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An 85K SNP Array Uncovers Inbreeding and Cryptic Relatedness in an Antarctic Fur Seal Breeding Colony

机译:一个85k SNP阵列在南极海豹繁殖殖民地上揭示了近亲繁殖和隐秘相关性

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摘要

High density single nucleotide polymorphism (SNP) arrays allow large numbers of individuals to be rapidly and cost-effectively genotyped at large numbers of genetic markers. However, despite being widely used in studies of humans and domesticated plants and animals, SNP arrays are lacking for most wild organisms. We developed a custom 85K Affymetrix Axiom array for an intensively studied pinniped, the Antarctic fur seal ( ). SNPs were discovered from a combination of genomic and transcriptomic resources and filtered according to strict criteria. Out of a total of 85,359 SNPs tiled on the array, 75,601 (88.6%) successfully converted and were polymorphic in 270 animals from a breeding colony at Bird Island in South Georgia. Evidence was found for inbreeding, with three genomic inbreeding coefficients being strongly intercorrelated and the proportion of the genome in runs of homozygosity being non-zero in all individuals. Furthermore, analysis of genomic relatedness coefficients identified previously unknown first-degree relatives and multiple second-degree relatives among a sample of ostensibly unrelated individuals. Such “cryptic relatedness” within fur seal breeding colonies may increase the likelihood of consanguineous matings and could therefore have implications for understanding fitness variation and mate choice. Finally, we demonstrate the cross-amplification potential of the array in three related pinniped species. Overall, our SNP array will facilitate future studies of Antarctic fur seals and has the potential to serve as a more general resource for the wider pinniped research community.
机译:高密度单核苷酸多态性(SNP)阵列允许大量的个体在大量的遗传标记下迅速且经济有效地进行基因分型。然而,尽管广泛用于人类和驯养植物和动物的研究,但缺乏大多数野生生物的SNP阵列。我们开发了一种定制的85K Affymetrix Axiom阵列,用于集中学习钉子,南极海豹()。从基因组和转录组合资源的组合发现SNP,并根据严格的标准过滤。在阵列上铺设了85,359个SNP,75,601(88.6%)成功转化,并在南格鲁奇岛鸟岛的繁殖殖民地中的270只动物中是多态性的。发现了近亲繁殖的证据,三种基因组近亲繁殖系数被强烈互连,并且基因组在所有个体中非零的纯合子的比例。此外,基因组相关性系数的分析鉴定了先前未知的一级亲属和过硬的无关个体样本中的多个第二度亲属。这种“隐秘相关性”在皮毛密封殖民地内可能会增加近肠果的可能性,因此可以对理解健身变异和伴侣选择具有影响。最后,我们展示了三种相关的尖端物种中阵列的交叉放大电位。总体而言,我们的SNP阵列将促进对南极海豹的未来研究,并有可能作为更广泛的Pinniped Research界的更广泛资源。

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