首页> 外文期刊>Journal of Plant Research >Plant meristems: CLAVATA3/ESR -related signaling in the shoot apical meristem and the root apical meristem
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Plant meristems: CLAVATA3/ESR -related signaling in the shoot apical meristem and the root apical meristem

机译:植物分生组织:茎尖分生组织和根尖分生组织中与CLAVATA3 / ESR相关的信号传导

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摘要

The plant meristems, shoot apical meristem (SAM) and root apical meristem (RAM), are unique structures made up of a self-renewing population of undifferentiated pluripotent stem cells. The SAM produces all aerial parts of postembryonic organs, and the RAM promotes the continuous growth of roots. Even though the structures of the SAM and RAM differ, the signaling components required for stem cell maintenance seem to be relatively conserved. Both meristems utilize cell-to-cell communication to maintain proper meristematic activities and meristem organization and to coordinate new organ formation. In SAM, an essential regulatory mechanism for meristem organization is a regulatory loop between WUSCHEL (WUS) and CLAVATA (CLV), which functions in a non-cell-autonomous manner. This intercellular signaling network coordinates the development of the organization center, organ boundaries and distant organs. The CLAVATA3/ESR (CLE)-related genes produce signal peptides, which act non-cell-autonomously in the meristem regulation in SAM. In RAM, it has been suggested that a similar mechanism can regulate meristem maintenance, but these functions are largely unknown. Here, we overview the WUS–CLV signaling network for stem cell maintenance in SAM and a related mechanism in RAM maintenance. We also discuss conservation of the regulatory system for stem cells in various plant species.
机译:植物分生组织,茎尖分生组织(SAM)和根尖分生组织(RAM)是由未分化的多能干细胞自我更新组成的独特结构。 SAM产生胚后器官的所有空中部分,RAM促进根的持续生长。即使SAM和RAM的结构不同,干细胞维护所需的信号成分似乎也相对保守。两种分生组织都利用细胞间通讯来维持适当的分生活动和分生组织,并协调新器官的形成。在SAM中,分生组织的基本调控机制是WUSCHEL(WUS)和CLAVATA(CLV)之间的调控环,该环以非细胞自主方式发挥作用。该细胞间信号网络协调组织中心,器官边界和远处器官的发育。与CLAVATA3 / ESR(CLE)相关的基因产生信号肽,该信号肽在SAM的分生组织调节中非细胞自主地起作用。在RAM中,已经提出了类似的机制可以调节分生组织的维护,但是这些功能在很大程度上是未知的。在这里,我们概述了用于SAM中干细胞维护的WUS–CLV信号网络以及RAM维护中的相关机制。我们还讨论了各种植物干细胞的调控系统的保护。

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