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Majority of Actinobacterial Strains Isolated from Kashmir Himalaya Soil Are Rich Source of Antimicrobials and Industrially Important Biomolecules

机译:从克什米尔喜马拉雅山土壤中分离的大多数放线菌菌株是抗菌素和工业上重要的生物分子的丰富来源

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Studies on actinobacterial diversity are immensely important research arenas as they are the major root of antimicrobial, anticancer and immunosuppressant agents. Here we have performed a community analysis and isolated about 135 morphologically different actinobacteria using five different Actinomyces-specific media from an unique unexplored site of Kashmir Himalaya, India, in order to screen different bioactive compounds specially the antimicrobials. Among these actinobacteria, 42 isolates show antimicrobial activity against a set of pathogenic organisms. Secretion of different biomolecules of industrial significance were assessed which resulted 53 xylanase producers, 57 IAA producers, and 63 isolates produce gelatinase. Pectinase, phosphatase, lipase, amylase, and cellulase producing ability have been shown by about 41, 32, 102, 92, and 83 isolates, respectively. Analysis of their 16S rRNA sequence followed by phylogenetic analysis has depicted that most of the isolates belong to the genus of Streptomyces and rests are Streptosporangium , Lentzea , Gordonia , Amycolatopsis and Lechevalieria . We have also screened the presence of secondary metabolite production pathways by PCR amplifying the biosynthetic gene of polyketide synthase (PKS-I) and non ribosomal peptide synthetase (NRPS) from the antibiotic producing strains. Antibiotic sensitivity profile of these isolates has also been studied. The potential antimicrobial compound producing strains have further been studied in order to find their efficacy to kill bacterial and fungal pathogens. Thus the study led to a promising field of antibiotic discovery and bioprospecting actinobacteria through their metabolites of industrial potential in near future.
机译:放线菌多样性研究是极其重要的研究领域,因为它们是抗菌,抗癌和免疫抑制剂的主要根源。在这里,我们进行了一项社区分析,并从印度克什米尔喜马拉雅山一个未经开发的独特地点,使用五种不同放线菌特异性培养基分离了约135种形态不同的放线菌,以筛选不同的生物活性化合物,尤其是抗菌剂。在这些放线菌中,有42种分离株显示出对一组病原生物的抗菌活性。评估了具有工业意义的不同生物分子的分泌,这些分子产生了53个木聚糖酶生产者,57个IAA生产者和63个分离物生产明胶酶。果胶酶,磷酸酶,脂肪酶,淀粉酶和纤维素酶的生产能力分别由大约41、32、102、92和83个分离株显示。通过对它们的16S rRNA序列进行分析,然后进行系统发育分析,结果表明,大多数分离物均属于链霉菌属,其余为链霉菌属,链状菌,,藤属,ord藤属,支原体和i> Lechevalieria。我们还通过PCR扩增了产抗生素菌株的聚酮化合物合酶(PKS-1)和非核糖体肽合成酶(NRPS)的生物合成基因,筛选了次级代谢产物产生途径的存在。还对这些分离物的抗生素敏感性进行了研究。为了发现它们杀死细菌和真菌病原体的功效,已经进一步研究了潜在的产生抗菌化合物的菌株。因此,该研究通过在不久的将来具有工业潜力的代谢产物而在抗生素发现和放线放线菌的生物勘探方面带来了广阔的前景。

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