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介导金黄色葡萄球菌对四环素和氯霉素耐药性的质粒共转导

Co-transduction of plasmids mediating resistance to tetracycline and chloramphenicol in Staphylococcus aureus.

作者信息

Stiffler P W, Sweeney H M, Cohen S

出版信息

J Bacteriol. 1974 Nov;120(2):934-4. doi: 10.1128/jb.120.2.934-944.1974.

Abstract

Independent plasmids mediating resistance either to tetracycline (Tc) or chloramphenicol (Cm) were transduced successively into Staphylococcus aureus strain 8325. From this doubly resistant donor strain, Tc was co-transduced with a frequency of 40 to 50% when Cm was selected. Co-transduction of Cm was 5 to 10% with Tc selection. Plasmid elimination was infrequent and restricted to the Cm plasmid. A variant, doubly resistant strain gave 100% co-transduction of Tc and Cm and a high rate of joint elimination of both plasmid markers. Co-transduction of the plasmids from recombination-deficient donor strains was much reduced if the plasmids had been introduced separately into the donor strain, but occurred at the normal high rate if they had been introduced jointly. The plasmids were co-transformed at relatively low rates with closed circular deoxyribonucleic acid (DNA) from doubly resistant donors, but not with DNA from a mixed lysate of singly resistant strains. Our evidence favored a hypothesis of recombination-dependent, reversible linkage between the two plasmids as the basis for their co-transduction. Examination of plasmid DNA from the doubly resistant strains by ultracentrifugal and electron microscopic methods did not disclose any physical differences between singly and doubly resistant strains that might account for the observed co-transduction.

摘要

将介导对四环素(Tc)或氯霉素(Cm)耐药性的独立质粒依次转导至金黄色葡萄球菌8325菌株中。从这个双重耐药供体菌株中,当选择Cm时,Tc以40%至50%的频率共转导。选择Tc时,Cm的共转导率为5%至10%。质粒消除很少见,且仅限于Cm质粒。一个双重耐药的变体菌株中,Tc和Cm的共转导率为100%,且两种质粒标记物的联合消除率很高。如果质粒是分别导入供体菌株的,那么来自重组缺陷供体菌株的质粒共转导率会大大降低,但如果是联合导入的,则以正常的高频率发生。这些质粒与双重耐药供体的闭环脱氧核糖核酸(DNA)以相对较低的速率共转化,但与单一耐药菌株的混合裂解物中的DNA不发生共转化。我们的证据支持这样一种假说,即这两种质粒之间存在依赖重组的可逆连接,这是它们共转导的基础。通过超速离心和电子显微镜方法对双重耐药菌株的质粒DNA进行检查,未发现单一耐药菌株和双重耐药菌株之间存在任何可能解释所观察到的共转导现象的物理差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f603/245860/f0b961b15b19/jbacter00335-0389-a.jpg

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