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Insights into the Diversity of Secondary Metabolites of Planktothrix Using a Biphasic Approach Combining Global Genomics and Metabolomics

机译:利用全球基因组学和代谢组学相结合的双相方法洞察浮游生物次级代谢产物的多样性

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摘要

Cyanobacteria are an ancient lineage of slow-growing photosynthetic bacteria and a prolific source of natural products with diverse chemical structures and potent biological activities and toxicities. The chemical identification of these compounds remains a major bottleneck. Strategies that can prioritize the most prolific strains and novel compounds are of great interest. Here, we combine chemical analysis and genomics to investigate the chemodiversity of secondary metabolites based on their pattern of distribution within some cyanobacteria. Planktothrix being a cyanobacterial genus known to form blooms worldwide and to produce a broad spectrum of toxins and other bioactive compounds, we applied this combined approach on four closely related strains of Planktothrix. The chemical diversity of the metabolites produced by the four strains was evaluated using an untargeted metabolomics strategy with high-resolution LC–MS. Metabolite profiles were correlated with the potential of metabolite production identified by genomics for the different strains. Although, the Planktothrix strains present a global similarity in terms of a biosynthetic cluster gene for microcystin, aeruginosin, and prenylagaramide for example, we found remarkable strain-specific chemodiversity. Only few of the chemical features were common to the four studied strains. Additionally, the MS/MS data were analyzed using Global Natural Products Social Molecular Networking (GNPS) to identify molecular families of the same biosynthetic origin. In conclusion, we depict an efficient, integrative strategy for elucidating the chemical diversity of a given genus and link the data obtained from analytical chemistry to biosynthetic genes of cyanobacteria.
机译:蓝细菌是古老的缓慢生长的光合细菌谱系,是天然产物的丰富来源,其天然产物具有不同的化学结构以及强大的生物活性和毒性。这些化合物的化学鉴定仍然是主要瓶颈。可以优先考虑最多产菌株和新型化合物的策略引起了人们的极大兴趣。在这里,我们结合化学分析和基因组学,根据次级代谢产物在某些蓝细菌中的分布模式,研究其化学多样性。 Planktothrix是一种蓝藻属,已知会在世界范围内形成花朵,并产生广泛的毒素和其他生物活性化合物,因此我们将这种联合方法应用于了Planktothrix的四个紧密相关的菌株。使用高分辨率LC-MS的非靶向代谢组学策略评估了这四个菌株产生的代谢物的化学多样性。代谢物谱与通过基因组学鉴定的不同菌株的代谢物生产潜力相关。虽然,浮游生物菌株在微囊藻毒素,铜绿素和prenylagaramide的生物合成簇基因方面表现出全球相似性,但我们发现了显着的菌株特异性化学多样性。这四个菌株只具有很少的化学特征。此外,使用全球天然产物社会分子网络(GNPS)分析了MS / MS数据,以鉴定具有相同生物合成来源的分子家族。总而言之,我们描述了一种有效的综合策略,用于阐明给定属的化学多样性,并将从分析化学获得的数据与蓝细菌的生物合成基因联系起来。

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