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在一个鸦科物种复合体中,多个接触区的异质基因组分化的演变。

Evolution of heterogeneous genome differentiation across multiple contact zones in a crow species complex.

机构信息

Department of Evolutionary Biology and Science for Life Laboratories, Uppsala University, Norbyvägen 18D, Uppsala 75236, Sweden.

Department of Zoology, Population Genetics, Stockholm University, Stockholm SE-106 91, Sweden.

出版信息

Nat Commun. 2016 Oct 31;7:13195. doi: 10.1038/ncomms13195.

Abstract

Uncovering the genetic basis of species diversification is a central goal in evolutionary biology. Yet, the link between the accumulation of genomic changes during population divergence and the evolutionary forces promoting reproductive isolation is poorly understood. Here, we analysed 124 genomes of crow populations with various degrees of genome-wide differentiation, with parallelism of a sexually selected plumage phenotype, and ongoing hybridization. Overall, heterogeneity in genetic differentiation along the genome was best explained by linked selection exposed on a shared genome architecture. Superimposed on this common background, we identified genomic regions with signatures of selection specific to independent phenotypic contact zones. Candidate pigmentation genes with evidence for divergent selection were only partly shared, suggesting context-dependent selection on a multigenic trait architecture and parallelism by pathway rather than by repeated single-gene effects. This study provides insight into how various forms of selection shape genome-wide patterns of genomic differentiation as populations diverge.

摘要

揭示物种多样化的遗传基础是进化生物学的一个核心目标。然而,人们对种群分化过程中基因组变化的积累与促进生殖隔离的进化力量之间的联系知之甚少。在这里,我们分析了 124 个具有不同程度全基因组分化、具有性选择羽色表型平行性和正在进行杂交的乌鸦种群的基因组。总体而言,基因组上连锁选择暴露的共享基因组结构可以最好地解释基因组中遗传分化的异质性。在这个共同背景之上,我们确定了与独立表型接触区特异性选择相关的基因组区域。具有分歧选择证据的候选色素基因仅部分共享,这表明多基因性状结构上的上下文相关选择以及通过途径而不是通过重复的单基因效应产生的平行性。这项研究深入了解了随着种群的分化,各种形式的选择如何塑造全基因组的基因组分化模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a308/5095515/4bada7d5dc14/ncomms13195-f1.jpg

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