[干燥耐受性的基因组后分析]。

J. Buitink, O. Leprince
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引用次数: 2

摘要

耐干燥性是指在完全干燥的情况下存活的能力。这是一种古老的特征,可以在原核生物、真菌、原始动物(通常在幼虫阶段)、整个植物、花粉和种子中发现。在干燥状态下,新陈代谢暂停,无水生物可以存活的时间从几年到几个世纪不等。虽然干旱胁迫诱导的基因已经成功地在对细胞干燥敏感的组织中被列举出来,但我们对这些基因在细胞水平上建立干燥耐受性的适应性作用知之甚少。本文回顾了各种耐干燥生物的后基因组方法,其中当它们获得耐受极端脱水或干燥的能力时,已经研究了遗传反应。非还原糖、LEA蛋白的积累和代谢的协调抑制似乎是赋予脱水耐受性的基本和普遍属性。描述了这些属性的保护机制。此外,由于大约30%的与脱水耐受性有关的基因的功能仍有待阐明,因此最有可能的是其他机制已经进化。简要地讨论了干燥耐受性和干旱耐受性之间重叠的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Postgenomic analysis of desiccation tolerance].
Desiccation tolerance is the capacity to survive complete drying. It is an ancient trait that can be found in prokaryotes, fungi, primitive animals (often at the larval stages), whole plants, pollens and seeds. In the dry state, metabolism is suspended and the duration that anhydrobiotes can survive ranges from years to centuries. Whereas genes induced by drought stress have been successfully enumerated in tissues that are sensitive to cellular desiccation, we have little knowledge as to the adaptive role of these genes in establishing desiccation tolerance at the cellular level. This paper reviews postgenomic approaches in a variety of desiccation tolerant organisms in which the genetic responses have been investigated when they acquire the capacity of tolerating extremes of dehydration or when they are dry. Accumulation of non-reducing sugars, LEA proteins and a coordinated repression of metabolism appear to be the essential and universal attributes that can confer desiccation tolerance. The protective mechanisms of these attributes are described. Furthermore, it is most likely that other mechanisms have evolved since the function of about 30% of the genes involved in desiccation tolerance remains to be elucidated. The question of the overlap between desiccation tolerance and drought tolerance is briefly addressed.
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