Department of Biosciences, Durham University, Durham, UK.
University of Central Florida, Genomics and Bioinformatics Cluster, Department of Biology, Orlando, FL, USA.
Nat Ecol Evol. 2018 Apr;2(4):680-687. doi: 10.1038/s41559-018-0482-x. Epub 2018 Mar 5.
Intraspecific diversity promotes evolutionary change, and when partitioned among geographic regions or habitats can form the basis for speciation. Marine species live in an environment that can provide as much scope for diversification in the vertical as in the horizontal dimension. Understanding the relevant mechanisms will contribute significantly to our understanding of eco-evolutionary processes and effective biodiversity conservation. Here, we provide an annotated genome assembly for the deep-sea fish Coryphaenoides rupestris and re-sequencing data to show that differentiation at non-synonymous sites in functional loci distinguishes individuals living at different depths, independent of horizontal spatial distance. Our data indicate disruptive selection at these loci; however, we find no clear evidence for differentiation at neutral loci that may indicate assortative mating. We propose that individuals with distinct genotypes at relevant loci segregate by depth as they mature (supported by survey data), which may be associated with ecotype differentiation linked to distinct phenotypic requirements at different depths.
种内多样性促进了进化的改变,当它在地理区域或栖息地之间分割时,可以成为物种形成的基础。海洋物种生活在一个环境中,这个环境在垂直方向和水平方向上都可以提供多样化的空间。了解相关的机制将对我们理解生态进化过程和有效的生物多样性保护做出重大贡献。在这里,我们提供了深海鱼类 Coryphaenoides rupestris 的注释基因组组装和重测序数据,表明功能基因座中非同义位点的分化可以区分生活在不同深度的个体,而与水平空间距离无关。我们的数据表明这些基因座存在干扰选择;然而,我们没有发现中性基因座分化的明显证据,这些证据可能表明了选择性交配。我们提出,在相关基因座上具有不同基因型的个体在成熟时会根据深度进行分离(调查数据支持),这可能与与不同深度的不同表型需求相关的生态型分化有关。