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基于蜜二糖发酵的新型食品级质粒载体用于乳酸乳球菌的基因工程。

Novel food-grade plasmid vector based on melibiose fermentation for the genetic engineering of Lactococcus lactis.

作者信息

Boucher Isabelle, Parrot Marc, Gaudreau Hélène, Champagne Claude P, Vadeboncoeur Christian, Moineau Sylvain

机构信息

Département de Biochimie et de Microbiologie, Faculté des Sciences et de Génie, Groupe de Recherche en Ecologie Buccale (GREB), Faculté de Médecine Dentaire, Université Laval, Québec, Canada G1K 7P4.

出版信息

Appl Environ Microbiol. 2002 Dec;68(12):6152-61. doi: 10.1128/AEM.68.12.6152-6161.2002.

Abstract

The alpha-galactosidase gene (aga) and a gene coding for a putative transcriptional regulator from the LacI/GalR family (galR) of Lactococcus raffinolactis ATCC 43920 were cloned and sequenced. When transferred into Lactococcus lactis and Pediococcus acidilactici strains, aga modified the sugar fermentation profile of the strains from melibiose negative (Mel(-)) to melibiose positive (Mel(+)). Analysis of galA mutants of L. lactis subsp. cremoris MG1363 indicated that the putative galactose permease GalA is also needed to obtain the Mel(+) phenotype. Consequently, GalA may also transport melibiose into this strain. We demonstrated that when aga was associated with the theta-type replicon of a natural L. lactis plasmid, it constituted the selectable marker of a cloning vector named pRAF800. Transcriptional analysis by reverse transcriptase PCR suggests that this vector is also suitable for gene expression. The alpha-galactosidase activity conferred by pRAF800 was monitored in an industrial strain grown in the presence of various carbon sources. The results indicated that the enzymatic activity was induced by galactose and melibiose, but not by glucose or lactose. The gene encoding the phage defense mechanism, AbiQ, was cloned into pRAF800, and the resulting clone (pRAF803) was transferred into an industrial L. lactis strain that became highly phage resistant. The measurements of various growth parameters indicated that cells were not affected by the presence of pRAF803. Moreover, the plasmid was highly stable in this strain even under starter production conditions. The L. raffinolactis aga gene represents the basis of a novel and convenient food-grade molecular tool for the genetic engineering of lactic acid bacteria.

摘要

克隆并测序了棉籽糖乳球菌ATCC 43920的α-半乳糖苷酶基因(aga)和一个编码来自LacI/GalR家族假定转录调节因子的基因(galR)。当转入乳酸乳球菌和嗜酸乳杆菌菌株时,aga将菌株的糖发酵谱从蜜二糖阴性(Mel(-))改变为蜜二糖阳性(Mel(+))。乳酸乳球菌亚种cremoris MG1363的galA突变体分析表明,获得Mel(+)表型还需要假定的半乳糖通透酶GalA。因此,GalA也可能将蜜二糖转运到该菌株中。我们证明,当aga与天然乳酸乳球菌质粒的θ型复制子相关联时,它构成了一个名为pRAF800的克隆载体的选择标记。逆转录酶PCR转录分析表明,该载体也适用于基因表达。在存在各种碳源的工业菌株中监测了pRAF800赋予的α-半乳糖苷酶活性。结果表明,酶活性由半乳糖和蜜二糖诱导,但不由葡萄糖或乳糖诱导。将编码噬菌体防御机制的基因AbiQ克隆到pRAF800中,所得克隆(pRAF803)转入一株工业乳酸乳球菌菌株,该菌株变得高度抗噬菌体。各种生长参数的测量表明,细胞不受pRAF803存在的影响。此外,即使在发酵剂生产条件下该质粒在该菌株中也高度稳定。棉籽糖乳球菌aga基因代表了一种用于乳酸菌基因工程的新型便捷食品级分子工具的基础。

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