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揭示植物茎尖分生组织稳态背后的分子机制。

Illuminating the molecular mechanisms underlying shoot apical meristem homeostasis in plants.

作者信息

Shimotohno Akie

机构信息

Institute of Transformative Bio-Molecules, Nagoya University, Nagoya, Aichi 464-8601, Japan.

出版信息

Plant Biotechnol (Tokyo). 2022 Mar 25;39(1):19-28. doi: 10.5511/plantbiotechnology.22.0213a.

Abstract

Unlike animals, terrestrial plants are sessile and able to give rise to new organs throughout their lifetime. In the most extreme cases, they can survive for over a thousand years. With such protracted life cycles, plants have evolved sophisticated strategies to adapt to variable environments by coordinating their morphology as well as their growth, and have consequently acquired a high degree of developmental plasticity, which is supported by small groups of long-lived stem cells found in proliferative centers called meristems. Shoot apical meristems (SAMs) contain multipotent stem cells and provide a microenvironment that ensures both a self-renewable reservoir, to produce primordia and sustain growth, and a differentiating population that develops into all of the above-ground organs of land plants. The homeodomain transcription factor () is expressed in the organizing center and acts as a master regulator to govern shoot stem cell homeostasis. In this review, I highlight recent advances in our understanding of the molecular mechanisms and signaling networks that underlie SAM maintenance, and discuss how plants utilize WUS to integrate intrinsic and extrinsic cues.

摘要

与动物不同,陆生植物固定生长,并且在其整个生命周期中都能够产生新器官。在最极端的情况下,它们可以存活一千多年。由于生命周期如此漫长,植物已经进化出复杂的策略,通过协调其形态以及生长来适应多变的环境,因此获得了高度的发育可塑性,这由在称为分生组织的增殖中心中发现的一小群长寿干细胞所支持。茎尖分生组织(SAMs)包含多能干细胞,并提供一个微环境,既能确保有一个自我更新的库来产生原基并维持生长,又能确保有一个分化群体发育成陆地植物的所有地上器官。同源结构域转录因子()在组织中心表达,并作为主要调节因子来控制茎干细胞的稳态。在这篇综述中,我重点介绍了我们对SAM维持背后的分子机制和信号网络的最新理解进展,并讨论了植物如何利用WUS来整合内在和外在信号。

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本文引用的文献

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