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厌氧菌中的耐药基因转移:新见解,新问题。

Resistance gene transfer in anaerobes: new insights, new problems.

作者信息

Salyers A A, Shoemaker N B

机构信息

Department of Microbiology, University of Illinois, Urbana 61801, USA.

出版信息

Clin Infect Dis. 1996 Dec;23 Suppl 1:S36-43. doi: 10.1093/clinids/23.supplement_1.s36.

Abstract

Investigations of antibiotic-resistance gene transfer elements in Bacteroides species have generated some new insights into how bacteria transfer resistance genes and what environmental conditions foster gene transfer. Integrated gene transfer elements, called conjugative transposons, appear to be responsible for much of the transfer of resistance genes among Bacteroides species. Conjugative transposons not only transfer themselves but also mobilize coresident plasmids and excise and mobilize unlinked integrated elements. Less is known about resistance gene transfer elements of the gram-positive anaerobes, but there are some indications that similar elements may be found in them as well. An unusual feature of the Bacteroides conjugative transposons is that transfer of many of them is stimulated considerably by low concentrations of antibiotics. Thus, antibiotics not only select for resistant strains but also can stimulate transfer of the resistance gene in the first place. This finding raises questions about whether use of low-dose tetracycline therapy may have a greater effect on the resident microflora than had been previously thought. Finally, investigations of resistance genes in Bacteroides species and other genera of bacteria have begun to provide evidence that the resident microflora of the human body does indeed act as a reservoir for resistance genes, which may be acquired from and passed on the transient colonizers of the site.

摘要

对拟杆菌属中抗生素抗性基因转移元件的研究,为细菌如何转移抗性基因以及何种环境条件促进基因转移带来了一些新的见解。被称为接合转座子的整合基因转移元件,似乎在拟杆菌属物种间抗性基因的转移中起了很大作用。接合转座子不仅能自我转移,还能带动共居的质粒,并切除和转移不相连的整合元件。对于革兰氏阳性厌氧菌的抗性基因转移元件了解较少,但有一些迹象表明在它们之中也可能发现类似的元件。拟杆菌属接合转座子的一个不寻常特征是,低浓度抗生素能显著刺激其中许多转座子的转移。因此,抗生素不仅会选择抗性菌株,还能首先刺激抗性基因的转移。这一发现引发了关于低剂量四环素疗法对常驻微生物群的影响是否可能比之前认为的更大的疑问。最后,对拟杆菌属物种和其他细菌属中抗性基因的研究已开始提供证据,表明人体的常驻微生物群确实充当了抗性基因的储存库,这些抗性基因可能从该部位的短暂定殖菌获得并传递给它们。

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