【2h】

Coevolution between transposable elements and recombination

机译:转座因子与重组之间的共同进化

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摘要

One of the most striking patterns of genome structure is the tight, typically negative, association between transposable elements (TEs) and meiotic recombination rates. While this is a highly recurring feature of eukaryotic genomes, the mechanisms driving correlations between TEs and recombination remain poorly understood, and distinguishing cause versus effect is challenging. Here, we review the evidence for a relation between TEs and recombination, and discuss the underlying evolutionary forces. Evidence to date suggests that overall TE densities correlate negatively with recombination, but the strength of this correlation varies across element types, and the pattern can be reversed. Results suggest that heterogeneity in the strength of selection against ectopic recombination and gene disruption can drive TE accumulation in regions of low recombination, but there is also strong evidence that the regulation of TEs can influence local recombination rates. We hypothesize that TE insertion polymorphism may be important in driving within-species variation in recombination rates in surrounding genomic regions. Furthermore, the interaction between TEs and recombination may create positive feedback, whereby TE accumulation in non-recombining regions contributes to the spread of recombination suppression. Further investigation of the coevolution between recombination and TEs has important implications for our understanding of the evolution of recombination rates and genome structure.This article is part of the themed issue ‘Evolutionary causes and consequences of recombination rate variation in sexual organisms’.
机译:基因组结构最引人注目的模式之一是转座因子(TEs)和减数分裂重组率之间的紧密联系(通常为负)。尽管这是真核生物基因组的高度重复特征,但驱动TE与重组之间相关性的机制仍知之甚少,区分因果关系具有挑战性。在这里,我们回顾了TE与重组之间关系的证据,并讨论了潜在的进化力。迄今为止的证据表明,总的TE密度与重组呈负相关,但是这种相关的强度随元素类型的不同而变化,并且这种模式可以颠倒。结果表明,针对异位重组和基因破坏的选择强度的异质性可以驱动低重组区域的TE积累,但也有充分的证据表明TE的调控会影响局部重组率。我们假设TE插入多态性可能在驱动物种周围的基因组区域的重组率变异中很重要。此外,TE与重组之间的相互作用可能产生正反馈,从而TE在非重组区的积累有助于重组抑制的扩散。进一步研究重组与TEs之间的协同进化,对于理解重组率和基因组结构的演变具有重要意义。本文是“有性生物中重组率变异的进化原因和后果”这一主题的一部分。

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