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Synergistic Antimicrobial Activity of Metabolites Produced by a Nonobligate Bacterial Predator†

机译:非专性细菌捕食者产生的代谢物的协同抗菌活性†

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摘要

A naturally occurring, gram-negative, nonobligate predator bacterial strain 679-2, exhibits broad-spectrum antimicrobial activity that is due, in part, to the production of three extracellular compounds. Antimicrobial-activity-directed fractionation of a culture of strain 679-2 against a panel of microorganisms has led to the isolation of three compounds: pyrrolnitrin, maculosin, and a new compound, which we have named banegasine. Although pyrrolnitrin is well known in the literature, it has not been found in cells with the herbicide maculosin. Further, this is the first report of production of maculosin by a prokaryote. Both maculosin and banegasine, which displayed no antimicrobial activities alone, were found to potentiate the antimicrobial activity of pyrrolnitrin. Based on 16S rRNA sequence, cellular fatty acid composition, and biochemical and cultural characteristics, strain 679-2 appears to represent a new genus and species of eubacteria, Aristabacter necator. The potent, broad-spectrum antimicrobial activity of predator strain 679-2 may be due to synergism between metabolites.
机译:天然存在的革兰氏阴性,非专性捕食细菌菌株679-2具有广谱抗菌活性,这部分归因于三种细胞外化合物的产生。菌株679-2的培养物针对一组微生物的抗微生物活性定向分馏已导致分离出三种化合物:吡咯尼替林,Maculosin和一种新化合物,我们将其命名为banegasine。尽管吡咯尼特林在文献中是众所周知的,但尚未在具有除草剂马科洛辛的细胞中发现它。此外,这是原核生物生产Maculosin的首次报道。发现单独不显示抗菌活性的Maculosin和banegasine均能增强吡咯硝菌素的抗菌活性。基于16S rRNA序列,细胞脂肪酸组成以及生化和培养特性,菌株679-2似乎代表了真细菌的一个新属和种,即Aristabacter necator。捕食者菌株679-2的有效的广谱抗菌活性可能是由于代谢产物之间的协同作用。

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