Distinct patterns of genetic variation at low-recombining genomic regions represent haplotype structure.

IF 3.1 2区 环境科学与生态学 Q2 ECOLOGY Evolution Pub Date : 2024-12-02 DOI:10.1093/evolut/qpae117
Jun Ishigohoka, Karen Bascón-Cardozo, Andrea Bours, Janina Fuß, Arang Rhie, Jacquelyn Mountcastle, Bettina Haase, William Chow, Joanna Collins, Kerstin Howe, Marcela Uliano-Silva, Olivier Fedrigo, Erich D Jarvis, Javier Pérez-Tris, Juan Carlos Illera, Miriam Liedvogel
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引用次数: 0

Abstract

Genomic regions sometimes show patterns of genetic variation distinct from the genome-wide population structure. Such deviations have often been interpreted to represent effects of selection. However, systematic investigation of whether and how non-selective factors, such as recombination rates, can affect distinct patterns has been limited. Here, we associate distinct patterns of genetic variation with reduced recombination rates in a songbird, the Eurasian blackcap (Sylvia atricapilla), using a new reference genome assembly, whole-genome resequencing data and recombination maps. We find that distinct patterns of genetic variation reflect haplotype structure at genomic regions with different prevalence of reduced recombination rate across populations. At low-recombining regions shared in most populations, distinct patterns reflect conspicuous haplotypes segregating in multiple populations. At low-recombining regions found only in a few populations, distinct patterns represent variance among cryptic haplotypes within the low-recombining populations. With simulations, we confirm that these distinct patterns evolve neutrally by reduced recombination rate, on which the effects of selection can be overlaid. Our results highlight that distinct patterns of genetic variation can emerge through evolutionary reduction of local recombination rate. The recombination landscape as an evolvable trait therefore plays an important role determining the heterogeneous distribution of genetic variation along the genome.

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低重组基因组区域不同的遗传变异模式代表了单体型结构。
基因组区域有时会显示出与全基因组群体结构不同的遗传变异模式。这种偏差通常被解释为选择的影响。然而,对重组率等非选择性因素是否以及如何影响不同模式的系统研究却很有限。在这里,我们利用新的参考基因组组装、全基因组重测序数据和重组图谱,将鸣禽欧亚黑冠鸟(Sylvia atricapilla)不同的遗传变异模式与重组率降低联系起来。我们发现,在不同种群重组率降低的基因组区域,不同的遗传变异模式反映了不同的单倍型结构。在大多数种群共享的低重组区域,不同的模式反映了在多个种群中分离的显著单倍型。在仅见于少数种群的低重组区域,不同的模式反映了低重组种群中隐性单倍型之间的差异。通过模拟,我们证实这些不同的模式是通过降低重组率而中性演化的,在此基础上可以叠加选择的影响。我们的研究结果突出表明,通过进化降低局部重组率,可以出现不同的遗传变异模式。因此,重组景观作为一种可进化的特征,在决定基因组遗传变异的异质性分布方面起着重要作用。
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来源期刊
Evolution
Evolution 环境科学-进化生物学
CiteScore
5.00
自引率
9.10%
发文量
0
审稿时长
3-6 weeks
期刊介绍: Evolution, published for the Society for the Study of Evolution, is the premier publication devoted to the study of organic evolution and the integration of the various fields of science concerned with evolution. The journal presents significant and original results that extend our understanding of evolutionary phenomena and processes.
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