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溶血巴斯德氏菌A1型aroA突变体的分子基因克隆、核苷酸测序及构建

Molecular gene cloning and nucleotide sequencing and construction of an aroA mutant of Pasteurella haemolytica serotype A1.

作者信息

Tatum F M, Briggs R E, Halling S M

机构信息

Brucellosis Research Group, U.S. Department of Agriculture, Ames, Iowa 50010.

出版信息

Appl Environ Microbiol. 1994 Jun;60(6):2011-6. doi: 10.1128/aem.60.6.2011-2016.1994.

Abstract

The aroA gene of Pasteurella haemolytica serotype A1 was cloned by complementation of the aroA mutation in Escherichia coli K-12 strain AB2829. The nucleotide sequence of a 2.2-kb fragment encoding aroA predicted an open reading frame product 434 amino acids long that shows homology to other bacterial AroA proteins. Several strategies to inactivate aroA were unsuccessful. Gene replacement was finally achieved by constructing a replacement plasmid with aroA inactivated by insertion of a P. haemolytica ampicillin resistance fragment into a unique NdeI site in aroA. A hybrid plasmid was constructed by joining the aroA replacement plasmid with a 4.2-kb P. haemolytica plasmid which encodes streptomycin resistance. Following PhaI methylation, the replacement plasmid was introduced by electroporation into P. haemolytica NADC-D60, a plasmidless strain of serotype 1A. Allelic exchange between the replacement plasmid and the chromosome of P. haemolytica gave rise to an ampicillin-resistant mutant which grew on chemically defined P. haemolytica medium supplemented with aromatic amino acids but failed to grow on the same medium lacking tryptophan. Southern blot analysis confirmed that aroA of the mutant was inactivated and that the mutant was without a plasmid.

摘要

通过互补大肠杆菌K - 12菌株AB2829中的aroA突变,克隆了溶血巴斯德菌A1血清型的aroA基因。编码aroA的一个2.2kb片段的核苷酸序列预测有一个434个氨基酸长的开放阅读框产物,该产物与其他细菌的AroA蛋白具有同源性。几种使aroA失活的策略均未成功。最终通过构建一个置换质粒实现了基因置换,该置换质粒中的aroA因插入了一个溶血巴斯德菌氨苄青霉素抗性片段而失活,该片段插入到aroA的一个独特的NdeI位点。通过将aroA置换质粒与一个编码链霉素抗性的4.2kb溶血巴斯德菌质粒连接,构建了一个杂种质粒。在PhaI甲基化之后,通过电穿孔将置换质粒导入溶血巴斯德菌NADC - D60,这是一个1A血清型的无质粒菌株。置换质粒与溶血巴斯德菌染色体之间的等位基因交换产生了一个氨苄青霉素抗性突变体,该突变体在添加了芳香族氨基酸的化学限定溶血巴斯德菌培养基上生长,但在缺乏色氨酸的相同培养基上不能生长。Southern印迹分析证实该突变体的aroA已失活且该突变体无质粒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d456/201595/9af9c20fd492/aem00023-0319-a.jpg

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