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利用基因型数据对美国水貂进行群体基因组学研究。

Population genomics of American mink using genotype data.

作者信息

Hu Guoyu, Do Duy Ngoc, Manafiazar Ghader, Kelvin Alyson A, Sargolzaei Mehdi, Plastow Graham, Wang Zhiquan, Miar Younes

机构信息

Department of Animal Science and Aquaculture, Dalhousie University, Truro, NS, Canada.

Vaccine and Infectious Disease Organization (VIDO), University of Saskatchewan, Saskatoon, SK, Canada.

出版信息

Front Genet. 2023 May 9;14:1175408. doi: 10.3389/fgene.2023.1175408. eCollection 2023.

Abstract

Understanding the genetic structure of the target population is critically important to develop an efficient genomic selection program in domestic animals. In this study, 2,973 American mink of six color types from two farms (Canadian Centre for Fur Animal Research (CCFAR), Truro, NS and Millbank Fur Farm (MFF), Rockwood, ON) were genotyped with the Affymetrix Mink 70K panel to compute their linkage disequilibrium (LD) patterns, effective population size (), genetic diversity, genetic distances, and population differentiation and structure. The LD pattern represented by average , decreased to <0.2 when the inter-marker interval reached larger than 350 kb and 650 kb for CCFAR and MFF, respectively, and suggested at least 7,700 and 4,200 single nucleotide polymorphisms (SNPs) be used to obtain adequate accuracy for genomic selection programs in CCFAR and MFF respectively. The for five generations ago was estimated to be 76 and 91 respectively. Our results from genetic distance and diversity analyses showed that American mink of the various color types had a close genetic relationship and low genetic diversity, with most of the genetic variation occurring within rather than between color types. Three ancestral genetic groups was considered the most appropriate number to delineate the genetic structure of these populations. Black (in both CCFAR and MFF) and pastel color types had their own ancestral clusters, while demi, mahogany, and stardust color types were admixed with the three ancestral genetic groups. This study provided essential information to utilize the first medium-density SNP panel for American mink in their genomic studies.

摘要

了解目标群体的遗传结构对于在家畜中开展高效的基因组选择计划至关重要。在本研究中,使用Affymetrix水貂70K芯片对来自两个养殖场(加拿大毛皮动物研究中心(CCFAR),新斯科舍省特鲁罗市和安大略省罗克伍德市的米尔班克毛皮养殖场(MFF))的六种毛色类型的2973只美国水貂进行基因分型,以计算它们的连锁不平衡(LD)模式、有效种群大小()、遗传多样性、遗传距离以及种群分化和结构。当标记间间隔分别达到大于350 kb(CCFAR)和650 kb(MFF)时,由平均表示的LD模式降至<0.2,这表明分别至少需要7700个和4200个单核苷酸多态性(SNP)才能在CCFAR和MFF的基因组选择计划中获得足够的准确性。估计五代前的分别为76和91。我们从遗传距离和多样性分析得出的结果表明,各种毛色类型的美国水貂具有密切的遗传关系和较低的遗传多样性,大多数遗传变异发生在毛色类型内部而非之间。三个祖先遗传群体被认为是描绘这些种群遗传结构的最合适数量。黑色(CCFAR和MFF中均有)和淡色毛色类型有其自己的祖先聚类,而半透明色、桃花心木色和星尘色毛色类型则与三个祖先遗传群体混合。本研究为在基因组研究中利用首个针对美国水貂的中密度SNP芯片提供了重要信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33d6/10234291/10fe1f5c96db/fgene-14-1175408-g001.jpg

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