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内皮层。

The endodermis.

机构信息

Department of Plant Molecular Biology, University of Lausanne, 1015 Lausanne, Switzerland.

出版信息

Annu Rev Plant Biol. 2013;64:531-58. doi: 10.1146/annurev-arplant-050312-120050. Epub 2013 Mar 1.

Abstract

A Casparian strip-bearing endodermis is a feature that has been invariably present in the roots of ferns and angiosperms for approximately 400 million years. As the innermost cortical layer that surrounds the central vasculature of roots, the endodermis acts as a barrier to the free diffusion of solutes from the soil into the stele. Based on an enormous body of anatomical and physiological work, the protective endodermal diffusion barrier is thought to be of major importance for many aspects of root biology, reaching from efficient water and nutrient transport to defense against soil-borne pathogens. Until recently, however, we were ignorant about the genes and mechanisms that drive the differentiation of this intricately structured barrier. Recent work in Arabidopsis has now identified the first major players in Casparian strip formation. A mechanistic understanding of endodermal differentiation will finally allow us to specifically interfere with endodermal barrier function and study the effects on plant growth and survival under various stress conditions. Here, I critically review the major findings and models related to endodermal structure and function from other plant species and assess them in light of recent molecular data from Arabidopsis, pointing out where the older, descriptive work can provide a framework and inspiration for further molecular dissection.

摘要

具有凯氏带结构的内皮层是蕨类植物和被子植物根系中一直存在的特征,大约有 4 亿年的历史。作为围绕根系中央维管束的最内层皮层,内皮层充当了阻止土壤中的溶质自由扩散到中柱的屏障。基于大量的解剖学和生理学研究,人们认为这种具有保护作用的内皮层扩散屏障对于根系生物学的许多方面都非常重要,从高效的水和养分运输到抵御土壤传播的病原体。然而,直到最近,我们还不知道驱动这种复杂结构屏障分化的基因和机制。最近在拟南芥中的研究工作已经确定了凯氏带形成的第一个主要参与者。对内皮层分化的机制理解将最终使我们能够专门干扰内皮层屏障功能,并研究在各种胁迫条件下对植物生长和存活的影响。在这里,我批判性地回顾了来自其他植物物种的与内皮层结构和功能相关的主要发现和模型,并根据来自拟南芥的最新分子数据对其进行了评估,指出了旧的描述性工作可以为进一步的分子剖析提供框架和灵感的地方。

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