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首页> 外文期刊>RSC Advances >Bioactivities and molecular networking-based elucidation of metabolites of potent actinobacterial strains isolated from the Unkeshwar geothermal springs in India
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Bioactivities and molecular networking-based elucidation of metabolites of potent actinobacterial strains isolated from the Unkeshwar geothermal springs in India

机译:从印度Unkeshwar地热泉分离的强放线菌菌株代谢物的生物活性和基于分子网络的阐明

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The bioactive potential of Actinobacteria endemic to hot springs has rarely been investigated. This study highlights the cultivable diversity and bioactivities of Actinobacteria associated with the Unkeshwar hot springs, India. Potent strains were evaluated for their biosynthetic potentials and metabolite analysis was performed using effective dereplication molecular networking tools. A total of 86 actinobacterial strains were isolated and grouped into 21 distinct genera, based on 16S rRNA gene sequence analysis. These strains included rare members such as Micromonospora , Marmoricola , Actinomadura , Cellulomonas , Cellulosimicrobium , Janibacter , Rothia , Barrentisimonas , Dietzia and Glycomyces . In antimicrobial screening, Micromonospora sp. strain GH99 and Streptomyces sp. strain GH176 were found to be potent antimicrobial strains. The metabolic extracts of these strains exhibited strong antimicrobial activity against Staphylococcus epidermidis (NCIM 2493), Shigella flexneri (NCIM 5265), Klebsiella pneumonia (NCIM 2098), and Salmonella abony (NCIM 2257). The extracts also displayed strong anti-biofilm and anticancer activities against Pseudomonas aeruginosa (NCIM 5029), Acinetobacter junii (NCIM 5188) and breast cancer cell line MCF7, respectively. Both strains also tested positive for the presence of the PKS biosynthetic gene cluster in their genomes. To effectively delineate the secondary metabolites, the extracts were subjected to MS/MS-guided molecular networking analysis. Structurally diverse compounds including the polyketides 22-dehydroxymethyl-kijanolide (GH99 strain) and Abyssomicin I (GH176 strain) were detected in the extracts. Interestingly, Brevianamide F was detected in the extract of Micromonospora , which has previously been mostly found in fungal species. Other compounds such as cyclic tripeptides, Cyclo( L -Pro- D -Ile) and Cyclo( D -Pro- L -Phe), were also identified in this strain. In summary, for the first time, we explored the diversity of Actinobacteria and evaluated their bioactive potential from the Unkeshwar hot springs. The potent strains isolated in the study could be useful in drug discovery programs.
机译:很少有人研究特有的放线菌在温泉中的生物活性。这项研究突出了与印度Unkeshwar温泉有关的放线菌的可培养多样性和生物活性。评价有效菌株的生物合成潜力,并使用有效的重复复制分子网络工具进行代谢物分析。基于16S rRNA基因序列分析,共分离出86个放线菌菌株,分为21个不同属。这些菌株包括罕见的成员,如小孢单孢菌,mor孔菌,猕猴桃,纤维梭菌,纤维杆菌,詹尼氏菌,罗氏菌,巴氏丝藻,Dietzia和糖藻。在抗菌筛选中,Micromonospora sp.。菌株GH99和链霉菌属sp。发现GH176菌株是有效的抗菌菌株。这些菌株的代谢提取物对表皮葡萄球菌(NCIM 2493),弗氏志贺氏菌(NCIM 5265),肺炎克雷伯菌(NCIM 2098)和沙门氏菌(NCIM 2257)表现出强大的抗菌活性。提取物还分别显示出针对铜绿假单胞菌(NCIM 5029),准不动杆菌(NCIM 5188)和乳腺癌细胞MCF7的强生物膜和抗癌活性。两种菌株的基因组中PKS生物合成基因簇的存在也呈阳性。为了有效地描述次生代谢产物,对提取物进行了MS / MS指导的分子网络分析。在提取物中检测到结构上多样的化合物,包括聚酮化合物22-脱羟甲基-基亚甲内酯(GH99菌株)和阿霉素S(GH176菌株)。有趣的是,在Micromonospora的提取物中检测到了Brevianamide F,该提取物以前主要在真菌物种中发现。在该菌株中还鉴定了其他化合物,例如环三肽,Cyclo(L-Pro-D-Ile)和Cyclo(D-Pro-L-Phe)。总之,我们首次探索了放线菌的多样性,并评估了其在Unkeshwar温泉中的生物活性潜力。研究中分离出的强毒株可能在药物发现计划中有用。

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