重复的DNA元素作为基因组变化的介质响应环境线索。

Adele L Schmidt, Lucy M Anderson
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引用次数: 50

摘要

有机体和细胞信号可以通过重复的元件运动或突变,将环境信号转化为非编码DNA初级结构中特定的、有益的变化,这一命题没有逻辑或理论上的障碍。已知重复DNA元件,包括转座子和微卫星,会影响蛋白质编码基因的结构和表达,并在某些情况下对环境信号作出反应。这些效应可能为适应性进化创造素材,其速度超过了观察到的点突变。在许多情况下,这些变化无疑是随机的,适应性是通过简单的自然选择而增加的。然而,一些转座子插入到特定的位点,基因组的某些区域在一系列生物体中表现出选择性和有益的高突变率。在多细胞生物中,这可能有利于个体在具有克隆扩增潜力的情况下:动物的早期生命阶段或再生组织,以及大多数植物组织。这种变化可以在植物中传播给下一代,在某些情况下,也可以在动物中传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Repetitive DNA elements as mediators of genomic change in response to environmental cues.

There is no logical or theoretical barrier to the proposition that organismal and cell signaling could transduce environmental signals into specific, beneficial changes in primary structure of noncoding DNA via repetitive element movement or mutation. Repetitive DNA elements, including transposons and microsatellites, are known to influence the structure and expression of protein-coding genes, and to be responsive to environmental signals in some cases. These effects may create fodder for adaptive evolution, at rates exceeding those observed for point mutations. In many cases, the changes are no doubt random, and fitness is increased through simple natural selection. However, some transposons insert at specific sites, and certain regions of the genome exhibit selectively and beneficially high mutation rates in a range of organisms. In multicellular organisms, this could benefit individuals in situations with significant potential for clonal expansion: early life stages or regenerative tissues in animals, and most plant tissues. Transmission of the change to the next generation could occur in plants and, under some circumstances, in animals.

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