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Differential Growth in Periclinal and Anticlinal Walls during Lobe Formation in Arabidopsis Cotyledon Pavement Cells

机译:拟南芥子叶路面细胞中叶形成过程中周壁和背斜壁的差异生长

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摘要

Lobe development in the epidermal pavement cells of Arabidopsis thaliana cotyledons and leaves is thought to take place via tip-like growth on the concave side of lobes driven by localized concentrations of actin filaments and associated proteins, with a predicted role for cortical microtubules in establishing the direction of restricted growth at the convex side. We used homologous landmarks fixed to the outer walls of pavement cells and thin-plate spline analysis to demonstrate that lobes form by differential growth of both the anticlinal and periclinal walls. Most lobes formed within the first 24 h of the cotyledons unfurling, during the period of rapid cell expansion. Cortical microtubules adjacent to the periclinal wall were persistently enriched at the convex side of lobes during development where growth was anisotropic and were less concentrated or absent at the concave side where growth was promoted. Alternating microtubule-enriched and microtubule-free zones at the periclinal wall in neighboring cells predicted sites of new lobes. There was no particular arrangement of cortical actin filaments that could predict where lobes would form. However, drug studies demonstrate that both filamentous actin and microtubules are required for lobe formation.
机译:拟南芥子叶和叶的表皮路面细胞中的叶发育被认为是通过在局部浓度的肌动蛋白丝和相关蛋白的驱动下在叶凹面的尖端状生长而发生的,并预测了皮层微管在建立皮层微管中的作用。凸侧限制生长的方向。我们使用固定在路面单元外壁上的同源地标和薄板样条分析来证明叶由背斜壁和周斜壁的不同生长形成。在细胞快速扩增期间,大多数子叶在子叶的前24小时内展开。在生长各向异性的发育过程中,邻近周壁的皮质微管在叶的凸侧持续富集,而在促进生长的凹侧则较少集中或缺失。邻近细胞的周缘壁上交替的微管富集区和无微管区交替预测新叶的位点。皮质肌动蛋白丝没有特殊的排列可以预测在哪里形成叶。但是,药物研究表明,丝状肌动蛋白和微管都需要形成叶。

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