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MYB52 negatively regulates ADF9-meditated actin filament bundling in Arabidopsis pavement cell morphogenesis
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作者 tianqi qiu Yuanyuan Su +4 位作者 Nannan Guo Xinyuan Zhang Pengfei Jia Tonglin Mao Xianling Wang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2024年第11期2379-2394,共16页
It has been proposed that cortical fine actin filaments are needed for the morphogenesis of pavement cells(PCs).However,the precise role and regulation mechanisms of actin filaments in PC morphogenesis are not well un... It has been proposed that cortical fine actin filaments are needed for the morphogenesis of pavement cells(PCs).However,the precise role and regulation mechanisms of actin filaments in PC morphogenesis are not well understood.Here,we found that Arabidopsis thaliana ACTIN DEPOLYMERIZING FACTOR9(ADF9) is required for the morphogenesis of PC,which is negatively regulated by the R2R3 MYELOBLASTOSIS(MYB) transcription factor MYB52.In adf9 mutants,the lobe number of cotyledon PCs was significantly reduced,while the average lobe length did not differ significantly compared to that of wild type(Col-0),except for the variations in cell area and circularity,whereas the PC shapes in ADF9 overexpression seedlings showed different results.ADF9 decorated actin filaments,and colocalized with plasma membrane.The extent of filament bundling and actin filament bundling activity in adf9 mutant decreased.In addition,MYB52 directly targeted the promoter of ADF9 and negatively regulated its expression.The myb52-2 mutant showed increased lobe number and cell area,reduced cell circularity of PCs,and the PC phenotypes were suppressed when ADF9 was knocked out.Taken together,our data demonstrate that actin filaments play an important role in the morphogenesis of PC and reveal a transcriptional mechanism underlying MYB52 regulation of ADF9-mediated actin filament bundling in PC morphogenesis. 展开更多
关键词 actin filament bundling ADF9 MYB52 pavement cell
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植物微管骨架参与下胚轴伸长调节机制研究进展 被引量:3
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作者 岳剑茹 赫云建 +3 位作者 邱天麒 郭南南 韩雪萍 王显玲 《植物学报》 CAS CSCD 北大核心 2021年第3期363-371,共9页
微管作为细胞骨架的重要成员,在植物生长发育过程中起重要作用。下胚轴作为研究细胞伸长的模式系统之一,其伸长受到多种信号的调节。该文综述了微管骨架在响应环境和生长发育信号调节下胚轴伸长过程中的作用及机制,旨在帮助读者深入理... 微管作为细胞骨架的重要成员,在植物生长发育过程中起重要作用。下胚轴作为研究细胞伸长的模式系统之一,其伸长受到多种信号的调节。该文综述了微管骨架在响应环境和生长发育信号调节下胚轴伸长过程中的作用及机制,旨在帮助读者深入理解微管骨架响应上游信号在植物下胚轴伸长中的作用机理。 展开更多
关键词 微管 下胚轴 伸长 环境信号 生长发育信号
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