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Replicated high-density genetic maps of two great tit populations reveal fine-scalegenomic departures from sex-equal recombination rates

机译:复制的两个大山雀种群的高密度遗传图谱显示出精细的尺度性别平等重组率的基因组偏离

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摘要

Linking variation in quantitative traits to variation in the genome is an important, but challenging task in the study of life-history evolution. Linkage maps provide a valuable tool for the unravelling of such trait−gene associations. Moreover, they give insight into recombination landscapes and between-species karyotype evolution. Here we used genotype data, generated from a 10k single-nucleotide polymorphism (SNP) chip, of over 2000 individuals to produce high-density linkage maps of the great tit (Parus major), a passerine bird that serves as a model species for ecological and evolutionary questions. We created independent maps from two distinct populations: a captive F2-cross from The Netherlands (NL) and a wild population from the United Kingdom (UK). The two maps contained 6554 SNPs in 32 linkage groups, spanning 2010 cM and 1917 cM for the NL and UK populations, respectively, and were similar in size and marker order. Subtle levels of heterochiasmy within and between chromosomes were remarkably consistent between the populations, suggesting that the local departures from sex-equal recombination rates have evolved. This key and surprising result would have been impossible to detect if only one population was mapped. A comparison with zebra finch Taeniopygia guttata, chicken Gallus gallus and the green anole lizard Anolis carolinensis genomes provided further insight into the evolution ofavian karyotypes.
机译:将数量性状的变异与基因组的变异联系起来是生命历史进化研究中一项重要但具有挑战性的任务。连锁图为解开此类特征基因关联提供了一种有价值的工具。此外,他们提供了重组景观和种间核型进化的见识。在这里,我们使用了由2000多名个体的10k单核苷酸多态性(SNP)芯片产生的基因型数据,来生成大山雀(大山雀)的高密度连锁图谱,这是一种雀形目鸟,可作为生态学的模型物种和进化问题。我们从两个不同的种群中创建了独立的地图:来自荷兰(NL)的俘虏F2杂交和来自英国(UK)的野生种群。这两个图包含32个连锁组的6554个SNP,分别跨越NL和UK人群的2010 spancM和1917 cM,并且大小和标记顺序相似。染色体内部和染色体之间的微弱杂合水平在群体之间非常一致,这表明性别平等重组率已经出现局部偏离。如果仅绘制一个人口图,将无法检测到这一关键而令人惊讶的结果。与斑马雀科Taeniopygia guttata,鸡背带鸡和绿色Anole蜥蜴Anolis carolinensis基因组的比较提供了进一步的了解。鸟类核型。

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