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The role of demographic history and selection in shaping genetic diversity of the Galápagos penguin ( Spheniscus mendiculus )

机译:人口统计历史与选择在Galápagospenguin(Spheniscus mendiculus)的塑造遗传多样性中的作用

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Although many studies have documented the effects of demographic bottlenecks on the genetic diversity of natural populations, there is conflicting evidence of the roles that genetic drift and selection may play in driving changes in genetic variation at adaptive loci. We analyzed genetic variation at microsatellite and mitochondrial loci in conjunction with an adaptive MHC class II locus in the Galápagos penguin ( Spheniscus mendiculus ), a species that has undergone serial demographic bottlenecks associated with El Ni?o events through its evolutionary history. We compared levels of variation in the Galápagos penguin to those of its congener, the Magellanic penguin ( Spheniscus magellanicus ), which has consistently maintained a large population size and thus was used as a non-bottlenecked control. The comparison of neutral and adaptive markers in these two demographically distinct species allowed assessment of the potential role of balancing selection in maintaining levels of MHC variation during bottleneck events. Our analysis suggests that the lack of genetic diversity at both neutral and adaptive loci in the Galápagos penguin likely resulted from its restricted range, relatively low abundance, and history of demographic bottlenecks. The Galápagos penguin revealed two MHC alleles, one mitochondrial haplotype, and six alleles across five microsatellite loci, which represents only a small fraction of the diversity detected in Magellanic penguins. Despite the decreased genetic diversity in the Galápagos penguin, results revealed signals of balancing selection at the MHC, which suggest that selection can mitigate some of the effects of genetic drift during bottleneck events. Although Galápagos penguin populations have persisted for a long time, increased frequency of El Ni?o events due to global climate change, as well as the low diversity exhibited at immunological loci, may put this species at further risk of extinction.
机译:虽然许多研究已经记录了人口瓶颈对自然群体遗传多样性的影响,但遗传漂移和选择可能在适应性基因座的遗传变异变化方面发挥相互矛盾的证据。我们与GalápagosPenguin(Spheniscus Mendiculus)中的Adapive MHC II型位点结合微卫星和线粒体基因座的遗传变异,该物种通过其进化历史通过其进化历史与EL NI的串行人口瓶颈经历了串行人口瓶颈。我们将GalápagosPenguin的变异与其同一岩石(Spheniscus Magellanicus)进行了比较了GalápagosPenguin的水平,该企鹅(Spheniscus Magellanicus)一直保持着大的人口大小,因此被用作非瓶颈控制。在这两种人称不同物种中的中性和自适应标记的比较允许评估平衡选择在瓶颈事件期间维持MHC变化水平的潜在作用。我们的分析表明,GalápagosPenguin中的中性和适应性基因座的遗传多样性可能因其限制范围,相对较低的丰富和人口瓶颈史而导致。 GalápagosPenguin揭示了两种MHC等位基因,一种线粒体单倍型和六个等位基因,其在五个微卫星基因座中,这仅表示在麦哲伦企鹅中检测到的一小部分。尽管Galápagos企鹅遗传多样性降低,结果揭示了MHC平衡选择的信号,这表明选择可以减轻围绕瓶颈事件期间遗传漂移的一些影响。虽然GalápagosPenguin种群长期持续存在,但由于全球气候变化,EL NI的频率增加了EL NI的频率,以及免疫基因座的低多样性,可能将该物种放在进一步的灭绝风险。

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