木质部
耐旱性
生物
植物
调节器
细胞生物学
基因
生物化学
作者
Jiayang Li,Jiejie Ren,Xingyu Lei,Wenmin Fan,Lei Tang,Qiqi Zhang,Zhulatai Bao,Wenfei Zhou,Juan Bai,Yuzhou Zhang,Chunmei Gong
出处
期刊:Cell Reports
[Elsevier]
日期:2024-03-21
卷期号:43 (4): 113987-113987
被引量:2
标识
DOI:10.1016/j.celrep.2024.113987
摘要
Cultivating drought-tolerant tea varieties enhances both yield and quality of tea plants in northern China. However, the mechanisms underlying their drought tolerance remain largely unknown. Here we identified a key regulator called CsREV, which differentially regulates xylem patterns between leaves and stems, thereby conferring drought tolerance in tea plants. When drought occurs, upregulation of CsREV activates the CsVND7a-dependent xylem vessel differentiation. However, when drought persists, the vessel differentiation is hindered as CsVND7a is downregulated by CsTCP4a. This, combined with the CsREV-promoted secondary-cell-wall thickness of xylem vessel, leads to the enhanced curling of leaves, a characteristic closely associated with plant drought tolerance. Notably, this inhibitory effect of CsTCP4a on CsVND7a expression is absent in stems, allowing stem xylem vessels to continuously differentiate. Overall, the CsREV-CsTCP4-CsVND7 module is differentially utilized to shape the xylem patterns in leaves and stems, potentially balancing water transportation and utilization to improve tea plant drought tolerance.
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