Genetic diversity and selection signatures in sheep breeds.

IF 2 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Julia Lisboa Rodrigues, Larissa Graciano Braga, Rafael Nakamura Watanabe, Flávio Schramm Schenkel, Donagh Pearse Berry, Marcos Eli Buzanskas, Danísio Prado Munari
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Abstract

Natural and artificial selection in domesticated animals can cause specific changes in genomic regions known as selection signatures. Our study used the integrated haplotype score (iHS) and Tajima's D tests within non-overlapping windows of 100 kb to identify selection signatures, in addition to genetic diversity and linkage disequilibrium estimates in 9498 sheep from breeds in Ireland (Belclare, Charollais, Suffolk, Texel, and Vendeen). The mean observed and expected heterozygosity for all the sheep breeds were 0.353 and 0.355, respectively. Suffolk had the least genetic variation and, along with Texel, had slower linkage disequilibrium decay. iHS and Tajima's D detected selection signatures for all breeds, with some regions overlapping, thus forming longer segments of selection signatures. Common selection signatures were identified across iHS and Tajima's D methods for all breeds, with Belclare and Texel having several common regions under positive selection. Several genes were detected within the selection signature regions, including ITGA4, TLR3, and TGFB2 related to the immune system against endoparasites; DLG1, ROBO2, MXI1, MTMR2, CEP57, and FAM78B related to reproductive traits; WDR70 related to milk traits; SCHM1 and MYH15 related to meat traits; and TAS2R4, TAS2R39, and TAS2R40 related to adaptive traits. In conclusion, our results demonstrated moderate genetic diversity in the sheep breeds and detected and characterized selection signatures harboring genes associated with reproductive traits, milk production, meat production, and adaptive traits such as endoparasite resistance.

绵羊品种的遗传多样性和选择特征。
驯养动物的自然和人工选择可以在被称为选择特征的基因组区域引起特定的变化。我们的研究使用综合单倍型评分(iHS)和Tajima's D测试,在100 kb的非重叠窗口内确定选择特征,以及来自爱尔兰品种(Belclare, Charollais, Suffolk, Texel和Vendeen)的9498只羊的遗传多样性和连锁不平衡估计。各绵羊品种的平均观察杂合度和期望杂合度分别为0.353和0.355。萨福克的遗传变异最小,与特塞尔一样,连锁不平衡衰退速度较慢。his和Tajima的D检测到所有品种的选择特征,有些区域重叠,从而形成较长的选择特征片段。所有品种的his和Tajima的D方法都确定了共同的选择特征,其中Belclare和Texel有几个共同的正选择区域。在选择特征区检测到几个基因,包括ITGA4、TLR3和TGFB2,这些基因与免疫系统对抗内寄生虫有关;与生殖性状相关的DLG1、ROBO2、MXI1、MTMR2、CEP57、FAM78B;与乳性状相关的WDR70;与肉质性状相关的SCHM1和MYH15;TAS2R4、TAS2R39、TAS2R40与适应性状相关。总之,我们的研究结果表明,绵羊品种中存在适度的遗传多样性,并检测和表征了与生殖性状、产奶量、肉类产量和适应性性状(如抗内寄生虫)相关的基因选择特征。
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来源期刊
Journal of Applied Genetics
Journal of Applied Genetics 生物-生物工程与应用微生物
CiteScore
4.30
自引率
4.20%
发文量
62
审稿时长
6-12 weeks
期刊介绍: The Journal of Applied Genetics is an international journal on genetics and genomics. It publishes peer-reviewed original papers, short communications (including case reports) and review articles focused on the research of applicative aspects of plant, human, animal and microbial genetics and genomics.
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