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拟南芥的血管组织和基质组织中的异位分裂导致了明显的叶脉缺陷。

Ectopic divisions in vascular and ground tissues of Arabidopsis thaliana result in distinct leaf venation defects.

机构信息

Department of Biology, University of York, York, Y010 5DD, UK.

出版信息

J Exp Bot. 2012 Sep;63(14):5351-64. doi: 10.1093/jxb/ers196.

Abstract

Leaf venation patterns vary considerably between species and between leaves within a species. A mechanism based on canalization of auxin transport has been suggested as the means by which plastic yet organized venation patterns are generated. This study assessed the plasticity of Arabidopsis thaliana leaf venation in response to ectopic ground or procambial cell divisions and auxin transport inhibition (ATI). Ectopic ground cell divisions resulted in vascular fragments between major veins, whereas ectopic procambial cell divisions resulted in additional, abnormal vessels along major veins, with more severely perturbed lines forming incomplete secondary and higher-order venation. These responses imply limited vascular plasticity in response to unscheduled cell divisions. Surprisingly, a combination of ectopic ground cell divisions and ATI resulted in massive vascular overgrowth. It is hypothesized that the vascular overproduction in auxin transport-inhibited wild-type leaves is limited by simultaneous differentiation of ground cells into mesophyll cells. Ectopic ground cell divisions may negate this effect by providing undifferentiated ground cells that respond to accumulated auxin by differentiation into vascular cells.

摘要

叶片脉序在物种间和同一物种的叶片内有很大差异。有人提出,生长素运输的管化是产生具有可塑性但又有组织的脉序模式的一种机制。本研究评估了拟南芥叶片脉序对异位基本或原形成层细胞分裂和生长素运输抑制(ATI)的可塑性。异位基本细胞分裂导致大脉之间出现维管束片段,而异位原形成层细胞分裂则导致大脉上出现额外的异常血管,受干扰更严重的品系形成不完整的次生和更高阶的脉序。这些反应意味着对非计划细胞分裂的血管可塑性有限。令人惊讶的是,异位基本细胞分裂和 ATI 的组合导致了大量的血管过度生长。据推测,生长素运输抑制的野生型叶片中血管过度生成受到同时将基本细胞分化为叶肉细胞的限制。异位基本细胞分裂可能通过提供未分化的基本细胞来否定这种效应,这些基本细胞通过分化成血管细胞对积累的生长素做出反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b493/3431004/f72146c1c456/exbotj_ers196_f0001.jpg

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