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Functional genomic signatures of sponge bacteria reveal unique and shared features of symbiosis

机译:海绵细菌的功能基因组特征揭示了共生的独特和共同特征

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Sponges form close relationships with bacteria, and a remarkable phylogenetic diversity of yet-uncultured bacteria has been identified from sponges using molecular methods. In this study, we use a comparative metagenomic analysis of the bacterial community in the model sponge Cymbastela concentrica and in the surrounding seawater to identify previously unrecognized genomic signatures and functions for sponge bacteria. We observed a surprisingly large number of transposable insertion elements, a feature also observed in other symbiotic bacteria, as well as a set of predicted mechanisms that may defend the sponge community against the introduction of foreign DNA and hence contribute to its genetic resilience. Moreover, several shared metabolic interactions between bacteria and host include vitamin production, nutrient transport and utilization, and redox sensing and response. Finally, an abundance of protein-protein interactions mediated through ankyrin and tetratricopeptide repeat proteins could represent a mechanism for the sponge to discriminate between food and resident bacteria. These data provide new insight into the evolution of symbiotic diversity, microbial metabolism and host-microbe interactions in sponges.
机译:海绵与细菌形成密切的关系,并且已经使用分子方法从海绵中鉴定出尚未培养的细菌的显着的系统发生多样性。在这项研究中,我们使用了海绵同心圆藻模型和周围海水中细菌群落的比较宏基因组学分析,以鉴定先前无法识别的海绵菌基因组特征和功能。我们观察到了数量惊人的可转座插入元件,在其他共生细菌中也观察到了这一特征,以及一系列预测的机制,这些机制可以保护海绵群落免受外来DNA的引入,从而有助于其遗传弹性。此外,细菌与宿主之间的几种共有的代谢相互作用包括维生素的产生,营养物质的运输和利用以及氧化还原的感应和响应。最后,通过锚蛋白和四肽重复蛋白介导的大量蛋白质-蛋白质相互作用可能代表海绵区分食物和常驻细菌的机制。这些数据为海绵中共生多样性,微生物代谢和宿主-微生物相互作用的进化提供了新的见解。

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