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Genome-wide standing variation facilitates long-term response to bidirectional selection for antibody response in chickens

机译:全基因组范围内的变异有助于对双向选择的长期反应,以实现鸡的抗体反应

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Background Long-term selection experiments provide a powerful approach to gain empirical insights into adaptation, allowing researchers to uncover the targets of selection and infer their contributions to the mode and tempo of adaptation. Here we implement a pooled genome re-sequencing approach to investigate the consequences of 39 generations of bidirectional selection in White Leghorn chickens on a humoral immune trait: antibody response to sheep red blood cells. Results We observed wide genome involvement in response to this selection regime. Many genomic regions were highly differentiated resulting from this experimental selection regime, an involvement of up to 20% of the chicken genome (208.8?Mb). While genetic drift has certainly contributed to this, we implement gene ontology, association analysis and population simulations to increase our confidence in candidate selective sweeps. Three strong candidate genes, MHC , SEMA5A and TGFBR2 , are also presented. Conclusions The extensive genomic changes highlight the polygenic genetic architecture of antibody response in these chicken populations, which are derived from a common founder population, demonstrating the extent of standing immunogenetic variation available at the onset of selection.
机译:背景技术长期选择实验提供了一种强大的方法来获得对适应的经验性见解,使研究人员能够发现选择的目标并推断其对适应方式和速度的贡献。在这里,我们实现了一种汇集的基因组重测序方法,以研究白来亨鸡中39代双向选择对体液免疫特征:对绵羊红细胞的抗体反应的后果。结果我们观察到广泛的基因组参与对这种选择方案的响应。这种实验选择机制导致了许多基因组区域的高度分化,涉及高达20%的鸡基因组(208.8?Mb)。尽管遗传漂移确实对此做出了贡献,但我们实施了基因本体论,关联分析和种群模拟,以提高我们对候选选择性扫描的信心。还介绍了三个强候选基因,MHC,SEMA5A和TGFBR2。结论广泛的基因组变化突显了这些鸡种群中抗体反应的多基因遗传结构,它们来自共同的基础种群,证明了选择开始时可利用的常规免疫遗传变异的程度。

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