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重复 DNA 元件对蛇类基因组生物学和进化的影响。

Impact of Repetitive DNA Elements on Snake Genome Biology and Evolution.

机构信息

Animal Genomics and Bioresource Research Center (AGB Research Center), Faculty of Science, Kasetsart University, 50 Ngamwongwan, Chatuchak, Bangkok 10900, Thailand.

The International Undergraduate Program in Bioscience and Technology, Faculty of Science, Kasetsart University, 50 Ngamwongwan, Chatuchak, Bangkok 10900, Thailand.

出版信息

Cells. 2021 Jul 6;10(7):1707. doi: 10.3390/cells10071707.

Abstract

The distinctive biology and unique evolutionary features of snakes make them fascinating model systems to elucidate how genomes evolve and how variation at the genomic level is interlinked with phenotypic-level evolution. Similar to other eukaryotic genomes, large proportions of snake genomes contain repetitive DNA, including transposable elements (TEs) and satellite repeats. The importance of repetitive DNA and its structural and functional role in the snake genome, remain unclear. This review highlights the major types of repeats and their proportions in snake genomes, reflecting the high diversity and composition of snake repeats. We present snakes as an emerging and important model system for the study of repetitive DNA under the impact of sex and microchromosome evolution. We assemble evidence to show that certain repetitive elements in snakes are transcriptionally active and demonstrate highly dynamic lineage-specific patterns as repeat sequences. We hypothesize that particular TEs can trigger different genomic mechanisms that might contribute to driving adaptive evolution in snakes. Finally, we review emerging approaches that may be used to study the expression of repetitive elements in complex genomes, such as snakes. The specific aspects presented here will stimulate further discussion on the role of genomic repeats in shaping snake evolution.

摘要

蛇类独特的生物学和独特的进化特征使它们成为阐明基因组如何进化以及基因组水平的变异如何与表型水平的进化相互关联的迷人模型系统。与其他真核基因组类似,蛇类基因组的很大一部分包含重复 DNA,包括转座元件 (TEs) 和卫星重复序列。重复 DNA 的重要性及其在蛇基因组中的结构和功能作用尚不清楚。本综述强调了蛇基因组中主要类型的重复序列及其比例,反映了蛇重复序列的高度多样性和组成。我们将蛇类作为研究性染色体进化影响下重复 DNA 的新兴重要模型系统进行介绍。我们收集证据表明,蛇类中的某些重复元件具有转录活性,并表现出高度动态的谱系特异性重复序列模式。我们假设特定的 TEs 可以触发不同的基因组机制,这些机制可能有助于推动蛇类的适应性进化。最后,我们综述了新兴的方法,这些方法可用于研究复杂基因组(如蛇类)中重复元件的表达。这里介绍的具体方面将激发进一步讨论基因组重复在塑造蛇类进化中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b399/8303610/4aec88ab520c/cells-10-01707-g001.jpg

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