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Genetic Analysis of Moose Populations from Minnesota and Yellowstone National Park.

机译:明尼苏达州和黄石国家公园驼鹿种群的遗传分析。

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摘要

By assessing the amount and geographic distribution of genetic variation in moose we can better understand how microevolutionary processes and landscape features have influenced that variation. How the distribution of moose changes in the future will be partially dictated by the amount and content of genetic variation moose populations possess. Therefore, it will be useful to acquire more moose population genetic data and to study declining populations. My thesis had two primary objectives: (1) to compare the efficacy of DNA extraction from different biological samples and (2) to genotype a subset of Minnesota moose at a locus known to be associated with chronic wasting disease in other cervid populations. DNA for genetic analyses was extracted from blood, tissue, and pellets. Extracted DNA from all source types was sufficient for genotyping using 15 microsatellites and Sanger sequencing. However, DNA extracted from pellets was of both lower quality and quantity than DNA extracted from blood and tissue. Minnesota moose contain polymorphisms that have been correlated with increased susceptibility to chronic wasting disease in cervids in other areas. These results provide valuable comparisons of efficiency and effectiveness of DNA extraction protocols for tissue, blood, and fecal pellets as well as baseline population genetic data that can be used to detect future genetic changes in these populations.
机译:通过评估驼鹿遗传变异的数量和地理分布,我们可以更好地了解微进化过程和景观特征如何影响这种变异。未来驼鹿变化的分布方式将部分取决于驼鹿种群遗传变异的数量和内容。因此,获得更多的驼鹿种群遗传数据和研究数量下降的种群将是有用的。我的论文有两个主要目标:(1)比较从不同生物样品中提取DNA的功效;(2)在一个已知与其他子宫颈人群慢性浪费疾病相关的基因座上,对明尼苏达州驼鹿的一个亚型进行基因分型。从血液,组织和沉淀物中提取用于遗传分析的DNA。从所有来源类型中提取的DNA足以使用15个微卫星和Sanger测序进行基因分型。但是,从沉淀物中提取的DNA的质量和数量均低于从血液和组织中提取的DNA。明尼苏达州的驼鹿所含的多态性与其他地区的子宫颈对慢性消耗性疾病的易感性增加有关。这些结果提供了针对组织,血液和粪便颗粒的DNA提取方案的效率和有效性以及可用于检测这些人群未来遗传变化的基线人群遗传数据的有价值的比较。

著录项

  • 作者

    Tjepkes, Tessa Lynn.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Zoology.;Genetics.;Wildlife conservation.
  • 学位 M.S.
  • 年度 2015
  • 页码 80 p.
  • 总页数 80
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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