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The Function of the CLE Peptides in Plant Development and Plant-Microbe Interactions

机译:CLE肽在植物发育和植物-微生物相互作用中的功能

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摘要

The CLAVATA3 (CLV3)/ENDOSPERM SURROUNDING REGION (ESR) (CLE) peptides consist of 12 or 13 amino acids, including hydroxylated proline residues that may or may not contain sugar modifications, and function in a non-cell-autonomous fashion. The CLE gene was first reported in Zea mays (maize) as an endosperm-specific gene, ESR, in 1997 (). CLE genes encode secreted peptides that function in the extracellular space as intercellular signaling molecules and bind to cellular surface receptor-like proteins to transmit a signal. CLE peptides regulate various physiological and developmental processes and its signaling pathway are conserved in diverse land plants. Recent CLE functional studies have pointed to their significance in regulating meristematic activity in plant meristems, through the CLE-receptor kinase-WOX signaling node. CLV3 and CLE40 are responsible for maintenance of shoot apical meristem (SAM) and root apical meristem (RAM) function, regulating homeodomain transcription factors, WUSCHEL (WUS) and WUSCHEL-related homeobox 5 (WOX5), respectively. CLE and WOX form an interconnected and self-correcting feedback loop to provide robustness to stem cell homeostasis. CLE peptides are required for certain plant-microbe interactions, such as those that occur during legume symbiosis and phytopathogenic nematode infection. Understanding the molecular properties of CLE peptides may provide insight into plant cell-cell communication, and therefore also into plant-microbe interactions.
机译:CLAVATA3(CLV3)/胚乳周围区域(ESR)(CLE)肽由12或13个氨基酸组成,包括羟基脯氨酸残基,可能含有或不含有糖修饰基团,并且以非细胞自主方式发挥作用。 CLE基因于1997年首次在玉米(玉米)中被报道为胚乳特异性基因ESR()。 CLE基因编码分泌的肽,这些肽在细胞外空间中起细胞间信号分子的作用,并结合细胞表面受体样蛋白来传递信号。 CLE肽调节各种生理和发育过程,其信号传导途径在多种陆地植物中均得到保守。最近的CLE功能研究指出了它们通过CLE受体激酶-WOX信号节点调节植物分生组织的分生活动的重要性。 CLV3和CLE40分别负责维持茎尖分生组织(SAM)和根尖分生组织(RAM)的功能,调节同源域转录因子WUSCHEL(WUS)和WUSCHEL相关的同源盒5(WOX5)。 CLE和WOX形成了一个相互连接的,自我校正的反馈回路,可为干细胞稳态提供鲁棒性。 CLE肽对于某些植物与微生物的相互作用是必需的,例如在豆类共生和植物致病性线虫感染期间发生的相互作用。了解CLE肽的分子特性可以提供对植物细胞间通讯的了解,从而也可以对植物微生物相互作用的了解。

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