The value of asymmetry: How polarity proteins determine plant growth and morphology.

The value of asymmetry: How polarity proteins determine plant growth and morphology.
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不对称性的价值:极性蛋白如何决定植物生长和形态

DOI:
10.1093/jxb/eraa329
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发表时间:
--
影响因子:
6.9
通讯作者:
Wallner ES
Wallner ES
中科院分区:
生物学1区
文献类型:
--
作者:
Wallner ES

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细胞极性对于形成复杂的多细胞生物体是不可或缺的。在特定的质膜结构域上极化的蛋白质既可以作为效应器的支架,也可以协调细胞间的通信和运输。在这里,我概述了极性蛋白质复合体及其对植物发育的基本重要性,并总结了对其分子网络的新的机理见解。列举了在特定质膜结构域上极化以定向细胞分裂平面、改变细胞命运进程、控制运输、指导细胞生长、读取全球极轴或将外部刺激整合到植物生长中的蛋白质的例子。在植物发育过程中表征蛋白质极性的最新进展使人们能够更好地了解植物的协调生长,并开辟了有趣的途径,可能为未来调节植物的形态和适应性提供手段。
Cell polarity is indispensable for forming complex multicellular organisms. Proteins that polarize at specific plasma membrane domains can either serve as scaffolds for effectors or coordinate intercellular communication and transport. Here, I give an overview of polarity protein complexes and their fundamental importance for plant development, and summarize novel mechanistic insights into their molecular networks. Examples are presented for proteins that polarize at specific plasma membrane domains to orient cell division planes, alter cell fate progression, control transport, direct cell growth, read global polarity axes, or integrate external stimuli into plant growth. The recent advances in characterizing protein polarity during plant development enable a better understanding of coordinated plant growth and open up intriguing paths that could provide a means to modulate plant morphology and adaptability in the future.
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