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用乳酸链球菌质粒DNA对血链球菌Challis进行转化。

Transformation of Streptococcus sanguis Challis with Streptococcus lactis plasmid DNA.

作者信息

Harlander S K, McKay L L

出版信息

Appl Environ Microbiol. 1984 Aug;48(2):342-6. doi: 10.1128/aem.48.2.342-346.1984.

Abstract

Streptococcus lactis plasmid DNA, which is required for the fermentation of lactose (plasmid pLM2001), and a potential streptococcal cloning vector plasmid (pDB101) which confers resistance to erythromycin were evaluated by transformation into Streptococcus sanguis Challis. Plasmid pLM2001 transformed lactose-negative (Lac-) mutants of S. sanguis with high efficiency and was capable of conferring lactose-metabolizing ability to a mutant deficient in Enzyme IIlac, Factor IIIlac, and phospho-beta-galactosidase of the lactose phosphoenolpyruvate-phosphotransferase system. Plasmid pDB101 was capable of high-efficiency transformation of S. sanguis to antibiotic resistance, and the plasmid could be readily isolated from transformed strains. However, when 20 pLM2001 Lac+ transformants were analyzed by a variety of techniques for the presence of plasmids, none could be detected. In addition, attempts to cure the Lac+ transformants by treatment with acriflavin were unsuccessful. Polyacrylamide gel electrophoresis was used to demonstrate that the transformants had acquired a phospho-beta-galactosidase characteristic of that normally produced by S. lactis and not S. sanguis. It is proposed that the genes required for lactose fermentation may have become stabilized in the transformants due to their integration into the host chromosome. The efficient transformation into and expression of pLM2001 and pDB101 genes in S. sanguis provides a model system which could allow the development of a system for cloning genes from dairy starter cultures into S. sanguis to examine factors affecting their expression and regulation.

摘要

对用于乳糖发酵的乳酸链球菌质粒DNA(质粒pLM2001)和赋予红霉素抗性的潜在链球菌克隆载体质粒(pDB101)进行了转化血链球菌Challis的评估。质粒pLM2001能高效转化血链球菌的乳糖阴性(Lac-)突变体,并能赋予乳糖磷酸烯醇丙酮酸磷酸转移酶系统中缺乏酶IIlac、因子IIIlac和磷酸β-半乳糖苷酶的突变体乳糖代谢能力。质粒pDB101能高效将血链球菌转化为抗生素抗性,且该质粒能很容易地从转化菌株中分离出来。然而,当用多种技术分析20个pLM2001 Lac+转化体中质粒的存在情况时,未检测到任何质粒。此外,用吖啶黄素处理治愈Lac+转化体的尝试也未成功。聚丙烯酰胺凝胶电泳用于证明转化体获得了乳酸链球菌而非血链球菌正常产生的磷酸β-半乳糖苷酶特征。有人提出,乳糖发酵所需的基因可能由于整合到宿主染色体中而在转化体中变得稳定。pLM2001和pDB101基因在血链球菌中的高效转化和表达提供了一个模型系统,该系统可用于开发一种将乳制品发酵剂培养物中的基因克隆到血链球菌中以研究影响其表达和调控因素的系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de8d/241515/e6f935fab665/aem00153-0108-a.jpg

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