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转座元件的基因组分布是由空间变化的净化选择驱动的。

The genomic distribution of transposable elements is driven by spatially variable purifying selection.

机构信息

Institut für Populationsgenetik, Vetmeduni Vienna, Veterinärplatz 1, 1210 Wien, Austria.

Vienna Graduate School of Population Genetics, Vetmeduni Vienna, Veterinärplatz 1, 1210 Vienna, Austria.

出版信息

Nucleic Acids Res. 2023 Sep 22;51(17):9203-9213. doi: 10.1093/nar/gkad635.

Abstract

It is widely accepted that the genomic distribution of transposable elements (TEs) mainly reflects the outcome of purifying selection and insertion bias (1). Nevertheless, the relative importance of these two evolutionary forces could not be tested thoroughly. Here, we introduce an experimental system, which allows separating purifying selection from TE insertion bias. We used experimental evolution to study the TE insertion patterns in Drosophila simulans founder populations harboring 1040 insertions of an active P-element. After 10 generations at a large population size, we detected strong selection against P-element insertions. The exception were P-element insertions in genomic regions for which a strong insertion bias has been proposed (2-4). Because recurrent P-element insertions cannot explain this pattern, we conclude that purifying selection, with variable strength along the chromosomes, is the major determinant of the genomic distribution of P-elements. Genomic regions with relaxed purifying selection against P-element insertions exhibit normal levels of purifying selection against base substitutions. This suggests that different types of purifying selection operate on base substitutions and P-element insertions. Our results highlight the power of experimental evolution to understand basic evolutionary processes, which are difficult to infer from patterns of natural variation alone.

摘要

普遍认为,转座元件(TEs)的基因组分布主要反映了纯化选择和插入偏向(1)的结果。然而,这两种进化力量的相对重要性还不能被彻底检验。在这里,我们引入了一个实验系统,它可以将纯化选择与 TE 插入偏向分开。我们使用实验进化来研究携带 1040 个活跃 P 元件插入的 Drosophila simulans 创始人种群中的 TE 插入模式。在大种群大小下经历 10 代后,我们检测到强烈的 P 元件插入选择。例外的是,已经提出了强烈插入偏向的基因组区域中的 P 元件插入(2-4)。由于反复的 P 元件插入不能解释这种模式,我们得出结论,沿着染色体具有可变强度的纯化选择是 P 元件基因组分布的主要决定因素。对 P 元件插入具有放松纯化选择的基因组区域表现出对碱基替换的正常水平的纯化选择。这表明不同类型的纯化选择作用于碱基替换和 P 元件插入。我们的结果强调了实验进化理解基本进化过程的力量,这些过程仅从自然变异模式推断是困难的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2cc/10516647/44cdb5231e55/gkad635figgra1.jpg

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