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Integrated Physical and Genetic Mapping of Bacillus cereus and Other Gram-Positive Bacteria Based on IS231A Transposition Vectors

机译:基于IS231A转座载体的蜡样芽胞杆菌和其他革兰氏阳性细菌的物理和遗传整合图谱

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摘要

The genome structure of Bacillus cereus is relatively complex, its DNA being modulated between a size-varying chromosome and large plasmids. To study the genetic organization of the B. cereus type strain ATCC 14579, thermosensitive transposition vectors were designed on the basis of IS231A-derived cassettes containing uncommon restriction sites. A highly preferred insertion site for IS231A was detected in the chromosome by Southern blotting and pulsed-field gel electrophoresis (PFGE) analyses of independent insertion mutants. However, once this insertional hot spot was occupied, secondary IS231A insertions occurred randomly, as demonstrated by isolation of independent B. cereus auxotrophs at a frequency of approximately 0.6%. The hot-spot site, as well as several auxotrophic mutations, were mapped by using NotI, SfiI, and AscI PFGE restriction profiles. It was confirmed by sequencing that one of the insertions, generating an Ade phenotype, had disrupted a gene of the purine synthesis pathway. These results showed that combined PFGE and sequencing analyses of mini-IS231A insertions enable the construction of integrated physical and genetic maps of B. cereus type strain. Moreover, the presence of the ultrarare I-SceI restriction site in the mini-IS231A allowed the isolation, in double-insertion mutants, of contiguous and nonoverlapping large chromosomal fragments, convenient for direct sequencing. The system detailed in this report is therefore a powerful tool for comparative genetic studies among members of the B. cereus group (i.e., B. cereus, B. thuringiensis, B. mycoides, and B. anthracis) and could also be applied to more distantly related gram-positive bacteria.
机译:蜡状芽孢杆菌的基因组结构相对复杂,其DNA在大小可变的染色体和大质粒之间调节。为了研究蜡状芽孢杆菌型菌株ATCC 14579的遗传组织,基于IS231A衍生的含有不常见限制性位点的盒,设计了热敏转座载体。通过独立插入突变体的Southern印迹和脉冲场凝胶电泳(PFGE)分析,在染色体中检测到IS231A的高度优选插入位点。但是,一旦这个插入热点被占用,IS231A的第二次插入就随机发生,如分离出独立的蜡状芽孢杆菌营养缺陷型,频率约为0.6%。通过使用NotI,SfiI和AscI PFGE限制性酶切图谱定位了热点位点以及一些营养缺陷型突变。通过测序证实,产生Ade -表型的插入之一破坏了嘌呤合成途径的基因。这些结果表明,微型IS231A插入的PFGE和测序分析相结合,能够构建蜡状芽孢杆菌型菌株的综合物理和遗传图谱。此外,在mini-IS231A中,超稀有I-SceI限制性酶切位点的存在允许在双插入突变体中分离连续且不重叠的大染色体片段,便于直接测序。因此,本报告中详述的系统是蜡状芽孢杆菌组成员(即蜡状芽孢杆菌,苏云金芽孢杆菌, B。mycoides B炭疽菌),也可以应用于更远距离相关的革兰氏阳性菌。

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