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拟南芥 cdka;1 活性降低的植株叶片表皮缺陷发生在茎尖分生组织。

Defects in leaf epidermis of Arabidopsis thaliana plants with CDKA;1 activity reduced in the shoot apical meristem.

机构信息

Department of Biophysics and Morphogenesis of Plants, University of Silesia, Jagiellońska 28, 40-032, Katowice, Poland.

出版信息

Protoplasma. 2013 Aug;250(4):955-61. doi: 10.1007/s00709-012-0472-9. Epub 2012 Dec 18.

Abstract

In Arabidopsis thaliana, like in other dicots, the shoot epidermis originates from protodermis, the outermost cell layer of shoot apical meristem. We examined leaf epidermis in transgenic A. thaliana plants in which CDKA;1.N146, a negative dominant allele of A-type cyclin-dependent kinase, was expressed from the SHOOTMERISTEMLESS promoter, i.e., in the shoot apical meristem. Using cleared whole mount preparations of expanding leaves and sequential in vivo replicas of expanding leaf surface, we show that dominant-negative CDKA;1 expression results in defects in epidermis continuity: loss of individual cells and occurrence of gaps between anticlinal walls of neighboring pavement cells. Another striking feature is ingrowth-like invaginations of anticlinal cell walls of pavement cells. Their formation is related to various processes: expansion of cells surrounding the sites of cell loss, defected cytokinesis, and presumably also, the actual ingrowth of an anticlinal cell wall. The mutant exhibits also increased variation in cell size and locally reduced waviness of anticlinal walls of pavement cells. These unusual features of leaf epidermis phenotype may shed a new light on our knowledge on morphogenesis of jigsaw puzzle-shaped pavement cells and on the CDKA;1 role in regulation of plant development via influence on cytoskeleton and plant cell wall.

摘要

在拟南芥中,与其他双子叶植物一样,茎表皮起源于原表皮,即茎尖分生组织的最外层细胞。我们检查了在 SHOOTMERISTEMLESS 启动子(即在茎尖分生组织中)表达 CDKA;1.N146(A 型细胞周期蛋白依赖性激酶的阴性显性等位基因)的转基因拟南芥植株中的叶片表皮。使用正在扩展的叶片的透明整体制剂和正在扩展的叶片表面的连续体内复制品,我们表明显性负 CDKA;1 表达导致表皮连续性缺陷:单个细胞的丧失和相邻表皮细胞的垂周壁之间出现间隙。另一个显著特征是表皮细胞垂周壁的类似向内生长的凹陷。它们的形成与各种过程有关:包围细胞丧失部位的细胞的扩展、有缺陷的胞质分裂,以及推测还有垂周细胞壁的实际向内生长。该突变体还表现出细胞大小的变化增加和表皮细胞垂周壁的局部波纹度降低。叶片表皮表型的这些异常特征可能为我们对拼图状表皮细胞形态发生的认识以及 CDKA;1 通过对细胞骨架和植物细胞壁的影响在植物发育调控中的作用提供新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f16/3728431/93ec5425e694/709_2012_472_Fig1_HTML.jpg

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