内质网
胞浆
细胞生物学
平衡
拟南芥
突变体
转录因子
拟南芥
适应(眼睛)
生物
化学
生物化学
基因
神经科学
酶
作者
Wen Tian,Wen Cai,Chunquan Zhu,Ya Li Kong,Xiaochuang Cao,L. Zhu,Jiayuan Ye,Junhua Zhang,Shao Jian Zheng
摘要
ABSTRACT Calcium (Ca) is essential for plant growth and stress adaptation, yet its availability is often limited in acidic soils, posing a major threat to crop production. Understanding the intricate mechanisms orchestrating plant adaptation to Ca deficiency remains elusive. Here, we show that the Ca deficiency‐enhanced nuclear accumulation of the transcription factor SENSITIVE TO PROTON RHIZOTOXICITY 1 (STOP1) in Arabidopsis thaliana confers tolerance to Ca deprivation, with the global transcriptional responses triggered by Ca deprivation largely impaired in the stop1 mutant. Notably, STOP1 activates the Ca deprivation‐induced expression of CATION/Ca 2+ EXCHANGER 1 ( CCX1 ) by directly binding to its promoter region, which facilitates Ca 2+ efflux from endoplasmic reticulum to cytosol to maintain Ca homeostasis. Consequently, the constitutive expression of CCX1 in the stop1 mutant partially rescues the Ca deficiency phenotype by increasing Ca content in the shoots. These findings uncover the pivotal role of the STOP1‐CCX1 axis in plant adaptation to low Ca, offering alternative manipulating strategies to improve plant Ca nutrition in acidic soils and extending our understanding of the multifaceted role of STOP1.
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