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The round goby genome provides insights into mechanisms that may facilitate biological invasions

机译:圆形goby基因组提供了有助于生物侵犯的机制的见解

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BACKGROUND:The invasive benthic round goby (Neogobius melanostomus) is the most successful temperate invasive fish and has spread in aquatic ecosystems on both sides of the Atlantic. Invasive species constitute powerful in situ experimental systems to study fast adaptation and directional selection on short ecological timescales and present promising case studies to understand factors involved the impressive ability of some species to colonize novel environments. We seize the unique opportunity presented by the round goby invasion to study genomic substrates potentially involved in colonization success.RESULTS:We report a highly contiguous long-read-based genome and analyze gene families that we hypothesize to relate to the ability of these fish to deal with novel environments. The analyses provide novel insights from the large evolutionary scale to the small species-specific scale. We describe expansions in specific cytochrome P450 enzymes, a remarkably diverse innate immune system, an ancient duplication in red light vision accompanied by red skin fluorescence, evolutionary patterns of epigenetic regulators, and the presence of osmoregulatory genes that may have contributed to the round goby's capacity to invade cold and salty waters. A recurring theme across all analyzed gene families is gene expansions.CONCLUSIONS:The expanded innate immune system of round goby may potentially contribute to its ability to colonize novel areas. Since other gene families also feature copy number expansions in the round goby, and since other Gobiidae also feature fascinating environmental adaptations and are excellent colonizers, further long-read genome approaches across the goby family may reveal whether gene copy number expansions are more generally related to the ability to conquer new habitats in Gobiidae or in fish.
机译:背景:侵入性弯曲的圆形goby(Neogobius melanostomus)是最成功的温带侵袭性鱼,并在大西洋两侧蔓延到水生生态系统中。侵入性物种构成了强大的实验系统,研究了短暂生态时间尺度的快速适应和定向选择,并提出了有希望的案例研究,了解某些物种殖民精神化新颖环境的令人印象深刻的能力。我们抓住了圆形曲面入侵所呈现的独特机会,以研究可能参与殖民化成功的基因组底物。结果:我们报告了一种高度连续的长读取基因组,分析了我们假设与这些鱼的能力有关的基因家族。处理新颖的环境。分析提供了从大型进化规模到小物种特异性规模的新颖见解。我们描述了特异性细胞色素P450酶的扩展,一个非常多样化的天生的免疫系统,红光视野的古代复制伴有红色皮肤荧光,表观遗传调节剂的进化模式,以及可能导致圆形血管的渗透性基因的存在侵入寒冷和咸水。在所有分析的基因家族中的重复主题是基因扩张。结论:圆形曲面的扩大的先天免疫系统可能潜在促进其殖民殖民新区域的能力。由于其他基因家庭在圆形曲面中还具有拷贝数扩展,而从其他Gobiidae也具有迷人的环境适应,并且是优质的殖民者,而且是狼犬家族的进一步长读基因组方法可能会揭示基因拷贝数膨胀是否更普遍与之相关能够征服Gobiidae或鱼类的新栖息地。

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