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Metagenomic binning of a marine sponge microbiome reveals unity in defense but metabolic specialization

机译:海洋海绵微生物组的元基因组分类显示防御力统一但代谢专长

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摘要

Marine sponges are ancient metazoans that are populated by distinct and highly diverse microbial communities. In order to obtain deeper insights into the functional gene repertoire of the Mediterranean sponge Aplysina aerophoba, we combined Illumina short-read and PacBio long-read sequencing followed by un-targeted metagenomic binning. We identified a total of 37 high-quality bins representing 11 bacterial phyla and two candidate phyla. Statistical comparison of symbiont genomes with selected reference genomes revealed a significant enrichment of genes related to bacterial defense (restriction-modification systems, toxin-antitoxin systems) as well as genes involved in host colonization and extracellular matrix utilization in sponge symbionts. A within-symbionts genome comparison revealed a nutritional specialization of at least two symbiont guilds, where one appears to metabolize carnitine and the other sulfated polysaccharides, both of which are abundant molecules in the sponge extracellular matrix. A third guild of symbionts may be viewed as nutritional generalists that perform largely the same metabolic pathways but lack such extraordinary numbers of the relevant genes. This study characterizes the genomic repertoire of sponge symbionts at an unprecedented resolution and it provides greater insights into the molecular mechanisms underlying microbial-sponge symbiosis.
机译:海洋海绵是古老的后生动物,生活在独特而高度多样化的微生物群落中。为了更深入地了解地中海海绵Aplysina aerophoba的功能基因库,我们结合了Illumina短读和PacBio长读测序,然后进行了非靶向的宏基因组学分选。我们确定了代表11个细菌门和两个候选门的总共37个高质量垃圾箱。共生体基因组与选定参考基因组的统计比较表明,与细菌防御相关的基因(限制性修饰系统,毒素-抗毒素系统)以及海绵共生体中涉及宿主定殖和细胞外基质利用的基因显着丰富。在共轭体内的基因组比较显示了至少两个共生动物协会的营养专长,其中一个似乎代谢肉碱,而另一个硫酸化多糖则在海绵细胞外基质中都是丰富的分子。第三种共生组织可以被看作是营养通才,他们的代谢途径基本相同,但缺乏大量的相关基因。这项研究以前所未有的分辨率表征了海绵共生体的基因组库,它为微生物海绵共生的分子机制提供了更深入的了解。

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