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Single-bacterial genomics validates rich and varied specialized metabolism of uncultivated Entotheonella sponge symbionts

机译:单细菌基因组学验证了未经培养的海豚肠海绵共生体的丰富多样的专门代谢

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摘要

Marine sponges are prolific sources of unique bioactive natural products. The sponge Theonella swinhoei is represented by several distinct variants with largely nonoverlapping chemistry. For the Japanese chemotype Y harboring diverse complex polyketides and peptides, we previously provided genomic and functional evidence that a single symbiont, the filamentous, multicellular organism “Candidatus Entotheonella factor,” produces almost all of these compounds. To obtain further insights into the chemistry of “Entotheonella,” we investigated another phylotype, “Candidatus Entotheonella serta,” present in the T. swinhoei WA sponge chemotype, a source of theonellamide- and misakinolide-type compounds. Unexpectedly, considering the lower chemical diversity, sequencing of individual bacterial filaments revealed an even larger number of biosynthetic gene regions than for Ca. E. factor, with virtually no overlap. These included genes for misakinolide and theonellamide biosynthesis, the latter assigned by comparative genomic and metabolic analysis of a T. swinhoei chemotype from Israel, and by biochemical studies. The data suggest that both compound families, which were among the earliest model substances to study bacterial producers in sponges, originate from the same bacterium in T. swinhoei WA. They also add evidence that metabolic richness and variability could be a more general feature of Entotheonella symbionts.
机译:海洋海绵是独特的具有生物活性的天然产物的大量来源。海绵Theonella swinhoei以化学性质基本不重叠的几种不同变体为代表。对于带有各种复杂聚酮化合物和多肽的日本化学型Y,我们先前提供了基因组和功能证据,即单一共生体,即丝状,多细胞生物体“ Candidatus Entotheonella factor”几乎产生了所有这些化合物。为了进一步了解“ Entotheonella”的化学性质,我们调查了T. swinhoei WA海绵化学型中的另一种系统型“ Candidatus Entotheonella serta serta”,这是蒽醌和米卡诺利德型化合物的来源。出乎意料的是,考虑到较低的化学多样性,单个细菌细丝的测序显示出比Ca还要多的生物合成基因区域。 E.因素,几乎没有重叠。其中包括米沙基内酯和蒽环酰胺生物合成的基因,后者是通过对以色列T. swinhoei化学型的比较基因组和代谢分析以及生化研究确定的。数据表明,这两个化合物家族是研究海绵中细菌产生者的最早模型物质之一,它们都来自西澳州T. swinhoei。他们还增加了证据,证明代谢丰富性和变异性可能是Entontheonella共生菌的更普遍特征。

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