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Genetic Diversity and Structure in the Sado Captive Populationof the Japanese Crested Ibis

机译:日本朱I的影子圈养种群的遗传多样性和结构。

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The Japanese crested ibis Nipponia nippon is a critically threatened bird. We assessed genetic diversity and structure in the Sado captive population of the Japanese crested ibis based on 24 and 50 microsatellite markers developed respectively for the same and related species. Of a total of 74 loci, 19 showed polymorphisms in the five founder birds of the population, and therefore were useful for the analysis of genetic diversity and structure. Genetic diversity measures, A, ne, He, Ho and PIC, obtained by genotyping of the 138 descendants were similar to those of other species with population bottlenecks, and thus considerably low. The low level of genetic diversity resulting from such bottlenecks was consistent with the results of lower genetic diversity measures for the Sado captive relative to the Chinese population that is the source population for the Sado group as determined using previously reported data and heterozygosity excess by Hardy-Weinberg equilibrium tests. Further, individual clustering based on the allele-sharing distance and Bayesian model-based clustering revealed that the founder genomes were equally at population in total, and with various admixture patterns at individual levels inherited by the descendants. The clustering results, together with the result of inheritance of all alleles of the microsatellites from the founders to descendants, suggest that planned mating in captive-breeding programs for the population has succeeded in maintaining genetic diversity and minimizing kinship. In addition, the Bayesian model-based clustering assumed two different components of genomes in the Sado captive Japanese crested ibis, supporting a considerably low level of genetic diversity.
机译:日本朱鹭朱鹭Nipponia nippon是一种受到严重威胁的鸟类。我们基于分别为同一物种和相关物种开发的24和50个微卫星标记,评估了日本朱i朱鹭的佐渡俘虏种群的遗传多样性和结构。在总共74个基因座中,有19个在种群的五只始祖鸟中表现出多态性,因此可用于分析遗传多样性和结构。通过对138个后代进行基因分型获得的遗传多样性指标A,ne,He,Ho和PIC与其他具有种群瓶颈的物种相似,因此相当低。这样的瓶颈导致的遗传多样性水平低下,与使用我们先前报道的数据和Hardy-温伯格平衡测试。此外,基于等位基因共享距离的个体聚类和基于贝叶斯模型的聚类表明,创始人基因组在总体上均等,并且在后代继承的个体水平上具有各种混合模式。聚类结果以及从创始人到后代的微卫星所有等位基因的继承结果表明,圈养繁殖计划中针对该种群的计划交配成功地维持了遗传多样性并最小化了亲缘关系。此外,基于贝叶斯模型的聚类假设在佐渡市圈养的日本朱鹭中存在两个不同的基因组成分,这支持了相当低的遗传多样性。

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