突变体
抑制因子
转录因子
开枪
细胞生物学
拟南芥
基因
生物
基因表达
化学
表型
抄写(语言学)
生物化学
转录调控
基因表达调控
钠
水稻
盐生植物
运输机
盐(化学)
亚细胞定位
植物
下调和上调
野生型
盐度
转基因
转基因水稻
作者
Liangbo Fu,Xincheng Zhang,Yishan Tu,Mingjiong Chen,Xiaohan Xu,Tingting Su,Fengyue Wang,Dezhi Wu,Qiufang Shen,Guoping Zhang
标识
DOI:10.1016/j.xplc.2026.101771
摘要
accumulation and pronounced salt sensitivity. Subcellular localization and molecular interaction analyses reveal that OsNAC10 is a nuclear-localized transcription factor that directly and competitively binds to an ACGTA-core cis element within the OsHKT1;5 promoter. Consequently, OsHKT1;5 expression is markedly upregulated in nac10 mutants under salt stress. Genetic analysis further demonstrates that the enhanced salt tolerance of the nac10 mutant depends on OsHKT1;5, as the nac10 hkt1;5 double mutant exhibits a salt-sensitive phenotype comparable to that of the hkt1;5 single mutant. Importantly, under saline soil conditions, OsNAC10 knockout lines maintain significantly higher grain yield than wild-type plants. Together, these findings uncover a novel transcriptional regulatory mechanism in which OsNAC10 negatively modulates rice salt tolerance by competitively inhibiting OsHKT1;5 expression, highlighting OsNAC10 as a promising target for breeding salt-tolerant crops.
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