期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Amur grape VaMYB4a mediates grapevine cold tolerance via dual regulation of CBF–COR and ABA pathways
1
作者 Qinhan Yu Yue Sun +6 位作者 Yaping Xie Jiaxin Li Rong Wang Qiaoling Zheng Chang Liu Ningbo Zhang Weirong Xu 《Journal of Integrative Agriculture》 2026年第3期989-1008,共20页
Cold stress represents a critical constraint on crop productivity,particularly in temperate climates.Despite the established role of abscisic acid(ABA)in cold stress responses,the precise mechanisms through which tran... Cold stress represents a critical constraint on crop productivity,particularly in temperate climates.Despite the established role of abscisic acid(ABA)in cold stress responses,the precise mechanisms through which transcription factors mediate ABAdependent cold tolerance remain elusive.Here,we identify VaMYB4a,a MYB transcription factor from Vitis amurensis Rupr.(Amur grape),as a key regulator of cold tolerance.It integrates ABA signaling with the CBF(C-repeat binding factors)-COR(cold-regulated)pathway to orchestrate cold stress adaptation.Through a combination of overexpression and CRISPR/Cas9-mediated knockout lines in Arabidopsis thaliana,grape callus,and Vitis vinifera L.seedlings,we demonstrate that VaMYB4a enhances freezing tolerance by promoting osmotic regulation,reactive oxygen species(ROS)scavenging,and stomatal closure.VaMYB4a functions as a homo-dimer,with its C-terminal domain being essential for transcriptional activation.Mechanistically,VaMYB4a directly upregulates CBF and COR genes while fine-tuning ABA signaling components such as ABI1 and ABF4.Notably,ABA exhibits a dual role:enhancing VaMYB4a-mediated freezing tolerance under short-term stress but attenuating its effects during prolonged cold exposure,revealing an intricate regulatory crosstalk between cold and hormonal pathways.Our work not only advances the molecular understanding of cold adaptation but also provides a promising genetic target for developing stress-resilient grape varieties to mitigate the impacts of climate change. 展开更多
关键词 Vitis amurensis Rupr. vamyb4a CRISPR/Cas9 ABA signaling CBF-COR pathway cold tolerance
在线阅读 下载PDF
山葡萄转录因子VaMYB4a互作蛋白的筛选与鉴定 被引量:5
2
作者 俞沁含 李俊铎 +3 位作者 崔莹 王佳慧 郑巧玲 徐伟荣 《园艺学报》 CAS CSCD 北大核心 2023年第3期508-522,共15页
以抗寒种质山葡萄(Vitis amurensis Rupr.)‘左山-1’叶片组织为试材,通过Gateway技术构建酵母均一化cDNA文库,库容量为1.36×10^(7)cfu∙mL^(-1),外源基因插入片段均大于1 kb,重组率为100%,符合后续试验要求。以VaMYB4a^(113-252)C... 以抗寒种质山葡萄(Vitis amurensis Rupr.)‘左山-1’叶片组织为试材,通过Gateway技术构建酵母均一化cDNA文库,库容量为1.36×10^(7)cfu∙mL^(-1),外源基因插入片段均大于1 kb,重组率为100%,符合后续试验要求。以VaMYB4a^(113-252)C端调控区段为诱饵,经酵母双杂交筛选获得17个候选互作蛋白,选取2个与非生物胁迫应答密切相关的候选互作蛋白分别在酵母、拟南芥原生质体中进行互作验证,发现锌指类转录因子VaCOL4、VaCOL5均与VaMYB4a全长及VaMYB4a113-252存在互作关系。经系统进化与蛋白保守结构域分析,推测葡萄COL基因家族中VaCOL2与VaMYB4a具有潜在互作关系,进而通过BiFC验证表明,VaCOL2与VaMYB4发生蛋白互作;顺式作用元件预测表明VvCOL2、VvCOL4与VvCOL5启动子区包含多个激素及逆境应答相关元件,其中VvCOL2包括多个低温响应元件(LTRE);低温胁迫下,VaMYB4a、VaCOL4与VaCOL5具有相同的表达模式,但VaCOL2表达模式不同。综上,VaMYB4a可与VaCOL2、VaCOL4及VaCOL5互作形成蛋白复合体以协同或拮抗的方式调控植物低温胁迫应答。 展开更多
关键词 山葡萄 低温胁迫 Gateway酵母双杂交文库 vamyb4a VaCOL 互作分析
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部