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Next-generation genotyping of hypervariable loci in many individuals of a non-model species: technical and theoretical implications

机译:非模型物种的许多个体中的高变位点的下一代基因分型:技术和理论意义

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摘要

BackgroundAcross species, diversity at the Major Histocompatibility Complex (MHC) is critical to disease resistance and population health; however, use of MHC diversity to quantify the genetic health of populations has been hampered by the extreme variation found in MHC genes. Next generation sequencing (NGS) technology generates sufficient data to genotype even the most diverse species, but workflows for distinguishing artifacts from alleles are still under development. We used NGS to evaluate the MHC diversity of over 300 captive and wild ring-tailed lemurs (Lemur catta: Primates: Mammalia). We modified a published workflow to address errors that arise from deep sequencing individuals and tested for evidence of selection at the most diverse MHC genes.
机译:背景技术在整个物种中,主要组织相容性复合体(MHC)的多样性对于抗病性和人口健康至关重要。但是,MHC基因的极端变异阻碍了使用MHC多样性来量化人群的遗传健康。下一代测序(NGS)技术可以生成足够的数据来对最多样化的物种进行基因分型,但是用于区分伪影和等位基因的工作流程仍在开发中。我们使用NGS评估了300多种圈养和野生环尾狐猴(Lemur catta:Primates:Mammalia)的MHC多样性。我们修改了已发布的工作流程,以解决由深度测序人员引起的错误,并测试了在最多样化的MHC基因中进行选择的证据。

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