College of Life Sciences, Henan Agricultural University, Zhengzhou, China.
Plant Cell Environ. 2024 Dec;47(12):5297-5314. doi: 10.1111/pce.15112. Epub 2024 Aug 27.
Drought stress is a common abiotic challenge that profoundly impacts plant growth and development. As sessile organisms, plants rely on various physiological and morphological adaptations to cope with drought conditions. The CIPK (calcineurin B-like protein-interacting protein kinase) family proteins play a pivotal role in mediating plant responses to abiotic stress through modulation of cellular membrane events via the CBL-CIPK complex. However, reports documenting the CIPKs' regulation of non-membrane events are scant. In this study, we discovered a novel subcellular localisation pattern of the AtCIPK20 protein of Arabidopsis, specifically to cortical microtubules (cMT), which is distinct from previously reported localisation patterns of plant CIPKs. AtCIPK20 regulates ABA-induced loss of cMT organisation in guard cells, thereby facilitating stomatal closure, mitigating leaf water loss, and protecting plants from drought stress in Arabidopsis. The C-terminal regulatory domain of AtCIPK20 governs its cMT targeting, whereas the interaction of AtCIPK20 with its CBL partners disrupts this localisation. Notably, the cMT targeting characteristic of AtCIPK20 is not exclusive, as several other CIPK members in Arabidopsis, maize, and rice exhibit similar localisation patterns. These findings broaden our current understanding of the role of plant CIPK members in abiotic stress resistance and suggest that future exploration of CIPK molecular functions should adopt a more comprehensive perspective.
干旱胁迫是一种常见的非生物胁迫,严重影响植物的生长和发育。作为固着生物,植物依赖各种生理和形态适应来应对干旱条件。CIPK(钙调神经磷酸酶 B 样蛋白相互作用蛋白激酶)家族蛋白通过 CBL-CIPK 复合物调节细胞内膜事件,在介导植物对非生物胁迫的响应中发挥关键作用。然而,关于 CIPK 调节非膜事件的报道很少。在本研究中,我们发现了拟南芥 AtCIPK20 蛋白的一种新的亚细胞定位模式,即皮层微管(cMT),这与先前报道的植物 CIPK 的定位模式不同。AtCIPK20 调节 ABA 诱导的保卫细胞中 cMT 组织的丧失,从而促进气孔关闭,减轻叶片水分损失,保护植物免受干旱胁迫。AtCIPK20 的 C 端调节域控制其 cMT 靶向,而 AtCIPK20 与 CBL 伴侣的相互作用破坏了这种定位。值得注意的是,AtCIPK20 的 cMT 靶向特性不是排他性的,因为拟南芥、玉米和水稻中的其他几个 CIPK 成员也表现出类似的定位模式。这些发现拓宽了我们对植物 CIPK 成员在非生物胁迫抗性中的作用的认识,并表明未来对 CIPK 分子功能的探索应该采用更全面的视角。