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Uncovering the Core Microbiome and Distribution of Palmerolide in Synoicum adareanum Across the Anvers Island Archipelago Antarctica

机译:在南极洲的安弗斯岛群岛上发现红景天的核心微生物组和棕榈油内酯的分布

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摘要

Polar marine ecosystems hold the potential for bioactive compound biodiscovery, based on their untapped macro- and microorganism diversity. Characterization of polar benthic marine invertebrate-associated microbiomes is limited to few studies. This study was motivated by our interest in better understanding the microbiome structure and composition of the ascidian, , in which palmerolide A (PalA), a bioactive macrolide with specificity against melanoma, was isolated. PalA bears structural resemblance to a hybrid nonribosomal peptide-polyketide that has similarities to microbially-produced macrolides. We conducted a spatial survey to assess both PalA levels and microbiome composition in in a region of the Antarctic Peninsula near Anvers Island (64°46′ S, 64°03′ W). PalA was ubiquitous and abundant across a collection of 21 ascidians (3 subsamples each) sampled from seven sites across the Anvers Island Archipelago. The microbiome composition (V3–V4 16S rRNA gene sequence variants) of these 63 samples revealed a core suite of 21 bacterial amplicon sequence variants (ASVs)—20 of which were distinct from regional bacterioplankton. ASV co-occurrence analysis across all 63 samples yielded subgroups of taxa that may be interacting biologically (interacting subsystems) and, although the levels of PalA detected were not found to correlate with specific sequence variants, the core members appeared to occur in a preferred optimum and tolerance range of PalA levels. These results, together with an analysis of the biosynthetic potential of related microbiome taxa, describe a conserved, high-latitude core microbiome with unique composition and substantial promise for natural product biosynthesis that likely influences the ecology of the holobiont.
机译:极地海洋生态系统基于尚未开发的宏观和微生物多样性,具有生物活性化合物生物发现的潜力。极地底栖海洋无脊椎动物相关微生物群的表征仅限于很少的研究。这项研究的动机是我们对更好地了解海鞘的微生物组结构和组成的兴趣,其中分离出了对黑素瘤具有特异性的生物活性大环内酯棕榈油内酯A(PalA)。 PalA与杂合的非核糖体肽-聚酮化合物在结构上相似,后者与微生物生产的大环内酯类药物相似。我们进行了一项空间调查,以评估Anvers岛附近南极半岛地区(64°46'S,64°03'W)的PalA水平和微生物组组成。从整个Anvers岛群岛的七个地点取样的21位海鞘动物(每个3个子样品)的集合中,PalA随处可见。这63个样品的微生物组组成(V3-V4 16S rRNA基因序列变体)显示了21个细菌扩增子序列变体(ASV)的核心套件,其中20个与区域性浮游细菌不同。在所有63个样品中进行的ASV共现分析产生了可能在生物学上相互作用的分类单元亚组(相互作用的子系统),尽管未发现检测到的PalA水平与特定序列变异相关,但核心成员似乎以优选的最佳状态出现和PalA水平的公差范围。这些结果,连同对相关微生物组分类的生物合成潜力的分析,描述了一种保守的,高纬度的核心微生物组,其独特的组成和对天然产物生物合成的重大希望,这很可能影响全生物的生态。

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