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Strategies for determining kinship in wild populations using genetic data

机译:利用遗传数据确定野生种群亲属关系的策略

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Abstract Knowledge of kin relationships between members of wild animal populations has broad application in ecology and evolution research by allowing the investigation of dispersal dynamics, mating systems, inbreeding avoidance, kin recognition, and kin selection as well as aiding the management of endangered populations. However, the assessment of kinship among members of wild animal populations is difficult in the absence of detailed multigenerational pedigrees. Here, we first review the distinction between genetic relatedness and kinship derived from pedigrees and how this makes the identification of kin using genetic data inherently challenging. We then describe useful approaches to kinship classification, such as parentage analysis and sibship reconstruction, and explain how the combined use of marker systems with biparental and uniparental inheritance, demographic information, likelihood analyses, relatedness coefficients, and estimation of misclassification rates can yield reliable classifications of kinship in groups with complex kin structures. We outline alternative approaches for cases in which explicit knowledge of dyadic kinship is not necessary, but indirect inferences about kinship on a group- or population-wide scale suffice, such as whether more highly related dyads are in closer spatial proximity. Although analysis of highly variable microsatellite loci is still the dominant approach for studies on wild populations, we describe how the long-awaited use of large-scale single-nucleotide polymorphism and sequencing data derived from noninvasive low-quality samples may eventually lead to highly accurate assessments of varying degrees of kinship in wild populations.
机译:摘要野生动物种群之间亲缘关系的知识可以通过研究扩散动态,交配系统,近亲回避,亲缘识别和亲缘选择以及协助濒危种群的管理等手段在生态学和进化研究中得到广泛应用。但是,在缺乏详细的多代谱系的情况下,很难评估野生动物种群成员之间的亲属关系。在这里,我们首先回顾遗传亲缘关系和由血统书获得的亲属之间的区别,以及这如何使利用遗传数据固有地挑战性来鉴定亲属。然后,我们描述亲属分类的有用方法,例如父母身份分析和同胞关系重建,并说明结合双亲和单亲遗传的标记系统,人口统计学信息,可能性分析,相关性系数和错误分类率的估计如何结合使用可以产生可靠的分类亲属结构复杂的群体中的亲属关系。对于不需要明确了解亲缘关系的情况,我们概述了替代方法,但是在群体或整个人口范围内,间接推论亲属关系就足够了,例如,高度相关的二元组是否在空间上更接近。尽管高可变微卫星基因座的分析仍然是野生种群研究的主要方法,但我们描述了人们期待已久的大规模使用单核苷酸多态性和从无创低质量样品中获得的测序数据可能最终导致高度准确的结果。对野生种群不同亲属关系的评估。

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