WRKY蛋白质结构域
生物
苯丙素
大丽花黄萎病
拟南芥
植物对草食的防御
植物抗病性
黄萎病
生物逆境
过敏反应
次生代谢
转录因子
染色质免疫沉淀
基因
遗传学
细胞生物学
基因表达
植物
非生物胁迫
突变体
发起人
生物合成
作者
Shenghua Xiao,Yuqing Ming,Qin Hu,Zhengxiu Ye,Huan Si,Shiming Liu,Xiaojun Zhang,Weiran Wang,Yu Yu,Jie Kong,Steven J. Klosterman,Keith Lindsey,Xianlong Zhang,Alifu Aierxi,Longfu Zhu
摘要
Summary Despite the established significance of WRKY proteins and phenylpropanoid metabolism in plant immunity, how WRKY proteins modulate aspects of the phenylpropanoid pathway remains undetermined. To understand better the role of WRKY proteins in plant defence, we identified a cotton ( Gossypium hirsutum ) protein, GhWRKY41, that is, universally and rapidly induced in three disease‐resistant cotton cultivars following inoculation with the plant pathogenic fungus, Verticillium dahliae . We show that overexpression of GhWRKY41 in transgenic cotton and Arabidopsis enhances resistance to V. dahliae , while knock‐down increases cotton more susceptibility to the fungus. GhWRKY41 physically interacts with itself and directly activates its own transcription. A genome‐wide chromatin immunoprecipitation and high‐throughput sequencing (ChIP‐seq), in combination with RNA sequencing (RNA‐seq) analyses, revealed that 43.1% of GhWRKY41‐binding genes were up‐regulated in cotton upon inoculation with V. dahliae , including several phenylpropanoid metabolism master switches, receptor kinases, and disease resistance‐related proteins. We also show that GhWRKY41 homodimer directly activates the expression of GhC4H and Gh4CL , thereby modulating the accumulation of lignin and flavonoids. This finding expands our understanding of WRKY‐WRKY protein interactions and provides important insights into the regulation of the phenylpropanoid pathway in plant immune responses by a WRKY protein.
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