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Diverse deep-sea anglerfishes share a genetically reduced luminous symbiont that is acquired from the environment

机译:不同的深海琵琶鱼共享从环境中获取的遗传减少的发光共生体

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摘要

Deep-sea anglerfishes are relatively abundant and diverse, but their luminescent bacterial symbionts remain enigmatic. The genomes of two symbiont species have qualities common to vertically transmitted, host-dependent bacteria. However, a number of traits suggest that these symbionts may be environmentally acquired. To determine how anglerfish symbionts are transmitted, we analyzed bacteria-host codivergence across six diverse anglerfish genera. Most of the anglerfish species surveyed shared a common species of symbiont. Only one other symbiont species was found, which had a specific relationship with one anglerfish species, Cryptopsaras couesii. Host and symbiont phylogenies lacked congruence, and there was no statistical support for codivergence broadly. We also recovered symbiont-specific gene sequences from water collected near hosts, suggesting environmental persistence of symbionts. Based on these results we conclude that diverse anglerfishes share symbionts that are acquired from the environment, and that these bacteria have undergone extreme genome reduction although they are not vertically transmitted.
机译:深海琵琶鱼相对丰富多样,但它们的发光细菌共生体仍然是神秘的。两种共生物种的基因组具有垂直传播的宿主依赖性细菌的共同品质。但是,许多特征表明这些共生菌可能是环境获得的。为了确定angle鱼共生体如何传播,我们分析了六个不同diverse鱼属中的细菌-宿主共生关系。接受调查的大多数the鱼物种共有一个共生物种。仅发现另一种共生物种,其与一种one鱼物种Cryptopsaras couesii有特定的关系。宿主和共生系统发育缺乏一致性,并且没有广泛的统计学支持。我们还从宿主附近收集的水中回收了共生体特异性基因序列,表明共生体的环境持久性。根据这些结果,我们得出结论,不同的琵琶鱼共享从环境中获得的共生体,尽管这些细菌不是垂直传播的,但它们的基因组却经历了极大的减少。

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