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Capturing genetic diversity of wild populations for ex situ conservation: Texas wild rice (Zizania texana) as a model

机译:捕获野生种群的遗传多样性以进行异地保护:以德克萨斯州野生稻(Zizania texana)为模型

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Genebanks complement other conservation programs because they preserve genetic diversity needed for future breeding and restoration. We evaluated efficiency of capturing genetic diversity, using endangered Zizania texana (Texas wild rice) as a model for plants with recalcitrant seeds. This perennial aquatic grass is restricted to 4 km of the San Marcos River in Texas. An early conservation collection included plants from stands throughout the river, based on the assumption stands would be unique genotypes. Using microsatellite markers, we found that genetic diversity was concentrated in five of 15 large, demographically stable stands; 96 stands smaller than 2 m2 contributed no unique alleles. High heterozygosity and few duplicate genotypes suggested that sexual reproduction occurs more often than presumed. Simulations of stratified sampling of large stands captured all alleles in only 45 individuals, while random sampling along the river captured much less diversity. The early conservation collection captured as much diversity as expected from random sampling. Texas wild rice stands resemble a mainland-island metapopulation; our analyses suggest that stratified sampling maximizes genetic diversity for this population dynamic. Demographic and genetic information is important for validating the design of efficient ex situ collections and guiding in situ conservation.
机译:种质库是其他保护计划的补充,因为它们保存了未来育种和恢复所需的遗传多样性。我们使用濒临灭绝的Zizania texana(得克萨斯州野生稻)作为具有顽it种子的植物的模型,评估了捕获遗传多样性的效率。这种多年生的水草仅限于德克萨斯州的圣马科斯河4公里。一项早期的保护性收集工作包括假设整个林分会是独特的基因型,而这些植物来自整个河流的林分。使用微卫星标记,我们发现遗传多样性集中在15个人口统计学稳定的大林中的5个中。小于2 m2的96个林分没有贡献独特的等位基因。高杂合度和少量重复的基因型表明,性生殖比假定的发生得更多。大型林分的分层抽样模拟仅捕获了45个个体的所有等位基因,而沿河的随机抽样捕获的多样性则少得多。早期保护区收集的多样性与随机抽样所期望的一样多。得克萨斯州的野生稻林酷似大陆岛屿的种群。我们的分析表明,分层抽样可以使这一种群动态最大化遗传多样性。人口统计和遗传信息对于验证有效的非原生境收集品的设计和指导原生境保护非常重要。

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