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Complex population structure of the Atlantic puffin revealed by whole genome analyses

机译:全基因组分析揭示大西洋海鹦的复群结构

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摘要

The factors underlying gene flow and genomic population structure in vagile seabirds are notoriously difficult to understand due to their complex ecology with diverse dispersal barriers and extensive periods at sea. Yet, such understanding is vital for conservation management of seabirds that are globally declining at alarming rates. Here, we elucidate the population structure of the Atlantic puffin (Fratercula arctica) by assembling its reference genome and analyzing genome-wide resequencing data of 72 individuals from 12 colonies. We identify four large, genetically distinct clusters, observe isolation-by-distance between colonies within these clusters, and obtain evidence for a secondary contact zone. These observations disagree with the current taxonomy, and show that a complex set of contemporary biotic factors impede gene flow over different spatial scales. Our results highlight the power of whole genome data to reveal unexpected population structure in vagile marine seabirds and its value for seabird taxonomy, evolution and conservation. Kersten et al. sequence a draft genome for the Atlantic puffin and report its population structure, genetic diversity and gene flow among four main clusters of populations across the northern Atlantic. These results identify a secondary contact zone between the puffins from the High Arctic and other colonies and proposes a new population structure from the currently recognized three subspecies.
机译:众所周知,脆弱海鸟的基因流动和基因组种群结构背后的因素难以理解,因为它们的生态复杂,具有不同的扩散障碍和广泛的海上时间。然而,这种理解对于全球海鸟的保护管理至关重要,海鸟正在以惊人的速度下降。在这里,我们通过组装其参考基因组并分析来自 12 个殖民地的 72 个个体的全基因组重测序数据,阐明了大西洋海鹦 (Fratercula arctica) 的种群结构。我们鉴定了四个大型的、遗传上不同的簇,观察这些簇内菌落之间的距离隔离,并获得二级接触区的证据。这些观察结果与当前的分类学不一致,并表明一组复杂的当代生物因素阻碍了不同空间尺度上的基因流动。我们的研究结果强调了全基因组数据在揭示脆弱海洋海鸟意想不到的种群结构及其对海鸟分类、进化和保护的价值方面的力量。Kersten等人对大西洋海鹦的基因组草图进行了测序,并报告了其种群结构、遗传多样性和北大西洋四个主要种群群的基因流动。这些结果确定了来自北极高地的海鹦与其他殖民地之间的二级接触区,并提出了目前公认的三个亚种的新种群结构。

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