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Identification of Secondary Metabolite Gene Clusters in the Pseudovibrio Genus Reveals Encouraging Biosynthetic Potential toward the Production of Novel Bioactive Compounds

机译:伪弧菌属中次级代谢产物基因簇的鉴定揭示了产生新型生物活性化合物的令人鼓舞的生物合成潜力。

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摘要

Increased incidences of antimicrobial resistance and the emergence of pan-resistant ‘superbugs’ have provoked an extreme sense of urgency amongst researchers focusing on the discovery of potentially novel antimicrobial compounds. A strategic shift in focus from the terrestrial to the marine environment has resulted in the discovery of a wide variety of structurally and functionally diverse bioactive compounds from numerous marine sources, including sponges. Bacteria found in close association with sponges and other marine invertebrates have recently gained much attention as potential sources of many of these novel bioactive compounds. Members of the genus Pseudovibrio are one such group of organisms. In this study, we interrogate the genomes of 21 Pseudovibrio strains isolated from a variety of marine sources, for the presence, diversity and distribution of biosynthetic gene clusters (BGCs). We expand on results obtained from antiSMASH analysis to demonstrate the similarity between the Pseudovibrio-related BGCs and those characterized in other bacteria and corroborate our findings with phylogenetic analysis. We assess how domain organization of the most abundant type of BGCs present among the isolates (Non-ribosomal peptide synthetases and Polyketide synthases) may influence the diversity of compounds produced by these organisms and highlight for the first time the potential for novel compound production from this genus of bacteria, using a genome guided approach.
机译:专注于发现潜在的新型抗菌化合物的研究人员对抗菌素耐药性的发病率增加和泛抗性“超级细菌”的出现激起了极端的紧迫感。从陆地到海洋环境的战略重点转移已导致从包括海绵在内的众多海洋资源中发现了多种结构和功能多样的生物活性化合物。与海绵和其他海洋无脊椎动物密切相关的细菌最近作为许多这类新型生物活性化合物的潜在来源受到了广泛关注。假弧菌属的成员就是这样的一组生物。在这项研究中,我们询问了从各种海洋资源中分离出来的21种假弧菌菌株的基因组,以了解生物合成基因簇(BGC)的存在,多样性和分布。我们扩展了从antiSMASH分析获得的结果,以证明假弧菌相关BGC与其他细菌中表征的BGC之间的相似性,并通过系统发育分析证实了我们的发现。我们评估了分离物中(非核糖体肽合成酶和聚酮化合物合成酶)中存在的最丰富类型的BGC的域组织如何影响这些生物产生的化合物的多样性,并首次强调了由此产生新化合物的潜力细菌属,使用基因组指导方法。

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