Sainsbury Laboratory, Cambridge University, Bateman St., Cambridge, CB2 1LR, UK.
New Phytol. 2021 Jul;231(2):559-564. doi: 10.1111/nph.17369. Epub 2021 May 2.
Cell division in plants is particularly important as cells cannot rearrange. It therefore determines the arrangement of cells (topology) and their size and shape (geometry). Cell division reduces mechanical stress locally by producing smaller cells and alters mechanical properties by reinforcing the mechanical wall network, both of which can alter overall tissue morphology. Division orientation is often regarded as following geometric rules, however recent work has suggested that divisions align with the direction of maximal tensile stress. Mechanical stress has already been shown to feed into many processes of development including those that alter mechanical properties. Such an alignment may enable cell division to selectively reinforce the cell wall network in the direction of maximal tensile stress. Therefore there exists potential feedback between cell division, mechanical stress and growth. Improving our understanding of this topic will help to shed light on the debated role of cell division in organ scale growth.
植物细胞分裂尤为重要,因为细胞不能重新排列。因此,它决定了细胞的排列(拓扑结构)及其大小和形状(几何形状)。细胞分裂通过产生较小的细胞来局部降低机械应力,并通过增强机械壁网络来改变机械性能,这两者都可以改变整体组织形态。细胞分裂的方向通常被认为遵循几何规则,然而最近的研究表明,细胞分裂与最大拉伸应力的方向一致。机械应力已经被证明会影响许多发育过程,包括改变机械性能的过程。这种对齐方式可以使细胞分裂选择性地在最大拉伸应力的方向上增强细胞壁网络。因此,细胞分裂、机械应力和生长之间存在潜在的反馈。更好地理解这一主题将有助于阐明细胞分裂在器官尺度生长中的有争议作用。