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首页> 外文期刊>Heredity: An International Journal of Genetics >Adaptive responses along a depth and a latitudinal gradient in the endemic seagrass Posidonia oceanica
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Adaptive responses along a depth and a latitudinal gradient in the endemic seagrass Posidonia oceanica

机译:沿着深度和纬度梯度在流动的海洋探伤率大洋洲的自适应响应

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Seagrass meadows provide important ecosystem services and are critical for the survival of the associated invertebrate community. However, they are threatened worldwide by human-driven environmental change. Understanding the seagrasses' potential for adaptation is critical to assess not only their ability to persist under future global change scenarios, but also to assess the persistence of the associated communities. Here we screened a wild population of Posidonia oceanica, an endemic long-lived seagrass in the Mediterranean Sea, for genes that may be target of environmental selection, using an outlier and a genome-wide transcriptome analysis. We identified loci where polymorphism or differential expression was associated with either a latitudinal or a bathymetric gradient, as well as with both gradients in an effort to identify loci associated with temperature and light. We found the candidate genes underlying growth and immunity to be divergent between populations adapted to different latitudes and/or depths, providing evidence for local adaptation. Furthermore, we found evidence of reduced gene flow among populations including adjacent populations. Reduced gene flow, combined with low sexual recombination, small effective population size, and long generation time of P. oceanica raises concerns for the long-term persistence of this species, especially in the face of rapid environmental change driven by human activities.
机译:海草草甸提供重要的生态系统服务,对相关无脊椎动物群落的生存至关重要。但是,他们在全世界受到了人为的环境变革的威胁。了解海草的适应潜力对于评估不仅在未来的全球变革情景下持续存在的能力至关重要,也是评估相关社区的持久性。在这里,我们筛选了位于地中海中的一个地方性长寿海洋的Posidonia Oceanica的野生群体,用于可能是环境选择的基因,使用异常值和基因组的转录组分析。我们识别出多态性或差异表达与纬度或碱基梯度相关的基因座,以及两种梯度,以旨在识别与温度和光相关联的基因座。我们发现候选基因潜在的生长和免疫,在适应不同纬度和/或深度的人群之间发散,为局部适应提供证据。此外,我们发现有证据表明在包括相邻人群在内的群体中降低的基因流动。减少基因流动,结合低性重组,小于群体大小的小,群体的长代时间为这一物种的长期持久性提高了担忧,特别是在面对由人类活动推动的快速环境变化。

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