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Identification and Analysis of Genome-Wide SNPs Provide Insight into Signatures of Selection and Domestication in Channel Catfish (Ictalurus punctatus)

机译:全基因组单核苷酸多态性的鉴定和分析提供了解Channel鱼(Ictalurus punctatus)选择和驯化的特征

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摘要

Domestication and selection for important performance traits can impact the genome, which is most often reflected by reduced heterozygosity in and surrounding genes related to traits affected by selection. In this study, analysis of the genomic impact caused by domestication and artificial selection was conducted by investigating the signatures of selection using single nucleotide polymorphisms (SNPs) in channel catfish (Ictalurus punctatus). A total of 8.4 million candidate SNPs were identified by using next generation sequencing. On average, the channel catfish genome harbors one SNP per 116 bp. Approximately 6.6 million, 5.3 million, 4.9 million, 7.1 million and 6.7 million SNPs were detected in the Marion, Thompson, USDA103, Hatchery strain, and wild population, respectively. The allele frequencies of 407,861 SNPs differed significantly between the domestic and wild populations. With these SNPs, 23 genomic regions with putative selective sweeps were identified that included 11 genes. Although the function for the majority of the genes remain unknown in catfish, several genes with known function related to aquaculture performance traits were included in the regions with selective sweeps. These included hypoxia-inducible factor 1β· HIFιβ ¨ and the transporter gene ATP-binding cassette sub-family B member 5 (ABCB5). HIF1β· is important for response to hypoxia and tolerance to low oxygen levels is a critical aquaculture trait. The large numbers of SNPs identified from this study are valuable for the development of high-density SNP arrays for genetic and genomic studies of performance traits in catfish.
机译:重要表现性状的驯化和选择会影响基因组,这最常反映在与受选择影响的性状相关的基因及其周围基因杂合性降低。在这项研究中,通过研究使用channel鱼(Ictalurus punctatus)的单核苷酸多态性(SNP)进行选择的特征,对驯化和人工选择对基因组的影响进行了分析。通过使用下一代测序,总共鉴定了840万个候选SNP。平均而言,海cat鱼基因组每116 bp包含一个SNP。在马里恩(Marion),汤普森(Thompson),USDA103,孵化场和野生种群中分别检测到大约660万,530万,490万,710万和670万SNP。 407,861个SNP的等位基因频率在家庭种群和野生种群之间存在显着差异。利用这些SNP,鉴定出具有推定的选择性扫描的23个基因组区域,包括11个基因。尽管大多数基因的功能在in鱼中仍是未知的,但是具有选择性功能的区域包括了一些与水产养殖性能性状有关的已知功能的基因。这些包括缺氧诱导因子1β·HIF1β和转运蛋白ATP结合盒亚家族B成员5(ABCB5)。 HIF1β·对于缺氧反应很重要,对低氧的耐受性是关键的水产养殖特性。从这项研究中鉴定出的大量SNP对于开发用于cat鱼性能性状的遗传和基因组研究的高密度SNP阵列非常有价值。

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