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抗生素的产生与土壤细菌的反耐药性协同进化。

Coevolution of antibiotic production and counter-resistance in soil bacteria.

机构信息

Department of Biological Sciences, University of Warwick, Coventry, UK.

出版信息

Environ Microbiol. 2010 Mar;12(3):783-96. doi: 10.1111/j.1462-2920.2009.02125.x. Epub 2010 Jan 10.

Abstract

We present evidence for the coexistence and coevolution of antibiotic resistance and biosynthesis genes in soil bacteria. The distribution of the streptomycin (strA) and viomycin (vph) resistance genes was examined in Streptomyces isolates. strA and vph were found either within a biosynthetic gene cluster or independently. Streptomyces griseus strains possessing the streptomycin cluster formed part of a clonal complex. All S. griseus strains possessing solely strA belonged to two clades; both were closely related to the streptomycin producers. Other more distantly related S. griseus strains did not contain strA. S. griseus strains with only vph also formed two clades, but they were more distantly related to the producers and to one another. The expression of the strA gene was constitutive in a resistance-only strain whereas streptomycin producers showed peak strA expression in late log phase that correlates with the switch on of streptomycin biosynthesis. While there is evidence that antibiotics have diverse roles in nature, our data clearly support the coevolution of resistance in the presence of antibiotic biosynthetic capability within closely related soil dwelling bacteria. This reinforces the view that, for some antibiotics at least, the primary role is one of antibiosis during competition in soil for resources.

摘要

我们提供了土壤细菌中抗生素耐药性和生物合成基因共存和共同进化的证据。我们检测了链霉素(strA)和威霉素(vph)耐药基因在链霉菌分离物中的分布。strA 和 vph 要么存在于生物合成基因簇内,要么独立存在。含有链霉素簇的灰色链霉菌菌株形成了一个克隆复合体的一部分。所有仅含有 strA 的灰色链霉菌菌株都属于两个进化枝;它们都与链霉素产生菌密切相关。其他亲缘关系较远的灰色链霉菌菌株则不含有 strA。仅含有 vph 的灰色链霉菌菌株也形成了两个进化枝,但它们与产生菌的亲缘关系更远,彼此之间的亲缘关系也更远。在仅具有耐药性的菌株中,strA 基因的表达是组成型的,而在产生链霉素的菌株中,strA 基因的表达在对数后期达到峰值,这与链霉素生物合成的开启相吻合。虽然有证据表明抗生素在自然界中具有多种作用,但我们的数据清楚地支持了在具有抗生素生物合成能力的密切相关的土壤栖息细菌中,耐药性的共同进化。这进一步证实了这样一种观点,即至少对于某些抗生素而言,其主要作用是在土壤中竞争资源时发挥抑菌作用。

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