首页> 外文期刊>Journal of Phytopathology >Genetic structure and diversity of the black-throated finch (Poephila cincta) across its current range
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Genetic structure and diversity of the black-throated finch (Poephila cincta) across its current range

机译:其目前范围内的黑色喉雀(Pophila Cinta)的遗传结构和多样性

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Understanding the patterns of population connectivity and level of genetic diversity can facilitate the identification of both ecologically relevant populations and the spatial scales at which conservation management may need to focus. We quantified genetic variation within and among populations of black-throated finches across their current distribution. To quantify genetic structure and diversity, we genotyped 242 individuals from four populations using 14 polymorphic microsatellite markers and sequenced 25 individuals based on a 302-base-pair segment of mitochondrial control region. We found modest levels of genetic diversity (average allelic richness r=4.37 +/- 0.41 (standard error) and average heterozygosity H-O=0.42 +/- 0.040 (standard error)) with no bottleneck signature among sampled populations. We identified two genetic groups that represent populations of two subspecies based on Bayesian clustering analysis and low levels of genetic differentiation based on pairwise genetic differentiation statistics (all F-ST, R-ST and Nei's unbiased D values 0.1). Our data suggest that genetic exchange occurs among sampled populations despite recent population declines. Conservation efforts that focus on maintaining habitat connectivity and increasing habitat quality to ensure a high level of gene flow on a larger scale will improve the species' ability to persist in changing landscapes. Conservation management should also support continuous monitoring of the bird to identify any rapid population declines as land-use intensification occurs throughout the species' range.
机译:了解人口连接模式和遗传多样性水平可以促进识别生态相关的人群和保护管理可能需要关注的空间尺度。我们在其目前分布中量化了黑色喉雀的群体内和群体中的遗传变异。为了量化遗传结构和多样性,我们使用14种多态性微卫星标记物的四种群体基因分型242个体,并基于线粒体控制区域的302碱基段分段测序25个个体。我们发现适度的遗传多样性水平(平均等位基因丰富r = 4.37 +/- 0.41(标准误差)和平均杂合性H-O = 0.42 +/- 0.040(标准误差)),采样群体没有瓶颈签名。我们确定了两个基于贝叶斯聚类分析和基于成对遗传分化统计(所有F-ST,R-ST和NEI的非偏见的D值的遗传分化的两胎的遗传群。我们的数据表明,尽管最近的人口下降,所以遗传交易所发生在采样的人群中。保护努力,重点关注维持栖息地连接和增加栖息地质量,以确保高水平的基因流动较大规模将提高物种持续改变景观的能力。保护管理还应支持持续监测鸟类,以确定随着土地利用率发生在整个物种范围内的情况下,任何快速的人口下降。

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