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细胞壁果胶阿拉伯聚糖影响拟南芥花序茎的机械性能及其对机械应力的响应。

Cell wall pectic arabinans influence the mechanical properties of Arabidopsis thaliana inflorescence stems and their response to mechanical stress.

作者信息

Verhertbruggen Yves, Marcus Susan E, Chen Jianshe, Knox J Paul

机构信息

Centre for Plant Sciences, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, UK.

出版信息

Plant Cell Physiol. 2013 Aug;54(8):1278-88. doi: 10.1093/pcp/pct074. Epub 2013 May 20.

Abstract

Little is known of the dynamics of plant cell wall matrix polysaccharides in response to the impact of mechanical stress on plant organs. The capacity of the imposition of a mechanical stress (periodic brushing) to reduce the height of the inflorescence stem of Arabidopsis thaliana seedlings has been used to study the role of pectic arabinans in the mechanical properties and stress responsiveness of a plant organ. The arabinan-deficient-1 (arad1) mutation that affects arabinan structures in epidermal cell walls of inflorescence stems is demonstrated to reduce the impact on inflorescence stem heights caused by mechanical stress. The arabinan-deficient-2 (arad2) mutation, that does not have detectable impact on arabinan structures, is also shown to reduce the impact on stem heights caused by mechanical stress. The LM13 linear arabinan epitope is specifically detected in epidermal cell walls of the younger, flexible regions of inflorescence stems and increases in abundance at the base of inflorescence stems in response to an imposed mechanical stress. The strain (percentage deformation) of stem epidermal cells in the double mutant arad1 × arad2 is lower in unbrushed plants than in wild-type plants, but rises to wild-type levels in response to brushing. The study demonstrates the complexity of arabinan structures within plant cell walls and also that their contribution to cell wall mechanical properties is a factor influencing responsiveness to mechanical stress.

摘要

关于植物细胞壁基质多糖在机械应力对植物器官的影响下的动态变化,人们了解甚少。施加机械应力(周期性刷拭)以降低拟南芥幼苗花序茎高度的能力已被用于研究果胶阿拉伯聚糖在植物器官机械性能和应激反应中的作用。影响花序茎表皮细胞壁中阿拉伯聚糖结构的阿拉伯聚糖缺陷-1(arad1)突变被证明可减少机械应力对花序茎高度的影响。对阿拉伯聚糖结构没有可检测影响的阿拉伯聚糖缺陷-2(arad2)突变也显示可减少机械应力对茎高度的影响。LM13线性阿拉伯聚糖表位在花序茎较年轻、较柔韧区域的表皮细胞壁中被特异性检测到,并且在施加机械应力后,花序茎基部的丰度增加。在未刷拭的植物中,双突变体arad1×arad2中茎表皮细胞的应变(变形百分比)低于野生型植物,但在刷拭后升高到野生型水平。该研究证明了植物细胞壁内阿拉伯聚糖结构的复杂性,也表明它们对细胞壁机械性能的贡献是影响对机械应力反应的一个因素。

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