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首页> 外文期刊>Scientific reports. >Novel genome and genome-wide SNPs reveal early fragmentation effects in an edge-tolerant songbird population across an urbanized tropical metropolis
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Novel genome and genome-wide SNPs reveal early fragmentation effects in an edge-tolerant songbird population across an urbanized tropical metropolis

机译:新型基因组和全基因组SNP揭示了城市化热带都市中边缘容忍的鸣禽种群的早期片段化作用

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Although edge-tolerant species are known to benefit from habitat fragmentation, less is known about the population genetic impacts fragmentation may exert on edge-tolerant species. We examined the landscape genomic structure of an edge-tolerant forest-dependent bird species, the Striped Tit-Babbler Mixornis gularis , in the heavily urbanized island of Singapore to determine if two centuries of fragmentation have led to signs of isolation and loss of population-genetic diversity in different parts of the island. We obtained a high-quality complete reference genome with 78x coverage. Using almost 4000 SNPs from double-digest RAD-Sequencing across 46 individuals, we found that the population has likely experienced a recent contraction in effective population size and presently exhibits low population genetic diversity. Using empirical and simulation-based landscape genomic analyses, we also found that the subtle population genetic structure observed in the Striped Tit-Babbler population in Singapore is likely driven by isolation by distance resulting from limited dispersal. Our results demonstrate that population genetic impoverishment and subdivision can accumulate at relatively rapid rates in edge-tolerant bird species such as the Striped Tit-Babbler as a result of fragmentation, and that subtle spatial genetic structure can be detected over fine spatial and temporal scales using relatively few multilocus genomic SNPs.
机译:尽管已知耐边缘物种可从栖息地碎片化中受益,但人们对于碎片遗传可能对耐边缘物种造成的种群遗传影响知之甚少。我们研究了在城市化程度高的新加坡岛上边缘边缘的依赖森林的鸟类物种条纹山雀-巴贝勒混种牛gularis的景观基因组结构,以确定两个世纪的碎片化是否导致了孤立和种群减少的迹象。岛屿不同地区的遗传多样性。我们获得了78x覆盖率的高质量完整参考基因组。使用来自46个个体的双消化RAD测序中的近4000个SNP,我们发现该种群可能在有效种群规模方面出现了近期收缩,并且目前显示出较低的种群遗传多样性。使用基于经验和基于模拟的景观基因组分析,我们还发现在新加坡的条纹山雀-巴伯勒种群中观察到的微妙的种群遗传结构很可能是由于有限的分散所造成的距离隔离所驱动。我们的结果表明,由于片段化,种群边缘边缘鸟类(如条纹山雀-巴贝勒)的种群遗传贫困和细分可以相对快速地积累,并且可以使用精细的时空尺度检测到细微的空间遗传结构。相对较少的多基因座基因组SNP。

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