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Parallel evolution of the summer steelhead ecotype in multiple populations from Oregon and Northern California

机译:俄勒冈州和北加利福尼亚州多个种群中夏季硬皮鱼生态型的平行演变

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Parallel adaptive divergence of migratory and reproductive behavior can occur in multiple populations when similar selection is acting on these traits. Timing of migration, sexual maturity, and reproduction can have major impacts on the dynamics and viability of a population. Life-history variation in steelhead, Oncorhynchus mykiss, including variation in anadromous run timing, reproductive maturity, and spawn timing, represents an important aspect of their biology and adaptation to local habitats. Here we present a genetic analysis of naturally spawning steelhead to evaluate the genetic relationships and ancestry of summer- and winter-run reproductive ecotypes from multiple river basins in Oregon and Northern California. We infer the phylogeographic relationships among populations of both summer- and winter-run steelhead ecotypes using 12 microsatellite loci and 90 single nucleotide polymorphisms. Phylogenetic trees and analysis of molecular genetic variance revealed that pairs of phenotypically and genetically distinct reproductive ecotypes within rivers were each other's closest relatives. Isolation by distance was also observed, confirming that genetic relatedness was strongly associated with geographic distance, and indicating limited gene flow among river basins. These patterns support the hypothesis that the summer-run steelhead ecotype has repeatedly evolved through parallel evolution in multiple river basins. Our results, together with further investigations of the underlying molecular basis for the divergence of winter- and summer-run steelhead life-history traits, inform management efforts for these ecotypes and improve our understanding of the role of adaptive genetic variation in conservation.
机译:当类似的选择作用于这些性状时,迁移和生殖行为的并行适应性发散会在多个人群中发生。迁移,性成熟和生殖的时间可能会对人口的动态和生存能力产生重大影响。硬头黑麦(Oncorhynchus mykiss)的生活史变化,包括正常运行时间,生殖成熟度和产卵时间的变化,代表了它们生物学和适应当地栖息地的重要方面。在这里,我们介绍了自然产卵头的遗传分析,以评估俄勒冈州和北加利福尼亚州多个河流流域的夏季和冬季繁殖型生态型的遗传关系和祖先。我们推断使用12个微卫星基因座和90个单核苷酸多态性的夏季和冬季运行的steelhead生态型种群之间的系统地理关系。系统发育树和分子遗传变异分析表明,河流中表型和遗传上不同的生殖生态型对是彼此最接近的亲戚。还观察到按距离隔离,证实遗传相关性与地理距离密切相关,并表明流域之间的基因流量有限。这些模式支持这样一个假设,即夏季运行的STEELHEAD生态型在多个流域中通过平行演化而反复演化。我们的研究结果以及对冬夏两季铁头生活史特征差异的潜在分子基础的进一步研究,为这些生态型的管理工作提供了信息,并增进了我们对适应性遗传变异在保护中的作用的了解。

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