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从预制砖快速进化:三刺鱼(Gasterosteus aculeatus)年轻淡水种群的基因组学

Fast evolution from precast bricks: genomics of young freshwater populations of threespine stickleback Gasterosteus aculeatus.

作者信息

Terekhanova Nadezhda V, Logacheva Maria D, Penin Aleksey A, Neretina Tatiana V, Barmintseva Anna E, Bazykin Georgii A, Kondrashov Alexey S, Mugue Nikolai S

机构信息

Department of Bioinformatics and Bioengineering, M. V. Lomonosov Moscow State University, Moscow, Russia.

Department of Bioinformatics and Bioengineering, M. V. Lomonosov Moscow State University, Moscow, Russia; A. N. Belozersky Institute of Physico-Chemical Biology, M. V. Lomonosov Moscow State University, Moscow, Russia.

出版信息

PLoS Genet. 2014 Oct 9;10(10):e1004696. doi: 10.1371/journal.pgen.1004696. eCollection 2014 Oct.

Abstract

Adaptation is driven by natural selection; however, many adaptations are caused by weak selection acting over large timescales, complicating its study. Therefore, it is rarely possible to study selection comprehensively in natural environments. The threespine stickleback (Gasterosteus aculeatus) is a well-studied model organism with a short generation time, small genome size, and many genetic and genomic tools available. Within this originally marine species, populations have recurrently adapted to freshwater all over its range. This evolution involved extensive parallelism: pre-existing alleles that adapt sticklebacks to freshwater habitats, but are also present at low frequencies in marine populations, have been recruited repeatedly. While a number of genomic regions responsible for this adaptation have been identified, the details of selection remain poorly understood. Using whole-genome resequencing, we compare pooled genomic samples from marine and freshwater populations of the White Sea basin, and identify 19 short genomic regions that are highly divergent between them, including three known inversions. 17 of these regions overlap protein-coding genes, including a number of genes with predicted functions that are relevant for adaptation to the freshwater environment. We then analyze four additional independently derived young freshwater populations of known ages, two natural and two artificially established, and use the observed shifts of allelic frequencies to estimate the strength of positive selection. Adaptation turns out to be quite rapid, indicating strong selection acting simultaneously at multiple regions of the genome, with selection coefficients of up to 0.27. High divergence between marine and freshwater genotypes, lack of reduction in polymorphism in regions responsible for adaptation, and high frequencies of freshwater alleles observed even in young freshwater populations are all consistent with rapid assembly of G. aculeatus freshwater genotypes from pre-existing genomic regions of adaptive variation, with strong selection that favors this assembly acting simultaneously at multiple loci.

摘要

适应性是由自然选择驱动的;然而,许多适应性是由在很长时间尺度上起作用的弱选择引起的,这使得对其研究变得复杂。因此,在自然环境中全面研究选择很少是可能的。三刺鱼(Gasterosteus aculeatus)是一种经过充分研究的模式生物,具有较短的世代时间、较小的基因组大小,并且有许多可用的遗传和基因组工具。在这个原本生活在海洋中的物种中,其种群在其分布范围内反复适应了淡水环境。这种进化涉及广泛的平行性:那些使刺鱼适应淡水栖息地、但在海洋种群中也以低频存在的预先存在的等位基因被反复利用。虽然已经确定了一些负责这种适应性的基因组区域,但选择的细节仍知之甚少。我们使用全基因组重测序技术,比较了白海盆地海洋和淡水种群的混合基因组样本,确定了19个在它们之间高度分化的短基因组区域,包括三个已知的倒位。其中17个区域与蛋白质编码基因重叠,包括一些具有与适应淡水环境相关预测功能的基因。然后,我们分析了另外四个已知年龄的独立衍生的年轻淡水种群,两个是自然形成的,两个是人工建立的,并利用观察到的等位基因频率变化来估计正选择的强度。结果表明适应性相当迅速,这表明在基因组的多个区域同时存在强大的选择作用,选择系数高达0.27。海洋和淡水基因型之间的高度分化、负责适应的区域中多态性没有降低,以及即使在年轻的淡水种群中也观察到高频率的淡水等位基因,所有这些都与从预先存在的适应性变异基因组区域快速组装三刺鱼淡水基因型一致,同时在多个位点存在有利于这种组装的强大选择作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46e3/4191950/025e72bd1210/pgen.1004696.g001.jpg

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