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肠炎沙门氏菌肠炎亚种霍乱血清型和鼠伤寒血清型中质粒编码的四环素抗性:完整和截短的Tn1721元件的鉴定

Plasmid-encoded tetracycline resistance in Salmonella enterica subsp. enterica serovars choleraesuis and typhimurium: identification of complete and truncated Tn1721 elements.

作者信息

Frech G, Schwarz S

机构信息

Institut für Tierzucht und Tierverhalten der Bundesforschungsanstalt für Landwirtschaft Braunschweig/Völkenrode (FAL), Celle, Germany.

出版信息

FEMS Microbiol Lett. 1999 Jul 1;176(1):97-103. doi: 10.1111/j.1574-6968.1999.tb13648.x.

Abstract

During routine screening of Salmonella enterica subsp., S. enterica isolates of animal origin for plasmid-encoded tetracycline resistance, two tetracycline resistance plasmids, the 50 kbp plasmid pGFT3 of Salmonella choleraesuis and the 9.5 kbp plasmid pGFT4 of Salmonella typhimurium var. Copenhagen DT002, were detected. The respective tetracycline resistance genes (tet) were identified by hybridization and PCR analysis to belong to hybridization class A. Conjugation experiments identified plasmid pGFT3 as a conjugative plasmid. Molecular analysis of the tet(A) gene area and the flanking regions identified a complete Tn1721-like transposon on plasmid pGFT3 and a truncated Tn1721-like element on plasmid pGFT4. The complete Tn1721-like element was integrated into a transposase reading frame of a truncated Tn3 transposon also located on plasmid pGFT3. The truncated Tn1721-like element of plasmid pGFT4 lacked the entire transposase part. This Tn1721-relic was integrated in an unknown reading frame which on amino acid level showed homology to the Rop protein of Escherichia coli. A model for the deletion of the transposase part was developed on the basis of the sequences present at the termini of the truncated Tn1721-like element.

摘要

在对肠炎沙门氏菌亚种的动物源肠炎沙门氏菌分离株进行质粒编码四环素抗性的常规筛选过程中,检测到了两种四环素抗性质粒,即霍乱沙门氏菌的50 kbp质粒pGFT3和鼠伤寒沙门氏菌哥本哈根变种DT002的9.5 kbp质粒pGFT4。通过杂交和PCR分析确定各自的四环素抗性基因(tet)属于杂交A类。接合实验确定质粒pGFT3为接合性质粒。对tet(A)基因区域及其侧翼区域的分子分析表明,质粒pGFT3上存在一个完整的类Tn1721转座子,质粒pGFT4上存在一个截短的类Tn1721元件。完整的类Tn1721元件整合到了同样位于质粒pGFT3上的一个截短的Tn3转座子的转座酶阅读框中。质粒pGFT4的截短类Tn1721元件缺少整个转座酶部分。这个Tn1721遗迹整合到了一个未知阅读框中,该阅读框在氨基酸水平上与大肠杆菌的Rop蛋白具有同源性。基于截短类Tn1721元件末端存在的序列构建了转座酶部分缺失的模型。

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