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Low genetic but high morphological variation over more than 1000 km coastline refutes omnipresence of cryptic diversity in marine nematodes

机译:超过1000公里海岸线的低遗传但高形态变异反驳了海洋线虫隐性多样性的普遍存在

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摘要

BackgroundThe resilience of ecosystems to negative impacts is generally higher when high gene flow, species diversity and genetic diversity are present. Population genetic studies are suitable to investigate genetic diversity and estimate gene flow between populations. Seaweed beds form a dynamic shallow water ecosystem influenced by climate change and human exploitation, as such, seaweed beds are a particularly powerful model to investigate ecosystem resilience in coastal areas. We studied the population genetic structure of the new nematode species Paracanthonchus gynodiporata associated with seaweeds in northeastern Brazil. Nematodes are generally believed to have a limited dispersal capacity because of the lack of planktonic larvae. Yet, they can drift on seaweeds, and water currents might be a natural barrier for their dispersal. Populations of P. gynodiporata were sampled over more than 1000 km coastline in regions across major oceanic currents with and without historical exploitation of seaweed.
机译:背景技术当存在高基因流量,物种多样性和遗传多样性时,生态系统对负面影响的适应力通常更高。群体遗传学研究适合调查遗传多样性并估计群体之间的基因流。海藻床形成了受气候变化和人类开发影响的动态浅水生态系统,因此,海藻床是研究沿海地区生态系统复原力的特别有效的模型。我们研究了巴西东北部与海藻有关的新线虫物种Paracanthonchus gynodiporata的种群遗传结构。通常认为,由于缺乏浮游幼虫,线虫的扩散能力有限。然而,它们可能会在海藻上漂浮,而水流可能是其扩散的天然障碍。在有或没有对海藻的历史性开采的情况下,跨主要洋流的区域在1000多公里海岸线上采样了G.gydodiporata种群。

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