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Development of schizogenous intercellular spaces in plants

机译:植物精神分裂性细胞间空间的发育

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摘要

Gas exchange is essential for multicellular organisms. In contrast to the circulatory systems of animals, land plants have tissues with intercellular spaces (ICSs), called aerenchyma, that are critical for efficient gas exchange. Plants form ICSs by two different mechanisms: schizogeny, where localized cell separation creates spaces; and lysogeny, where cells die to create ICSs. In schizogenous ICS formation, specific molecular mechanisms regulate the sites of cell separation and coordinate extensive reorganization of cell walls. Emerging evidence suggests the involvement of extracellular signaling, mediated by peptide ligands and leucine-rich repeat receptor-like kinases, in the regulation of cell wall remodeling during cell separation. Recent work on the liverwort Marchantia polymorpha has demonstrated a critical role for a plasma membrane-associated plant U-box E3 ubiquitin ligase in ICS formation. In this review, I discuss the mechanism of schizogenous ICS formation, focusing on the potential role of extracellular signaling in the regulation of cell separation.
机译:气体交换对于多细胞生物至关重要。与动物的循环系统相反,陆地植物的组织具有称为气孔的细胞间空间(ICS),这对于有效的气体交换至关重要。植物通过两种不同的机制形成ICS:分裂发生,局部细胞分离产生空间;和溶原性,细胞死亡以产生ICS。在精神分裂性ICS形成中,特定的分子机制调节细胞分离的位点并协调细胞壁的广泛重组。新兴证据表明,由肽配体和富含亮氨酸的重复受体样激酶介导的细胞外信号通路参与细胞分离过程中细胞壁重塑的调控。地草多形马钱子的最新研究表明,与质膜相关的植物U-box E3泛素连接酶在ICS形成中起着关键作用。在这篇综述中,我讨论了精神分裂性ICS形成的机制,重点是细胞外信号在调节细胞分离中的潜在作用。

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