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拟南芥中细胞和叶片大小的可塑性:核内复制起什么作用?

Cell and leaf size plasticity in Arabidopsis: what is the role of endoreduplication?

作者信息

Cookson Sarah Jane, Radziejwoski Amandine, Granier Christine

机构信息

Laboratoire d'Ecophysiologie des Plantes Sous Stress Environnementaux, UMR 759, Institut National de la Recherche Agronomique/Ecole Nationale Supérieure d'Agronomie, 2 Place Viala, 34060 Montpellier 2, France.

出版信息

Plant Cell Environ. 2006 Jul;29(7):1273-83. doi: 10.1111/j.1365-3040.2006.01506.x.

Abstract

Leaf area expansion is affected by environmental conditions because of differences in cell number and/or cell size. Increases in the DNA content (ploidy) of a cell by endoreduplication are related to its size. The aim of this work was to determine how cell ploidy interacts with the regulation of cell size and with leaf area expansion. The approach used was to grow Arabidopsis thaliana plants performing increased or decreased rounds of endoreduplication under shading and water deficit. The shading and water deficit treatments reduced final leaf area and cell number; however, cell area was increased and decreased, respectively. These differences in cell size were unrelated to alterations of the endocycle, which was reduced by these treatments. The genetic modification of the extent of endoreduplication altered leaf growth responses to shading and water deficit. An increase in the extent of endoreduplication in a leaf rendered it more sensitive to the shade treatment but less sensitive to water deficit conditions. The link between the control of whole organ and individual cell expansion under different environmental conditions was demonstrated by the correlation between the plasticity of cell size and the changes in the duration of leaf expansion.

摘要

由于细胞数量和/或细胞大小的差异,叶面积扩展受环境条件影响。通过核内复制增加细胞的DNA含量(多倍性)与其大小相关。这项工作的目的是确定细胞多倍性如何与细胞大小调控以及叶面积扩展相互作用。所采用的方法是在遮荫和水分亏缺条件下种植进行了增加或减少轮次核内复制的拟南芥植株。遮荫和水分亏缺处理降低了最终叶面积和细胞数量;然而,细胞面积分别增加和减少。这些细胞大小的差异与内循环的改变无关,而内循环在这些处理下减少了。核内复制程度的基因改造改变了叶片对遮荫和水分亏缺的生长反应。叶片中核内复制程度的增加使其对遮荫处理更敏感,但对水分亏缺条件不太敏感。细胞大小可塑性与叶片扩展持续时间变化之间的相关性证明了不同环境条件下整个器官和单个细胞扩展控制之间的联系。

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