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首页> 外文期刊>Frontiers in Microbiology >Isolation, abundance and phylogenetic affiliation of endophytic actinomycetes associated with medicinal plants and screening for their in vitro antimicrobial biosynthetic potential
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Isolation, abundance and phylogenetic affiliation of endophytic actinomycetes associated with medicinal plants and screening for their in vitro antimicrobial biosynthetic potential

机译:与药用植物相关的内生放线菌的分离,丰度和系统发生关系以及对它们的体外抗菌生物合成潜力的筛选

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Microorganisms associated with medicinal plants are of interest as the producers of important bioactive compounds. To date, the diversity of culturable endophytic actinomycetes associated with medicinal plants is in its initial phase of exploration. In this study, 42 endophytic actinomycetes were isolated from different organs of seven selected medicinal plants. The highest number of isolates ( n = 22, 52.3%) of actinomycetes was isolated from roots, followed by stems ( n = 9, 21.4%), leaves ( n = 6, 14.2%), flowers ( n = 3, 7.1%), and petioles ( n = 2, 4.7%). The genus Streptomyces was the most dominant among the isolates (66.6%) in both the locations (Dampa TRF and Phawngpuii NP, Mizoram, India). From a total of 42 isolates, 22 isolates were selected for further studies based on their ability to inhibit one of the tested human bacterial or fungal pathogen. Selected isolates were identified based on 16S rRNA gene analysis and subsequently the isolates were grouped to four different genera; Streptomyce s, Brevibacterium , Microbacterium , and Leifsonia . Antibiotic sensitivity assay was performed to understand the responsible antimicrobials present in the isolates showing the antimicrobial activities and revealed that the isolates were mostly resistant to penicillin G and ampicillin. Further, antimicrobial properties and antibiotic sensitivity assay in combination with the results of amplification of biosynthetic genes polyketide synthase (PKS-I) and non-ribosomal peptide synthetase (NRPS) showed that the endophytic actinomycetes associated with the selected medicinal plants have broad-spectrum antimicrobial activity. This is the first report of the isolation of Brevibacterium sp., Microbacterium sp., and Leifsonia xyli from endophytic environments of medicinal plants, Mirabilis jalapa and Clerodendrum colebrookianum . Our results emphasize that endophytic actinomycetes associated with medicinal plants are an unexplored resource for the discovery of biologically active compounds.
机译:作为重要生物活性化合物的生产者,与药用植物相关的微生物是令人感兴趣的。迄今为止,与药用植物相关的可培养内生放线菌的多样性仍处于探索的初始阶段。在这项研究中,从7种选定药用植物的不同器官中分离出42种内生放线菌。从根中分离出数量最多的放线菌(n = 22,52.3%),其次是茎(n = 9,21.4%),叶(n = 6,14.2%),花(n = 3,7.1%)。 )和叶柄(n = 2,4.7%)。链霉菌属在两个地区(Dampa TRF和Phawngpuii NP,印度米佐拉姆邦)的分离株中最主要(66.6%)。从总共42种分离株中选择22种分离株进行进一步研究,基于它们抑制被测人细菌或真菌病原体之一的能力。根据16S rRNA基因分析鉴定出选定的分离株,然后将这些分离株分为四个不同属。链霉菌,短杆菌属,微杆菌属和Leifsonia。进行了抗生素敏感性分析,以了解分离物中存在的负责任的抗菌药物,这些抗菌药物显示出抗菌活性,并揭示了分离物主要对青霉素G和氨苄西林具有抗性。此外,抗菌性能和抗生素敏感性试验结合生物合成基因聚酮化合物合酶(PKS-1)和非核糖体肽合成酶(NRPS)的扩增结果表明,与所选药用植物相关的内生放线菌具有广谱抗菌作用活动。这是从药用植物米拉比里斯·贾拉帕(Mirabilis jalapa)和油枝菌(Clerodendrum colebrookianum)的内生环境中分离短杆菌,微小杆菌和木霉的第一个报道。我们的结果强调,与药用植物相关的内生放线菌是发现生物活性化合物的未开发资源。

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