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链霉菌属中的广泛掠夺能力。

Widespread predatory abilities in the genus Streptomyces.

机构信息

Anujeeva Biosciences Pvt Ltd, Pune, 411038, Maharashtra, India.

出版信息

Arch Microbiol. 2014 Apr;196(4):235-48. doi: 10.1007/s00203-014-0961-7. Epub 2014 Feb 18.

Abstract

The natural role of antibiotics in the ecology of Streptomyces is debated and still largely unknown. The predatory myxobacteria and many other genera of prokaryotic epibiotic and wolfpack predators across different taxa possess secondary metabolites with antimicrobial action, and these compounds have a role in predation. If all epibiotic predators are antibiotic producers, it is worth testing whether all antibiotic producers are predators too. We show here that Streptomyces are non-obligate epibiotic predators of other microorganisms and that predatory abilities are widespread in this genus. We developed a test for predatory activity which revealed that a large proportion of traditionally isolated Streptomyces strains and all oligophilic Streptomyces isolates show predatory activity. Those that did not show predatory ability on first challenge could do so after many generations of selection or acclimation. Using time-lapse photomicrography, we demonstrate that the growth of the tips of Streptomyces hyphae is accompanied by disappearance of cells of other bacteria in the vicinity presumably due to lysis. Predatory activity is restricted to surface growth and is not obligately associated with antibiotic production in conventional culture. However, some of the genes crucial to the regulation of secondary metabolite pathways are differentially expressed during predatory growth on different prey species as compared to saprophytic growth. Our findings strengthen the association between epibiotic predation and antibiotic production.

摘要

抗生素在链霉菌生态中的自然作用存在争议,目前仍知之甚少。捕食性粘细菌和其他许多原核生物的生境捕食者以及狼群捕食者在不同分类群中都拥有具有抗菌作用的次生代谢产物,这些化合物在捕食中发挥作用。如果所有生境捕食者都是抗生素的生产者,那么是否所有抗生素的生产者也都是捕食者,这是值得探究的。我们在这里表明,链霉菌是非专性的其他微生物的生境捕食者,并且捕食能力在该属中广泛存在。我们开发了一种捕食活性测试方法,该方法表明,传统分离的链霉菌菌株和所有寡养链霉菌分离株的大部分都具有捕食活性。首次挑战时没有表现出捕食能力的菌株,可以在经过多代选择或驯化后表现出这种能力。通过延时显微摄影,我们证明了链霉菌菌丝尖端的生长伴随着附近其他细菌细胞的消失,推测这是由于溶菌作用。捕食活性仅限于表面生长,并且与常规培养中的抗生素产生没有必然联系。然而,与腐生生长相比,在捕食不同猎物物种时,一些对次生代谢途径调控至关重要的基因的表达存在差异。我们的发现进一步证实了生境捕食与抗生素产生之间的联系。

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