[从A、B、H型链球菌到N型链球菌的共轭质粒转移]。

I Riemelt, W Kirchhübel, H Malke
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引用次数: 2

摘要

质粒介导的对红霉素和氯霉素的耐药性通过类似于偶联的过程成功地从A、B和H组链球菌转移到N组链球菌。结果表明,除了N外,其他链球菌群的质粒也能在乳酸链球菌中复制。采用膜过滤配种技术进行了转移实验。所使用的五个质粒中的四个(pSM15346, pSM10419, pIP501和pEL1)以每个供体集落形成单位10(-1)至10(-8)个转偶联子的频率进行转移。以化脓性葡萄球菌15346 (pSM15346)为供体菌株时,转移频率最高。通过检测受体菌株的未选择标记物的存在,验证了转偶联物的身份,并排除了转导和转化作为转移机制的可能性。
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[Conjugational plasmid transfer from A, B and H streptococci to N streptococci].

Plasmid-mediated resistance to erythromycin and chloramphenicol was successfully transferred from group A, B and H streptococci to group N streptococci by a process akin to conjugation. The results showed that plasmids from streptococcal groups other than N were able to replicate in lactic streptococci as well. The transfer experiments were carried out by using a membrane filter mating technique. Four of the five plasmids used (pSM15346, pSM10419, pIP501, and pEL1) were transferred at frequencies ranging from 10(-1) to 10(-8) transconjugants per donor colony-forming unit. The highest transfer frequencies were obtained when S. pyogenes strain 15346 (pSM15346) served as the donor strain. The identy of transconjugants was verified by testing for the presence of unselected markers of the recipient strains, and both transduction and transformation were ruled out as the mechanisms of transfer.

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17 Mikrobielle Vielfalt, Evolution und Systematik 13 Mikrobielle Gärungen 10 Transport durch die Cytoplasmamembran 18 Die Rolle von Mikroorganismen im Stoffkreislauf und in der Natur 12 Oxidation anorganischer Verbindungen: chemolithotrophe Lebensweise
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