果胶
化学
转录因子
细胞生物学
抄写(语言学)
新陈代谢
细胞壁
生物化学
细胞生长
植物生长
细胞
转录调控
拟南芥
生物物理学
植物科学
氟化物
作者
Wenluan Xu,Xiaoju Wen,Yueping Wang,Yuchuan Li,Dejiang Ni,Yuqiong Chen
标识
DOI:10.1021/acs.jafc.6c01796
摘要
Fluoride (F) abounds in acidic tea plantation soils, and excessive F accumulation threatens tea plant growth and safe tea production. Cell wall (CW) pectin metabolism orchestrates plant stress adaptation. As key regulators, pectin methylesterase inhibitors (PMEIs) modulate pectin characteristics by regulating pectin methylesterase (PME) activity, yet their roles in F tolerance remain largely unclear. Here, we identified CsPMEI14 as a key F-responsive gene: its overexpression enhanced F tolerance by reducing F accumulation and remodeling CW pectin to increase pectin content and strengthen CW F fixation. Furthermore, two bHLH transcription factors (TFs), CsIBH1 (activator) and CsPRE5 (repressor), antagonistically regulated CsPMEI14 transcription. CsIBH1 coordinated broader CW remodeling, whereas CsPRE5 acted as a subtle modulator. CsWRKY75 functioned as a coregulator by interacting with both TFs, enhancing CsIBH1-mediated activation and alleviating CsPRE5-mediated repression. Collectively, this CsWRKY75-CsIBH1/CsPRE5-CsPMEI14 regulatory module provides new insights into PMEI-mediated CW remodeling and potential targets for improving plant stress resistance.
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