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Actinobacteria associated with Chinaberry tree are diverse and show antimicrobial activity

机译:与Chinaberry树相关的放线菌种类繁多并显示出抗菌活性

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摘要

Many actinobacteria produce secondary metabolites that include antimicrobial compounds. Since most of the actinobacteria cannot be cultivated, their antimicrobial potential awaits to be revealed. We hypothesized that the actinobacterial endophyte communities inside Melia toosendan (Chinaberry) tree are diverse, include strains with antimicrobial activity, and that antimicrobial activity can be detected using a cultivation independent approach and co-occurrence analysis. We isolated and identified actinobacteria from Chinaberry, tested their antimicrobial activities, and characterized the communities using amplicon sequencing and denaturing gradient gel electrophoresis as cultivation independent methods. Most of the isolates were identified as Streptomyces spp., whereas based on amplicon sequencing the most abundant OTU was assigned to Rhodococcus, and Tomitella was the most diverse genus. Out of the 135 isolates, 113 inhibited the growth of at least one indicator organism. Six out of the 7577 operational taxonomic units (OTUs) matched 46 cultivated isolates. Only three OTUs, Streptomyces OTU4, OTU11, and OTU26, and their corresponding isolate groups were available for comparing co-occurrences and antimicrobial activity. Streptomyces OTU4 correlated negatively with a high number of OTUs, and the isolates corresponding to Streptomyces OTU4 had high antimicrobial activity. However, for the other two OTUs and their corresponding isolate groups there was no clear relation between the numbers of negative correlations and antimicrobial activity. Thus, the applicability of co-occurrence analysis in detecting antimicrobially active actinobacteria could not be proven.
机译:许多放线菌产生包括抗菌化合物在内的次级代谢产物。由于大多数放线菌不能被培养,因此它们的抗菌潜力有待发现。我们假设Melia toosendan(Chinaberry)树内的放线菌内生菌群落是多种多样的,包括具有抗菌活性的菌株,并且可以使用独立于培养的方法和共现分析来检测抗菌活性。我们从Chinaberry分离并鉴定了放线菌,测试了它们的抗菌活性,并使用扩增子测序和变性梯度凝胶电泳作为独立于栽培的方法对群落进行了表征。大多数分离物被鉴定为链霉菌属,而基于扩增子测序,最丰富的OTU被分配给红球菌,而Tomitella是最多样化的属。在135个分离物中,有113个抑制了至少一种指示生物的生长。 7577个操作生物分类单位(OTU)中有6个与46个分离菌株匹配。只有三个OTU,链霉菌OTU4,OTU11和OTU26及其相应的分离物组可用于比较共存和抗菌活性。链霉菌OTU4与大量OTU呈负相关,并且对应于链霉菌OTU4的分离株具有较高的抗菌活性。但是,对于其他两个OTU及其对应的分离物组,负相关数与抗菌活性之间没有明确的关系。因此,不能证明共现分析在检测抗微生物活性放线菌中的适用性。

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