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染色体融合促进了三刺鱼对不同环境的适应。

Chromosomal Fusions Facilitate Adaptation to Divergent Environments in Threespine Stickleback.

机构信息

Division of Evolutionary Ecology, Institute of Ecology and Evolution, University of Bern, Bern, Switzerland.

Division of Aquatic Ecology and Evolution, Institute of Ecology and Evolution, University of Bern, Bern, Switzerland.

出版信息

Mol Biol Evol. 2022 Feb 3;39(2). doi: 10.1093/molbev/msab358.

Abstract

Chromosomal fusions are hypothesized to facilitate adaptation to divergent environments, both by bringing together previously unlinked adaptive alleles and by creating regions of low recombination that facilitate the linkage of adaptive alleles; but, there is little empirical evidence to support this hypothesis. Here, we address this knowledge gap by studying threespine stickleback (Gasterosteus aculeatus), in which ancestral marine fish have repeatedly adapted to freshwater across the northern hemisphere. By comparing the threespine and ninespine stickleback (Pungitius pungitius) genomes to a de novo assembly of the fourspine stickleback (Apeltes quadracus) and an outgroup species, we find two chromosomal fusion events involving the same chromosomes have occurred independently in the threespine and ninespine stickleback lineages. On the fused chromosomes in threespine stickleback, we find an enrichment of quantitative trait loci underlying traits that contribute to marine versus freshwater adaptation. By comparing whole-genome sequences of freshwater and marine threespine stickleback populations, we also find an enrichment of regions under divergent selection on these two fused chromosomes. There is elevated genetic diversity within regions under selection in the freshwater population, consistent with a simulation study showing that gene flow can increase diversity in genomic regions associated with local adaptation and our demographic models showing gene flow between the marine and freshwater populations. Integrating our results with previous studies, we propose that these fusions created regions of low recombination that enabled the formation of adaptative clusters, thereby facilitating freshwater adaptation in the face of recurrent gene flow between marine and freshwater threespine sticklebacks.

摘要

染色体融合被认为有助于适应不同的环境,这既可以通过将以前不相关的适应性等位基因聚集在一起,也可以通过形成低重组区域来促进适应性等位基因的连锁;但是,几乎没有经验证据支持这一假说。在这里,我们通过研究三刺鱼(Gasterosteus aculeatus)来解决这一知识空白,在三刺鱼中,祖先的海洋鱼类已经在整个北半球多次适应淡水环境。通过比较三刺鱼和九刺鱼(Pungitius pungitius)的基因组与四射鱼(Apeltes quadracus)的从头组装和一个外群物种,我们发现两个涉及相同染色体的染色体融合事件在三刺鱼和九刺鱼谱系中独立发生。在三刺鱼的融合染色体上,我们发现了与海洋与淡水适应相关的性状的数量性状基因座的富集。通过比较淡水和海洋三刺鱼群体的全基因组序列,我们还发现这两个融合染色体上的区域存在分歧选择的富集。在淡水群体中,选择区域内的遗传多样性升高,这与一项模拟研究一致,该研究表明基因流可以增加与局部适应相关的基因组区域的多样性,并且我们的人口模型表明海洋和淡水三刺鱼群体之间存在基因流。将我们的结果与以前的研究相结合,我们提出这些融合产生了低重组区域,从而促进了适应性簇的形成,从而在海洋和淡水三刺鱼之间的反复基因流的情况下促进了淡水适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fb6/8826639/4483c13e591c/msab358f1.jpg

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