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大肠杆菌λ噬菌体、λdg溶原菌中高频率硫代甲基半乳糖苷抗性的生化和遗传基础。

The biochemical and genetic basis for high frequency thiomethyl galactoside resistance in lambda,lambdadg lysogens of Escherichia coli.

作者信息

Raney M E, Elliott R W

出版信息

J Gen Microbiol. 1978 Feb;104(2):287-97. doi: 10.1099/00221287-104-2-287.

Abstract

In a culture of Escherichia coli K12 gal (lambdadg), cells which form large colonies on agar plates containing galactose and thiomethyl beta-D-galactoside (TMG) appear at high frequency. These clones are resistant to growth inhibition by TMG on galactose minimal medium. Biochemical studies of the steady-state levels of galactokinase and UDPgalactose 4-epimerase suggest that the resistant clones have extra copies of the genes for the galactose-metabolizing enzymes. The mutation for TMG resistance is not located in either the bacterial or the bacteriophage genome, but is probably due to an aberrant association between cell and prophage DNA. Mapping the TMG-resistant characteristic by phage P1 indicates that TMG-resistant bacteria posses at least two GAL+ OPERONS, ONE OF WHICH IS COTRANSDUCIBLe with bio+. In addition, TMG-resistant bacteria behave like lambdadg polylysogens when challenged with the phage lambdaI90c17. From these genetic experiments we conclude that TMG-resistant bacteria arise by duplication of the lambdadg prophage. Finally, gal+ bacteria which carry a single, additional, lambdadg prophage are TMG-resistant. TMG resistance is probably a gal+ gene dosage effect.

摘要

在大肠杆菌K12 gal(λdg)培养物中,在含有半乳糖和硫代甲基-β-D-半乳糖苷(TMG)的琼脂平板上形成大菌落的细胞高频出现。这些克隆在半乳糖基本培养基上对TMG的生长抑制具有抗性。对半乳糖激酶和UDP半乳糖4-表异构酶稳态水平的生化研究表明,抗性克隆具有半乳糖代谢酶基因的额外拷贝。TMG抗性突变既不位于细菌基因组也不位于噬菌体基因组中,而可能是由于细胞与原噬菌体DNA之间的异常关联。用噬菌体P1对TMG抗性特征进行定位表明,TMG抗性细菌至少拥有两个GAL +操纵子,其中一个与bio +共转导。此外,当用噬菌体λI90c17攻击时,TMG抗性细菌的行为类似于λdg多溶原菌。从这些遗传实验中我们得出结论,TMG抗性细菌是由λdg原噬菌体的复制产生的。最后,携带单个额外λdg原噬菌体的gal +细菌对TMG具有抗性。TMG抗性可能是一种gal +基因剂量效应。

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