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[荧光假单胞菌M18中rpoS基因插入无启动子lacZ并框内融合的构建与鉴定]

[Construction and identification of rpoS gene inserted and fused in frame with the promoterless lacZ in Pseudomonas sp. M18].

作者信息

Ge Yi-He, Xu Yu-Quan

机构信息

School of Life Science and Biotechnology, Shanghai Jiaotong University, Shanghai 200240, China.

出版信息

Wei Sheng Wu Xue Bao. 2006 Oct;46(5):709-13.

Abstract

With hybridization in situ and Southern blots, an Eco RI- Xho I DNA fragment of 3.1 kb in length containing an rpoS gene and its flanking sequence was first cloned into pBluescript SK to generate pBLS by screening the genomic DNA library of Pseudomonas sp. M18. In order to identify the potential factors involved in rpoS gene expression and the regulatory mechanism of RpoS in strain M18, the rpoS gene was inserted and fused in frame with a promoterless and truncated lacZ gene, and a mutant named as M18SZ was then constructed through homologous recombination. Growth curves in KMB medium indicated that loss of RpoS made the mutant strain M18SZ more sensitive to alteration of some environmental factors. With detection and comparison of beta-galactosidase activities from both the wild type strain M18 and its derivative M18SZ cultivated in KMB medium respectively, it was found that the expression level of beta-galactosidase activities in the mutant M18SZ was high and could come to 480U. Expression of beta-galactosidase activities of the wild type strain M18 in KMB medium was not almost detected during its whole growth phase. With these results, it was confirmed that the rpoS gene did be fused in frame with the truncated lacZ gene in chromosome of the mutant M18SZ. Meanwhile, it is suggested that construction of a mutation, which is made with fusion in frame with the truncated lacZ gene, may be verified by detecting its beta-galactosidase activity, not using Southern blot or PCR.

摘要

通过原位杂交和Southern杂交,首先将一个长度为3.1 kb、包含rpoS基因及其侧翼序列的Eco RI - Xho I DNA片段克隆到pBluescript SK中,通过筛选假单胞菌属M18的基因组DNA文库构建pBLS。为了鉴定参与rpoS基因表达的潜在因子以及菌株M18中RpoS的调控机制,将rpoS基因插入并与一个无启动子的截短lacZ基因进行框内融合,然后通过同源重组构建了一个名为M18SZ的突变体。在KMB培养基中的生长曲线表明,RpoS的缺失使突变菌株M18SZ对某些环境因素的变化更敏感。分别检测和比较在KMB培养基中培养的野生型菌株M18及其衍生物M18SZ的β-半乳糖苷酶活性,发现突变体M18SZ中β-半乳糖苷酶活性的表达水平很高,可达480U。在整个生长阶段几乎未检测到野生型菌株M18在KMB培养基中β-半乳糖苷酶活性的表达。基于这些结果,证实了rpoS基因确实在突变体M18SZ的染色体中与截短的lacZ基因进行了框内融合。同时,表明通过检测其β-半乳糖苷酶活性来验证与截短的lacZ基因进行框内融合构建的突变,而不是使用Southern杂交或PCR。

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