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用于研究微生物之间水平基因转移而无需培养受体的系统。

System to study horizontal gene exchange among microorganisms without cultivation of recipients.

作者信息

Strätz M, Mau M, Timmis K N

机构信息

Department of Microbiology, GBF-National Research Centre for Biotechnology, Braunschweig, Germany.

出版信息

Mol Microbiol. 1996 Oct;22(2):207-15. doi: 10.1046/j.1365-2958.1996.00099.x.

Abstract

Ribosomal RNA genes are characterized by highly conserved sequences and are present in multiple copies in most prokaryotic chromosomes. In principle, therefore, they might serve as sites for homologous recombination between unrelated microorganisms. Plasmids containing 23S ribosomal gene sequences, from different bacteria, which had been interrupted by insertion of a kanamycin-resistance gene, were used to transform Acinetobacter sp. DSM587 (former name: Acinetobacter calcoaceticus BD413-ivl10). In all cases, homologies between the 23S rRNA genes of phylogenetically distant bacteria and Acinetobacter sp. DSM587 were sufficient for replacement recombination events. The integration events, resulting in inactivation of any one of the seven rrn operons of Acinetobacter sp. DSM587, had no observable influence on cell growth. These results suggest the possibility of rRNA genes serving as natural vehicles for horizontal gene transfer. They also provide the basis of a novel strategy to analyse gene transfer without selection or cultivation of recipient cells. Because of the highly conserved structure of bacterial rrn operons, recombination events subsequent to gene transfer can be readily identified by polymerase chain reaction amplification of the recombinant sequence using a universal forward primer for the 16S rRNA gene and a reverse primer specific for the integrated marker gene.

摘要

核糖体RNA基因具有高度保守的序列特征,并且在大多数原核生物染色体中以多拷贝形式存在。因此,原则上它们可能成为不相关微生物之间同源重组的位点。含有来自不同细菌的23S核糖体基因序列的质粒,这些序列因插入卡那霉素抗性基因而中断,被用于转化不动杆菌属DSM587(曾用名:醋酸钙不动杆菌BD413 - ivl10)。在所有情况下,系统发育上距离较远的细菌与不动杆菌属DSM587的23S rRNA基因之间的同源性足以发生置换重组事件。整合事件导致不动杆菌属DSM587的七个rrn操纵子中的任何一个失活,但对细胞生长没有可观察到的影响。这些结果表明rRNA基因有可能作为水平基因转移的天然载体。它们还为一种无需选择或培养受体细胞就能分析基因转移的新策略提供了基础。由于细菌rrn操纵子的高度保守结构,基因转移后的重组事件可以通过使用16S rRNA基因的通用正向引物和整合标记基因特异性的反向引物对重组序列进行聚合酶链反应扩增来轻易鉴定。

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