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Functional and evolutionary analysis of Korean bob-tailed native dog using whole-genome sequencing data

机译:利用全基因组测序数据分析韩国短尾native狗的功能和进化

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摘要

Rapid and cost effective production of large-scale genome data through next-generation sequencing has enabled population-level studies of various organisms to identify their genotypic differences and phenotypic consequences. This is also used to study indigenous animals with historical and economical values, although they are less studied than model organisms. The objective of this study was to perform functional and evolutionary analysis of Korean bob-tailed native dog Donggyeong with distinct tail and agility phenotype using whole-genome sequencing data by using population and comparative genomics approaches. Based on the uniqueness of non-synonymous single nucleotide polymorphisms obtained from next-generation sequencing data, Donggyeong dog-specific genes/proteins and their functions were identified by comparison with 12 other dog breeds and six other related species. These proteins were further divided into subpopulation-specific ones with different tail length and protein interaction-level signatures were investigated. Finally, the trajectory of shaping protein interactions of subpopulation-specific proteins during evolution was uncovered. This study expands our knowledge of Korean native dogs. Our results also provide a good example of using whole-genome sequencing data for population-level analysis in closely related species.
机译:通过下一代测序快速而经济高效地产生大规模基因组数据,已使各种生物的群体水平研究能够识别其基因型差异和表型后果。这也用于研究具有历史和经济价值的土著动物,尽管与模型生物相比研究较少。这项研究的目的是使用种群和比较基因组学方法,利用全基因组测序数据对具有明显尾巴和敏捷表型的韩国短尾本地狗东京进行功能和进化分析。根据从下一代测序数据获得的非同义单核苷酸多态性的独特性,通过与其他12个犬种和其他6个相关物种进行比较,鉴定了东京犬特有的基因/蛋白质及其功能。这些蛋白质被进一步分为具有不同尾巴长度的亚群特异性蛋白质,并研究了蛋白质相互作用水平的特征。最后,揭示了进化过程中亚群特异性蛋白的成型蛋白相互作用的轨迹。这项研究扩展了我们对韩国土拨鼠的了解。我们的结果也提供了一个很好的例子,可以使用全基因组测序数据对紧密相关物种进行种群水平分析。

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