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Diversifying Selection Between Pure-Breed and Free-Breeding Dogs Inferred from Genome-Wide SNP Analysis

机译:从全基因组SNP分析推断纯种狗和自由种狗之间的差异选择

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摘要

Domesticated species are often composed of distinct populations differing in the character and strength of artificial and natural selection pressures, providing a valuable model to study adaptation. In contrast to pure-breed dogs that constitute artificially maintained inbred lines, free-ranging dogs are typically free-breeding, i.e., unrestrained in mate choice. Many traits in free-breeding dogs (FBDs) may be under similar natural and sexual selection conditions to wild canids, while relaxation of sexual selection is expected in pure-breed dogs. We used a Bayesian approach with strict false-positive control criteria to identify FST-outlier SNPs between FBDs and either European or East Asian breeds, based on 167,989 autosomal SNPs. By identifying outlier SNPs located within coding genes, we found four candidate genes under diversifying selection shared by these two comparisons. Three of them are associated with the Hedgehog (HH) signaling pathway regulating vertebrate morphogenesis. A comparison between FBDs and East Asian breeds also revealed diversifying selection on the BBS6 gene, which was earlier shown to cause snout shortening and dental crowding via disrupted HH signaling. Our results suggest that relaxation of natural and sexual selection in pure-breed dogs as opposed to FBDs could have led to mild changes in regulation of the HH signaling pathway. HH inhibits adhesion and the migration of neural crest cells from the neural tube, and minor deficits of these cells during embryonic development have been proposed as the underlying cause of “domestication syndrome.” This suggests that the process of breed formation involved the same genetic and developmental pathways as the process of domestication.
机译:驯化物种通常由不同的种群组成,这些种群的人工和自然选择压力的特征和强度不同,为研究适应性提供了有价值的模型。与构成人工维持的近交系的纯种犬相反,自由放养的犬通常是自由繁殖的,即不受配偶选择的限制。自由繁殖犬(FBD)的许多特征可能处于与野生犬科动物相似的自然和性选择条件下,而纯种犬则有望放松性选择。我们基于严格的假阳性控制标准,采用贝叶斯方法,基于167,989个常染色体SNP来鉴定FBD与欧洲或东亚品种之间的FST离群SNP。通过鉴定位于编码基因内的离群单核苷酸多态性,我们发现了这两个比较共有的四个候选基因处于多样化选择之下。其中三个与调节脊椎动物形态发生的刺猬(HH)信号通路相关。 FBD和东亚品种之间的比较也显示了BBS6基因的多样化选择,该基因先前被证明会通过破坏HH信号而导致口鼻短缩和牙齿拥挤。我们的结果表明,与FBD相反,纯种狗的自然选择和性选择放松可能导致HH信号通路调节的轻度变化。 HH抑制粘附和神经c细胞从神经管的迁移,并且这些细胞在胚胎发育过程中的少量缺陷已被认为是“驯养综合症”的根本原因。这表明品种形成的过程涉及与驯化过程相同的遗传和发育途径。

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