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B组链球菌的新基因技术:高效转化、温度敏感型pWV01质粒的维持以及Tn917诱变

New genetic techniques for group B streptococci: high-efficiency transformation, maintenance of temperature-sensitive pWV01 plasmids, and mutagenesis with Tn917.

作者信息

Framson P E, Nittayajarn A, Merry J, Youngman P, Rubens C E

机构信息

Virginia Mason Research Center, University of Washington, Seattle, USA.

出版信息

Appl Environ Microbiol. 1997 Sep;63(9):3539-47. doi: 10.1128/aem.63.9.3539-3547.1997.

Abstract

Three techniques were developed to improve the genetic manipulation of group B streptococci (GBS). We first optimized a protocol for transformation of GBS by electroporation, which provided transformation efficiencies of 10(5) CFU/microgram. Variables that influenced the transformation efficiency were the glycine content of the competent cell growth media, the electric field strength during electroporation, the electroporation buffer composition, the host origin of the transforming plasmid, and the concentration of selective antibiotic at the final plating. Our transformation protocol provides an efficiency sufficient for cloning from ligation reactions directly into GBS, obviating an intermediate host such as Escherichia coli. Second, temperature-sensitive plasmids of the pWV01 lineage were shown to transform GBS, and their temperature-sensitive replication was confirmed. Lastly, the temperature-sensitive pWV01 plasmid pTV1OK, which contains Tn917, was used as a transposon delivery vector for the construction of genomic Tn917 mutant libraries. We have shown, for the first time, that Tn917 transposes to the GBS chromosome and at a frequency of 10(-3)/CFU. Furthermore, representative clones from a Tn917 library contained single transposon insertions that were randomly located throughout the chromosome. These techniques should provide useful methods for cloning, mutagenesis, and characterization of genes from GBS.

摘要

开发了三种技术来改进B族链球菌(GBS)的基因操作。我们首先优化了通过电穿孔转化GBS的方案,其转化效率为10(5) CFU/μg。影响转化效率的变量包括感受态细胞生长培养基中的甘氨酸含量、电穿孔期间的电场强度、电穿孔缓冲液组成、转化质粒的宿主来源以及最终平板上选择性抗生素的浓度。我们的转化方案提供了足以直接从连接反应克隆到GBS中的效率,从而无需诸如大肠杆菌之类的中间宿主。其次,已证明pWV01谱系的温度敏感型质粒可转化GBS,并证实了它们的温度敏感型复制。最后,含有Tn917的温度敏感型pWV01质粒pTV1OK被用作转座子递送载体,用于构建基因组Tn917突变体文库。我们首次证明Tn917可转座到GBS染色体上,频率为10(-3)/CFU。此外,来自Tn917文库的代表性克隆包含单个转座子插入,这些插入随机分布在整个染色体上。这些技术应为GBS基因的克隆、诱变和表征提供有用的方法。

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本文引用的文献

1
Insertion of Transposon Tn917 Derivatives into the Lactococcus lactis subsp. lactis Chromosome.
Appl Environ Microbiol. 1993 Jan;59(1):21-6. doi: 10.1128/aem.59.1.21-26.1993.
4
Group B streptococcal beta-hemolysin expression is associated with injury of lung epithelial cells.
Infect Immun. 1996 Sep;64(9):3818-26. doi: 10.1128/iai.64.9.3818-3826.1996.
5
High-efficiency gene inactivation and replacement system for gram-positive bacteria.
J Bacteriol. 1993 Jun;175(11):3628-35. doi: 10.1128/jb.175.11.3628-3635.1993.
6
Effect of type III group B streptococcal capsular polysaccharide on invasion of respiratory epithelial cells.
Infect Immun. 1993 Nov;61(11):4835-41. doi: 10.1128/iai.61.11.4835-4841.1993.
8
Rolling circle-replicating plasmids from gram-positive and gram-negative bacteria: a wall falls.
Mol Microbiol. 1993 May;8(5):789-96. doi: 10.1111/j.1365-2958.1993.tb01625.x.
9
Electrotransformation of Streptococcus agalactiae with plasmid DNA.
FEMS Microbiol Lett. 1994 Jun 1;119(1-2):47-52. doi: 10.1111/j.1574-6968.1994.tb06865.x.
10
Genetic identification of exported proteins in Streptococcus pneumoniae.
Mol Microbiol. 1993 Sep;9(5):1037-50. doi: 10.1111/j.1365-2958.1993.tb01233.x.

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