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对与海绵 Halichondria panicea 相关的海洋放线菌进行综合调查。

Comprehensive investigation of marine Actinobacteria associated with the sponge Halichondria panicea.

机构信息

Kieler Wirkstoff-Zentrum, Leibniz Institute of Marine Sciences, Am Kiel-Kanal 44, Kiel, Germany.

出版信息

Appl Environ Microbiol. 2010 Jun;76(11):3702-14. doi: 10.1128/AEM.00780-10. Epub 2010 Apr 9.

Abstract

Representatives of Actinobacteria were isolated from the marine sponge Halichondria panicea collected from the Baltic Sea (Germany). For the first time, a comprehensive investigation was performed with regard to phylogenetic strain identification, secondary metabolite profiling, bioactivity determination, and genetic exploration of biosynthetic genes, especially concerning the relationships of the abundance of biosynthesis gene fragments to the number and diversity of produced secondary metabolites. All strains were phylogenetically identified by 16S rRNA gene sequence analyses and were found to belong to the genera Actinoalloteichus, Micrococcus, Micromonospora, Nocardiopsis, and Streptomyces. Secondary metabolite profiles of 46 actinobacterial strains were evaluated, 122 different substances were identified, and 88 so far unidentified compounds were detected. The extracts from most of the cultures showed biological activities. In addition, the presence of biosynthesis genes encoding polyketide synthases (PKSs) and nonribosomal peptide synthetases (NRPSs) in 30 strains was established. It was shown that strains in which either PKS or NRPS genes were identified produced a significantly higher number of metabolites and exhibited a larger number of unidentified, possibly new metabolites than other strains. Therefore, the presence of PKS and NRPS genes is a good indicator for the selection of strains to isolate new natural products.

摘要

放线菌代表从波罗的海(德国)收集的海洋海绵 Halichondria panicea 中分离出来。首次对系统发育菌株鉴定、次生代谢产物分析、生物活性测定和生物合成基因的遗传探索进行了全面研究,特别是关于生物合成基因片段的丰度与产生的次生代谢产物的数量和多样性的关系。所有菌株均通过 16S rRNA 基因序列分析进行了系统发育鉴定,属于 Actinoalloteichus、Micrococcus、Micromonospora、Nocardiopsis 和 Streptomyces 属。评估了 46 株放线菌的次生代谢产物谱,鉴定出 122 种不同的物质,并检测到 88 种至今尚未鉴定的化合物。大多数培养物的提取物均具有生物活性。此外,在 30 株菌株中建立了编码聚酮合酶(PKS)和非核糖体肽合酶(NRPS)的生物合成基因的存在。结果表明,鉴定出 PKS 或 NRPS 基因的菌株产生的代谢产物数量明显更多,并且比其他菌株具有更多的未知、可能是新的代谢产物。因此,PKS 和 NRPS 基因的存在是选择用于分离新天然产物的菌株的良好指标。

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