生长素
生物
内涝(考古学)
串扰
下胚轴
细胞生物学
调节器
植物
侧根
蒸腾作用
转录因子
拟南芥
器官发生
木质部
灌溉
根系
耐旱性
适应(眼睛)
植物发育
作者
Lei Sun,Fang Wang,Mingming Dong,Xi Zhao,Yaqi Zhang,Li Shan,Sen Li,Shuai Yin,Xinyue Ma,Tiantian Pei,Yingqi Shi,Zhigang Tang,Shaozhen He,Xingwang Liu,Huazhong Ren
摘要
Cucumber (Cucumis sativus L.) requires frequent irrigation due to its shallow root system and high transpiration rate of the aboveground parts. However, it is also prone to waterlogging damage. Therefore, understanding its response to waterlogging is crucial for breeding waterlogging-tolerant varieties. Although Rho of Plants GTPases play well-established roles in regulating development and stress signalling, their functions in plant adaptation to waterlogging stress has yet to be fully elucidated. Here, we identified nine CsROP genes in the cucumber genome, which exhibit evolutionary diversification but retain conserved functional domains. Functional analysis revealed that CsROP2 acts as a negative regulator of adventitious root formation. It modulates auxin accumulation in hypocotyl vascular bundles, thereby suppressing adventitious root development and enhancing waterlogging sensitivity. The HD-Zip I transcription factor CsTBH directly binds the CsROP2 promoter and activates its expression. Our study uncovers a CsTBH-CsROP2 module that governs adventitious rooting and waterlogging tolerance by modulating auxin homeostasis. These findings provide new insights into the crosstalk between developmental programmes and stress signalling pathways and offer potential genetic targets for improving stress resilience in cucumber and other crops.
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