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转座子在环境响应中的表观遗传调控中的进化和功能。

The evolution and function of transposons in epigenetic regulation in response to the environment.

机构信息

Department of Genetics, Development and Cell Biology, Iowa State University, Ames, IA 50011, USA.

Department of Genetics, Development and Cell Biology, Iowa State University, Ames, IA 50011, USA.

出版信息

Curr Opin Plant Biol. 2022 Oct;69:102277. doi: 10.1016/j.pbi.2022.102277. Epub 2022 Aug 10.

Abstract

Transposable elements (TEs) make up a major proportion of plant genomes. Despite their prevalence genome-wide, TEs are often tossed aside as "junk DNA" since they rarely cause phenotypes, and epigenetic mechanisms silence TEs to prevent them from causing deleterious mutations through movement. While this bleak picture of TEs in genomes is true on average, a growing number of examples across many plant species point to TEs as drivers of phenotypic diversity and novel stress responses. Examples of TE-influenced phenotypes illustrate the many ways that novel transposition events can alter local gene expression and how this relates to potential variation in plant responses to environmental stress. Since TE families and insertions at the locus level lack evolutionary conservation, advancements in the field will require TE experts across diverse species to identify and utilize TE variation in their own systems as a means of crop improvement.

摘要

转座元件 (TEs) 构成了植物基因组的主要部分。尽管它们在全基因组范围内广泛存在,但由于它们很少引起表型,并且表观遗传机制使 TEs 沉默以防止它们通过移动引起有害突变,因此通常被视为“垃圾 DNA”。虽然这种基因组中 TE 的黯淡图景在平均水平上是正确的,但越来越多的来自许多植物物种的例子表明 TE 是表型多样性和新的应激反应的驱动因素。受 TE 影响的表型的例子说明了新的转座事件可以改变局部基因表达的多种方式,以及这与植物对环境应激的潜在变化的关系。由于 TE 家族和插入位点在基因座水平上缺乏进化保守性,因此该领域的进展将需要不同物种的 TE 专家来识别和利用其自身系统中的 TE 变异,作为作物改良的一种手段。

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