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Actinomycetes from the South China Sea sponges: isolation, diversity, and potential for aromatic polyketides discovery

机译:南海海绵的放线菌:分离,多样性和发现芳香族聚酮化合物的潜力

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摘要

Marine sponges often harbor dense and diverse microbial communities including actinobacteria. To date no comprehensive investigation has been performed on the culturable diversity of the actinomycetes associated with South China Sea sponges. Structurally novel aromatic polyketides were recently discovered from marine sponge-derived Streptomyces and Saccharopolyspora strains, suggesting that sponge-associated actinomycetes can serve as a new source of aromatic polyketides. In this study, a total of 77 actinomycete strains were isolated from 15 South China Sea sponge species. Phylogenetic characterization of the isolates based on 16S rRNA gene sequencing supported their assignment to 12 families and 20 genera, among which three rare genera (Marihabitans, Polymorphospora, and Streptomonospora) were isolated from marine sponges for the first time. Subsequently, β-ketoacyl synthase (KSα) gene was used as marker for evaluating the potential of the actinomycete strains to produce aromatic polyketides. As a result, KSα gene was detected in 35 isolates related to seven genera (Kocuria, Micromonospora, Nocardia, Nocardiopsis, Saccharopolyspora, Salinispora, and Streptomyces). Finally, 10 strains were selected for small-scale fermentation, and one angucycline compound was detected from the culture extract of Streptomyces anulatus strain S71. This study advanced our knowledge of the sponge-associated actinomycetes regarding their diversity and potential in producing aromatic polyketides.
机译:海洋海绵通常带有密集而多样的微生物群落,包括放线菌。迄今为止,尚未对与南海海绵有关的放线菌的可培养多样性进行全面研究。最近从海洋海绵衍生的链霉菌和糖多孢菌菌株中发现了结构新颖的芳香族聚酮化合物,这表明与海绵相关的放线菌可以作为芳香族聚酮化合物的新来源。在这项研究中,共从77个南海海绵物种中分离出77株放线菌菌株。基于16S rRNA基因测序的分离株的系统发生学特征支持他们分配给12个科和20个属,其中三个稀有属(马里福兰,多形孢子虫和链球单孢菌)是首次从海洋海绵中分离出来的。随后,将β-酮酰基合酶(KSα)基因用作评估放线菌菌株生产芳香族聚酮化合物潜力的标记。结果,在与七个属(Kocuria,Micromonospora,Nocardia,Nocardiopsis,Saccharopolyspora,Salinispora和Streptomyces)相关的35个分离株中检测到KSα基因。最后,选择了10个菌株进行小规模发酵,并且从无烟链霉菌菌株S71的培养提取物中检测到一种古菌碱化合物。这项研究提高了我们与海绵相关的放线菌的多样性和在生产芳香族聚酮化合物方面的潜力。

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