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Red Soils Harbor Diverse Culturable Actinomycetes That Are Promising Sources of Novel Secondary Metabolites

机译:红壤中有多种可培养的放线菌,它们是新的次级代谢产物的有希望的来源

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Red soils, which are widely distributed in tropical and subtropical regions of southern China, are characterized by low organic carbon, high content of iron oxides, and acidity and, hence, are likely to be ideal habitats for acidophilic actinomycetes. However, the diversity and biosynthetic potential of actinomycetes in such habitats are underexplored. Here, a total of 600 actinomycete strains were isolated from red soils collected in Jiangxi Province in southeast China. 16S rRNA gene sequence analysis revealed a high diversity of the isolates, which were distributed into 26 genera, 10 families, and 7 orders within the class Actinobacteria ; these taxa contained at least 49 phylotypes that are likely to represent new species within 15 genera. The isolates showed good physiological potentials for biosynthesis and biocontrol. Chemical screening of 107 semirandomly selected isolates spanning 20 genera revealed the presence of at least 193 secondary metabolites from 52 isolates, of which 125 compounds from 39 isolates of 12 genera were putatively novel. Macrolides, polyethers, diketopiperazines, and siderophores accounted for most of the known compounds. The structures of six novel compounds were elucidated, two of which had a unique skeleton and represented characteristic secondary metabolites of a putative novel Streptomyces phylotype. These results demonstrate that red soils are rich reservoirs for diverse culturable actinomycetes, notably members of the families Streptomycetaceae , Pseudonocardiaceae , and Streptosporangiaceae , with the capacity to synthesize novel bioactive compounds.
机译:红色土壤广泛分布在中国南部的热带和亚热带地区,其特征在于有机碳含量低,氧化铁含量高和酸度高,因此很可能是嗜酸放线菌的理想生境。然而,放线菌在这种生境中的多样性和生物合成潜力尚未得到开发。在这里,从中国东南部江西省采集的红色土壤中分离出总共600种放线菌菌株。 16S rRNA基因序列分析表明,分离株具有较高的多样性,在放线菌属中共分为26属,10族和7目。这些分类群至少包含49种系统型,很可能代表15个属中的新物种。分离株显示出良好的生物合成和生物防治潜力。对跨越20个属的107个半随机选择的分离株进行化学筛选显示,存在来自52个分离株的至少193种次级代谢产物,其中来自12个属的39个分离株的125种化合物被认为是新颖的。大环内酯类,聚醚类,二酮哌嗪类和铁载体占大多数已知化合物。阐明了六个新化合物的结构,其中两个具有独特的骨架并代表推定的新链霉菌系统型的特征性次级代谢产物。这些结果表明,红壤是各种可培养放线菌的丰富储集地,尤其是链霉菌科,假心动菌科和链霉菌科的成员,具有合成新型生物活性化合物的能力。

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