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Inferring biological population membership: An exploration of the continuum of genetic relationships.

机译:推断生物种群成员:遗传关系连续性的探索。

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摘要

To easily collect samples in a genetic study, we use proxies for membership in biological populations. This means we are often placing or assigning individuals on the basis of operational designations - closer relationships being family, while distant relationships being population membership or even more distant relationships- being ancestrally related population relationships. While there is a correlation between genetic variation and the operational designation placed on individuals, the designation does not necessarily define the genetic relationship. Genetic relationships exist in a continuum and mapping the relationships among sample members from the proxy to the genetics is not straightforward. My dissertation examines the genetic relationships from two scales: between individuals in a population and between ancestrally related populations.;I first develop a method to examine population membership using just two individuals. The homogeneity method is a statistical test of the null hypothesis that two individuals are unrelated members of the same randomly mating population. This test requires that the pair of individuals be genotyped for a battery of genetic markers, but it does not require information about the pair of individuals or the populations that they might belong to. Potential applications of this test include 1) identifying population stratification in biomedical samples, 2) solving forensic cases from molecular evidence, 3) management of endangered species, and 4) examining human population history.;To examine relationships between populations, I investigate the effect of ancestral population relationships on methods designed to assess population structure. I develop a novel method to simulate multiple SNP genotypes from different populations. This method simulates realistic allele frequencies and captures the shared ancestry of populations so that the user can efficiently choose SNPs with a flexible ascertainment. I then simulate individuals from populations representing a divergent and less divergent phylogenetic tree. I use the simulated data in GHM (generalized hierarchical modeling) and STRUCTURE (Bayesian k-means clustering) to compare the true underlying ancestry.;In summary, my dissertation research provides novel quantitative tools and analyses that aid in understanding the genetics of biological populations.
机译:为了轻松地在基因研究中收集样本,我们使用代理作为生物种群的成员。这意味着我们经常根据业务名称来放置或分配个人-亲密关系是家庭,而远亲关系是人口成员,甚至更远亲关系是祖先相关的人口关系。尽管遗传变异与对个体的操作指定之间存在关联,但指定不一定定义遗传关系。遗传关系存在于一个连续体中,并且映射从代理到遗传学的样本成员之间的关系并不简单。我的论文从两个尺度上研究了遗传关系:一个种群中的个体之间以及祖先相关的种群之间的遗传关系。我首先开发了一种仅使用两个个体来检验种群成员的方法。同质性方法是对两个个体是同一随机交配种群的无关成员的无效假设的统计检验。此测试要求对这对个体进行一连串遗传标记的基因分型,但不需要有关这对个体或他们可能属于的种群的信息。该测试的潜在应用包括:1)确定生物医学样本中的种群分层; 2)从分子证据解决法医案件; 3)濒危物种的管理; 4)检查人类种群的历史。祖先人口关系对旨在评估人口结构的方法的影响。我开发了一种新颖的方法来模拟来自不同人群的多种SNP基因型。该方法模拟了现实的等位基因频率并捕获了群体的共同祖先,因此用户可以灵活地确定有效地选择SNP。然后,我模拟代表不同和较少差异的系统树的种群中的个体。我使用GHM(广义分层建模)和STRUCTURE(贝叶斯k均值聚类)中的模拟数据来比较真实的潜在祖先。;总之,我的论文研究提供了新颖的定量工具和分析,有助于理解生物种群的遗传学。 。

著录项

  • 作者

    Scott, Nicole M.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Biology General.;Biology Biostatistics.;Biology Genetics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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