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用于复杂和混合 DNA 样本的 2b-RAD 亲权分析流水线。

A 2b-RAD parentage analysis pipeline for complex and mixed DNA samples.

机构信息

Department of Integrative Biology, The University of Texas at Austin, Austin, TX 78712, USA.

Department of Integrative Biology, The University of Texas at Austin, Austin, TX 78712, USA; Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, TX 78712, USA; Institue for Neuroscience, The University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Forensic Sci Int Genet. 2021 Nov;55:102590. doi: 10.1016/j.fsigen.2021.102590. Epub 2021 Sep 3.

Abstract

Next-generation sequencing technology has revolutionized genotyping in many fields of study, yet parentage analysis often still relies on microsatellite markers that are costly to generate and are currently available only for a limited number of species. 2b-RAD sequencing (2b-RAD) is a DNA sequencing technique developed for ecological population genomics that utilizes type IIB restriction enzymes to generate consistent, uniform fragments across samples. This technology is inexpensive, effective with low DNA inputs, and robust to DNA degradation. Here, we developed a probabilistic genotyping-by-sequencing genetic testing pipeline for parentage analysis by using 2b-RAD for inferring familial relationships from mixed DNA samples and populations. Our approach to partial paternity assignment utilizes a novel weighted outlier paternity index (WOPI) adapted for next-generation sequencing data and an identity-by-state (IBS) matrix-based clustering method for pedigree reconstruction. The combination of these two parentage assignment methods overcomes two major obstacles faced by other genetic testing methods: 1) It allows detection of parentage when closely related or inbred individuals are in the alleged parent population (e.g., in laboratory strains); and 2) it resolves mixed DNA samples. We successfully demonstrate this novel approach by correctly inferring paternity for samples pooled from multiple offspring (i.e., entire clutches) in a highly inbred population of an East African cichlid fish. The unique advantages of 2b-RAD in combination with our bioinformatics pipeline enable straightforward and cost-effective parentage analysis in any species regardless of genomic resources available.

摘要

下一代测序技术在许多研究领域彻底改变了基因分型,但亲子鉴定分析通常仍然依赖于微卫星标记,这些标记生成成本高昂,且目前仅可用于有限数量的物种。2b-RAD 测序(2b-RAD)是一种用于生态种群基因组学的 DNA 测序技术,利用 IIB 型限制性内切酶在样本中产生一致且均匀的片段。这种技术成本低廉,适用于低 DNA 输入,并且对 DNA 降解具有很强的稳健性。在这里,我们开发了一种基于 2b-RAD 的概率基因分型测序遗传测试管道,用于通过推断混合 DNA 样本和种群中的家族关系来进行亲子鉴定。我们的部分亲子关系鉴定方法利用了一种新颖的加权异常亲子指数(WOPI),适用于下一代测序数据,以及基于身份状态(IBS)矩阵的聚类方法进行家谱重建。这两种亲子关系鉴定方法的结合克服了其他遗传测试方法面临的两个主要障碍:1)当近亲或近交个体在所谓的亲代群体中时,它允许检测亲子关系(例如,在实验室品系中);2)它解决了混合 DNA 样本的问题。我们通过成功地从东非慈鲷鱼的高度近交种群中混合多个后代(即整个卵窝)的样本推断亲子关系,成功地证明了这种新方法。2b-RAD 的独特优势与我们的生物信息学管道相结合,使任何物种都可以进行简单且具有成本效益的亲子鉴定,而无需考虑可用的基因组资源。

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