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分裂面的建立和胞质分裂。

Division Plane Establishment and Cytokinesis.

机构信息

Department of Developmental Genetics, Center for Plant Molecular Biology, Eberhard-Karls-Universität Tübingen, 72076 Tübingen, Germany; email:

出版信息

Annu Rev Plant Biol. 2019 Apr 29;70:239-267. doi: 10.1146/annurev-arplant-050718-100444. Epub 2019 Feb 22.

Abstract

Plant cells divide their cytoplasmic content by forming a new membrane compartment, the cell plate, via a rerouting of the secretory pathway toward the division plane aided by a dynamic cytoskeletal apparatus known as the phragmoplast. The phragmoplast expands centrifugally and directs the cell plate to the preselected division site at the plasma membrane to fuse with the parental wall. The division site is transiently decorated by the cytoskeletal preprophase band in preprophase and prophase, whereas a number of proteins discovered over the last decade reside continuously at the division site and provide a lasting spatial reference for phragmoplast guidance. Recent studies of membrane fusion at the cell plate have revealed the contribution of functionally conserved eukaryotic proteins to distinct stages of cell plate biogenesis and emphasize the coupling of cell plate formation with phragmoplast expansion. Together with novel findings concerning preprophase band function and the setup of the division site, cytokinesis and its spatial control remain an open-ended field with outstanding and challenging questions to resolve.

摘要

植物细胞通过在分裂平面上重新引导分泌途径形成新的膜隔室——细胞板来分裂细胞质内容物,这一过程得到了一个被称为成膜体的动态细胞骨架装置的帮助。成膜体向心扩展,并将细胞板引导到质膜上预先选定的分裂位点,与母细胞壁融合。在前期和前中期,分裂位点被细胞骨架的前中期带短暂修饰,而过去十年发现的许多蛋白质则持续存在于分裂位点,并为成膜体的导向提供持久的空间参考。最近对细胞板处膜融合的研究揭示了功能保守的真核蛋白对细胞板生物发生的不同阶段的贡献,并强调了细胞板形成与成膜体扩展的偶联。与前中期带功能的新发现以及分裂位点的建立一起,胞质分裂及其空间控制仍然是一个开放性领域,有许多悬而未决且具有挑战性的问题需要解决。

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