Article(id=1276616173378732978, tenantId=1146029695717560320, journalId=1235980609244409860, issueId=1276616049617408127, articleNumber=null, orderNo=null, doi=10.3969/j.issn.1000-2561.2025.08.016, pmid=null, cstr=null, oa=null, hot=null, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=null, receivedDate=1740844800000, receivedDateStr=2025-03-02, revisedDate=null, revisedDateStr=null, acceptedDate=1744300800000, acceptedDateStr=2025-04-11, onlineDate=1782298614115, onlineDateStr=2026-06-24, pubDate=1756051200000, pubDateStr=2025-08-25, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1782298614115, onlineIssueDateStr=2026-06-24, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1782298614115, creator=13701087609, updateTime=1782298614115, updator=13701087609, issue=Issue{id=1276616049617408127, tenantId=1146029695717560320, journalId=1235980609244409860, year='2025', volume='46', issue='8', pageStart='1785', pageEnd='2029', issueExtLink='null', onlineDate='null', pubDate='1756051200000', pubDateStr='2025-08-25', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=-1, specialIssue=null, createTime=1782298584608, creator='13701087609', updateTime=1782298660748, updator='13701087609', preIssue=null, nextIssue=null, articleTotal=null, ext={EN=IssueExt(id=1276616369089147039, tenantId=1146029695717560320, journalId=1235980609244409860, issueId=1276616049617408127, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1276616369089147040, tenantId=1146029695717560320, journalId=1235980609244409860, issueId=1276616049617408127, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null, downloadFileDto=null}, startPage=1931, endPage=1942, ext={EN=ArticleExt(id=1276616173856883637, articleId=1276616173378732978, tenantId=1146029695717560320, journalId=1235980609244409860, language=EN, title=Progress in Hydrotropism of Plant Roots, columnId=1236256434120348225, journalTitle=Chinese Journal of Tropical Crops, columnName=Plant Cultivation, Physiology & Biochemistry, runingTitle=null, highlight=null, articleAbstract=
The biological property by which plant root tips perceive moisture gradients and bend toward regions of higher water potential is termed hydrotropism. As a critical adaptive strategy for plants to respond to dynamic water environments, hydrotropism drives roots to actively navigate toward water sources, optimizing water acquisition. The regulatory mechanism of hydrotropism involves the coordinated mediation of second messengers (reactive oxygen species and calcium ions), phytohormones (abscisic acid, auxin and cytokinin), and key regulators such as MIZ1. Plants achieve adaptive responses to water stress through integrating processes of moisture gradient perception, signal transduction, and asymmetric hormone distribution. However, significant differences exist in hydrotropic regulatory mechanisms among species, and in the interactions with other tropisms (gravitropism, phototropism, and thigmotropism). Elucidating the core regulatory factors of hydrotropism and the interaction patterns of the signaling networks would provide a theoretical basis for genetic improvement of water-use efficiency in crops and sustainable agricultural development.
, authors=null, authorsList=Yuxiao LIU, Shiwen DAI, Xi WANG, Songyu PEI, Xuexiao ZOU, Fang YUAN, authorCompany=null, correspAuthors=Xuexiao ZOU, Fang YUAN, authorNote=null, correspAuthorsNote=null, 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, fund=null), CN=ArticleExt(id=1276616176830645177, articleId=1276616173378732978, tenantId=1146029695717560320, journalId=1235980609244409860, language=CN, title=植物根向水性研究进展, columnId=1236256434313286224, journalTitle=热带作物学报, columnName=作物栽培与生理生化, runingTitle=null, highlight=null, articleAbstract=
植物根尖感知水分梯度并向高水势区域弯曲生长的生物学特性称为向水性。向水性是植物响应动态水分环境的重要适应策略,驱动根系主动趋近水源以优化水分获取。向水性调控机制涉及第二信使(活性氧与钙离子)、植物激素(脱落酸、生长素与细胞分裂素)及MIZ1等关键调节因子协同介导。植物通过整合水分梯度感知、信号传导及激素不对称分布等过程实现对水分胁迫的适应性响应,但不同物种间向水性调控机制及其与向重力性、向光性、向触性等其他向性的互作关系存在显著差异。解析向水性核心调控因子及其信号网络互作模式,可为作物水分高效利用的遗传改良及农业可持续发展提供理论依据。
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* 代世文(1994—),男,博士研究生,研究方向:植物根系抗旱。
刘宇霄(1999—),女,硕士研究生,研究方向:植物根系抗旱
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Experimental system for inducing hydrotropism in Arabidopsis thaliana, figureFileSmall=5oUu3FxB4idjHLvLN4aA0A==, figureFileBig=vEvUYPIoBPAVD47z3Jk/1A==, tableContent=null), ArticleFig(id=1276616191875613688, tenantId=1146029695717560320, journalId=1235980609244409860, articleId=1276616173378732978, language=CN, label=图1, caption=
拟南芥向水性诱导实验系统箭头表示重力(G)方向。
, figureFileSmall=5oUu3FxB4idjHLvLN4aA0A==, figureFileBig=vEvUYPIoBPAVD47z3Jk/1A==, tableContent=null), ArticleFig(id=1276616192693502969, tenantId=1146029695717560320, journalId=1235980609244409860, articleId=1276616173378732978, language=EN, label=Tab. 1, caption=
Species-specific differences in hydrotropic mechanisms of plant root
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| 物种(科)Species (family) | 感知部位Site of perception | 涉及的主要激素Major hormone involved | 靶向蛋白/通路Target protein/pathway | 抑制剂对向水性反应的影响Effects of inhibitors on hydrotropic response |
|---|
| CHPAA | TIBA | PCIB | KYN | HFCA | 洛伐他汀Lovastatin | 参考文献Reference |
|---|
| 拟南芥(十字花科) | 根冠、伸长区 | 脱落酸、细胞分裂素 | ARR16和ARR17、MIZ1、ECA1、SnRK2.2 | 无变化或促进 | 无变化或促进 | 无变化 | 促进 | 未知 | 未知 | [5,30-33] |
| 豌豆(豆科) | 根冠 | 生长素 | AUX1、PIN转运蛋白,IAA生物合成,生长素信号转导(TIR1/AFBs) | 抑制 | 抑制 | 抑制 | 抑制 | 抑制 | 未知 | [19,34] |
| 百脉根(豆科) | 未知 | 未知 | 生长素生物合成,TIR1/AFBs独立通路 | 无变化或促进 | 无变化或促进 | 无变化或促进 | 抑制 | 未知 | 未知 | [19] |
| 水稻(禾本科) | 过渡区或伸长区 | 生长素 | AUX1、PIN转运蛋白,IAA生物合成,生长素信号转导(TIR1/AFBs) | 抑制 | 抑制 | 抑制 | 抑制 | 未知 | 未知 | [19] |
| 玉米(禾本科) | 根冠、伸长区 | 生长素 | MIZ1、Aux/IAA转录因子、IAA转运蛋白(PINOID)、生长素转运蛋白(big grain I)、钙泵、细胞分裂素氧化酶 | 未知 | 未知 | 未知 | 未知 | 未知 | 抑制 | [35] |
| 黄瓜(葫芦科) | 过渡区或伸长区 | 生长素 | Aux/IAA(IAA1)转录因子、CsPIN5(AtPIN2)、生长素信号转导(TIR1/AFBs) | 未知 | 抑制 | 抑制 | 未知 | 抑制 | 未知 | [18,36] |
| 番茄(茄科) | 未知 | 脱落酸、乙烯 | MIZ1、ABA4 | 未知 | 未知 | 未知 | 未知 | 未知 | 未知 | [37-38] |
), ArticleFig(id=1276616192773194746, tenantId=1146029695717560320, journalId=1235980609244409860, articleId=1276616173378732978, language=CN, label=表1, caption=
植物根系向水性机制的物种特异性差异
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| 物种(科)Species (family) | 感知部位Site of perception | 涉及的主要激素Major hormone involved | 靶向蛋白/通路Target protein/pathway | 抑制剂对向水性反应的影响Effects of inhibitors on hydrotropic response |
|---|
| CHPAA | TIBA | PCIB | KYN | HFCA | 洛伐他汀Lovastatin | 参考文献Reference |
|---|
| 拟南芥(十字花科) | 根冠、伸长区 | 脱落酸、细胞分裂素 | ARR16和ARR17、MIZ1、ECA1、SnRK2.2 | 无变化或促进 | 无变化或促进 | 无变化 | 促进 | 未知 | 未知 | [5,30-33] |
| 豌豆(豆科) | 根冠 | 生长素 | AUX1、PIN转运蛋白,IAA生物合成,生长素信号转导(TIR1/AFBs) | 抑制 | 抑制 | 抑制 | 抑制 | 抑制 | 未知 | [19,34] |
| 百脉根(豆科) | 未知 | 未知 | 生长素生物合成,TIR1/AFBs独立通路 | 无变化或促进 | 无变化或促进 | 无变化或促进 | 抑制 | 未知 | 未知 | [19] |
| 水稻(禾本科) | 过渡区或伸长区 | 生长素 | AUX1、PIN转运蛋白,IAA生物合成,生长素信号转导(TIR1/AFBs) | 抑制 | 抑制 | 抑制 | 抑制 | 未知 | 未知 | [19] |
| 玉米(禾本科) | 根冠、伸长区 | 生长素 | MIZ1、Aux/IAA转录因子、IAA转运蛋白(PINOID)、生长素转运蛋白(big grain I)、钙泵、细胞分裂素氧化酶 | 未知 | 未知 | 未知 | 未知 | 未知 | 抑制 | [35] |
| 黄瓜(葫芦科) | 过渡区或伸长区 | 生长素 | Aux/IAA(IAA1)转录因子、CsPIN5(AtPIN2)、生长素信号转导(TIR1/AFBs) | 未知 | 抑制 | 抑制 | 未知 | 抑制 | 未知 | [18,36] |
| 番茄(茄科) | 未知 | 脱落酸、乙烯 | MIZ1、ABA4 | 未知 | 未知 | 未知 | 未知 | 未知 | 未知 | [37-38] |
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Arabidopsis thaliana mutants with various genetic backgrounds exhibiting abnormal root hydrotropism
, figureFileSmall=null, figureFileBig=null, tableContent=
| 突变体Mutant | 基因名Gene name | 编号Accession | 功能Function | 向水性反应Hydrotropic response | 参考文献Reference |
|---|
| pin2 wav6(双突变体) | PIN2 | AT5G57090 | 生长素流出载体 | 增强 | [4,64] |
| aux1-7 | AUX1 | AT2G38120 | 生长素流入载体 | 增强 | [4,65] |
| aba1-1 | ABA1 | AT5G67030 | 脱落酸生物合成 | 减弱 | [4] |
| abi2-1 | ABI2 | AT4G26080 | 脱落酸信号转导 | 减弱 | [4] |
| wav2-1 | WAV2 | AT5G20520 | 脱硫酰化 | 减弱 | [4,66] |
| wav3-1 | WAV3 | AT5G49665 | E3泛素连接酶 | 减弱 | [4,67] |
| axr1-3 | AXR1 | AT1G05180 | 生长素响应 | 增强 | [4] |
| axr2-1 | AXR2 | AT3G23050 | 生长素响应 | 增强 | [4] |
| wav6-52 | 未识别 | 未识别 | 生长素运输 | 增强 | [4] |
| hab1-1 abi1-1 pp2ca | HAB1 | AT1G72770 | 脱落酸信号转导 | 增强 | [60,68] |
| 1abi2-2(四重突变体) | ABI1 | AT4G26080 | | | |
| PP2CA | AT3G11410 | | | |
| ABI2 | AT5G57050 | | | |
| nhr1 | 未识别 | 未识别 | 未知 | 抑制 | [69-70] |
| pgm1 | PGM1 | AT5G51820 | 磷酸葡萄糖变位酶异构体 | 增强 | [71] |
| miz1 | MIZ1 | AT2G41660 | 未知 | 抑制 | [72] |
| pldζ2 | PLDζ2 | AT3G05630 | 磷脂酶 | 减弱 | [73-74] |
| miz2 gnommiz2 | GNOM | AT1G13980 | GDP/GTP交换因子 | 抑制 | [75] |
| (双突变体) | | | | | |
| miz2 | 未识别 | 未识别 | 囊泡运输 | 无向水性 | [75] |
| ahr1 | 未识别 | 未识别 | 未知 | 抑制 | [76] |
| phyA phyB | PHYA | AT1G09570 | 光感知 | 抑制 | [6] |
| (双突变体) | PHYB | AT2G18790 | | | |
| hy5-1 | HY5 | AT5G11260 | 光信号转导 | 抑制 | [6] |
| pyr/pyl | PYR1 | AT4G17870 | 脱落酸信号转导 | 减弱 | [68] |
| (六重突变体) | PYL1 | AT5G46790 | | | |
| PYL2 | AT2G26040 | | | |
| PYL4 | AT2G38310 | | | |
| PYL5 | AT5G05440 | | | |
| PYL8 | AT5G53160 | | | |
| rbohc | RBOH C | AT5G51060 | NADPH氧化酶 | 增强 | [50] |
| apx1 | APX1 | AT1G07890 | 抗坏血酸过氧化物酶 | 减弱 | [50] |
| snrk2.2 snrk2.3 | SNRK2.2 | AT3G50500 | 脱落酸信号转导 | 减弱 | [5] |
| (双突变体) | SNRK2.3 | AT5G66880 | | | |
| atg2 | ATG2 | AT3G19190 | 自噬 | 无向水性 | [7] |
| atg8b | ATG8B | AT3G06420 | 自噬 | 无向水性 | [7] |
| atg8i | 未识别 | 未识别 | 自噬 | 无向水性 | [7] |
| atg9 | ATG9 | AT2G31260 | 自噬 | 无向水性 | [7] |
| bril5 | 未识别 | 未识别 | 油菜素类固醇感知 | 减弱 | [61] |
| eca1 | ECA1 | AT1G07810 | 内质网钙离子泵 | 增强 | [8] |
| ahp1 ahp2 ahp3 | AHP1 | AT3G21510 | 细胞分裂素信号转导 | 减弱 | [32] |
| (三重突变体) | AHP2 | AT3G29350 | | | |
| AHP3 | AT5G39340 | | | |
| arr16 arr17(双突变体) | ARR16 | AT2G40670 | 细胞分裂素信号转导 | 减弱 | [32] |
| ARR17 | AT3G56380 | | | |
| ahk2-5 cre1-2 | AHK2 | AT5G35750 | 细胞分裂素感知 | 减弱 | [32] |
| CRE1 | AT2G01830 | | | |
| ipt1 ipt3 ipt5 ipt7 | IPT1 | AT1G68460 | 细胞分裂素合成 | 减弱 | [32] |
| (四重突变体) | IPT3 | AT3G63110 | | | |
| IPT5 | AT5G19040 | | | |
| IPT7 | AT3G23630 | | | |
| cyp735a1 | CYP735A1 | AT5G38450 | 细胞分裂素合成 | 减弱 | [32] |
| log2 | 未识别 | 未识别 | 细胞分裂素合成 | 减弱 | [32] |
| pcap1 | PCaP1 | AT4G20260 | 钙离子信号转导 | 减弱 | [77] |
| ktn1 | KTN1 | AT1G80350 | 微管剪切 | 减弱 | [78] |
| osca1.1 | OSCA1.1 | AT4G04340 | 钙离子通道 | 增强 | [46] |
| miz1 pgm1 | MIZ1 | AT2G41660 | MIZ1-未知 | 抑制 | [79] |
| (双突变体) | PGM1 | AT5G51820 | PGM1-磷酸葡萄糖变位酶异构体 | | |
| arh1-2 fei1-C fei2-C | 未识别 | 未识别 | 细胞壁合成 | 增强 | [80] |
| (三重突变体) | 未识别 | 未识别 | | | |
| 未识别 | 未识别 | | | |
), ArticleFig(id=1276616194861958143, tenantId=1146029695717560320, journalId=1235980609244409860, articleId=1276616173378732978, language=CN, label=表2, caption=
根向水性表现异常的不同遗传背景的拟南芥突变体
, figureFileSmall=null, figureFileBig=null, tableContent=
| 突变体Mutant | 基因名Gene name | 编号Accession | 功能Function | 向水性反应Hydrotropic response | 参考文献Reference |
|---|
| pin2 wav6(双突变体) | PIN2 | AT5G57090 | 生长素流出载体 | 增强 | [4,64] |
| aux1-7 | AUX1 | AT2G38120 | 生长素流入载体 | 增强 | [4,65] |
| aba1-1 | ABA1 | AT5G67030 | 脱落酸生物合成 | 减弱 | [4] |
| abi2-1 | ABI2 | AT4G26080 | 脱落酸信号转导 | 减弱 | [4] |
| wav2-1 | WAV2 | AT5G20520 | 脱硫酰化 | 减弱 | [4,66] |
| wav3-1 | WAV3 | AT5G49665 | E3泛素连接酶 | 减弱 | [4,67] |
| axr1-3 | AXR1 | AT1G05180 | 生长素响应 | 增强 | [4] |
| axr2-1 | AXR2 | AT3G23050 | 生长素响应 | 增强 | [4] |
| wav6-52 | 未识别 | 未识别 | 生长素运输 | 增强 | [4] |
| hab1-1 abi1-1 pp2ca | HAB1 | AT1G72770 | 脱落酸信号转导 | 增强 | [60,68] |
| 1abi2-2(四重突变体) | ABI1 | AT4G26080 | | | |
| PP2CA | AT3G11410 | | | |
| ABI2 | AT5G57050 | | | |
| nhr1 | 未识别 | 未识别 | 未知 | 抑制 | [69-70] |
| pgm1 | PGM1 | AT5G51820 | 磷酸葡萄糖变位酶异构体 | 增强 | [71] |
| miz1 | MIZ1 | AT2G41660 | 未知 | 抑制 | [72] |
| pldζ2 | PLDζ2 | AT3G05630 | 磷脂酶 | 减弱 | [73-74] |
| miz2 gnommiz2 | GNOM | AT1G13980 | GDP/GTP交换因子 | 抑制 | [75] |
| (双突变体) | | | | | |
| miz2 | 未识别 | 未识别 | 囊泡运输 | 无向水性 | [75] |
| ahr1 | 未识别 | 未识别 | 未知 | 抑制 | [76] |
| phyA phyB | PHYA | AT1G09570 | 光感知 | 抑制 | [6] |
| (双突变体) | PHYB | AT2G18790 | | | |
| hy5-1 | HY5 | AT5G11260 | 光信号转导 | 抑制 | [6] |
| pyr/pyl | PYR1 | AT4G17870 | 脱落酸信号转导 | 减弱 | [68] |
| (六重突变体) | PYL1 | AT5G46790 | | | |
| PYL2 | AT2G26040 | | | |
| PYL4 | AT2G38310 | | | |
| PYL5 | AT5G05440 | | | |
| PYL8 | AT5G53160 | | | |
| rbohc | RBOH C | AT5G51060 | NADPH氧化酶 | 增强 | [50] |
| apx1 | APX1 | AT1G07890 | 抗坏血酸过氧化物酶 | 减弱 | [50] |
| snrk2.2 snrk2.3 | SNRK2.2 | AT3G50500 | 脱落酸信号转导 | 减弱 | [5] |
| (双突变体) | SNRK2.3 | AT5G66880 | | | |
| atg2 | ATG2 | AT3G19190 | 自噬 | 无向水性 | [7] |
| atg8b | ATG8B | AT3G06420 | 自噬 | 无向水性 | [7] |
| atg8i | 未识别 | 未识别 | 自噬 | 无向水性 | [7] |
| atg9 | ATG9 | AT2G31260 | 自噬 | 无向水性 | [7] |
| bril5 | 未识别 | 未识别 | 油菜素类固醇感知 | 减弱 | [61] |
| eca1 | ECA1 | AT1G07810 | 内质网钙离子泵 | 增强 | [8] |
| ahp1 ahp2 ahp3 | AHP1 | AT3G21510 | 细胞分裂素信号转导 | 减弱 | [32] |
| (三重突变体) | AHP2 | AT3G29350 | | | |
| AHP3 | AT5G39340 | | | |
| arr16 arr17(双突变体) | ARR16 | AT2G40670 | 细胞分裂素信号转导 | 减弱 | [32] |
| ARR17 | AT3G56380 | | | |
| ahk2-5 cre1-2 | AHK2 | AT5G35750 | 细胞分裂素感知 | 减弱 | [32] |
| CRE1 | AT2G01830 | | | |
| ipt1 ipt3 ipt5 ipt7 | IPT1 | AT1G68460 | 细胞分裂素合成 | 减弱 | [32] |
| (四重突变体) | IPT3 | AT3G63110 | | | |
| IPT5 | AT5G19040 | | | |
| IPT7 | AT3G23630 | | | |
| cyp735a1 | CYP735A1 | AT5G38450 | 细胞分裂素合成 | 减弱 | [32] |
| log2 | 未识别 | 未识别 | 细胞分裂素合成 | 减弱 | [32] |
| pcap1 | PCaP1 | AT4G20260 | 钙离子信号转导 | 减弱 | [77] |
| ktn1 | KTN1 | AT1G80350 | 微管剪切 | 减弱 | [78] |
| osca1.1 | OSCA1.1 | AT4G04340 | 钙离子通道 | 增强 | [46] |
| miz1 pgm1 | MIZ1 | AT2G41660 | MIZ1-未知 | 抑制 | [79] |
| (双突变体) | PGM1 | AT5G51820 | PGM1-磷酸葡萄糖变位酶异构体 | | |
| arh1-2 fei1-C fei2-C | 未识别 | 未识别 | 细胞壁合成 | 增强 | [80] |
| (三重突变体) | 未识别 | 未识别 | | | |
| 未识别 | 未识别 | | | |
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