转录因子
调节器
扩张素
非生物胁迫
细胞生物学
转录调控
生物
化学
碱土
极端微生物
生物化学
镉
抄写(语言学)
基因表达调控
氯化镉
第1周
酵母
基因表达
信号转导
亚砷酸钠
基因
转录组
野生稻
磷酸化
胞浆
非生物成分
主调节器
生物物理学
选择性拼接
遗传学
热冲击
渗透性休克
脱落酸
核糖核酸酶P
作者
Mengyu Liu,Ye Liu,Jixiang Tang,Xiaoyu Wang,Xinlei Du,Yijia Ruan,Hongli Wang,Mengyu Zhou,Yishan Fu,Xiaohuan Sun,Junfeng Zhang,Lei Cao
标识
DOI:10.1016/j.plaphy.2026.111087
摘要
Soil alkalinity and heavy metal toxicity are major abiotic stresses that severely limit plant growth and crop productivity. Wild soybean (Glycine soja) exhibits strong alkaline tolerance, making it a valuable genetic resource for improving cultivated soybean. Previous studies identified Gshdz4 and GsNAC019 as key alkaline-tolerant transcription factors, and GsEXPA8 as an alkaline-tolerant expansin protein. This study establishes a hierarchical "nucleus-nucleus-membrane" regulatory model in wild soybean, wherein the nuclear master transcription factor Gshdz4 transcriptionally upregulates GsNAC019, which in turn activates the expression of the plasma membrane-localized expansin GsEXPA8, collectively enhancing alkaline tolerance. We further investigated the role of Gshdz4 in conferring resistance to combined sodium bicarbonate and cadmium chloride stress in soybean. Through integrated RNA-seq and CUT&Tag-seq analyses, we identified Gshdz4 as a direct binder and regulator of diverse stress-responsive genes-including GmDEAH5, GmHSP22.3, GmACR4, and GmATG1c. Under alkaline stress, Gshdz4 modulates GmSLX8, GmSF3, and GmPP4; under cadmium stress, it regulates GmGMFL01 and GmUNC, establishing a broad-spectrum defense mechanism. Additional targets encompass splicing factors, heat shock proteins, ABA signaling components, and ethylene-responsive factors. GO and KEGG enrichment analyses confirmed that Gshdz4 participates in multiple hormonal pathways (ABA, IAA, ET, JA) and stress response signaling. Our findings revealed Gshdz4 as a master transcriptional regulator under multiple stresses and provide a theoretical foundation for molecular breeding strategies to enhance soybean resilience.
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