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CLASP 在叶片发育过程中平衡两个相互竞争的细胞分裂面线索。

CLASP balances two competing cell division plane cues during leaf development.

机构信息

Department of Biology, The University of Saskatchewan, College of Arts and Science, Saskatoon, Saskatchewan, Canada.

出版信息

Nat Plants. 2022 Jun;8(6):682-693. doi: 10.1038/s41477-022-01163-5. Epub 2022 Jun 6.

Abstract

Starting as small, densely packed boxes, leaf mesophyll cells expand to form an intricate mesh of interconnected cells and air spaces, the organization of which dictates the internal surface area of the leaf for light capture and gas exchange during photosynthesis. Despite their importance, little is known about the basic patterns of mesophyll cell division, and how they contribute to cell and intercellular space organization. To address this, we tracked divisions within individual cell lineages in three dimensions over time in Arabidopsis spongy mesophyll. We found that early on, successive cell division planes switch their orientation such that each new cell wall intersects the previous at a right angle, creating a new multi-cell junction (the intersection of three or more cells). These junctions then open to create intercellular spaces. During subsequent enlargement of the spaces, the division planes of the surrounding cells show an increasing tendency to tilt in the direction of their adjacent intercellular spaces. This disrupts the alternating pattern, and by extension, halts the initiation of new multi-cell junctions and intercellular spaces, but allows the expansion of existing spaces. Both division patterns are specified before mitosis by the orientation of interphase cortical microtubules, which gradually narrow to form a preprophase band in the same orientation to establish the future plane of cell division. In the absence of the microtubule-associated protein CLASP, the early alternating division plane and microtubule patterns are compromised, whereas space-oriented divisions are exacerbated. This results in large distortions of the topological relations between cells and intercellular spaces, as well as changes in their relative abundance. Our data reveal the existence of two competing cell division mechanisms that are balanced by CLASP to specify the distribution of cells and intercellular spaces in spongy mesophyll tissue.

摘要

从密集的小盒子开始,叶肉细胞扩展形成相互连接的细胞和空气空间的错综复杂的网格,其组织决定了叶片内部表面面积,用于光合作用中的光捕获和气体交换。尽管它们很重要,但人们对叶肉细胞分裂的基本模式以及它们如何有助于细胞和细胞间空间组织知之甚少。为了解决这个问题,我们在拟南芥海绵状叶肉中,在三个维度上随时间追踪单个细胞谱系中的分裂。我们发现,早期,连续的细胞分裂平面会改变它们的方向,使得每个新的细胞壁与前一个细胞壁成直角相交,形成新的多细胞连接点(三个或更多细胞的交点)。然后,这些连接点打开以创建细胞间空间。在随后的空间扩大过程中,周围细胞的分裂平面显示出向相邻细胞间空间倾斜的趋势增加。这破坏了交替模式,并且,扩展了现有的空间,从而停止了新的多细胞连接点和细胞间空间的形成。这两种分裂模式在有丝分裂之前通过有丝分裂前期皮层微管的方向来指定,微管逐渐变窄形成相同方向的预有丝分裂带,以建立未来的细胞分裂平面。在微管相关蛋白 CLASP 缺失的情况下,早期的交替分裂平面和微管模式受损,而空间定向分裂加剧。这导致细胞和细胞间空间之间的拓扑关系发生大的扭曲,以及它们的相对丰度发生变化。我们的数据揭示了两种竞争的细胞分裂机制的存在,CLASP 通过它们来指定海绵状叶肉组织中细胞和细胞间空间的分布。

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