钙调蛋白
生物
钙调素结合蛋白
计算生物学
植物发育
功能分歧
叶绿体
信号转导
解码方法
细胞生物学
钙信号传导
分歧(语言学)
第二信使系统
环境压力
亚细胞定位
神经科学
压力(语言学)
战斗或逃跑反应
钙
线粒体
肽序列
特征(语言学)
遗传学
序列(生物学)
细胞信号
干旱胁迫
信使核糖核酸
进化生物学
作者
Ruixin Jin,Tao Zhang,Xin Bai,Xingpei You,Tayeb Muhammad,Tao Yang,Chunping Jia,Juan Wang,Baike Wang
摘要
) acts as a ubiquitous secondary messenger in plants, orchestrating adaptive responses to developmental cues and environmental fluctuations. The decoding of these signatures is primarily mediated by calmodulin (CaM) and plant-specific calmodulin-like (CML) protein family. While canonical CaMs are evolutionarily conserved and feature high-affinity-binding motifs, CMLs exhibit substantial sequence divergence and structural variability, enabling functional specialization. This review synthesizes current knowledge on the structural characteristics and functional roles of CaMs and CMLs, emphasizing their pivotal contributions to plant development, stress resilience, and secondary metabolism. We highlight the significance of spatial compartmentalization, wherein the discrete subcellular partitioning of CaM/CMLs-exemplified by chloroplast and nuclear populations-facilitates the refined modulation of photosynthetic efficiency and transcriptional reprogramming. Furthermore, we discuss recent advances in manipulating CaM/CML-mediated pathways to enhance agronomic traits, including yield stability and stress tolerance. Ultimately, these insights provide a theoretical framework for leveraging calcium signaling components in molecular breeding programs aimed at developing elite crop varieties.
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