfall and depth, and is mediated by genomically divergent microorganisms[J]. Nature Microbiology, 2019, 4(8): 1356-1367., articleTitle=Mediterranean grassland soil C-N compound turnover is dependent on rainfall and depth, and is mediated by genomically divergent microorganisms, refAbstract=null), Reference(id=1274087961915318342, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2020, volume=14, issue=7, pageStart=1834, pageEnd=1846, url=null, language=null, rfNumber=[8], rfOrder=7, authorNames=Crits-Christoph A, Olm MR, Diamond S, Bouma-Gregson K, Banfield JF, journalName=The ISME Journal, refType=null, unstructuredReference=Crits-Christoph A, Olm MR, Diamond S, Bouma-Gregson K, Banfield JF. Soil bacterial populations are shaped by recombination and gene-specific selection across a grassland meadow[J]. The ISME Journal, 2020, 14(7): 1834-1846., articleTitle=Soil bacterial populations are shaped by recombination and gene-specific selection across a grassland meadow, refAbstract=null), Reference(id=1274087961978232903, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2022, volume=13, issue=null, pageStart=715637, pageEnd=null, url=null, language=null, rfNumber=[9], rfOrder=8, authorNames=Sikorski J, Baumgartner V, Birkhofer K, Boeddinghaus RS, Bunk B, Fischer M, Fösel BU, Friedrich MW, Göker M, Hölzel N, Huang SX, Huber KJ, Kandeler E, Klaus VH, Kleinebecker T, Marhan S, von Mering C, Oelmann Y, Prati D, Regan KM, journalName=Frontiers in Microbiology, refType=null, unstructuredReference=Sikorski J, Baumgartner V, Birkhofer K, Boeddinghaus RS, Bunk B, Fischer M, Fösel BU, Friedrich MW, Göker M, Hölzel N, Huang SX, Huber KJ, Kandeler E, Klaus VH, Kleinebecker T, Marhan S, von Mering C, Oelmann Y, Prati D, Regan KM, et al. The evolution of ecological diversity in Acidobacteria [J]. Frontiers in Microbiology, 2022, 13: 715637., articleTitle=The evolution of ecological diversity in Acidobacteria, refAbstract=null), Reference(id=1274087962062118984, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=11, issue=6, pageStart=1345, pageEnd=1358, url=null, language=null, rfNumber=[10], rfOrder=9, authorNames=Wang XB, Lü XT, Yao J, Wang ZW, Deng Y, Cheng WX, Zhou JZ, Han XG, journalName=The ISME Journal, refType=null, unstructuredReference=Wang XB, XT, Yao J, Wang ZW, Deng Y, Cheng WX, Zhou JZ, Han XG. Habitat-specific patterns and drivers of bacterial β-diversity in China’s drylands[J]. The ISME Journal, 2017, 11(6): 1345-1358., articleTitle=Habitat-specific patterns and drivers of bacterial β-diversity in China’s drylands, refAbstract=null), Reference(id=1274087962133422153, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2022, volume=10, issue=null, pageStart=76, pageEnd=null, url=null, language=null, rfNumber=[11], rfOrder=10, authorNames=Liu SJ, Moon CD, Zheng N, Huws S, Zhao SG, Wang JQ, journalName=Microbiome, refType=null, unstructuredReference=Liu SJ, Moon CD, Zheng N, Huws S, Zhao SG, Wang JQ. Opportunities and challenges of using metagenomic data to bring uncultured microbes into cultivation[J]. Microbiome, 2022, 10: 76., articleTitle=Opportunities and challenges of using metagenomic data to bring uncultured microbes into cultivation, refAbstract=null), Reference(id=1274087962213113930, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2019, volume=10, issue=null, pageStart=5029, pageEnd=null, url=null, language=null, rfNumber=[12], rfOrder=11, authorNames=Johnson JS, Spakowicz DJ, Hong BY, Petersen LM, Demkowicz P, Chen L, Leopold SR, Hanson BM, Agresta HO, Gerstein M, Sodergren E, Weinstock GM, journalName=Nature Communications, refType=null, unstructuredReference=Johnson JS, Spakowicz DJ, Hong BY, Petersen LM, Demkowicz P, Chen L, Leopold SR, Hanson BM, Agresta HO, Gerstein M, Sodergren E, Weinstock GM. Evaluation of 16S rRNA gene sequencing for species and strain-level microbiome analysis[J]. Nature Communications, 2019, 10: 5029., articleTitle=Evaluation of 16S rRNA gene sequencing for species and strain-level microbiome analysis, refAbstract=null), Reference(id=1274087962284417099, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2019, volume=10, issue=null, pageStart=1424, pageEnd=null, url=null, language=null, rfNumber=[13], rfOrder=12, authorNames=Liu JJ, Cui X, Liu ZX, Guo ZK, Yu ZH, Yao Q, Sui YY, Jin J, Liu XB, Wang GH, journalName=Frontiers in Microbiology, refType=null, unstructuredReference=Liu JJ, Cui X, Liu ZX, Guo ZK, Yu ZH, Yao Q, Sui YY, Jin J, Liu XB, Wang GH. The diversity and geographic distribution of cultivable Bacillus-like bacteria across black soils of Northeast China[J]. Frontiers in Microbiology, 2019, 10: 1424., articleTitle=The diversity and geographic distribution of cultivable Bacillus-like bacteria across black soils of Northeast China, refAbstract=null), Reference(id=1274087962355720268, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2022, volume=16, issue=1, pageStart=101, pageEnd=111, url=null, language=null, rfNumber=[14], rfOrder=13, authorNames=Waschulin V, Borsetto C, James R, Newsham KK, Donadio S, Corre C, Wellington E, journalName=The ISME Journal, refType=null, unstructuredReference=Waschulin V, Borsetto C, James R, Newsham KK, Donadio S, Corre C, Wellington E. Biosynthetic potential of uncultured Antarctic soil bacteria revealed through long-read metagenomic sequencing[J]. The ISME Journal, 2022, 16(1): 101-111., articleTitle=Biosynthetic potential of uncultured Antarctic soil bacteria revealed through long-read metagenomic sequencing, refAbstract=null), Reference(id=1274087962422829133, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2020, volume=9, issue=5, pageStart=271, pageEnd=null, url=null, language=null, rfNumber=[15], rfOrder=14, authorNames=Nicault M, Tidjani AR, Gauthier A, Dumarcay S, Gelhaye E, Bontemps C, Leblond P, journalName=Antibiotics, refType=null, unstructuredReference=Nicault M, Tidjani AR, Gauthier A, Dumarcay S, Gelhaye E, Bontemps C, Leblond P. Mining the biosynthetic potential for specialized metabolism of a Streptomyces soil community[J]. Antibiotics, 2020, 9(5): 271., articleTitle=Mining the biosynthetic potential for specialized metabolism of a Streptomyces soil community, refAbstract=null), Reference(id=1274087962502520910, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2024, volume=18, issue=null, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[16], rfOrder=15, authorNames=Wang CQ, Kuzyakov Y, journalName=The ISME Journal, refType=null, unstructuredReference=Wang CQ, Kuzyakov Y. Mechanisms and implications of bacterial-fungal competition for soil resources[J]. The ISME Journal, 2024, 18: wrae073., articleTitle=Mechanisms and implications of bacterial-fungal competition for soil resources, refAbstract=null), Reference(id=1274087962582212687, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2025, volume=13, issue=null, pageStart=150, pageEnd=null, url=null, language=null, rfNumber=[17], rfOrder=16, authorNames=Cao XH, Yuan QJ, Hu CC, Zhang HX, Sun XY, Yan BB, Ma XJ, Zhang L, Huang LQ, Li SJ, Zhang ZY, journalName=Microbiome, refType=null, unstructuredReference=Cao XH, Yuan QJ, Hu CC, Zhang HX, Sun XY, Yan BB, Ma XJ, Zhang L, Huang LQ, Li SJ, Zhang ZY. Wild wisdom meets cultivation: comparative rhizomicrobiome analysis unveils the key role of Paraburkholderia in growth promotion and disease suppression in Coptis chinensis [J]. Microbiome, 2025, 13: 150., articleTitle=Wild wisdom meets cultivation: comparative rhizomicrobiome analysis unveils the key role of Paraburkholderia in growth promotion and disease suppression in Coptis chinensis, refAbstract=null), Reference(id=1274087962653515856, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2019, volume=10, issue=null, pageStart=945, pageEnd=null, url=null, language=null, rfNumber=[18], rfOrder=17, authorNames=Cramm MA, Chakraborty A, Li C, Ruff SE, Jørgensen BB, Hubert CRJ, journalName=Frontiers in Microbiology, refType=null, unstructuredReference=Cramm MA, Chakraborty A, Li C, Ruff SE, Jørgensen BB, Hubert CRJ. Freezing tolerance of thermophilic bacterial endospores in marine sediments[J]. Frontiers in Microbiology, 2019, 10: 945., articleTitle=Freezing tolerance of thermophilic bacterial endospores in marine sediments, refAbstract=null), Reference(id=1274087962724819025, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2016, volume=10, issue=1, pageStart=253, pageEnd=264, url=null, language=null, rfNumber=[19], rfOrder=18, authorNames=Stopnisek N, Zühlke D, Carlier A, Barberán A, Fierer N, Becher D, Riedel K, Eberl L, Weisskopf L, journalName=The ISME Journal, refType=null, unstructuredReference=Stopnisek N, Zühlke D, Carlier A, Barberán A, Fierer N, Becher D, Riedel K, Eberl L, Weisskopf L. Molecular mechanisms underlying the close association between soil Burkholderia and fungi[J]. The ISME Journal, 2016, 10(1): 253-264., articleTitle=Molecular mechanisms underlying the close association between soil Burkholderia and fungi, refAbstract=null), Reference(id=1274087962800316498, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2019, volume=10, issue=null, pageStart=408, pageEnd=null, url=null, language=null, rfNumber=[20], rfOrder=19, authorNames=Liu XX, Hu X, Cao Y, Pang WJ, Huang JY, Guo P, Huang L, journalName=Frontiers in Microbiology, refType=null, unstructuredReference=Liu XX, Hu X, Cao Y, Pang WJ, Huang JY, Guo P, Huang L. Biodegradation of phenanthrene and heavy metal removal by acid-tolerant Burkholderia fungorum FM-2[J]. Frontiers in Microbiology, 2019, 10: 408., articleTitle=Biodegradation of phenanthrene and heavy metal removal by acid-tolerant Burkholderia fungorum FM-2, refAbstract=null), Reference(id=1274087962875813971, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2023, volume=325, issue=null, pageStart=116488, pageEnd=null, url=null, language=null, rfNumber=[21], rfOrder=20, authorNames=Liao JJ, Dou YX, Yang X, An SS, journalName=Journal of Environmental Management, refType=null, unstructuredReference=Liao JJ, Dou YX, Yang X, An SS. Soil microbial community and their functional genes during grassland restoration[J]. Journal of Environmental Management, 2023, 325: 116488., articleTitle=Soil microbial community and their functional genes during grassland restoration, refAbstract=null), Reference(id=1274087962959700052, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2018, volume=111, issue=9, pageStart=1509, pageEnd=1521, url=null, language=null, rfNumber=[22], rfOrder=21, authorNames=Pinevich AV, Andronov EE, Pershina EV, Pinevich AA, Dmitrieva HY, journalName=Antonie van Leeuwenhoek, refType=null, unstructuredReference=Pinevich AV, Andronov EE, Pershina EV, Pinevich AA, Dmitrieva HY. Testing culture purity in prokaryotes: criteria and challenges[J]. Antonie van Leeuwenhoek, 2018, 111(9): 1509-1521., articleTitle=Testing culture purity in prokaryotes: criteria and challenges, refAbstract=null), Reference(id=1274087963039391829, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2010, volume=60, issue=4, pageStart=829, pageEnd=839, url=null, language=null, rfNumber=[23], rfOrder=22, authorNames=Senechkin IV, Speksnijder AGCL, Semenov AM, van Bruggen AHC, van Overbeek LS, journalName=Microbial Ecology, refType=null, unstructuredReference=Senechkin IV, Speksnijder AGCL, Semenov AM, van Bruggen AHC, van Overbeek LS. Isolation and partial characterization of bacterial strains on low organic carbon medium from soils fertilized with different organic amendments[J]. Microbial Ecology, 2010, 60(4): 829-839., articleTitle=Isolation and partial characterization of bacterial strains on low organic carbon medium from soils fertilized with different organic amendments, refAbstract=null), Reference(id=1274087963119083606, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2010, volume=76, issue=8, pageStart=2445, pageEnd=2450, url=null, language=null, rfNumber=[24], rfOrder=23, authorNames=Nichols D, Cahoon N, Trakhtenberg EM, Pham L, Mehta A, Belanger A, Kanigan T, Lewis K, Epstein SS, journalName=Applied and Environmental Microbiology, refType=null, unstructuredReference=Nichols D, Cahoon N, Trakhtenberg EM, Pham L, Mehta A, Belanger A, Kanigan T, Lewis K, Epstein SS. Use of ichip for high-throughput in situ cultivation of “uncultivable” microbial species[J]. Applied and Environmental Microbiology, 2010, 76(8): 2445-2450., articleTitle=Use of ichip for high-throughput in situ cultivation of “uncultivable” microbial species, refAbstract=null), Reference(id=1274087963190386775, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2020, volume=10, issue=null, pageStart=9674, pageEnd=null, url=null, language=null, rfNumber=[25], rfOrder=24, authorNames=Diakite A, Dubourg G, Dione N, Afouda P, Bellali S, Ngom II, Valles C, Tall ML, Lagier JC, Raoult D, journalName=Scientific Reports, refType=null, unstructuredReference=Diakite A, Dubourg G, Dione N, Afouda P, Bellali S, Ngom II, Valles C, Tall ML, Lagier JC, Raoult D. Optimization and standardization of the culturomics technique for human microbiome exploration[J]. Scientific Reports, 2020, 10: 9674., articleTitle=Optimization and standardization of the culturomics technique for human microbiome exploration, refAbstract=null), Reference(id=1274087963261689944, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=1987, volume=65, issue=5, pageStart=501, pageEnd=509, url=null, language=null, rfNumber=[26], rfOrder=25, authorNames=Hayakawa M, Nonomura H, journalName=Journal of Fermentation Technology, refType=null, unstructuredReference=Hayakawa M, Nonomura H. Humic acid-vitamin agar, a new medium for the selective isolation of soil actinomycetes[J]. Journal of Fermentation Technology, 1987, 65(5): 501-509., articleTitle=Humic acid-vitamin agar, a new medium for the selective isolation of soil actinomycetes, refAbstract=null), Reference(id=1274087964884885593, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2025, volume=31, issue=1, pageStart=60, pageEnd=65, url=null, language=null, rfNumber=[27], rfOrder=26, authorNames=Kusumaningayu RRR, Mustafa I, Siswanto D, Suharjono S, Ardyati T, Jatmiko YD, journalName=Berkala Penelitian Hayati, refType=null, unstructuredReference=Kusumaningayu RRR, Mustafa I, Siswanto D, Suharjono S, Ardyati T, Jatmiko YD. Evaluation of a non-aseptic stepwise culture technique with various carbon sources for nitrogen-fixing bacteria propagation[J]. Berkala Penelitian Hayati, 2025, 31(1): 60-65., articleTitle=Evaluation of a non-aseptic stepwise culture technique with various carbon sources for nitrogen-fixing bacteria propagation, refAbstract=null), Reference(id=1274087964951994458, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=1987, volume=53, issue=6, pageStart=1263, pageEnd=1266, url=null, language=null, rfNumber=[28], rfOrder=27, authorNames=Travers RS, Martin PAW, Reichelderfer CF, journalName=Applied and Environmental Microbiology, refType=null, unstructuredReference=Travers RS, Martin PAW, Reichelderfer CF. Selective process for efficient isolation of soil Bacillus spp.[J]. Applied and Environmental Microbiology, 1987, 53(6): 1263-1266., articleTitle=Selective process for efficient isolation of soil Bacillus spp, refAbstract=null), Reference(id=1274087965019103323, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2013, volume=63, issue=12, pageStart=4750, pageEnd=4753, url=null, language=null, rfNumber=[29], rfOrder=28, authorNames=Jin L, Lee HG, Kim HS, Ahn CY, Oh HM, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Jin L, Lee HG, Kim HS, Ahn CY, Oh HM. Amnibacterium soli sp. nov., an actinobacterium isolated from grass soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2013, 63(Pt_12): 4750-4753., articleTitle=Amnibacterium soli sp. nov., an actinobacterium isolated from grass soil, refAbstract=null), Reference(id=1274087965086212188, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2021, volume=71, issue=8, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[30], rfOrder=29, authorNames=Besaury L, Floret J, Rémond C, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Besaury L, Floret J, Rémond C. Sphingobacterium prati sp. nov., isolated from agricultural soil and involved in lignocellulose deconstruction[J]. International Journal of Systematic and Evolutionary Microbiology, 2021, 71(8): 004963., articleTitle=Sphingobacterium prati sp. nov., isolated from agricultural soil and involved in lignocellulose deconstruction, refAbstract=null), Reference(id=1274087965153321053, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2010, volume=60, issue=8, pageStart=1813, pageEnd=1823, url=null, language=null, rfNumber=[31], rfOrder=30, authorNames=Kim BY, Stach JEM, Weon HY, Kwon SW, Goodfellow M, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Kim BY, Stach JEM, Weon HY, Kwon SW, Goodfellow M. Dactylosporangium luridum sp. nov., Dactylosporangium luteum sp. nov. and Dactylosporangium salmoneum sp. nov., nom. rev., isolated from soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2010, 60(8): 1813-1823., articleTitle=Dactylosporangium luridum sp. nov., Dactylosporangium luteum sp. nov. and Dactylosporangium salmoneum sp. nov., nom. rev., isolated from soil, refAbstract=null), Reference(id=1274087965224624222, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=11, pageStart=4685, pageEnd=4691, url=null, language=null, rfNumber=[32], rfOrder=31, authorNames=Zhuang JL, Xin D, Zhang YQ, Guo JN, Zhang JL, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Zhuang JL, Xin D, Zhang YQ, Guo JN, Zhang JL. Paenibacillus albidus sp. nov., isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(11): 4685-4691., articleTitle=Paenibacillus albidus sp. nov., isolated from grassland soil, refAbstract=null), Reference(id=1274087965283344479, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2015, volume=65, issue=5, pageStart=1583, pageEnd=1586, url=null, language=null, rfNumber=[33], rfOrder=32, authorNames=Han LL, He JZ, Zheng YM, Zeng J, Zhang LM, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Han LL, He JZ, Zheng YM, Zeng J, Zhang LM. Paenibacillus tibetensis sp. nov., a psychrophilic bacterium isolated from Alpine swamp meadow soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2015, 65(Pt_5): 1583-1586., articleTitle=Paenibacillus tibetensis sp. nov., a psychrophilic bacterium isolated from Alpine swamp meadow soil, refAbstract=null), Reference(id=1274087965379813472, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=10, pageStart=4246, pageEnd=4252, url=null, language=null, rfNumber=[34], rfOrder=33, authorNames=Chaudhary DK, Kim J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Chaudhary DK, Kim J. Dyella agri sp. nov., isolated from reclaimed grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(10): 4246-4252., articleTitle=Dyella agri sp. nov., isolated from reclaimed grassland soil, refAbstract=null), Reference(id=1274087965451116641, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=8, pageStart=2696, pageEnd=2703, url=null, language=null, rfNumber=[35], rfOrder=34, authorNames=Chaudhary DK, Kim J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Chaudhary DK, Kim J. Massilia agri sp. nov., isolated from reclaimed grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(8): 2696-2703., articleTitle=Massilia agri sp. nov., isolated from reclaimed grassland soil, refAbstract=null), Reference(id=1274087965522419810, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2013, volume=63, issue=12, pageStart=4707, pageEnd=4718, url=null, language=null, rfNumber=[36], rfOrder=35, authorNames=Vandamme P, De Brandt E, Houf K, Salles JF, Dirk van Elsas J, Spilker T, LiPuma JJ, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Vandamme P, De Brandt E, Houf K, Salles JF, Dirk van Elsas J, Spilker T, LiPuma JJ. Burkholderia humi sp. nov., Burkholderia choica sp. nov., Burkholderia telluris sp. nov., Burkholderia terrestris sp. nov. and Burkholderia udeis sp. nov.: Burkholderia glathei-like bacteria from soil and rhizosphere soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2013, 63(Pt_12): 4707-4718., articleTitle=Burkholderia humi sp. nov., Burkholderia choica sp. nov., Burkholderia telluris sp. nov., Burkholderia terrestris sp. nov. and Burkholderia udeis sp. nov.: Burkholderia glathei-like bacteria from soil and rhizosphere soil, refAbstract=null), Reference(id=1274087965606305891, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2023, volume=73, issue=5, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[37], rfOrder=36, authorNames=Vieira S, Huber KJ, Geppert A, Wolf J, Neumann-Schaal M, Müsken M, Overmann J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Vieira S, Huber KJ, Geppert A, Wolf J, Neumann-Schaal M, Müsken M, Overmann J. Baekduia alba sp. nov., a novel representative of the order Solirubrobacterales isolated from temperate grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2023, 73(5): 005918., articleTitle=Baekduia alba sp. nov., a novel representative of the order Solirubrobacterales isolated from temperate grassland soil, refAbstract=null), Reference(id=1274087965685997668, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2024, volume=55, issue=2, pageStart=1099, pageEnd=1115, url=null, language=null, rfNumber=[38], rfOrder=37, authorNames=Cunha-Ferreira IC, Vizzotto CS, Freitas MAM, Peixoto J, Carvalho LS, Tótola MR, Thompson FL, Krüger RH, journalName=Brazilian Journal of Microbiology, refType=null, unstructuredReference=Cunha-Ferreira IC, Vizzotto CS, Freitas MAM, Peixoto J, Carvalho LS, Tótola MR, Thompson FL, Krüger RH. Genomic and physiological characterization of Kitasatospora sp. nov., an actinobacterium with potential for biotechnological application isolated from Cerrado soil[J]. Brazilian Journal of Microbiology, 2024, 55(2): 1099-1115., articleTitle=Genomic and physiological characterization of Kitasatospora sp. nov., an actinobacterium with potential for biotechnological application isolated from Cerrado soil, refAbstract=null), Reference(id=1274087965761495141, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2006, volume=56, issue=1, pageStart=265, pageEnd=269, url=null, language=null, rfNumber=[39], rfOrder=38, authorNames=Lee SD, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Lee SD. Amycolatopsis minnesotensis sp. nov., isolated from a prairie soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2006, 56(1): 265-269., articleTitle=Amycolatopsis minnesotensis sp. nov., isolated from a prairie soil, refAbstract=null), Reference(id=1274087965849575526, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2020, volume=70, issue=3, pageStart=1605, pageEnd=1609, url=null, language=null, rfNumber=[40], rfOrder=39, authorNames=Guo QN, Zhou ZF, Zhang LJ, Zhang C, Chen M, Wang B, Lin M, Wang W, Zhang W, Li XF, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Guo QN, Zhou ZF, Zhang LJ, Zhang C, Chen M, Wang B, Lin M, Wang W, Zhang W, Li XF. Skermanella pratensis sp. nov., isolated from meadow soil, and emended description of the genus Skermanella [J]. International Journal of Systematic and Evolutionary Microbiology, 2020, 70(3): 1605-1609., articleTitle=Skermanella pratensis sp. nov., isolated from meadow soil, and emended description of the genus Skermanella, refAbstract=null), Reference(id=1274087965975404647, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2021, volume=71, issue=5, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[41], rfOrder=40, authorNames=Timsy, Spanner T, Ulrich A, Kublik S, Foesel BU, Kolb S, Horn MA, Behrendt U, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Timsy, Spanner T, Ulrich A, Kublik S, Foesel BU, Kolb S, Horn MA, Behrendt U. Pseudomonas campi sp. nov., a nitrate-reducing bacterium isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2021, 71(5): 004799., articleTitle=Pseudomonas campi sp. nov., a nitrate-reducing bacterium isolated from grassland soil, refAbstract=null), Reference(id=1274087966046707816, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2022, volume=72, issue=10, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[42], rfOrder=41, authorNames=Timsy T, Behrendt U, Ulrich A, Foesel BU, Spanner T, Neumann-Schaal M, Wolf J, Schloter M, Horn MA, Kolb S, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Timsy T, Behrendt U, Ulrich A, Foesel BU, Spanner T, Neumann-Schaal M, Wolf J, Schloter M, Horn MA, Kolb S. Genomic evidence for two pathways of formaldehyde oxidation and denitrification capabilities of the species Paracoccus methylovorus sp. nov.[J]. International Journal of Systematic and Evolutionary Microbiology, 2022, 72(10): 005581., articleTitle=Genomic evidence for two pathways of formaldehyde oxidation and denitrification capabilities of the species Paracoccus methylovorus sp. nov, refAbstract=null), Reference(id=1274087966134788201, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2010, volume=60, issue=11, pageStart=2548, pageEnd=2551, url=null, language=null, rfNumber=[43], rfOrder=42, authorNames=Jones AL, Payne GD, Goodfellow M, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Jones AL, Payne GD, Goodfellow M. Williamsia faeni sp. nov., an actinomycete isolated from a hay meadow[J]. International Journal of Systematic and Evolutionary Microbiology, 2010, 60(11): 2548-2551., articleTitle=Williamsia faeni sp. nov., an actinomycete isolated from a hay meadow, refAbstract=null), Reference(id=1274087966243840106, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=5, pageStart=1408, pageEnd=1414, url=null, language=null, rfNumber=[44], rfOrder=43, authorNames=Vieira S, Luckner M, Wanner G, Overmann J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Vieira S, Luckner M, Wanner G, Overmann J. Luteitalea pratensis gen. nov., sp. nov. a new member of subdivision 6 Acidobacteria isolated from temperate grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(5): 1408-1414., articleTitle=Luteitalea pratensis gen. nov., sp. nov. a new member of subdivision 6 Acidobacteria isolated from temperate grassland soil, refAbstract=null), Reference(id=1274087966331920491, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2020, volume=113, issue=6, pageStart=763, pageEnd=772, url=null, language=null, rfNumber=[45], rfOrder=44, authorNames=Fang BZ, Xie YG, Zhou XK, Zhang XT, Liu L, Jiao JY, Xiao M, Li WJ, journalName=Antonie van Leeuwenhoek, refType=null, unstructuredReference=Fang BZ, Xie YG, Zhou XK, Zhang XT, Liu L, Jiao JY, Xiao M, Li WJ. Lysobacter prati sp. nov., isolated from a plateau meadow sample[J]. Antonie van Leeuwenhoek, 2020, 113(6): 763-772., articleTitle=Lysobacter prati sp. nov., isolated from a plateau meadow sample, refAbstract=null), Reference(id=1274087966445166700, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=11, pageStart=4475, pageEnd=4481, url=null, language=null, rfNumber=[46], rfOrder=45, authorNames=Cao M, Huang J, Li JX, Qiao ZX, Wang GJ, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Cao M, Huang J, Li JX, Qiao ZX, Wang GJ. Edaphobaculum flavum gen. nov., sp. nov., a member of family Chitinophagaceae, isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(11): 4475-4481., articleTitle=Edaphobaculum flavum gen. nov., sp. nov., a member of family Chitinophagaceae, isolated from grassland soil, refAbstract=null), Reference(id=1274087966516469869, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2025, volume=56, issue=1, pageStart=137, pageEnd=154, url=null, language=null, rfNumber=[47], rfOrder=46, authorNames=Frederico TD, Cunha-Ferreira IC, Vizzotto CS, de Sousa JF, Portugal MM, Tótola MR, Krüger RH, Peixoto J, journalName=Brazilian Journal of Microbiology, refType=null, unstructuredReference=Frederico TD, Cunha-Ferreira IC, Vizzotto CS, de Sousa JF, Portugal MM, Tótola MR, Krüger RH, Peixoto J. Genomic and taxonomic characterization of the Comamonas sp. nov., a bacterium isolated from Brazilian Cerrado soil[J]. Brazilian Journal of Microbiology, 2025, 56(1): 137-154., articleTitle=Genomic and taxonomic characterization of the Comamonas sp. nov., a bacterium isolated from Brazilian Cerrado soil, refAbstract=null), Reference(id=1274087966587773038, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2020, volume=70, issue=3, pageStart=1843, pageEnd=1849, url=null, language=null, rfNumber=[48], rfOrder=47, authorNames=Shin B, Park C, Lee BH, Lee KE, Park W, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Shin B, Park C, Lee BH, Lee KE, Park W. Bacillus miscanthi sp. nov., a alkaliphilic bacterium from the rhizosphere of Miscanthus sacchariflorus [J]. International Journal of Systematic and Evolutionary Microbiology, 2020, 70(3): 1843-1849., articleTitle=Bacillus miscanthi sp. nov., a alkaliphilic bacterium from the rhizosphere of Miscanthus sacchariflorus, refAbstract=null), Reference(id=1274087966654881903, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=4, pageStart=883, pageEnd=888, url=null, language=null, rfNumber=[49], rfOrder=48, authorNames=Kim D, Kang K, Ahn TY, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Kim D, Kang K, Ahn TY. Chthonobacter albigriseus gen. nov., sp. nov., isolated from grass-field soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(4): 883-888., articleTitle=Chthonobacter albigriseus gen. nov., sp. nov., isolated from grass-field soil, refAbstract=null), Reference(id=1274087966738767984, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2023, volume=12, issue=6, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[50], rfOrder=49, authorNames=Green MA, Alvarez-Aponte ZI, Trotter VV, Taga ME, journalName=Microbiology Resource Announcements, refType=null, unstructuredReference=Green MA, Alvarez-Aponte ZI, Trotter VV, Taga ME. Draft genome sequence of Pedococcus sp. strain 5OH020, isolated from California grassland soil[J]. Microbiology Resource Announcements, 2023, 12(6): e00025-23., articleTitle=Draft genome sequence of Pedococcus sp. strain 5OH020, isolated from California grassland soil, refAbstract=null), Reference(id=1274087966818459761, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2014, volume=52, issue=7, pageStart=548, pageEnd=553, url=null, language=null, rfNumber=[51], rfOrder=50, authorNames=Wang S, Sun L, Wei D, Zhou BK, Zhang JZ, Gu XJ, Zhang L, Liu Y, Li YD, Guo W, Jiang S, Pan YQ, Wang YF, journalName=Journal of Microbiology, refType=null, unstructuredReference=Wang S, Sun L, Wei D, Zhou BK, Zhang JZ, Gu XJ, Zhang L, Liu Y, Li YD, Guo W, Jiang S, Pan YQ, Wang YF. Bacillus daqingensis sp. nov., a halophilic, alkaliphilic bacterium isolated from Saline-sodic soil in Daqing, China[J]. Journal of Microbiology, 2014, 52(7): 548-553., articleTitle=Bacillus daqingensis sp. nov., a halophilic, alkaliphilic bacterium isolated from Saline-sodic soil in Daqing, China, refAbstract=null), Reference(id=1274087966898151538, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=5, pageStart=1508, pageEnd=1515, url=null, language=null, rfNumber=[52], rfOrder=51, authorNames=Chaudhary DK, Kim J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Chaudhary DK, Kim J. Noviherbaspirillum agri sp. nov., isolated from reclaimed grassland soil, and reclassification of Herbaspirillum massiliense (Lagieret al., 2014) as Noviherbaspirillum massiliense comb. nov.[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(5): 1508-1515., articleTitle=Noviherbaspirillum agri sp. nov., isolated from reclaimed grassland soil, and reclassification of Herbaspirillum massiliense (Lagieret al., 2014) as Noviherbaspirillum massiliense comb. nov, refAbstract=null), Reference(id=1274087966977843315, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2008, volume=58, issue=10, pageStart=2459, pageEnd=2464, url=null, language=null, rfNumber=[53], rfOrder=52, authorNames=Sorokin ID, Kravchenko IK, Tourova TP, Kolganova TV, Boulygina ES, Sorokin DY, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Sorokin ID, Kravchenko IK, Tourova TP, Kolganova TV, Boulygina ES, Sorokin DY. Bacillus alkalidiazotrophicus sp. nov., a diazotrophic, low salt-tolerant alkaliphile isolated from Mongolian soda soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2008, 58(10): 2459-2464., articleTitle=Bacillus alkalidiazotrophicus sp. nov., a diazotrophic, low salt-tolerant alkaliphile isolated from Mongolian soda soil, refAbstract=null), Reference(id=1274087967053340788, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2014, volume=64, issue=9, pageStart=3160, pageEnd=3167, url=null, language=null, rfNumber=[54], rfOrder=53, authorNames=Suarez C, Ratering S, Geissler-Plaum R, Schnell S, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Suarez C, Ratering S, Geissler-Plaum R, Schnell S. Hartmannibacter diazotrophicus gen. nov., sp. nov., a phosphate-solubilizing and nitrogen-fixing alphaproteobacterium isolated from the rhizosphere of a natural salt-meadow plant[J]. International Journal of Systematic and Evolutionary Microbiology, 2014, 64(Pt_9): 3160-3167., articleTitle=Hartmannibacter diazotrophicus gen. nov., sp. nov., a phosphate-solubilizing and nitrogen-fixing alphaproteobacterium isolated from the rhizosphere of a natural salt-meadow plant, refAbstract=null), Reference(id=1274087967128838261, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=11, pageStart=4500, pageEnd=4506, url=null, language=null, rfNumber=[55], rfOrder=54, authorNames=Suarez C, Ratering S, Schäfer J, Schnell S, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Suarez C, Ratering S, Schäfer J, Schnell S. Ancylobacter pratisalsi sp. nov. with plant growth promotion abilities from the rhizosphere of Plantago winteri Wirtg[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(11): 4500-4506., articleTitle=Ancylobacter pratisalsi sp. nov. with plant growth promotion abilities from the rhizosphere of Plantago winteri Wirtg, refAbstract=null), Reference(id=1274087967212724342, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2025, volume=75, issue=10, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[56], rfOrder=55, authorNames=Motnenko A, Hawkins JP, Ordoñez PA, Oresnik IJ, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Motnenko A, Hawkins JP, Ordoñez PA, Oresnik IJ. Sinorhizobium prairiense sp. nov., a nitrogen-fixing symbiont of Phaseolus vulgaris isolated from Canadian prairie soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2025, 75(10): 006947., articleTitle=Sinorhizobium prairiense sp. nov., a nitrogen-fixing symbiont of Phaseolus vulgaris isolated from Canadian prairie soil, refAbstract=null), Reference(id=1274087967288221815, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2015, volume=65, issue=3, pageStart=959, pageEnd=964, url=null, language=null, rfNumber=[57], rfOrder=56, authorNames=Baek I, Seo B, Lee I, Lee K, Park SC, Yi HN, Chun J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Baek I, Seo B, Lee I, Lee K, Park SC, Yi HN, Chun J. Burkholderia megalochromosomata sp. nov., isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2015, 65(Pt_3): 959-964., articleTitle=Burkholderia megalochromosomata sp. nov., isolated from grassland soil, refAbstract=null), Reference(id=1274087967372107896, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2021, volume=78, issue=2, pageStart=789, pageEnd=795, url=null, language=null, rfNumber=[58], rfOrder=57, authorNames=Zhang M, Shen LX, Shi JJ, Chen LX, Luo Y, Sun JQ, Fan DL, Hara S, Bao ZH, journalName=Current Microbiology, refType=null, unstructuredReference=Zhang M, Shen LX, Shi JJ, Chen LX, Luo Y, Sun JQ, Fan DL, Hara S, Bao ZH. Pseudomonas pratensis sp. nov., isolated from grassland soil from Inner Mongolia, China[J]. Current Microbiology, 2021, 78(2): 789-795., articleTitle=Pseudomonas pratensis sp. nov., isolated from grassland soil from Inner Mongolia, China, refAbstract=null), Reference(id=1274087967451799673, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2024, volume=74, issue=4, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[59], rfOrder=58, authorNames=Oh ET, Ra JS, Kim SB, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Oh ET, Ra JS, Kim SB. Paraburkholderia translucens sp. nov. and Paraburkholderia sejongensis sp. nov., isolated from grassland soil and showing plant growth promoting potential[J]. International Journal of Systematic and Evolutionary Microbiology, 2024, 74(4): 006347., articleTitle=Paraburkholderia translucens sp. nov. and Paraburkholderia sejongensis sp. nov., isolated from grassland soil and showing plant growth promoting potential, refAbstract=null), Reference(id=1274087967556657274, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2008, volume=58, issue=2, pageStart=414, pageEnd=419, url=null, language=null, rfNumber=[60], rfOrder=59, authorNames=Hoppener-Ogawa S, de Boer W, Leveau JHJ, van Veen JA, de Brandt E, Vanlaere E, Sutton H, Dare DJ, Vandamme P, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Hoppener-Ogawa S, de Boer W, Leveau JHJ, van Veen JA, de Brandt E, Vanlaere E, Sutton H, Dare DJ, Vandamme P. Collimonas arenae sp. nov. and Collimonas pratensis sp. nov., isolated from (semi-) natural grassland soils[J]. International Journal of Systematic and Evolutionary Microbiology, 2008, 58(2): 414-419., articleTitle=Collimonas arenae sp. nov. and Collimonas pratensis sp. nov., isolated from (semi-) natural grassland soils, refAbstract=null), Reference(id=1274087967640543355, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2005, volume=55, issue=3, pageStart=1107, pageEnd=1112, url=null, language=null, rfNumber=[61], rfOrder=60, authorNames=Peix A, Berge O, Rivas R, Abril A, Velázquez E, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Peix A, Berge O, Rivas R, Abril A, Velázquez E. Pseudomonas argentinensis sp. nov., a novel yellow pigment-producing bacterial species, isolated from rhizospheric soil in Córdoba, Argentina[J]. International Journal of Systematic and Evolutionary Microbiology, 2005, 55(3): 1107-1112., articleTitle=Pseudomonas argentinensis sp. nov., a novel yellow pigment-producing bacterial species, isolated from rhizospheric soil in Córdoba, Argentina, refAbstract=null), Reference(id=1274087967716040828, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2020, volume=70, issue=12, pageStart=6450, pageEnd=6457, url=null, language=null, rfNumber=[62], rfOrder=61, authorNames=Guo QN, Wang B, Zhou ZF, Ke XB, Zhang LJ, Chen M, Lin M, Wang W, Zhang W, Li XF, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Guo QN, Wang B, Zhou ZF, Ke XB, Zhang LJ, Chen M, Lin M, Wang W, Zhang W, Li XF. Ornithinimicrobium pratense sp. nov., isolated from meadow soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2020, 70(12): 6450-6457., articleTitle=Ornithinimicrobium pratense sp. nov., isolated from meadow soil, refAbstract=null), Reference(id=1274087969339236477, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2021, volume=203, issue=3, pageStart=959, pageEnd=966, url=null, language=null, rfNumber=[63], rfOrder=62, authorNames=Wang S, Sun L, Wei D, Salam N, Fang BZ, Dong ZY, Hao XY, Zhang MY, Zhang Z, Li WJ, journalName=Archives of Microbiology, refType=null, unstructuredReference=Wang S, Sun L, Wei D, Salam N, Fang BZ, Dong ZY, Hao XY, Zhang MY, Zhang Z, Li WJ. Nesterenkonia haasae sp. nov., an alkaliphilic actinobacterium isolated from a degraded pasture in Songnen Plain[J]. Archives of Microbiology, 2021, 203(3): 959-966., articleTitle=Nesterenkonia haasae sp. nov., an alkaliphilic actinobacterium isolated from a degraded pasture in Songnen Plain, refAbstract=null), Reference(id=1274087969414733950, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2024, volume=117, issue=null, pageStart=67, pageEnd=null, url=null, language=null, rfNumber=[64], rfOrder=63, authorNames=Bao RZ, Guo HL, Liang YG, Tang K, Feng FY, Meng JY, journalName=Antonie van Leeuwenhoek, refType=null, unstructuredReference=Bao RZ, Guo HL, Liang YG, Tang K, Feng FY, Meng JY. Terrihabitans rhizophilus sp. nov., isolated from the rhizosphere soil of plant in temperate semi-arid steppe[J]. Antonie van Leeuwenhoek, 2024, 117: 67., articleTitle=Terrihabitans rhizophilus sp. nov., isolated from the rhizosphere soil of plant in temperate semi-arid steppe, refAbstract=null), Reference(id=1274087969515397247, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2013, volume=8, issue=7, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[65], rfOrder=64, authorNames=Beukes CW, Venter SN, Law IJ, Phalane FL, Steenkamp ET, journalName=PLoS One, refType=null, unstructuredReference=Beukes CW, Venter SN, Law IJ, Phalane FL, Steenkamp ET. South African papilionoid legumes are nodulated by diverse Burkholderia with unique nodulation and nitrogen-fixation loci[J]. PLoS One, 2013, 8(7): e68406., articleTitle=South African papilionoid legumes are nodulated by diverse Burkholderia with unique nodulation and nitrogen-fixation loci, refAbstract=null), Reference(id=1274087969616060544, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2018, volume=2, issue=6, pageStart=936, pageEnd=943, url=null, language=null, rfNumber=[66], rfOrder=65, authorNames=Louca S, Polz MF, Mazel F, Albright MBN, Huber JA, O’Connor MI, Ackermann M, Hahn AS, Srivastava DS, Crowe SA, Doebeli M, Parfrey LW, journalName=Nature Ecology & Evolution, refType=null, unstructuredReference=Louca S, Polz MF, Mazel F, Albright MBN, Huber JA, O’Connor MI, Ackermann M, Hahn AS, Srivastava DS, Crowe SA, Doebeli M, Parfrey LW. Function and functional redundancy in microbial systems[J]. Nature Ecology & Evolution, 2018, 2(6): 936-943., articleTitle=Function and functional redundancy in microbial systems, refAbstract=null), Reference(id=1274087969695752321, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2024, volume=100, issue=12, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[67], rfOrder=66, authorNames=Sauma-Sánchez T, Alcorta J, Tamayo-Leiva J, Díez B, Bezuidenhout H, Cowan DA, Ramond JB, journalName=FEMS Microbiology Ecology, refType=null, unstructuredReference=Sauma-Sánchez T, Alcorta J, Tamayo-Leiva J, Díez B, Bezuidenhout H, Cowan DA, Ramond JB. Functional redundancy buffers the effect of poly-extreme environmental conditions on southern African dryland soil microbial communities[J]. FEMS Microbiology Ecology, 2024, 100(12): fiae157., articleTitle=Functional redundancy buffers the effect of poly-extreme environmental conditions on southern African dryland soil microbial communities, refAbstract=null), Reference(id=1274087969762861186, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2013, volume=63, issue=4, pageStart=1545, pageEnd=1549, url=null, language=null, rfNumber=[68], rfOrder=67, authorNames=Lin YB, Wang XY, Wang TT, An SS, Shi P, Wei GH, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Lin YB, Wang XY, Wang TT, An SS, Shi P, Wei GH. Streptomyces ziwulingensis sp. nov., isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2013, 63(Pt_4): 1545-1549., articleTitle=Streptomyces ziwulingensis sp. nov., isolated from grassland soil, refAbstract=null), Reference(id=1274087969825775747, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2017, volume=67, issue=8, pageStart=3043, pageEnd=3049, url=null, language=null, rfNumber=[69], rfOrder=68, authorNames=Dahal RH, Shim DS, Kim J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Dahal RH, Shim DS, Kim J. Description of Actinokineospora acnipugnans sp. nov., an actinomycete isolated from soil, showing potential uses in cosmetics[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(8): 3043-3049., articleTitle=Description of Actinokineospora acnipugnans sp. nov., an actinomycete isolated from soil, showing potential uses in cosmetics, refAbstract=null), Reference(id=1274087969901273220, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2021, volume=71, issue=1, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[70], rfOrder=69, authorNames=Rojas J, Ambika Manirajan B, Ratering S, Suarez C, Geissler-Plaum R, Schnell S, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Rojas J, Ambika Manirajan B, Ratering S, Suarez C, Geissler-Plaum R, Schnell S. Spirosoma endbachense sp. nov., isolated from a natural salt meadow[J]. International Journal of Systematic and Evolutionary Microbiology, 2021, 71(1): 004601., articleTitle=Spirosoma endbachense sp. nov., isolated from a natural salt meadow, refAbstract=null), Reference(id=1274087969976770693, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2022, volume=72, issue=8, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[71], rfOrder=70, authorNames=Vieira S, Huber KJ, Geppert A, Wolf J, Neumann-Schaal M, Luckner M, Wanner G, Müsken M, Overmann J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Vieira S, Huber KJ, Geppert A, Wolf J, Neumann-Schaal M, Luckner M, Wanner G, Müsken M, Overmann J. Capillimicrobium parvum gen. nov., sp. nov., a novel representative of Capillimicrobiaceae fam. nov. within the order Solirubrobacterales, isolated from a grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2022, 72(8): 005508., articleTitle=Capillimicrobium parvum gen. nov., sp. nov., a novel representative of Capillimicrobiaceae fam. nov. within the order Solirubrobacterales, isolated from a grassland soil, refAbstract=null), Reference(id=1274087970048073862, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2005, volume=55, issue=1, pageStart=111, pageEnd=117, url=null, language=null, rfNumber=[72], rfOrder=71, authorNames=Heyrman J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Heyrman J. Bacillus arenosi sp. nov., Bacillus arvi sp. nov. and Bacillus humi sp. nov., isolated from soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2005, 55(1): 111-117., articleTitle=Bacillus arenosi sp. nov., Bacillus arvi sp. nov. and Bacillus humi sp. nov., isolated from soil, refAbstract=null), Reference(id=1274087970110988423, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2016, volume=66, issue=8, pageStart=2971, pageEnd=2979, url=null, language=null, rfNumber=[73], rfOrder=72, authorNames=Huber KJ, Geppert AM, Wanner G, Fösel BU, Wüst PK, Overmann J, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Huber KJ, Geppert AM, Wanner G, Fösel BU, Wüst PK, Overmann J. The first representative of the globally widespread subdivision 6 Acidobacteria, Vicinamibacter silvestris gen. nov., sp. nov., isolated from subtropical savannah soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2016, 66(8): 2971-2979., articleTitle=The first representative of the globally widespread subdivision 6 Acidobacteria, Vicinamibacter silvestris gen. nov., sp. nov., isolated from subtropical savannah soil, refAbstract=null), Reference(id=1274087970186485896, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2016, volume=66, issue=10, pageStart=4269, pageEnd=4275, url=null, language=null, rfNumber=[74], rfOrder=73, authorNames=Manandhar P, Zhang GX, Hu YL, Lama AR, Gao F, Gu ZQ, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Manandhar P, Zhang GX, Hu YL, Lama AR, Gao F, Gu ZQ. Sphingomonas prati sp. nov., isolated from Alpine meadow soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2016, 66(10): 4269-4275., articleTitle=Sphingomonas prati sp. nov., isolated from Alpine meadow soil, refAbstract=null), Reference(id=1274087970261983369, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2009, volume=78, issue=1, pageStart=102, pageEnd=111, url=null, language=null, rfNumber=[75], rfOrder=74, authorNames=Shapovalova AA, Khijniak TV, Tourova TP, Sorokin DY, journalName=Microbiology, refType=null, unstructuredReference=Shapovalova AA, Khijniak TV, Tourova TP, Sorokin DY. Halomonas chromatireducens sp. nov., a new denitrifying facultatively haloalkaliphilic bacterium from solonchak soil capable of aerobic chromate reduction[J]. Microbiology, 2009, 78(1): 102-111., articleTitle=Halomonas chromatireducens sp. nov., a new denitrifying facultatively haloalkaliphilic bacterium from solonchak soil capable of aerobic chromate reduction, refAbstract=null), Reference(id=1274087970383618186, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2009, volume=59, issue=5, pageStart=1076, pageEnd=1081, url=null, language=null, rfNumber=[76], rfOrder=75, authorNames=Zhang J, Wu D, Liu Z, journalName=International Journal of Systematic and Evolutionary Microbiology, refType=null, unstructuredReference=Zhang J, Wu D, Liu Z. Saccharopolyspora jiangxiensis sp. nov., isolated from grass-field soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2009, 59(5): 1076-1081., articleTitle=Saccharopolyspora jiangxiensis sp. nov., isolated from grass-field soil, refAbstract=null), Reference(id=1274087970475892875, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2016, volume=10, issue=1, pageStart=119, pageEnd=129, url=null, language=null, rfNumber=[77], rfOrder=76, authorNames=Cha JY, Hong HJ, Cho H, Kim D, Kwon Y, Kwon SK, Crüsemann M, Bok Lee Y, Kim JF, Giaever G, Nislow C, Moore BS, Thomashow LS, Weller DM, Kwak YS, journalName=The ISME Journal, refType=null, unstructuredReference=Cha JY, Hong HJ, Cho H, Kim D, Kwon Y, Kwon SK, Crüsemann M, Bok Lee Y, Kim JF, Giaever G, Nislow C, Moore BS, Thomashow LS, Weller DM, Kwak YS. Microbial and biochemical basis of a Fusarium wilt-suppressive soil[J]. The ISME Journal, 2016, 10(1): 119-129., articleTitle=Microbial and biochemical basis of a Fusarium wilt-suppressive soil, refAbstract=null), Reference(id=1274087970559778956, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, doi=null, pmid=null, pmcid=null, year=2024, volume=9, issue=4, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[78], rfOrder=77, authorNames=Zhang ZG, Zhang L, Zhang LH, Chu HY, Zhou JZ, Ju F, journalName=mSystems, refType=null, unstructuredReference=Zhang ZG, Zhang L, Zhang LH, Chu HY, Zhou JZ, Ju F. Diversity and distribution of biosynthetic gene clusters in agricultural soil microbiomes[J]. mSystems, 2024, 9(4): e01263-23., articleTitle=Diversity and distribution of biosynthetic gene clusters in agricultural soil microbiomes, refAbstract=null)], funds=[Fund(id=1274087960648638519, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, awardId=2025YFE0103800, language=EN, fundingSource=the National Key Research and Development Program of China(2025YFE0103800), fundOrder=null, country=null), Fund(id=1274087960719941688, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, awardId=2025YFE0103800, language=CN, fundingSource=国家重点研发计划(2025YFE0103800), fundOrder=null, country=null), Fund(id=1274087960787050553, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, awardId=W2412123, language=EN, fundingSource=the National Natural Science Foundation of China(W2412123), fundOrder=null, country=null), Fund(id=1274087960862548026, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, awardId=W2412123, language=CN, fundingSource=国家自然科学基金(W2412123), fundOrder=null, country=null), Fund(id=1274087960946434107, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, awardId=32271579, language=EN, fundingSource=the National Natural Science Foundation of China(32271579), fundOrder=null, country=null), Fund(id=1274087961017737276, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, awardId=32271579, language=CN, fundingSource=国家自然科学基金(32271579), fundOrder=null, country=null), Fund(id=1274087961080651837, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, awardId=2023E01008, language=EN, fundingSource=the Regional Collaborative Innovation Special Project of Xinjiang Uygur Autonomous Region(2023E01008), fundOrder=null, country=null), Fund(id=1274087961151955006, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, awardId=2023E01008, language=CN, fundingSource=新疆维吾尔自治区区域协同创新专项项目(2023E01008), fundOrder=null, country=null)], companyList=[AuthorCompany(id=1274087952775929881, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, xref=1., ext=[AuthorCompanyExt(id=1274087952784318490, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087952775929881, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.Key Laboratory of Grassland Resources and Ecology in Arid and Desert Regions of the Ministry of Education, College of Grassland Science, Xinjiang Agricultural University, Urumqi, Xinjiang, China), AuthorCompanyExt(id=1274087952792707099, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087952775929881, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.新疆农业大学 草业学院,西部干旱荒漠区草地资源与生态教育部重点实验室,新疆 乌鲁木齐)]), AuthorCompany(id=1274087953061142556, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, xref=2., ext=[AuthorCompanyExt(id=1274087953069531165, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087953061142556, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=2.National Field Observation and Research Station of Songneng Grassland Ecosystem, Key Laboratory of Vegetation Ecology of the Ministry of Education, Institute of Grassland Science, Northeast Normal University, Changchun, Jilin, China), AuthorCompanyExt(id=1274087953077919774, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, companyId=1274087953061142556, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=2.东北师范大学 草地科学研究所,吉林松嫩草地生态系统国家野外科学观测研究站,植被生态科学教育部重点实验室,吉林 长春)])], figs=[ArticleFig(id=1274087958622789683, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=EN, label=Figure 1, caption=Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences. Different colors represent different bacterial phyla; Color coding: Colored sectors correspond to bacterial phyla; Node support: Numbers at nodes denote bootstrap support values for phylogenetic clade confidence; Labels: The genus and species names of novel taxa; Numbers in parentheses: Overseas culture collection numbers., figureFileSmall=7lDNcVVWu4CCQ+N91UV12A==, figureFileBig=ZyeRPPiT9Z4nD2t+eRnLhQ==, tableContent=null), ArticleFig(id=1274087958941556788, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=CN, label=图1, caption=基于16S rRNA基因序列构建的系统发育树, figureFileSmall=7lDNcVVWu4CCQ+N91UV12A==, figureFileBig=ZyeRPPiT9Z4nD2t+eRnLhQ==, tableContent=null), ArticleFig(id=1274087960434729013, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=EN, label=Figure 2, caption=Comparative analysis of background abundance and novel bacteria species discovery proportion of global grassland soil., figureFileSmall=tnJyOfaqF00NeHy26xb4ZQ==, figureFileBig=bXVxIPMw2Nnq9heXRmyVEQ==, tableContent=null), ArticleFig(id=1274087960514420790, tenantId=1146029695717560320, journalId=1192105938417971205, articleId=1274057422818795564, language=CN, label=图2, caption=全球草地土壤细菌背景丰度与新种发掘占比对比分析, figureFileSmall=tnJyOfaqF00NeHy26xb4ZQ==, figureFileBig=bXVxIPMw2Nnq9heXRmyVEQ==, tableContent=null)], attaches=null, journal=Journal(id=1192105720683257860, delFlag=0, nameCn=微生物学报, nameEn=Acta Microbiologica Sinica, nameHistory1=null, nameHistory2=null, issn=0001-6209, eissn=null, cn=11-1995/Q, coden=null, periodic=0, language=CN, oaType=null, ccby=null, superviseOffice=null, ownerOffice=null, pubOffice=null, editorOffice=null, officeType=null, aims=null, clcCode=null, officeProv=null, officeCity=null, officeAddr=null, officeZip=null, officeEmail=null, officePhone=null, editDirector=null, officeDirector=null, officeDirectorPhone=null, officeStaffNum=null, officeEmpNum=null, coverPicUrl=tNA7JigLZj/rxynSmzKgDQ==, journalPrice=null, startedYear=null, abbrevIsoEn=null, journalRemark=null, publicationField=null, createdTime=1762149752067, updatedTime=1762150746905, createdBy=18614031015, updatedBy=13701087609, firstLetterCn=A, firstLetterEn=A, subjectCode=Life Sciences, subjectName=Life Sciences, subjectCodeEn=Life Sciences, subjectNameEn=null, picCn=tNA7JigLZj/rxynSmzKgDQ==, picEn=R/d5eSUu8/o5mAGWCF3M5Q==, jcr=null, cjcr=null, exts=[JournalExt(id=1192109893441171829, language=CN, name=微生物学报, nameHistory1=null, nameHistory2=null, managedBy=, sponsoredBy=, publishedBy=, editorOffice=, officeProv=null, officeCity=null, officeAddr=, officeZip=, editDirector=, officeDirector=null, officePhone=null, coverPicUrl=null, journalRemark=, submitArticleUrl=null, websiteUrl=, createdTime=1762150746928, updatedTime=1762150746928, createdBy=13701087609, updatedBy=13701087609, submissionGuidelinesUrl=, submissionAuthorUrl=https://actamicro.ijournals.cn/actamicrocn/author/login, submissionEditorUrl=https://actamicro.ijournals.cn/actamicrocn/editor/login, submissionReviewUrl=https://actamicro.ijournals.cn/actamicrocn/reviewer/login, submissionCeEditorUrl=, submissionAeEditorUrl=, option={"copyright":""}), JournalExt(id=1192109893512474998, language=EN, name=Acta Microbiologica Sinica, nameHistory1=null, nameHistory2=null, managedBy=, sponsoredBy=, publishedBy=, editorOffice=, officeProv=null, officeCity=null, officeAddr=, officeZip=, editDirector=, officeDirector=null, officePhone=null, coverPicUrl=null, journalRemark=, submitArticleUrl=null, websiteUrl=, createdTime=1762150746944, updatedTime=1762150746944, createdBy=13701087609, updatedBy=13701087609, submissionGuidelinesUrl=, submissionAuthorUrl=https://actamicro.ijournals.cn/actamicrocn/author/login, submissionEditorUrl=https://actamicro.ijournals.cn/actamicrocn/editor/login, submissionReviewUrl=https://actamicro.ijournals.cn/actamicrocn/reviewer/login, submissionCeEditorUrl=, submissionAeEditorUrl=, option={"copyright":""})], databaseList=null, tenantJournalId=1192105938417971205, websiteList=[Website(id=1192106105867223981, webName=null, webTitle=null, webDomain=null, webCopyrigh=null, webIpcNo=null, seoTitle=null, seoKeywords=null, seoDescription=null, tenantJournalId=null, journalId=1192105938417971205, journalNameCn=null, journalNameEn=null, grayFlag=null, tenantId=1146029695717560320, platformId=null, journalGroupId=null, journalGroupNameCn=null, journalGroupNameEn=null, type=1, domain=https://castjournals.cast.org.cn/joweb/wswxb/CN, language=CN, createTime=1762149843899, createBy=18614031015, updateTime=1762149888800, updateBy=18614031015, name=微生物学报-中文, tplId=1146099689490845704, title=微生物学报, delFlag=0, indexPage=/home, props=[WebsiteProps(id=1192107120863626198, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=articleTextType, value=kx, createTime=1762150085893, updateTime=1762150085893, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120834266067, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=banner, value=null, createTime=1762150085886, updateTime=1762150085886, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120892986329, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=grayFlag, value=0, createTime=1762150085900, updateTime=1762150085900, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120825877458, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=logo, value=https://castjournals.cast.org.cn/joweb/wswxb/CN/file/pic?fileId=FOz4Ks7dC79FYnCEBIlMdw==, createTime=1762150085884, updateTime=1762150085884, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120905569243, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=minRunFlag, value=0, createTime=1762150085903, updateTime=1762150085903, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120846848981, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=picServerUrl, value=https://castjournals.cast.org.cn/joweb/wswxb/CN/file/pic, createTime=1762150085889, updateTime=1762150085889, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120897180634, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=silenceFlag, value=0, createTime=1762150085901, updateTime=1762150085901, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120842654676, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=staticResourcePath, value=https://castjournals.cast.org.cn/joweb/cast_kjdb_cn_619/, createTime=1762150085888, updateTime=1762150085888, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120872014807, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=themeColor, value=null, createTime=1762150085895, updateTime=1762150085895, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107120880403416, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106105867223981, code=themeStyle, value=null, createTime=1762150085897, updateTime=1762150085897, creator=18614031015, updator=18614031015)]), Website(id=1192106106018218929, webName=null, webTitle=null, webDomain=null, webCopyrigh=null, webIpcNo=null, seoTitle=null, seoKeywords=null, seoDescription=null, tenantJournalId=null, journalId=1192105938417971205, journalNameCn=null, journalNameEn=null, grayFlag=null, tenantId=1146029695717560320, platformId=null, journalGroupId=null, journalGroupNameCn=null, journalGroupNameEn=null, type=1, domain=https://castjournals.cast.org.cn/joweb/wswxb/EN, language=EN, createTime=1762149843935, createBy=18614031015, updateTime=1762149925242, updateBy=18614031015, name=微生物学报-英文, tplId=1146101810881728533, title=Acta Microbiologica Sinica, delFlag=0, indexPage=/home, props=[WebsiteProps(id=1192107140455220192, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=articleTextType, value=kx, createTime=1762150090564, updateTime=1762150090564, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140434248669, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=banner, value=null, createTime=1762150090559, updateTime=1762150090559, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140476191715, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=grayFlag, value=0, createTime=1762150090569, updateTime=1762150090569, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140425860060, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=logo, value=https://castjournals.cast.org.cn/joweb/wswxb/EN/file/pic?fileId=FOz4Ks7dC79FYnCEBIlMdw==, createTime=1762150090557, updateTime=1762150090557, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140484580325, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=minRunFlag, value=0, createTime=1762150090571, updateTime=1762150090571, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140451025887, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=picServerUrl, value=https://castjournals.cast.org.cn/joweb/wswxb/EN/file/pic, createTime=1762150090563, updateTime=1762150090563, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140480386020, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=silenceFlag, value=0, createTime=1762150090570, updateTime=1762150090570, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140442637278, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=staticResourcePath, value=https://castjournals.cast.org.cn/joweb/cast_kjdb_en_623/, createTime=1762150090561, updateTime=1762150090561, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140463608801, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=themeColor, value=null, createTime=1762150090566, updateTime=1762150090566, creator=18614031015, updator=18614031015), WebsiteProps(id=1192107140467803106, tenantId=1146029695717560320, journalId=null, journalGroupId=null, siteId=1192106106018218929, code=themeStyle, value=null, createTime=1762150090567, updateTime=1762150090567, creator=18614031015, updator=18614031015)])], journalTitle=微生物学报, weixinUrl=null, journalUrl=https://actamicro.ijournals.cn, iacademicId=null, status=1, seqNo=null, journalTitleEn=Acta Microbiologica Sinica, journalPhotoCn=tNA7JigLZj/rxynSmzKgDQ==, journalPhotoEn=R/d5eSUu8/o5mAGWCF3M5Q==, journalFirstLetter=A, journalRecommend=null, journalNew=null, journalCollection=null, jcrJf=null, cjcrJf=null, jcrJfStr=null, cjcrJfStr=null, submissionFirstDecision=null, sciSubjectClassification=null, casSubjectClassification=null, citeScore=null, totalCitationFrequency=null, icpCode=null, psCode=null, advertisingLicenseCode=null, copyrightInformation=null, country=null, option=, provinceCode=null, provinceName=null, collectFlag=false), detailUrlCn=https://castjournals.cast.org.cn/joweb/wswxb/CN/10.13343/j.cnki.wsxb.20250873, detailUrlEn=https://castjournals.cast.org.cn/joweb/wswxb/EN/10.13343/j.cnki.wsxb.20250873, pdfUrlCn=https://castjournals.cast.org.cn/joweb/wswxb/CN/PDF/10.13343/j.cnki.wsxb.20250873, pdfUrlEn=https://castjournals.cast.org.cn/joweb/wswxb/EN/PDF/10.13343/j.cnki.wsxb.20250873, aliStartDate=null, aliEndDate=null, collectionFlag=false, citedCount=null, citedUrl=null, reference=null)
收藏切换
全球草地土壤细菌新种发掘及潜在生态功能研究进展
收藏切换
PDF下载
祖力胡玛尔·肉孜 1, 2 , 高英志 1
微生物学报 | 综述 2026,66(6): 2567-2579
收起
收藏切换
微生物学报 | 综述 2026, 66(6): 2567-2579
全球草地土壤细菌新种发掘及潜在生态功能研究进展
全屏
祖力胡玛尔·肉孜1, 2, 高英志1
作者信息
  • 1.新疆农业大学 草业学院,西部干旱荒漠区草地资源与生态教育部重点实验室,新疆 乌鲁木齐
  • 2.东北师范大学 草地科学研究所,吉林松嫩草地生态系统国家野外科学观测研究站,植被生态科学教育部重点实验室,吉林 长春
Research progress in novel bacterial species and their potential ecological functions in global grassland soils
Zulihumaer·Rouzi1, 2, Yingzhi GAO1
Affiliations
  • 1.Key Laboratory of Grassland Resources and Ecology in Arid and Desert Regions of the Ministry of Education, College of Grassland Science, Xinjiang Agricultural University, Urumqi, Xinjiang, China
  • 2.National Field Observation and Research Station of Songneng Grassland Ecosystem, Key Laboratory of Vegetation Ecology of the Ministry of Education, Institute of Grassland Science, Northeast Normal University, Changchun, Jilin, China
出版时间: 2026-06-04 doi: 10.13343/j.cnki.wsxb.20250873
文章导航
收藏切换

草地土壤微生物(grassland soil microorganisms)在维持生态系统健康与稳定性方面发挥着关键作用。然而,目前针对草地细菌新种的多样性、地理分布、资源挖掘技术以及功能潜力所开展的系统性研究仍较为匮乏。本研究检索了2004-2025年间全球19个国家草地生态系统的74篇新种文献,涉及104株细菌新种,并开展荟萃(meta)分析。结合全基因组信息对其功能进行预测,同时与草地土壤细菌背景群落进行对比。研究结果发现,草地土壤细菌新种以放线菌门和假单胞菌门为核心优势类群,其发现频率与土壤背景微生物丰度高度契合。在地理分布上呈现出纬度地带性特征,高纬度区域富集休眠体类群,以适应极端环境。对功能潜力的解析表明,这些新种不仅实现了对“微生物暗物质”的生理实证,在驱动关键生态功能方面更展现出不可替代的优势。例如,土壤河小杆菌(Amnibacterium soli)等通过高效水解酶系驱动碳氮循环;灰白色草地土杆状菌(Chthonobacter albigriseus)介导甲烷氧化,有助于缓解温室效应;草地新草小螺菌(Noviherbaspirillum agri)等具备固氮促生或盐碱适应能力;子午岭链霉菌(Streptomyces ziwulingensis)可构建生化防御体系。这些研究结果证实了草地核心微生物具有重要的资源价值。未来将整合多学科和多技术手段,解析叶际‑根际新种功能与演化,实现序列到功能的突破,为草原生产力提升与生态稳态维持提供微生物学理论支撑。

草地生态系统  /  细菌新种资源  /  微生物功能预测  /  微生物地理分布

Grassland soil microorganisms play a pivotal role in maintaining the health and stability of grassland ecosystems. However, systematic studies on the diversity, geographical distribution, isolation techniques, and functional potential of novel bacterial taxa in grassland soils remain limited. Here, we conducted a meta-analysis of 104 novel bacterial taxa described in 74 studies from grassland ecosystems across 19 countries between 2004 and 2025. We further predicted their functions via whole-genome data and compared them with background soil bacterial communities in grassland soils. Our results showed that novel bacterial taxa in grassland soils were mainly affiliated with the phyla Actinomycetota and Pseudomonadota, and their discovery frequency closely matched the abundance of background soil microorganisms. Their geographical distribution exhibited clear latitudinal zonality, with high-latitude regions being enriched with dormant taxa adaptive to harsh environments. Functional potential analysis suggested that these novel species not only provide the physiological verification of microbial dark matter, but may also play important roles in key ecosystem processes. Several representative taxa showed distinct ecological functional potential. Amnibacterium soli contributes to carbon and nitrogen cycling through efficient hydrolase systems; Chthonobacter albigriseus mediates methane oxidation to mitigate the greenhouse effect; Noviherbaspirillum agri possesses nitrogen-fixing, plant growth-promoting, and salt-alkali adaptation capabilities; and Streptomyces ziwulingensis can contribute to microbial defenses through secondary metabolite production. Together, these findings highlight the ecological and biotechnological potential of core grassland microbial taxa. Future studies integrating multidisciplinary approaches are needed to elucidate the functions and evolution of novel phyllosphere and rhizosphere taxa and bridge the gap between genomic sequences and ecological functions, thus providing microbiological support for improving the productivity and maintaining the ecosystem stability of grassland.

grassland ecosystems  /  novel bacterial taxa  /  microbial function prediction  /  microbial biogeography
祖力胡玛尔·肉孜, 高英志. 全球草地土壤细菌新种发掘及潜在生态功能研究进展. 微生物学报, 2026 , 66 (6) : 2567 -2579 . DOI: 10.13343/j.cnki.wsxb.20250873
Zulihumaer·Rouzi, Yingzhi GAO. Research progress in novel bacterial species and their potential ecological functions in global grassland soils[J]. Acta Microbiologica Sinica, 2026 , 66 (6) : 2567 -2579 . DOI: 10.13343/j.cnki.wsxb.20250873
草地作为覆盖全球约52.5亿hm2、占陆地总面积约40%的关键生态系统,不仅是畜牧业的重要基础,更在碳氮循环、水土保持以及生物多样性维持等方面发挥着不可替代的作用[1]。土壤微生物作为草地生态系统的重要组成部分,其群落结构与功能直接关系到生态系统的健康与稳定。全球尺度下的土壤微生物组调查显示,草地生态系统主要由放线菌门(Actinomycetota)、假单胞菌门(Pseudomonadota)和酸杆菌门(Acidobacteriota)等类群主导[2-5]。假单胞菌门是变形菌门(Proteobacteria)的最新分类命名,依据最新细菌分类标准修订后,其核心类群的系统发育地位及演化关系未发生本质改变[6]。本文后续均采用该最新命名体系,其中放线菌门和假单胞菌门在群落丰度中占据核心地位。然而,目前对草地土壤细菌新种的多样性、地理分布和功能潜力的研究仍相对匮乏,尤其是在如何高效挖掘与利用这些资源,以及现有新种发掘工作与自然界真实的丰度背景之间是否存在明显脱节等方面仍存在诸多挑战。虽然假单胞菌门因其较高的物种分化速率及易于培养的特性贡献了目前绝大多数的草地细菌新种,但相比之下,在全球草地背景中丰度极高的酸杆菌门和疣微菌门(Verrucomicrobiota),由于生理需求苛刻且生长缓慢,仍处于发掘盲区,被视为典型的“微生物暗物质”[7-9]。因此,聚焦兼具潜在优势性与功能性的细菌新种挖掘,不仅有助于完善微生物多样性研究,还能为草地生态修复提供宝贵的种质资源。
当前,草地土壤细菌新种研究的局限性主要体现在以下几个维度。(1) 对地理分布规律的认识不足。由于不同草地类型,如高寒、温带、热带稀树草原的土壤性质差异显著,现有局部区域的新种发现难以界定其演化特异性,从而限制了靶向筛选的效率[10]。(2) 菌种资源挖掘技术存在局限。传统培养法难以突破难培养类群的生长限制,导致从宏基因组序列信息向纯培养实物资源的转化效率低下,无法通过纯培养物进行功能验证[11]。(3) 对生态功能的认识不足。多数新种研究仅停留在16S rRNA基因同源性与平均核苷酸相似度(average nucleotide identity, ANI)值等分类学鉴定层面,对其在碳氮循环、促牧草生长及退化草地修复中的功能缺乏系统梳理[12]。鉴于此,本文通过荟萃(meta)分析,系统梳理全球已正式发表的可培养草地土壤细菌新种的分布特征与功能潜力,旨在为定向发掘功能菌株、优化高效培养技术提供理论支撑。同时,通过对比新种资源与草地土壤背景群落的关联特征,揭示当前草地微生物资源挖掘的偏好性问题,并明确其未被开发的潜在价值。
为探索草原生态系统中细菌新种的多样性及其地理分布格局,对2004-2025年间已发表的现有细菌新种文献进行了系统性检索。文献来源于Scopus数据库和Web of Science数据库中的International Journal of Systematic and Evolutionary MicrobiologyAntonie van LeeuwenhoekCurrent MicrobiologyArchives of MicrobiologyThe Journal of MicrobiologySystematic and Applied MicrobiologyAnais da Academia Brasileira de CiênciasFrontiers in MicrobiologyApplied and Environmental Microbiology。以“Grassland” “Grass” “Meadow” “Steppe” “Prairie” “Pasture” “Savanna” “Rangeland” “New species” “Novel micro* resources” “New bacte* species” AND “sp. nov.” OR “gen. nov.”为关键词进行检索,筛选到137篇相关英文文献。对种属信息整理后,剔除了非草地的干扰样本,包括海洋、农田、沙漠、植物组织、根瘤以及重复种属的文献,最终选取了74篇参考文献,并按照样点数量和国家进行排序。这些参考文献覆盖中国、韩国、德国、荷兰、纳米比亚、美国、法国、澳大利亚、英国、尼泊尔、巴西、俄罗斯等19个国家,共计81个样点。这些全球样点分布于稀树草原、温带草原、天然草原和草甸草原等土壤样品中,从中分离并已正式发表的细菌新种有104株,隶属于103个分类单元,涉及54个不同属。细菌新种的核酸序列通过美国国家生物技术信息中心(National Center for Biotechnology Information, NCBI)数据库(https://www.ncbi.nlm.nih.gov/)进行检索,下载新种16S rRNA基因序列。随后使用MEGA X软件,采用多序列比对(Muscle)对齐方法,并通过邻接(neighbor-joining)法对所有序列信息进行种的系统发育分析,模型选择Kimura 2-parameter,Bootstrap重复1 000次,最终通过iTOL在线工具(https://itol.embl.de/)绘制了系统发育树(图1)。另外,将104株分离新种与全球及区域性草地土壤细菌背景数据进行了对比分析。背景数据整合自包括ScienceNature MicrobiologyThe International Society for Microbial Ecology Journal以及Frontiers in Microbiology等高影响力研究期刊,涵盖了从全球尺度到青藏高原的典型草地土壤细菌组成[2-4,6-8]。通过这一多源数据构建的“背景基准”,能够分析新种挖掘在类群分布上的偏好性,并量化其对草地微生物资源库的贡献(图2)。
对全球19个国家的104株已发表土壤细菌新种进行系统分析发现,在门水平上,放线菌门(Actinomycetota)共有38株,优势属为链霉菌属(Streptomyces,14株);假单胞菌门(Pseudomonadota)有32株,优势属为假单胞菌属(Pseudomonas,5株);芽孢杆菌门(Bacillota)有16株,优势属为芽孢杆菌属(Bacillus,14株);酸杆菌门(Acidobacteriota)有10株,优势属为Brevitalea属(2株)和Aridibacter属(2株);拟杆菌门(Bacteroidota)有7株,优势属为Hymenobacter属(3株);而疣微菌门(Verrucomicrobiota)仅1株。基于16S rRNA基因序列构建的系统发育树进一步揭示了这些新种在演化谱系上的高度多样性,其发育树拓扑结构呈现的深层分类学分化及显著分支深度,证明草地土壤中存在大量未被发掘的深层谱系。各门类分支内部显著的属级分化特征不仅涵盖了极宽的演化距离,更体现了当前挖掘的新种资源在遗传背景与分类范畴上具有广泛的生态代表性。与全球草地土壤细菌背景值的对比分析显示,新种发现频率的宏观趋势契合自然群落的丰度分布规律,放线菌门和假单胞菌门的发现占比与其背景丰度占比均保持较高且匹配的水平,证实了二者在分类学与资源开发中的核心地位。这一结果的取得正是依托针对性的选择性培养策略实现的,包括利用几丁质琼脂、淀粉酪蛋白培养基富集链霉菌属(Streptomyces),以及通过无氮苹果酸培养基或特定O-去甲基化底物筛选固氮、降解型假单胞菌属(Pseudomonas)等优势类群[10-13]。然而,芽孢杆菌门(Bacillota)的新种比例显著高于其背景均值,呈现出明显的非对称性富集特征;这一技术层面的偏倚主要源于选择性抑制与热处理的联用策略[14]。通过醋酸钠抑制非目标菌,并结合高温杀灭非芽孢型微生物,可将目标芽孢杆菌的分离率提升至20%-96%,直观体现了传统分离手段对易培养类群的选择偏向性[15]。酸杆菌门新种占比与背景值基本持平,反映出高稀释度“稀释至消灭法”结合12周以上长周期、低浓度有机碳的培养策略,已有效弥补其丰度与可培养性的差距,使生长缓慢的酸杆菌避开速生菌干扰形成菌落,完成对草地“微生物暗物质”的初步发掘[16-21]。疣微菌门等类群极低的新种发现率则预示着高丰度难培养菌群依然是未来微生物多样性挖掘的研究瓶颈[22]
在地理尺度上,上述类群随纬度梯度呈现出规律性演替,其分布特征体现了微生物对地带性气候的适应性响应。全球草原低中纬度区(0°-50° N/S)以放线菌门和假单胞菌门为优势类群[2],高度的环境异质性驱动了新种的生态位特化,宏基因组研究表明,该区域典型草地生境中的微生物在碳源代谢通路周转上具有高度的遗传分化[7],且蕴含着丰富的次级代谢基因簇(biosynthetic gene clusters, BGCs)等专性代谢潜能[15]。链霉菌属(Streptomyces)新种的高频率出现以及假单胞菌属(Pseudomonas)对物理梯度的代谢适应,证明了该区域极高的化学生态位竞争与功能潜力[23-24];而副伯克霍尔德氏菌属(Paraburkholderia)与植物的功能互作也对应了中纬度地区较高的宿主依赖型微生物多样性[25]。在较高纬度区(50°-60° N/S),优势类群为放线菌门、假单胞菌门和芽孢杆菌门,在属水平上发生显著特化。链霉菌属与芽孢杆菌属主要通过形成休眠体结构应对极寒胁迫[23,26],而伯克霍尔德氏菌属(Burkholderia)新种则在酸性土壤中具有竞争优势及对顽固性有机质的降解潜力[27-28],从生理水平解释了高通量数据中观测到的胞外多糖合成与复杂碳源利用的功能富集现象。尽管这种纬度分异格局受环境选择与空间过程共同驱动,但当前揭示的格局在很大程度上仍受限于培养依赖型方法的内在偏见与地理采样的不均衡性。综上所述,本研究获得的新种资源实现了从组学视图到生理实证的衔接,为解析草原生态系统微生物多样性的形成机制提供了科学依据。
本研究以已正式发表的草地土壤细菌新种为研究对象,通过严格的文献筛选与数据整合,采用系统发育分箱(phylogenomic binning)技术构建新种基因组的系统发育框架。同时结合文献中已报道的新种生理生化特征,以及基于抗生素及次级代谢产物分析系统 (antibiotics and secondary metabolite analysis shell, antiSMASH)的次级代谢产物预测,与基于京都基因与基因组百科全书(Kyoto encyclopedia of genes and genomes, KEGG)的功能通路解析,进行整合分析揭示了草地土壤细菌新种在驱动有机质分解与养分循环、介导细菌-真菌互作及植物促生抗逆、发挥病原菌拮抗与生物防治作用等方面的核心生态功能。这些发现不仅丰富了全球土壤核心菌群的功能谱系,更在功能群水平揭示了草地土壤细菌新种显著的生态位专一性特征;其在复杂底物降解、极端环境适应等低冗余功能上展现出的不可替代性,修正了单纯依赖宏观环境因子的群落分布预测体系,为高分辨率解析草地细菌群落的功能维度分布格局提供了关键微观证据。
在碳周转维度,草地土壤细菌新种表现出极强的基质降解广度及生境适应性[数据存储于国家微生物科学数据中心(http://nmdc.cn),编号为NMDCX 31253.11]。分析图谱索引酶谱系统(analytical profile index zymogram, API ZYM)检测证实,土壤河小杆菌(A. soli)具备酯酶(C4和C8)及多种糖苷酶活性,能够水解纤维素与半纤维素,从而显著提升土壤有效碳含量[29]。与此同时,草地鞘氨醇杆菌(Sphingobacterium prati)携带丰富的多糖活性酶(CAZymes),可降解木质纤维素生物质[30];而苍黄指孢囊菌(Dactylosporangium luridum)、橙色指孢囊菌(D. luteum)及鲑色指孢囊菌(D. salmoneum)等新种展现了对木聚糖、纤维素及几丁质等大分子底物的高效矿化能力[31]。白色类芽孢杆菌(Paenibacillus albidus)与西藏类芽孢杆菌(P. tibetensis)分别通过产生木聚糖酶及降解复杂多糖[32-33],协同草地戴氏菌(Dyella agri)与草原马赛菌(Massilia agri)对羧甲基纤维素及酪氨酸的分解作用,加速了草原植物残体的矿化过程[34-35]。针对脂质与复杂底物代谢,地卡瓦列罗菌(Caballeronia choica)与白色长白山菌(Baekduia alba)展现了显著的脂肪酶与酯酶活性[36-37];而巴西北里氏孢菌(Kitasatospora brasiliensis)通过水解淀粉、明胶及DNA进一步拓宽了有机物降解谱[38]。在养分循环与元素转化方面,明尼苏达拟无枝酸菌(Amycolatopsis minnesotensis)与草地斯克尔曼氏菌(Skermanella pratensis)具备硝酸盐还原能力[39-40],协同草地土假单胞菌(Pseudomonas campi)的硝酸盐还原基因(nasAnirBD)以及嗜甲基假单胞菌(Paracoccus methylovorus)的全套反硝化基因簇,共同调控土壤氮通量并减少温室气体排放[41-42]。干草威廉氏菌(Williamsia faeni)通过水解尿素及尿囊素[43],与草地金黄纤丝菌(Luteitalea pratensis)的有机营养利用机制相配合,为植物生长提供了关键的养分补给[44]。此外,草地溶杆菌(Lysobacter prati)合成具有生物活性的次级代谢产物[45];黄色土壤棒菌(Edaphobaculum flavum)通过产生柔红素样色素在有机质分解竞争中占据优势[46];而巴西丛毛单胞菌(Comamonas brasiliensis)利用聚羟基脂肪酸酯(polyhydroxyalkanoates microspheres, PHA)途径实现能量的跨季节锁定[47]。荻芽孢杆菌(Bacillus miscanthi)及大庆芽孢杆菌(B. daqingensis)则通过诱导碳酸钙沉淀或解离复杂有机质,主动调控土壤碱性与养分转化速率[48-49]。这些隶属于假单胞菌门、放线菌门及芽孢杆菌门的新种微生物,在全球尺度上构成了驱动生物地球化学循环的基础骨架。草地新种揭示的特定代谢机制表明其分布并非仅受限于环境因子的简单过滤,土地球菌(Pedococcus sp.)基因组中包含的复杂碳水化合物降解基因系及灰白色草地土杆状菌(Chthonobacter albigriseus)的专性甲烷氧化功能,体现了新种在极端生境下突破代谢瓶颈的独特能力[50-51]。这种低冗余核心功能节点的发现,修正了以往基于属水平丰度预测生态功能的偏差,证明了草地细菌群落在功能基因簇维度上具有极高的生态位特异性,为草原生态系统在动态波动下维持碳氮稳态提供了关键的微观证据。
草地土壤细菌新种在草原植物促生与抗逆中具有显著潜力(编号为NMDCX 31253.11)。在根际养分直接供给维度,草地新草小螺菌(N. agri)经15N同位素示踪验证,可通过固氮作用提升土壤氮素回收率并触发根际级联效应[52];嗜碱固氮芽孢杆菌(Bacillus alkalidiazotrophicus)、食二氮哈特曼杆菌(Hartmannibacter diazotrophicus)及携带nifH基因的盐渍草地屈曲杆菌(Ancylobacter pratisalsi)均展现出明确的固氮潜力[53-55],而草原中华根瘤菌(Sinorhizobium prairiense)通过nodABC基因构建了共生体系[56]。针对磷素利用,大染色体卡瓦列罗菌(C. megalochromosomata)与藤黄假单胞菌(Pseudomonas lutea)通过释放有机酸或水解有机磷增强植物对磷素的吸收与利用效率[57-58],固氮假单胞菌(H. diazotrophicus)则利用高活性磷酸酶协同驱动磷循环。在种间互作关系中,透明副伯克霍尔德氏菌(Paraburkholderia translucens)分泌吲哚乙酸(indole-3-acetic acid, IAA)及铁载体直接促生[59];砂土山冈单胞菌(Collimonas arenae)则调节真菌-细菌互作[60]。针对环境胁迫,阿根廷假单胞菌(Pseudomonas argentinensis)利用黄色色素(442 nm吸光峰)抵御紫外线[61];牧场鸟氨酸微菌(Ornithinimicrobium pratense)通过独特的磷脂酰胆碱(phosphatidylcholine, PC)结构维持膜稳态[62]。在强化宿主抗逆性方面,黑龙江农科院涅斯捷连科氏菌(Nesterenkonia haasae)通过降解胞壁多糖释放半乳糖以协助植物适应盐碱[63];嗜根际栖土菌(Terrihabitans rhizophilus)则利用83个CAZymes基因家族强化宿主对多糖的利用[64]。与Delgado-Baquerizo等[2]提出的“环境因子驱动植物生产力与微生物多样性关联”的观点相吻合,本研究中的新种不仅是草原生境中的高频分布类群,更是植物-微生物反馈回路的具体调节者。Burkholderia作为根瘤菌与特定植被类型共生,体现出与宿主植物类型具有一定的系统发育关联性[65]。在细菌功能群的可替代性方面,固氮与有机磷水解等促生功能表现出较高的生态位重叠[66]。然而,在干旱、盐碱等极端或多重胁迫环境中,微生物群落整体虽表现出一定功能冗余,但部分与渗透调节和抗逆代谢相关的通路通常由少数关键类群承担,作为网络中的低冗余核心功能节点[67]。值得注意的是,在盐碱胁迫下由新种N. haasae介导的半乳糖渗透调节途径呈现生态位专一性[63]。该功能特性使其在草地盐碱微生境中形成了不可替代的生态功能位,成为调控宿主及周边微生物适应盐碱胁迫的关键功能通路,也进一步证明了草地细菌新种在环境胁迫响应中的生态位分化特征。
草地土壤细菌新种在病原拮抗方面具有核心潜能(编号为NMDCX 31253.11)。子午岭链霉菌(S. ziwulingensis)对金黄色葡萄球菌及破坏柱果孢具有广谱抗菌活性,在新型生物源农药制剂的研发中具有重要的应用前景[68];抗痤疮放线动孢菌(Actinokineospora acnipugnans)则通过抑制酪氨酸酶与弹性酶活性干扰病原代谢[69]。恩德巴赫螺状菌(Spirosoma endbachense)利用I型和III型聚酮合酶(T1PKS、T3PKS)产生萜烯及聚酮类次级代谢产物构建生化防御体系[70]。在资源竞争层面,小毛状微菌(Capillimicrobium parvum)利用高效磷酸ABC转运体限制病原菌发育,并能降解芳香酮类化合物[71]Bacillus属新种中,田间芽孢杆菌(B. arvi)和土地芽孢杆菌(B. humi)通过分泌抗菌代谢物诱导植物系统抗性(induced systemic resistance, ISR)[72]。抗逆机制进一步支撑了防效稳定性,如牧场鸟氨酸微菌(O. pratense)编码的热休克蛋白与242个次级代谢合成基因确保了其在高温下的代谢活性[62];森林土嗜邻聚杆菌(Vicinamibacter silvestris)与草地鞘氨醇单胞菌(Sphingomonas prati)分别通过过氧化氢酶和亚精胺调节对抗氧化应激[73-74]。针对受污染生境,嗜盐碱铬还原菌(Halomonas chromatireducens)具备Cr(VI)还原能力[75],而神户糖多孢菌(Saccharopolyspora kobensis)则表现出多重耐药演化优势[76]。全球土壤研究主要聚焦于碳、氮、磷转化菌群,而对涉及病原拮抗的次级代谢产物合成基因簇的空间分布研究较少[3]。草地新种携带的多样化BGCs不仅赋予了其高度特异的病原拮抗功能,更构成了草地土壤在分子水平上抵御生物胁迫的防御性基因库[77]。从功能群维度分析,基础养分竞争功能在群落中具有较高的冗余度,而针对特定真菌病原的生化拮抗功能则表现出显著的功能独特性,且该特异性防御功能通常由子午岭糖多孢菌(S. ziwulingensis)等少数特定的演化支系所介导[77]。这种功能的高度专一化意味着草原生态系统的生物防御能力并非由群落整体均匀分担,而是由特定的关键物种驱动[78]。这些新种在拮抗环境中的演化优势决定了其在草地细菌群落中的生态占位。这一发现修正了草原土壤功能主要由广谱优势菌主导的传统认知,通过阐明专性防御功能群在群落维度分布与演替过程中的核心制约作用,为开发针对草原生态退化的精准生物防治方案提供了坚实的理论支撑。
本研究通过对全球19个国家73个草地样点的104株可培养细菌新种进行系统梳理,解析了其在门、属水平上的分类多样性、地理分布格局及潜在生态功能。研究表明,放线菌门(Actinomycetota)与假单胞菌门(Pseudomonadota)构成了全球草地新种资源的核心主体,并呈现出显著的纬度地带性演替规律。在不同纬度草地新种组成表现出明显的属级特化特征,链霉菌属与芽孢杆菌属等类群通过形成休眠结构实现对极寒生境的生理适应。这种分布特征不仅受土壤pH等局部环境过滤因子的调控,更体现了空间扩散过程对群落构建的深刻影响。功能预测显示,这些新种通过驱动生物地球化学循环、介导植物促生响应、增强宿主抗逆性及构建生物防御体系,协同维持着草原生态系统的稳态。
尽管在草地细菌新种发掘方面取得了阶段性进展,但该领域仍面临显著的现实困境,未来需通过整合前沿技术实现从随机挖掘向目标导向挖掘的范式转变。(1) 资源获取的深度受限于传统培养技术的选择性偏好,导致大量处于可培养边缘的低丰度类群依然难以获取纯株,应利用培养组学、微流控原位培养技术以及模拟根际与叶际微环境的仿生培养系统(biomimetic cultivation systems),实现对高丰度难培养类群如酸杆菌和疣微菌的定向捕捉。(2) 新种在自然生境中驱动生物地球化学循环的实际贡献率缺乏精准量化,导致基因预测功能与原位代谢速率之间存在认知偏差。未来可结合稳定同位素探针技术、空间代谢组学以及针对叶际新种微生物(phyllosphere novel species)的原位活性监测,在分子层面直接关联新种与其在碳氮循环及植物表面定殖中的实际活性,实现对N. agri等固氮新种根际级联效应的生理实证。(3) 新种之间以及新种与土著群落之间的互作网络逻辑尚不清晰,难以从系统层面解析复杂群落的演替规律与稳态维持机制。引入单细胞转录组学与原位互作成像技术解析C. arenae等在细菌-真菌互作中的代谢交换特征,有助于从群落维度深度揭示新种不可替代的生态位功能。(4) 草地新种在应对全球气候变化时的表型可塑性与遗传适应潜能仍不明确。通过利用合成生物学平台(synthetic biology platforms)和高通量反向遗传学,利用规律成簇的间隔短回文重复序列系统及相关蛋白(clustered regularly interspaced short palindromic repeats, CRISPR-associated 9, CRISPR-Cas9)基因编辑对S. ziwulingensis等携带的防御基因簇进行定向激活,并结合环境DNA动态监测技术,能够实时评估新种对草原生态系统生产力的长期贡献。(5) 现有研究大多聚焦于静态功能潜力的描述,缺乏在动态环境压力下新种次级代谢产物合成基因簇的原位激活机制及演化速率监测。通过整合前沿技术的跨学科手段将实现对草地微生物“暗物质”从序列信息到生理实证的跨越,为定向改良草原生产力提供核心生物资源支撑。(6) 草地新种的演化轨迹及其对全球变暖的反馈效应仍缺乏宏观尺度的系统评估。利用比较基因组学与分子进化时钟分析,可以追溯如C. albigriseus等功能类群的演化历史,评估其功能基因在数千年来如何响应气候波动,并结合全球尺度采样分析,预测在未来增温情景下新种分布范围的迁移趋势,为草原生态系统的长期稳定性预警提供重要参考。
  • 国家重点研发计划(2025YFE0103800)
  • 国家自然科学基金(W2412123)
  • 国家自然科学基金(32271579)
  • 新疆维吾尔自治区区域协同创新专项项目(2023E01008)
参考文献 引证文献
排序方式:
[1]
Bardgett RD, Bullock JM, Lavorel S, Manning P, Schaffner U, Ostle N, Chomel M, Durigan G, Fry EL, Johnson D, Lavallee JM, Le Provost G, Luo S, Png K, Sankaran M, Hou XY, Zhou HK, Ma L, Ren WB, Li XL, et al. Combatting global grassland degradation[J]. Nature Reviews Earth & Environment, 2021, 2(10): 720-735.
[2]
Delgado-Baquerizo M, Oliverio AM, Brewer TE, Benavent-González A, Eldridge DJ, Bardgett RD, Maestre FT, Singh BK, Fierer N. A global atlas of the dominant bacteria found in soil[J]. Science, 2018, 359(6373): 320-325.
[3]
Jiang HM, Chen YC, Hu Y, Wang ZW, Lu XY. Soil bacterial communities and diversity in Alpine grasslands on the Xizang Plateau based on 16S rRNA gene sequencing[J]. Frontiers in Ecology and Evolution, 2021, 9: 630722.
[4]
Liu SL, Sun YX, Shi FN, Liu YX, Wang FF, Dong SK, Li MQ. Composition and diversity of soil microbial community associated with land use types in the agro-pastoral area in the upper Yellow River Basin[J]. Frontiers in Plant Science, 2022, 13: 819661.
[5]
Nacke H, Thürmer A, Wollherr A, Will C, Hodac L, Herold N, Schöning I, Schrumpf M, Daniel R. Pyrosequencing-based assessment of bacterial community structure along different management types in German forest and grassland soils[J]. PLoS One, 2011, 6(2): e17000.
[6]
Oren A, Garrity GM. Valid publication of the names of forty-two phyla of prokaryotes[J]. International Journal of Systematic and Evolutionary Microbiology, 2021, 71(10): 1-7.
[7]
Diamond S, Andeer PF, Li Z, Crits-Christoph A, Burstein D, Anantharaman K, Lane KR, Thomas BC, Pan CL, Northen TR, Banfield JF. Mediterranean grassland soil C-N compound turnover is dependent on rainfall and depth, and is mediated by genomically divergent microorganisms[J]. Nature Microbiology, 2019, 4(8): 1356-1367.
[8]
Crits-Christoph A, Olm MR, Diamond S, Bouma-Gregson K, Banfield JF. Soil bacterial populations are shaped by recombination and gene-specific selection across a grassland meadow[J]. The ISME Journal, 2020, 14(7): 1834-1846.
[9]
Sikorski J, Baumgartner V, Birkhofer K, Boeddinghaus RS, Bunk B, Fischer M, Fösel BU, Friedrich MW, Göker M, Hölzel N, Huang SX, Huber KJ, Kandeler E, Klaus VH, Kleinebecker T, Marhan S, von Mering C, Oelmann Y, Prati D, Regan KM, et al. The evolution of ecological diversity in Acidobacteria [J]. Frontiers in Microbiology, 2022, 13: 715637.
[10]
Wang XB, XT, Yao J, Wang ZW, Deng Y, Cheng WX, Zhou JZ, Han XG. Habitat-specific patterns and drivers of bacterial β-diversity in China’s drylands[J]. The ISME Journal, 2017, 11(6): 1345-1358.
[11]
Liu SJ, Moon CD, Zheng N, Huws S, Zhao SG, Wang JQ. Opportunities and challenges of using metagenomic data to bring uncultured microbes into cultivation[J]. Microbiome, 2022, 10: 76.
[12]
Johnson JS, Spakowicz DJ, Hong BY, Petersen LM, Demkowicz P, Chen L, Leopold SR, Hanson BM, Agresta HO, Gerstein M, Sodergren E, Weinstock GM. Evaluation of 16S rRNA gene sequencing for species and strain-level microbiome analysis[J]. Nature Communications, 2019, 10: 5029.
[13]
Liu JJ, Cui X, Liu ZX, Guo ZK, Yu ZH, Yao Q, Sui YY, Jin J, Liu XB, Wang GH. The diversity and geographic distribution of cultivable Bacillus-like bacteria across black soils of Northeast China[J]. Frontiers in Microbiology, 2019, 10: 1424.
[14]
Waschulin V, Borsetto C, James R, Newsham KK, Donadio S, Corre C, Wellington E. Biosynthetic potential of uncultured Antarctic soil bacteria revealed through long-read metagenomic sequencing[J]. The ISME Journal, 2022, 16(1): 101-111.
[15]
Nicault M, Tidjani AR, Gauthier A, Dumarcay S, Gelhaye E, Bontemps C, Leblond P. Mining the biosynthetic potential for specialized metabolism of a Streptomyces soil community[J]. Antibiotics, 2020, 9(5): 271.
[16]
Wang CQ, Kuzyakov Y. Mechanisms and implications of bacterial-fungal competition for soil resources[J]. The ISME Journal, 2024, 18: wrae073.
[17]
Cao XH, Yuan QJ, Hu CC, Zhang HX, Sun XY, Yan BB, Ma XJ, Zhang L, Huang LQ, Li SJ, Zhang ZY. Wild wisdom meets cultivation: comparative rhizomicrobiome analysis unveils the key role of Paraburkholderia in growth promotion and disease suppression in Coptis chinensis [J]. Microbiome, 2025, 13: 150.
[18]
Cramm MA, Chakraborty A, Li C, Ruff SE, Jørgensen BB, Hubert CRJ. Freezing tolerance of thermophilic bacterial endospores in marine sediments[J]. Frontiers in Microbiology, 2019, 10: 945.
[19]
Stopnisek N, Zühlke D, Carlier A, Barberán A, Fierer N, Becher D, Riedel K, Eberl L, Weisskopf L. Molecular mechanisms underlying the close association between soil Burkholderia and fungi[J]. The ISME Journal, 2016, 10(1): 253-264.
[20]
Liu XX, Hu X, Cao Y, Pang WJ, Huang JY, Guo P, Huang L. Biodegradation of phenanthrene and heavy metal removal by acid-tolerant Burkholderia fungorum FM-2[J]. Frontiers in Microbiology, 2019, 10: 408.
[21]
Liao JJ, Dou YX, Yang X, An SS. Soil microbial community and their functional genes during grassland restoration[J]. Journal of Environmental Management, 2023, 325: 116488.
[22]
Pinevich AV, Andronov EE, Pershina EV, Pinevich AA, Dmitrieva HY. Testing culture purity in prokaryotes: criteria and challenges[J]. Antonie van Leeuwenhoek, 2018, 111(9): 1509-1521.
[23]
Senechkin IV, Speksnijder AGCL, Semenov AM, van Bruggen AHC, van Overbeek LS. Isolation and partial characterization of bacterial strains on low organic carbon medium from soils fertilized with different organic amendments[J]. Microbial Ecology, 2010, 60(4): 829-839.
[24]
Nichols D, Cahoon N, Trakhtenberg EM, Pham L, Mehta A, Belanger A, Kanigan T, Lewis K, Epstein SS. Use of ichip for high-throughput in situ cultivation of “uncultivable” microbial species[J]. Applied and Environmental Microbiology, 2010, 76(8): 2445-2450.
[25]
Diakite A, Dubourg G, Dione N, Afouda P, Bellali S, Ngom II, Valles C, Tall ML, Lagier JC, Raoult D. Optimization and standardization of the culturomics technique for human microbiome exploration[J]. Scientific Reports, 2020, 10: 9674.
[26]
Hayakawa M, Nonomura H. Humic acid-vitamin agar, a new medium for the selective isolation of soil actinomycetes[J]. Journal of Fermentation Technology, 1987, 65(5): 501-509.
[27]
Kusumaningayu RRR, Mustafa I, Siswanto D, Suharjono S, Ardyati T, Jatmiko YD. Evaluation of a non-aseptic stepwise culture technique with various carbon sources for nitrogen-fixing bacteria propagation[J]. Berkala Penelitian Hayati, 2025, 31(1): 60-65.
[28]
Travers RS, Martin PAW, Reichelderfer CF. Selective process for efficient isolation of soil Bacillus spp.[J]. Applied and Environmental Microbiology, 1987, 53(6): 1263-1266.
[29]
Jin L, Lee HG, Kim HS, Ahn CY, Oh HM. Amnibacterium soli sp. nov., an actinobacterium isolated from grass soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2013, 63(Pt_12): 4750-4753.
[30]
Besaury L, Floret J, Rémond C. Sphingobacterium prati sp. nov., isolated from agricultural soil and involved in lignocellulose deconstruction[J]. International Journal of Systematic and Evolutionary Microbiology, 2021, 71(8): 004963.
[31]
Kim BY, Stach JEM, Weon HY, Kwon SW, Goodfellow M. Dactylosporangium luridum sp. nov., Dactylosporangium luteum sp. nov. and Dactylosporangium salmoneum sp. nov., nom. rev., isolated from soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2010, 60(8): 1813-1823.
[32]
Zhuang JL, Xin D, Zhang YQ, Guo JN, Zhang JL. Paenibacillus albidus sp. nov., isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(11): 4685-4691.
[33]
Han LL, He JZ, Zheng YM, Zeng J, Zhang LM. Paenibacillus tibetensis sp. nov., a psychrophilic bacterium isolated from Alpine swamp meadow soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2015, 65(Pt_5): 1583-1586.
[34]
Chaudhary DK, Kim J. Dyella agri sp. nov., isolated from reclaimed grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(10): 4246-4252.
[35]
Chaudhary DK, Kim J. Massilia agri sp. nov., isolated from reclaimed grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(8): 2696-2703.
[36]
Vandamme P, De Brandt E, Houf K, Salles JF, Dirk van Elsas J, Spilker T, LiPuma JJ. Burkholderia humi sp. nov., Burkholderia choica sp. nov., Burkholderia telluris sp. nov., Burkholderia terrestris sp. nov. and Burkholderia udeis sp. nov.: Burkholderia glathei-like bacteria from soil and rhizosphere soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2013, 63(Pt_12): 4707-4718.
[37]
Vieira S, Huber KJ, Geppert A, Wolf J, Neumann-Schaal M, Müsken M, Overmann J. Baekduia alba sp. nov., a novel representative of the order Solirubrobacterales isolated from temperate grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2023, 73(5): 005918.
[38]
Cunha-Ferreira IC, Vizzotto CS, Freitas MAM, Peixoto J, Carvalho LS, Tótola MR, Thompson FL, Krüger RH. Genomic and physiological characterization of Kitasatospora sp. nov., an actinobacterium with potential for biotechnological application isolated from Cerrado soil[J]. Brazilian Journal of Microbiology, 2024, 55(2): 1099-1115.
[39]
Lee SD. Amycolatopsis minnesotensis sp. nov., isolated from a prairie soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2006, 56(1): 265-269.
[40]
Guo QN, Zhou ZF, Zhang LJ, Zhang C, Chen M, Wang B, Lin M, Wang W, Zhang W, Li XF. Skermanella pratensis sp. nov., isolated from meadow soil, and emended description of the genus Skermanella [J]. International Journal of Systematic and Evolutionary Microbiology, 2020, 70(3): 1605-1609.
[41]
Timsy, Spanner T, Ulrich A, Kublik S, Foesel BU, Kolb S, Horn MA, Behrendt U. Pseudomonas campi sp. nov., a nitrate-reducing bacterium isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2021, 71(5): 004799.
[42]
Timsy T, Behrendt U, Ulrich A, Foesel BU, Spanner T, Neumann-Schaal M, Wolf J, Schloter M, Horn MA, Kolb S. Genomic evidence for two pathways of formaldehyde oxidation and denitrification capabilities of the species Paracoccus methylovorus sp. nov.[J]. International Journal of Systematic and Evolutionary Microbiology, 2022, 72(10): 005581.
[43]
Jones AL, Payne GD, Goodfellow M. Williamsia faeni sp. nov., an actinomycete isolated from a hay meadow[J]. International Journal of Systematic and Evolutionary Microbiology, 2010, 60(11): 2548-2551.
[44]
Vieira S, Luckner M, Wanner G, Overmann J. Luteitalea pratensis gen. nov., sp. nov. a new member of subdivision 6 Acidobacteria isolated from temperate grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(5): 1408-1414.
[45]
Fang BZ, Xie YG, Zhou XK, Zhang XT, Liu L, Jiao JY, Xiao M, Li WJ. Lysobacter prati sp. nov., isolated from a plateau meadow sample[J]. Antonie van Leeuwenhoek, 2020, 113(6): 763-772.
[46]
Cao M, Huang J, Li JX, Qiao ZX, Wang GJ. Edaphobaculum flavum gen. nov., sp. nov., a member of family Chitinophagaceae, isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(11): 4475-4481.
[47]
Frederico TD, Cunha-Ferreira IC, Vizzotto CS, de Sousa JF, Portugal MM, Tótola MR, Krüger RH, Peixoto J. Genomic and taxonomic characterization of the Comamonas sp. nov., a bacterium isolated from Brazilian Cerrado soil[J]. Brazilian Journal of Microbiology, 2025, 56(1): 137-154.
[48]
Shin B, Park C, Lee BH, Lee KE, Park W. Bacillus miscanthi sp. nov., a alkaliphilic bacterium from the rhizosphere of Miscanthus sacchariflorus [J]. International Journal of Systematic and Evolutionary Microbiology, 2020, 70(3): 1843-1849.
[49]
Kim D, Kang K, Ahn TY. Chthonobacter albigriseus gen. nov., sp. nov., isolated from grass-field soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(4): 883-888.
[50]
Green MA, Alvarez-Aponte ZI, Trotter VV, Taga ME. Draft genome sequence of Pedococcus sp. strain 5OH020, isolated from California grassland soil[J]. Microbiology Resource Announcements, 2023, 12(6): e00025-23.
[51]
Wang S, Sun L, Wei D, Zhou BK, Zhang JZ, Gu XJ, Zhang L, Liu Y, Li YD, Guo W, Jiang S, Pan YQ, Wang YF. Bacillus daqingensis sp. nov., a halophilic, alkaliphilic bacterium isolated from Saline-sodic soil in Daqing, China[J]. Journal of Microbiology, 2014, 52(7): 548-553.
[52]
Chaudhary DK, Kim J. Noviherbaspirillum agri sp. nov., isolated from reclaimed grassland soil, and reclassification of Herbaspirillum massiliense (Lagieret al., 2014) as Noviherbaspirillum massiliense comb. nov.[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(5): 1508-1515.
[53]
Sorokin ID, Kravchenko IK, Tourova TP, Kolganova TV, Boulygina ES, Sorokin DY. Bacillus alkalidiazotrophicus sp. nov., a diazotrophic, low salt-tolerant alkaliphile isolated from Mongolian soda soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2008, 58(10): 2459-2464.
[54]
Suarez C, Ratering S, Geissler-Plaum R, Schnell S. Hartmannibacter diazotrophicus gen. nov., sp. nov., a phosphate-solubilizing and nitrogen-fixing alphaproteobacterium isolated from the rhizosphere of a natural salt-meadow plant[J]. International Journal of Systematic and Evolutionary Microbiology, 2014, 64(Pt_9): 3160-3167.
[55]
Suarez C, Ratering S, Schäfer J, Schnell S. Ancylobacter pratisalsi sp. nov. with plant growth promotion abilities from the rhizosphere of Plantago winteri Wirtg[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(11): 4500-4506.
[56]
Motnenko A, Hawkins JP, Ordoñez PA, Oresnik IJ. Sinorhizobium prairiense sp. nov., a nitrogen-fixing symbiont of Phaseolus vulgaris isolated from Canadian prairie soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2025, 75(10): 006947.
[57]
Baek I, Seo B, Lee I, Lee K, Park SC, Yi HN, Chun J. Burkholderia megalochromosomata sp. nov., isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2015, 65(Pt_3): 959-964.
[58]
Zhang M, Shen LX, Shi JJ, Chen LX, Luo Y, Sun JQ, Fan DL, Hara S, Bao ZH. Pseudomonas pratensis sp. nov., isolated from grassland soil from Inner Mongolia, China[J]. Current Microbiology, 2021, 78(2): 789-795.
[59]
Oh ET, Ra JS, Kim SB. Paraburkholderia translucens sp. nov. and Paraburkholderia sejongensis sp. nov., isolated from grassland soil and showing plant growth promoting potential[J]. International Journal of Systematic and Evolutionary Microbiology, 2024, 74(4): 006347.
[60]
Hoppener-Ogawa S, de Boer W, Leveau JHJ, van Veen JA, de Brandt E, Vanlaere E, Sutton H, Dare DJ, Vandamme P. Collimonas arenae sp. nov. and Collimonas pratensis sp. nov., isolated from (semi-) natural grassland soils[J]. International Journal of Systematic and Evolutionary Microbiology, 2008, 58(2): 414-419.
[61]
Peix A, Berge O, Rivas R, Abril A, Velázquez E. Pseudomonas argentinensis sp. nov., a novel yellow pigment-producing bacterial species, isolated from rhizospheric soil in Córdoba, Argentina[J]. International Journal of Systematic and Evolutionary Microbiology, 2005, 55(3): 1107-1112.
[62]
Guo QN, Wang B, Zhou ZF, Ke XB, Zhang LJ, Chen M, Lin M, Wang W, Zhang W, Li XF. Ornithinimicrobium pratense sp. nov., isolated from meadow soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2020, 70(12): 6450-6457.
[63]
Wang S, Sun L, Wei D, Salam N, Fang BZ, Dong ZY, Hao XY, Zhang MY, Zhang Z, Li WJ. Nesterenkonia haasae sp. nov., an alkaliphilic actinobacterium isolated from a degraded pasture in Songnen Plain[J]. Archives of Microbiology, 2021, 203(3): 959-966.
[64]
Bao RZ, Guo HL, Liang YG, Tang K, Feng FY, Meng JY. Terrihabitans rhizophilus sp. nov., isolated from the rhizosphere soil of plant in temperate semi-arid steppe[J]. Antonie van Leeuwenhoek, 2024, 117: 67.
[65]
Beukes CW, Venter SN, Law IJ, Phalane FL, Steenkamp ET. South African papilionoid legumes are nodulated by diverse Burkholderia with unique nodulation and nitrogen-fixation loci[J]. PLoS One, 2013, 8(7): e68406.
[66]
Louca S, Polz MF, Mazel F, Albright MBN, Huber JA, O’Connor MI, Ackermann M, Hahn AS, Srivastava DS, Crowe SA, Doebeli M, Parfrey LW. Function and functional redundancy in microbial systems[J]. Nature Ecology & Evolution, 2018, 2(6): 936-943.
[67]
Sauma-Sánchez T, Alcorta J, Tamayo-Leiva J, Díez B, Bezuidenhout H, Cowan DA, Ramond JB. Functional redundancy buffers the effect of poly-extreme environmental conditions on southern African dryland soil microbial communities[J]. FEMS Microbiology Ecology, 2024, 100(12): fiae157.
[68]
Lin YB, Wang XY, Wang TT, An SS, Shi P, Wei GH. Streptomyces ziwulingensis sp. nov., isolated from grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2013, 63(Pt_4): 1545-1549.
[69]
Dahal RH, Shim DS, Kim J. Description of Actinokineospora acnipugnans sp. nov., an actinomycete isolated from soil, showing potential uses in cosmetics[J]. International Journal of Systematic and Evolutionary Microbiology, 2017, 67(8): 3043-3049.
[70]
Rojas J, Ambika Manirajan B, Ratering S, Suarez C, Geissler-Plaum R, Schnell S. Spirosoma endbachense sp. nov., isolated from a natural salt meadow[J]. International Journal of Systematic and Evolutionary Microbiology, 2021, 71(1): 004601.
[71]
Vieira S, Huber KJ, Geppert A, Wolf J, Neumann-Schaal M, Luckner M, Wanner G, Müsken M, Overmann J. Capillimicrobium parvum gen. nov., sp. nov., a novel representative of Capillimicrobiaceae fam. nov. within the order Solirubrobacterales, isolated from a grassland soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2022, 72(8): 005508.
[72]
Heyrman J. Bacillus arenosi sp. nov., Bacillus arvi sp. nov. and Bacillus humi sp. nov., isolated from soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2005, 55(1): 111-117.
[73]
Huber KJ, Geppert AM, Wanner G, Fösel BU, Wüst PK, Overmann J. The first representative of the globally widespread subdivision 6 Acidobacteria, Vicinamibacter silvestris gen. nov., sp. nov., isolated from subtropical savannah soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2016, 66(8): 2971-2979.
[74]
Manandhar P, Zhang GX, Hu YL, Lama AR, Gao F, Gu ZQ. Sphingomonas prati sp. nov., isolated from Alpine meadow soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2016, 66(10): 4269-4275.
[75]
Shapovalova AA, Khijniak TV, Tourova TP, Sorokin DY. Halomonas chromatireducens sp. nov., a new denitrifying facultatively haloalkaliphilic bacterium from solonchak soil capable of aerobic chromate reduction[J]. Microbiology, 2009, 78(1): 102-111.
[76]
Zhang J, Wu D, Liu Z. Saccharopolyspora jiangxiensis sp. nov., isolated from grass-field soil[J]. International Journal of Systematic and Evolutionary Microbiology, 2009, 59(5): 1076-1081.
[77]
Cha JY, Hong HJ, Cho H, Kim D, Kwon Y, Kwon SK, Crüsemann M, Bok Lee Y, Kim JF, Giaever G, Nislow C, Moore BS, Thomashow LS, Weller DM, Kwak YS. Microbial and biochemical basis of a Fusarium wilt-suppressive soil[J]. The ISME Journal, 2016, 10(1): 119-129.
[78]
Zhang ZG, Zhang L, Zhang LH, Chu HY, Zhou JZ, Ju F. Diversity and distribution of biosynthetic gene clusters in agricultural soil microbiomes[J]. mSystems, 2024, 9(4): e01263-23.
2026年第66卷第6期
PDF下载
34
12
引用本文
BibTeX
文章信息
doi: 10.13343/j.cnki.wsxb.20250873
  • 接收时间:2025-11-22
  • 首发时间:2026-06-17
  • 出版时间:2026-06-04
补充材料
相关文章
文章信息
作者
出版历史
  • 收稿日期:2025-11-22
  • 录用日期:2026-03-06
基金
the National Key Research and Development Program of China(2025YFE0103800)
国家重点研发计划(2025YFE0103800)
the National Natural Science Foundation of China(W2412123)
国家自然科学基金(W2412123)
the National Natural Science Foundation of China(32271579)
国家自然科学基金(32271579)
the Regional Collaborative Innovation Special Project of Xinjiang Uygur Autonomous Region(2023E01008)
新疆维吾尔自治区区域协同创新专项项目(2023E01008)
作者信息
    1.新疆农业大学 草业学院,西部干旱荒漠区草地资源与生态教育部重点实验室,新疆 乌鲁木齐
    2.东北师范大学 草地科学研究所,吉林松嫩草地生态系统国家野外科学观测研究站,植被生态科学教育部重点实验室,吉林 长春
参考文献
分享链接
https://castjournals.cast.org.cn/joweb/wswxb/CN/10.13343/j.cnki.wsxb.20250873
分享至
全文二维码

扫描看全文

引用本文
BibTeX
本文的引用情况
2种不同金属材料的力学参数

Family
属数
Number of
genus
种数
Number of
species
占总种数比例
Percentage of
total species (%)

Genus
种数
Number of
species
占总种数比例
Percentage of total
species (%)
鹅膏菌科Amanitaceae 2 11 5.26 鹅膏菌属 Amanita 10 4.78
小菇科 Mycenaceae 2 12 5.74 丝盖伞属 Inocybe 5 2.39
多孔菌科 Polyporaceae 8 14 6.70 蜡蘑属 Laccaria 5 2.39
红菇科 Russulaceae 3 23 11.00 小皮伞属 Marasmius 6 2.87
小菇属 Mycena 11 5.26
光柄菇属 Pluteus 5 2.39
红菇属 Russula 17 8.13
栓菌属 Trametes 5 2.39
关闭全屏