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Phylogenetic Diversity and Biological Activity of Actinobacteria Isolated from the Chukchi Shelf Marine Sediments in the Arctic Ocean

机译:北冰洋楚科奇大陆架海洋沉积物中放线菌的系统发生多样性和生物活性

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摘要

Marine environments are a rich source of Actinobacteria and have the potential to produce a wide variety of biologically active secondary metabolites. In this study, we used four selective isolation media to culture Actinobacteria from the sediments collected from the Chukchi Shelf in the Arctic Ocean. A total of 73 actinobacterial strains were isolated. Based on repetitive DNA fingerprinting analysis, we selected 30 representatives for partial characterization according to their phylogenetic diversity, antimicrobial activities and secondary-metabolite biosynthesis genes. Results from the 16S rRNA gene sequence analysis indicated that the 30 strains could be sorted into 18 phylotypes belonging to 14 different genera: Agrococcus, Arsenicicoccus, Arthrobacter, Brevibacterium, Citricoccus, Janibacter, Kocuria, Microbacterium, Microlunatus, Nocardioides, Nocardiopsis, Saccharopolyspora, Salinibacterium and Streptomyces. To our knowledge, this paper is the first report on the isolation of Microlunatus genus members from marine habitats. Of the 30 isolates, 11 strains exhibited antibacterial and/or antifungal activity, seven of which have activities against Bacillus subtilis and Candida albicans. All 30 strains have at least two biosynthetic genes, one-third of which possess more than four biosynthetic genes. This study demonstrates the significant diversity of Actinobacteria in the Chukchi Shelf sediment and their potential for producing biologically active compounds and novel material for genetic manipulation or combinatorial biosynthesis.
机译:海洋环境是放线菌的丰富来源,并且具有产生多种具有生物活性的次生代谢产物的潜力。在这项研究中,我们使用四种选择性隔离培养基从北冰洋楚科奇架子上收集的沉积物中培养放线菌。总共分离出73个放线菌菌株。根据重复的DNA指纹分析,我们根据其系统发育多样性,抗菌活性和次级代谢生物合成基因选择了30个代表进行部分表征。从16S rRNA基因序列分析的结果表明,这30个菌株可以分为14个不同属的18种系统型:农杆菌,砷球菌,节杆菌,短杆菌,柠檬球菌,贾尼氏菌,科库里亚,微细菌,微月球菌,诺卡氏菌,诺卡氏菌,糖多孢菌,盐藻和链霉菌。就我们所知,本文是关于从海洋生境中分离微月球菌属成员的第一份报告。在这30株菌株中,有11株具有抗菌和/或抗真菌活性,其中7株具有抗枯草芽孢杆菌和白色念珠菌的功能。所有30个菌株均具有至少两个生物合成基因,其中三分之一具有四个以上的生物合成基因。这项研究证明了楚科奇架子沉积物中放线菌的显着多样性,以及它们产生生物活性化合物和基因操纵或组合生物合成新材料的潜力。

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