Article(id=1288421736664240773, tenantId=1146029695717560320, journalId=1146031591421210625, issueId=1288421735473058437, articleNumber=null, orderNo=null, doi=10.3981/j.issn.1000-7857.2025.07.00063, pmid=null, cstr=null, oa=null, hot=null, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=research-article, receivedDate=1753372800000, receivedDateStr=2025-07-25, revisedDate=1781625600000, revisedDateStr=2026-06-17, acceptedDate=null, acceptedDateStr=null, onlineDate=1785113279739, onlineDateStr=2026-07-27, pubDate=1783872000000, pubDateStr=2026-07-13, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1785113279739, onlineIssueDateStr=2026-07-27, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1785113279739, creator=13701087609, updateTime=1785113279739, updator=13701087609, issue=Issue{id=1288421735473058437, tenantId=1146029695717560320, journalId=1146031591421210625, year='2026', volume='44', issue='13', pageStart='1', pageEnd='188', issueExtLink='null', onlineDate='null', pubDate='1783872000000', pubDateStr='2026-07-13', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=1, specialIssue=null, createTime=1785113279455, creator='13701087609', updateTime=1785113348006, updator='13701087609', preIssue=null, nextIssue=null, articleTotal=null, ext={EN=IssueExt(id=1288422023114240128, tenantId=1146029695717560320, journalId=1146031591421210625, issueId=1288421735473058437, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1288422023118434433, tenantId=1146029695717560320, journalId=1146031591421210625, issueId=1288421735473058437, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null, downloadFileDto=null}, startPage=157, endPage=169, ext={EN=ArticleExt(id=1288421737121419910, articleId=1288421736664240773, tenantId=1146029695717560320, journalId=1146031591421210625, language=EN, title=Research on the disease and insect resistance of maize and its application in the industry, columnId=1150494644690366681, journalTitle=Science & Technology Review, columnName=Papers, runingTitle=null, highlight=null, articleAbstract=
Ensuring stable and high yields of maize holds immense significance for global food security. However, the frequent occurrence of diseases and insects severely restricts the enhancement of maize yield, and poses a significant challenge to sustainable agricultural development. Resistance breeding for diseases and insects, as the core direction of maize breeding, is not only directly related to the improvement of yield and quality but also serves as a key driver for the transformation and upgrading of the maize industry. This paper separately reviews the latest research in maize disease−resistance and insect−resistance genes. It systematically sorts out 33 cloned or identified disease−resistance genes together with their functional mechanisms, the interaction mechanisms between maize and microorganisms, the application and transformation of Bt (the mainstream insect−resistance gene) in maize, as well as its relevant environmental safety assessments. Particular emphasis is placed on the hotspots of gene mining in recent years: broad−spectrum and multi−disease resistance genes, as well as endogenous insect−resistance genes. On this basis, this paper discusses the necessity of disease− and insect− resistant breeding research for China's three major maize industries: grain maize, silage maize and fresh maize. It further proposes that targeted breeding improvement strategies including resistance resource excavation, molecular marker utilization, gene verification and taste evaluation should be formulated according to the differentiated development demands of each industry and regional characteristics of disease and pest occurrence. Accelerating the development and transformation of research achievements can enhance the risk resilience and market competitiveness of new varieties. This will provide a solid guarantee for the sustainable development of the maize industry.
, authors=Qianya XU
1, 2, Tao ZHONG
3, Mang ZHU
4, Binrong PAN
1, 2, *, authorsList=Qianya XU, Tao ZHONG, Mang ZHU, Binrong PAN, authorCompany=null, correspAuthors=Binrong PAN, authorNote=null, correspAuthorsNote=null, copyrightStatement=
All rights reserved. Unauthorized reproduction is prohibited., 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, fund=null), CN=ArticleExt(id=1288421737998029447, articleId=1288421736664240773, tenantId=1146029695717560320, journalId=1146031591421210625, language=CN, title=玉米抗病虫研究及其在产业中的应用, columnId=1146540929516700224, journalTitle=科技导报, columnName=研究论文, runingTitle=null, highlight=null, articleAbstract=
玉米的稳产高产对保障全球粮食安全具有重要意义,但病害与虫害的频发严重制约其产量的提升,对农业可持续发展构成严峻挑战。抗病虫育种作为玉米育种的核心方向,不仅直接关系到产量和品质的提升,更是推动玉米产业转型升级的关键驱动力。综述了玉米抗病基因与抗虫基因的最新研究进展,如全面梳理了迄今为止已克隆鉴定的33个抗病基因及其作用机制、玉米与微生物的互作机制、主流抗虫基因Bt在玉米中的应用转化情况及环境安全性评价。重点提出近年来的基因挖掘热点方向:广谱抗病性和多重抗病性基因、内源抗虫基因。在此基础上,探讨玉米抗病育种与抗虫育种研究在中国籽粒玉米、青贮玉米及鲜食玉米三大产业中的必要性,并指出需根据不同产业的差异化发展需求以及区域性病虫害的发生特点,制定针对性的抗性资源挖掘、分子标记利用、基因验证、口感测评等育种改良策略,加快成果开发与转化,以增强新品种的抗风险能力与市场竞争力,为玉米产业的可持续发展提供坚实保障。
, authors=徐倩雅
1, 2, 钟涛
3, 朱芒
4, 潘彬荣
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47(5): 856-864., articleTitle=中国328个玉米品种(组合)SSR标记遗传多样性分析, refAbstract=null)], funds=[Fund(id=1288421742154584758, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, awardId=2021C02064–4, language=CN, fundingSource=浙江省农业新品种选育重大科技专项(2021C02064–4), fundOrder=null, country=null), Fund(id=1288421742251053751, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, awardId=ZX2024001–3, language=CN, fundingSource=温州市农业新品种选育协作组项目(ZX2024001–3), fundOrder=null, country=null)], companyList=[AuthorCompany(id=1288421738295825032, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, xref=1, ext=[AuthorCompanyExt(id=1288421738304213641, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, companyId=1288421738295825032, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
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| 玉米病害 | 已克隆鉴定的抗病基因 | 相关标记开发应用情况 |
|---|
| 注:相关标记开发应用情况一栏所列为与该病害相关的标记所申请的专利公开号,“//”前为已克隆鉴定的抗病基因对应的标记,“//”后所列标记对应的抗病基因/位点未被克隆鉴定。 |
| 茎腐病[7,10−17,27−28] | Rcg1,ZmCCT,ZmAuxRP1,ZmBGLU17,ZmWAX2,ZmLecRK1,ZmWAK17,ZmWRKY83,ZmPrx5,ZmNANMT,ZmPROPEP11
| CN108893550A(ZmCCT),CN109486988A(ZmCCT),CN115992289A(ZmCCT),CN116287414A(ZmCCT),CN116377114A(ZmAuxRP1),CN109680094A(ZmPrx5)//CN108004236A(ZmGHD7−2),CN109652585A(ZmAPX),CN120665941A(ZmCRK10),CN109234431A(QTL9.04),CN119932217A(qGSR10.06),CN102395678A,CN107502661A,CN119932216A,CN119932215A,CN118406792A |
| 灰斑病[21−22,29−31] | ZmWAKL/qRgls1,ZmCPK39/qRgls2,ZmWAK02,ZmCCoAOMT2,ZmMM1 | CN109609676A(qRgls1),CN109536633A(qRgls2)//CN119591686A(ZmCIP6),CN118755873A |
| 南方锈病[23−26,31] | RppC,RppK,RppM,ZmMM1,ZmREM1.3 | CN118703678A(RppC),CN120624697A(RppK),CN119864077A(RppK),CN118480627A(RppK),CN112351679A(RppK),CN118745482A(RppM),CN113121664A(ZmMM1)//CN106282394A(Rpp25),CN110592259A(RPPS313),CN111902547A(NLR01),CN119591686A(ZmCIP6),CN114277173A(qSCR6.01),CN105861647A,CN113897352A,CN115335506A,CN113631722A,CN116162726A,CN114774573A,CN118995994A |
| 丝黑穗病[8] | ZmWAK | CN109652578A (ZmWAK)//CN104498590A(ZmNL),CN120041599A(ZmMYB42) |
| 大斑病[27,29−34] | ZmWAK−Rlk1/Ht2/Ht3/Htn1,Ht1,ZmMM1,ZmCCoAOMT2,ZmNANMT,ZmCPK39 | CN117693289A(ZmWAK−Rlk1),CN116249445A(Ht2/Ht3),CN116083615A(Ht3),CN111153974A(ZmMM1)//CN105624154A(Ht409),CN112662807A(ZmGNAT19),CN112708693A(ZmCaMBP1),CN119591686A(ZmCIP6),CN120290566A(ZmTPS6),CN115058534A(qZCLB5),CN102958349A,CN103160503A,CN115552038A,CN119753208A |
| 小斑病[14,27−30,35] | ZmCCoAOMT2,ZmLecRK1,ChSK1,ZmNANMT,ZmPROPEP11,ZmCPK39 | //CN120290566A(ZmTPS6),CN119753220A
|
| 穗腐病[11−12,19−20] | ZmAuxRP1,ZmWAX2,ZmLOX3,ZmFER1 | CN113980919A(ZmLOX3)//CN119061194A(ZmER1),CN120776055A(qER3),CN116411111A(qRger10),CN116411110A(qRger7.2),CN118853927A,CN116334285A,CN120519628A,CN119899913A |
| 纹枯病[9,14] | ZmFBL41,ZmLecRK1 | CN106399508A,CN116732231A |
| 粗缩病[36−37] | ZmGDIα−hel,ZmGLK36/qMRDD | CN108441571A(ZmGDIα−hel),CN110628941A(qMRDD2),CN111073996A(qMRDD2)//CN112126711A(qMRDD4),CN101138313A,CN107338293A |
| 甘蔗花叶病[38−39] | ZmTrxh,ZmABP1 | — |
| 圆斑病[5] | Hm1 | — |
| 普通锈病[6] | Rp1−D | — |
), ArticleFig(id=1288421741701599921, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, language=CN, label=表1, caption=
已克隆鉴定的抗病基因
, figureFileSmall=null, figureFileBig=null, tableContent=
| 玉米病害 | 已克隆鉴定的抗病基因 | 相关标记开发应用情况 |
|---|
| 注:相关标记开发应用情况一栏所列为与该病害相关的标记所申请的专利公开号,“//”前为已克隆鉴定的抗病基因对应的标记,“//”后所列标记对应的抗病基因/位点未被克隆鉴定。 |
| 茎腐病[7,10−17,27−28] | Rcg1,ZmCCT,ZmAuxRP1,ZmBGLU17,ZmWAX2,ZmLecRK1,ZmWAK17,ZmWRKY83,ZmPrx5,ZmNANMT,ZmPROPEP11
| CN108893550A(ZmCCT),CN109486988A(ZmCCT),CN115992289A(ZmCCT),CN116287414A(ZmCCT),CN116377114A(ZmAuxRP1),CN109680094A(ZmPrx5)//CN108004236A(ZmGHD7−2),CN109652585A(ZmAPX),CN120665941A(ZmCRK10),CN109234431A(QTL9.04),CN119932217A(qGSR10.06),CN102395678A,CN107502661A,CN119932216A,CN119932215A,CN118406792A |
| 灰斑病[21−22,29−31] | ZmWAKL/qRgls1,ZmCPK39/qRgls2,ZmWAK02,ZmCCoAOMT2,ZmMM1 | CN109609676A(qRgls1),CN109536633A(qRgls2)//CN119591686A(ZmCIP6),CN118755873A |
| 南方锈病[23−26,31] | RppC,RppK,RppM,ZmMM1,ZmREM1.3 | CN118703678A(RppC),CN120624697A(RppK),CN119864077A(RppK),CN118480627A(RppK),CN112351679A(RppK),CN118745482A(RppM),CN113121664A(ZmMM1)//CN106282394A(Rpp25),CN110592259A(RPPS313),CN111902547A(NLR01),CN119591686A(ZmCIP6),CN114277173A(qSCR6.01),CN105861647A,CN113897352A,CN115335506A,CN113631722A,CN116162726A,CN114774573A,CN118995994A |
| 丝黑穗病[8] | ZmWAK | CN109652578A (ZmWAK)//CN104498590A(ZmNL),CN120041599A(ZmMYB42) |
| 大斑病[27,29−34] | ZmWAK−Rlk1/Ht2/Ht3/Htn1,Ht1,ZmMM1,ZmCCoAOMT2,ZmNANMT,ZmCPK39 | CN117693289A(ZmWAK−Rlk1),CN116249445A(Ht2/Ht3),CN116083615A(Ht3),CN111153974A(ZmMM1)//CN105624154A(Ht409),CN112662807A(ZmGNAT19),CN112708693A(ZmCaMBP1),CN119591686A(ZmCIP6),CN120290566A(ZmTPS6),CN115058534A(qZCLB5),CN102958349A,CN103160503A,CN115552038A,CN119753208A |
| 小斑病[14,27−30,35] | ZmCCoAOMT2,ZmLecRK1,ChSK1,ZmNANMT,ZmPROPEP11,ZmCPK39 | //CN120290566A(ZmTPS6),CN119753220A
|
| 穗腐病[11−12,19−20] | ZmAuxRP1,ZmWAX2,ZmLOX3,ZmFER1 | CN113980919A(ZmLOX3)//CN119061194A(ZmER1),CN120776055A(qER3),CN116411111A(qRger10),CN116411110A(qRger7.2),CN118853927A,CN116334285A,CN120519628A,CN119899913A |
| 纹枯病[9,14] | ZmFBL41,ZmLecRK1 | CN106399508A,CN116732231A |
| 粗缩病[36−37] | ZmGDIα−hel,ZmGLK36/qMRDD | CN108441571A(ZmGDIα−hel),CN110628941A(qMRDD2),CN111073996A(qMRDD2)//CN112126711A(qMRDD4),CN101138313A,CN107338293A |
| 甘蔗花叶病[38−39] | ZmTrxh,ZmABP1 | — |
| 圆斑病[5] | Hm1 | — |
| 普通锈病[6] | Rp1−D | — |
), ArticleFig(id=1288421741777097394, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, language=EN, label=null, caption=null, figureFileSmall=null, figureFileBig=null, tableContent=
| 获取安全证书时间 | 转化体性状 | 转化基因/编辑基因 | 转化体名称 |
|---|
| 2019年12月2日 | 抗虫耐除草剂 | cry1Ab、epsps | DBN9936 |
| 2019年12月2日 | 抗虫耐除草剂 | cry1Ab/cry2Aj、g10evo−epsps | 瑞丰125 |
| 2020年6月11日 | 耐除草剂 | epsps、pat | DBN9858 |
| 2020年12月29日 | 抗虫耐除草剂 | vip3Aa19、pat | DBN9501 |
| 2021年2月10日 | 抗虫 | cry1Ab/cry2Aj | 瑞丰125 |
| 2021年12月17日 | 抗虫 | mcry1Ab、mcry2Ab | ND207 |
| 2021年12月17日 | 抗虫 | cry1Ab、cry2Ab | 浙大瑞丰8 |
| 2021年12月17日 | 抗虫耐除草剂 | cry1Ab、epsps、vip3Aa19、pat | DBN3601T |
| 2022年4月22日 | 耐除草剂 | CdP450、cp4epsps | nCX−1 |
| 2022年4月22日 | 抗虫耐除草剂 | cry1Ab、pat、mepsps | Bt11×GA21 |
| 2022年4月22日 | 抗虫耐除草剂 | cry1Ab、pat、vip3Aa20、mepsps | Bt11×MIR162×GA21 |
| 2022年4月22日 | 耐除草剂 | mepsps | GA21 |
| 2023年1月5日 | 抗虫耐除草剂 | cry1Ab、cry1F、cp4epsps | BFL4−2 |
| 2023年1月5日 | 耐除草剂 | maroACC | CC−2 |
| 2024年1月2日 | 抗虫耐除草剂 | cry1Ab、cry2Ab、CdP450、cp4epsps | 浙大瑞丰8×nCX−1 |
| 2024年1月2日 | 抗虫耐除草剂 | cry1Ab/cry2Aj、g10evo−epsps、CdP450、cp4epsps | 瑞丰125×nCX−1 |
| 2024年1月2日 | 抗虫耐除草剂 | cry2Ab、cry1Fa、cry1A、epsps | LP026−2 |
| 2024年1月2日 | 抗虫耐除草剂 | cry1Ab、am79epsps | WYN041 |
| 2024年1月2日 | 耐除草剂 | epsps、pat | LW2−1 |
| 2024年1月2日 | 耐除草剂 | am79epsps | WYN17132 |
| 2024年5月7日 | 产量性状改良 | Br2(基因编辑) | 179AC19−13−13 |
| 2024年5月7日 | 抗虫耐除草剂 | cry1Ab、cry3Bb、cp4epsps | BBL2−2 |
| 2024年12月25日 | 产量性状改良 | ZmNL4(基因编辑) | KN−NL4−2 |
| 2024年12月25日 | 抗虫耐除草剂 | mcry1Ab、mcry2Ab、maroACC | ND207×CC−2 |
| 2024年12月25日 | 抗虫耐除草剂 | vip3Aa−k1、cry1Ab、pat | QY2569−42 |
| 2024年12月25日 | 抗虫耐除草剂 | cry1A.105、cry2Ab2、vip3Aa19、cp4epsps | KJ1003 |
| 2024年12月25日 | 耐除草剂 | bar、epsps | ZZM032 |
| 2024年12月25日 | 抗虫 | eCry1Gb.1Ig−03 | MZIR260 |
), ArticleFig(id=1288421741869372083, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, language=CN, label=表2, caption=
中国获得安全证书的玉米转基因转化体
, figureFileSmall=null, figureFileBig=null, tableContent=
| 获取安全证书时间 | 转化体性状 | 转化基因/编辑基因 | 转化体名称 |
|---|
| 2019年12月2日 | 抗虫耐除草剂 | cry1Ab、epsps | DBN9936 |
| 2019年12月2日 | 抗虫耐除草剂 | cry1Ab/cry2Aj、g10evo−epsps | 瑞丰125 |
| 2020年6月11日 | 耐除草剂 | epsps、pat | DBN9858 |
| 2020年12月29日 | 抗虫耐除草剂 | vip3Aa19、pat | DBN9501 |
| 2021年2月10日 | 抗虫 | cry1Ab/cry2Aj | 瑞丰125 |
| 2021年12月17日 | 抗虫 | mcry1Ab、mcry2Ab | ND207 |
| 2021年12月17日 | 抗虫 | cry1Ab、cry2Ab | 浙大瑞丰8 |
| 2021年12月17日 | 抗虫耐除草剂 | cry1Ab、epsps、vip3Aa19、pat | DBN3601T |
| 2022年4月22日 | 耐除草剂 | CdP450、cp4epsps | nCX−1 |
| 2022年4月22日 | 抗虫耐除草剂 | cry1Ab、pat、mepsps | Bt11×GA21 |
| 2022年4月22日 | 抗虫耐除草剂 | cry1Ab、pat、vip3Aa20、mepsps | Bt11×MIR162×GA21 |
| 2022年4月22日 | 耐除草剂 | mepsps | GA21 |
| 2023年1月5日 | 抗虫耐除草剂 | cry1Ab、cry1F、cp4epsps | BFL4−2 |
| 2023年1月5日 | 耐除草剂 | maroACC | CC−2 |
| 2024年1月2日 | 抗虫耐除草剂 | cry1Ab、cry2Ab、CdP450、cp4epsps | 浙大瑞丰8×nCX−1 |
| 2024年1月2日 | 抗虫耐除草剂 | cry1Ab/cry2Aj、g10evo−epsps、CdP450、cp4epsps | 瑞丰125×nCX−1 |
| 2024年1月2日 | 抗虫耐除草剂 | cry2Ab、cry1Fa、cry1A、epsps | LP026−2 |
| 2024年1月2日 | 抗虫耐除草剂 | cry1Ab、am79epsps | WYN041 |
| 2024年1月2日 | 耐除草剂 | epsps、pat | LW2−1 |
| 2024年1月2日 | 耐除草剂 | am79epsps | WYN17132 |
| 2024年5月7日 | 产量性状改良 | Br2(基因编辑) | 179AC19−13−13 |
| 2024年5月7日 | 抗虫耐除草剂 | cry1Ab、cry3Bb、cp4epsps | BBL2−2 |
| 2024年12月25日 | 产量性状改良 | ZmNL4(基因编辑) | KN−NL4−2 |
| 2024年12月25日 | 抗虫耐除草剂 | mcry1Ab、mcry2Ab、maroACC | ND207×CC−2 |
| 2024年12月25日 | 抗虫耐除草剂 | vip3Aa−k1、cry1Ab、pat | QY2569−42 |
| 2024年12月25日 | 抗虫耐除草剂 | cry1A.105、cry2Ab2、vip3Aa19、cp4epsps | KJ1003 |
| 2024年12月25日 | 耐除草剂 | bar、epsps | ZZM032 |
| 2024年12月25日 | 抗虫 | eCry1Gb.1Ig−03 | MZIR260 |
), ArticleFig(id=1288421741940675252, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, language=EN, label=null, caption=null, figureFileSmall=null, figureFileBig=null, tableContent=
| 已克隆鉴定的抗虫基因 | 对应玉米虫害 | 涉及生理过程 |
|---|
| ZmMPK6[53] | 斜纹夜蛾、黏虫、玉米螟 | 苯并噁嗪类物质代谢 |
| ZmPP2C45[54] | 草地贪夜蛾、棉铃虫 | 苯并噁嗪类物质代谢 |
| ZmMYC2s[55] | 黏虫、草地贪夜蛾 | 苯并噁嗪类、挥发性萜类物质代谢 |
| ZmBGLU17[13] | 玉米螟 | 木质素、苯并噁嗪类物质代谢 |
| ZmLOX5[56] | 草地贪夜蛾 | 茉莉酸代谢 |
| ZmLOX10[57] | 甜菜夜蛾 | 茉莉酸代谢 |
| LG1[58] | 蚜虫 | 苯并噁嗪类物质代谢 |
), ArticleFig(id=1288421742016172725, tenantId=1146029695717560320, journalId=1146031591421210625, articleId=1288421736664240773, language=CN, label=表3, caption=
已克隆鉴定的抗虫基因
, figureFileSmall=null, figureFileBig=null, tableContent=
| 已克隆鉴定的抗虫基因 | 对应玉米虫害 | 涉及生理过程 |
|---|
| ZmMPK6[53] | 斜纹夜蛾、黏虫、玉米螟 | 苯并噁嗪类物质代谢 |
| ZmPP2C45[54] | 草地贪夜蛾、棉铃虫 | 苯并噁嗪类物质代谢 |
| ZmMYC2s[55] | 黏虫、草地贪夜蛾 | 苯并噁嗪类、挥发性萜类物质代谢 |
| ZmBGLU17[13] | 玉米螟 | 木质素、苯并噁嗪类物质代谢 |
| ZmLOX5[56] | 草地贪夜蛾 | 茉莉酸代谢 |
| ZmLOX10[57] | 甜菜夜蛾 | 茉莉酸代谢 |
| LG1[58] | 蚜虫 | 苯并噁嗪类物质代谢 |
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