WRKY蛋白质结构域
过氧化氢酶
转录因子
过氧化物酶
过氧化氢
盐(化学)
细胞生物学
亚细胞定位
化学
交货地点
基因
活性氧
生物
基因表达
抄写(语言学)
生物化学
转录调控
基因表达调控
功能(生物学)
下调和上调
清除
酶
作者
Wenhui Shi,Zhengyang Li,Wenjing Ma,Zhongyuan Liu,Yanmin Wang,Caiqiu Gao
摘要
ABSTRACT WRKY transcription factors (TFs) play a crucial role in mediating plant responses to various environmental stresses, including salt, drought, and heavy metal stresses. In this study, PdbWRKY31 was further identified and characterized from Shanxin poplar ( Populus davidiana × P. bolleana ). The results of subcellular localization showed that PdbWRKY31 is a nuclear‐localized protein. PdbWRKY31 expression in Shanxin poplar under salt stress was obviously induced. To further investigate its function in salt tolerance, an overexpression vector (35S:: PdbWRKY31 ‐GFP) was transiently transformed into Shanxin poplar. Physiological indicators showed that overexpression of PdbWRKY31 enhanced peroxidase (POD) and catalase (CAT) activities, reduced hydrogen peroxide (H 2 O 2 ) accumulation, and cell damage induced by salt stress. Y1H and EMSA results demonstrate that PdbWRKY31 specifically bound with the W‐box (TTGAC) element. ChIP‐PCR and qRT‐PCR assays showed that PdbWRKY31 increased PdbCAT1 and PdbCAT3 expression by binding to the W‐box element on their promoters. Based on our findings, we proposed a novel regulatory model in which PdbWRKY31 enhanced salt tolerance in Shanxin poplar by binding to the W‐box element on the promoter of the target genes ( PdbCAT1 and 3 ) and promoting their expression. This study provided a theoretical foundation for a deeper understanding of the role of WRKY31 TFs and offered insights into breeding highly salt‐tolerant plants.
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