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On the Importance to Acknowledge Transposable Elements in Epigenomic Analyses

机译:表观基因组分析中认识转座因子的重要性

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摘要

Eukaryotic genomes comprise a large proportion of repeated sequences, an important fraction of which are transposable elements (TEs). TEs are mobile elements that have a significant impact on genome evolution and on gene functioning. Although some TE insertions could provide adaptive advantages to species, transposition is a highly mutagenic event that has to be tightly controlled to ensure its viability. Genomes have evolved sophisticated mechanisms to control TE activity, the most important being epigenetic silencing. However, the epigenetic control of TEs can also affect genes located nearby that can become epigenetically regulated. It has been proposed that the combination of TE mobilization and the induced changes in the epigenetic landscape could allow a rapid phenotypic adaptation to global environmental changes. In this review, we argue the crucial need to take into account the repeated part of genomes when studying the global impact of epigenetic modifications on an organism. We emphasize more particularly why it is important to carefully consider TEs and what bioinformatic tools can be used to do so.
机译:真核基因组包含大部分重复序列,其中重要的一部分是转座因子(TEs)。 TE是可移动的元素,对基因组进化和基因功能有重大影响。尽管某些TE插入可以为物种提供适应性优势,但转座是高度致突变的事件,必须严格控制以确保其生存力。基因组已经进化出控制TE活性的复杂机制,最重要的是表观遗传沉默。但是,TEs的表观遗传控制也会影响附近的基因,这些基因可能会受到表观遗传调控。已经提出,TE动员和表观遗传景观中的诱导变化的组合可以允许对全球环境变化的快速表型适应。在这篇综述中,我们认为研究表观遗传修饰对生物的全球影响时,必须考虑基因组的重复部分是至关重要的。我们更特别地强调为什么认真考虑TE以及为什么可以使用哪些生物信息学工具如此重要。

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