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首页> 外文期刊>Journal of applied microbiology >Construction and evaluation of food-grade vectors for Lactococcus lactis using aspartate aminotransferase and alpha-galactosidase as selectable markers
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Construction and evaluation of food-grade vectors for Lactococcus lactis using aspartate aminotransferase and alpha-galactosidase as selectable markers

机译:以天冬氨酸转氨酶和α-半乳糖苷酶为选择标记的乳酸乳球菌食品级载体的构建和评价

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AIMS: We report development of two food-grade cloning vectors for Lactococcus lactis, which utilize either a lactococcal aspartate aminotransferase gene (aspC), or Bifidobacterium longumalpha-galactosidase gene (aglL) as selectable markers. METHODS AND RESULTS: The theta-replicon of lactococcal plasmid, pW563, was combined with aspC and a multiple cloning site. When electroporated into L. lactis JLS400 (AspC-), the resulting vector, pSUW611 (3.9 kbp), restores ability of the mutant to grow in milk thus allowing for selection of the transformants. The vector is stable during 100 generations of nonselective growth (0.2% loss per generation). The second vector, pSUW711 (5.1 kbp), was constructed by exchanging aspC with aglL under the control of usp45 promoter. Lactococcus lactis transformed with pSUW711 produced distinctive colonies within 48-72 h on melibiose-containing plates. Expression of two Lactobacillus helveticus peptidases was attempted using these new vehicles. Introduction of pepN on pSUW611 and pSUW711 into L. lactis led to a sixfold, or 27-fold increase in aminopeptidase activity, respectively. However, no changes in endopeptidase activity were recorded upon transformation with pSUW611 carrying pepO2 under control of three different promoters. Attempts were also made to construct high copy variants of pSUW711. CONCLUSIONS: The aspC and aglL can be employed as food-grade genetic markers for L. lactis. The vectors, pSUW611 and pSUW711, were successfully used to express Lact. helveticus PepN in L. lactis. SIGNIFICANCE AND IMPACT OF THE STUDY: Two novel food-grade vectors were developed which provide simple and convenient selection and maintenance in L. lactis.
机译:目的:我们报告了乳酸乳球菌的两种食品级克隆载体的开发,它们利用乳球菌天冬氨酸氨基转移酶基因(aspC)或长双歧杆菌α-半乳糖苷酶基因(aglL)作为选择标记。方法和结果:将乳球菌质粒pW563的θ-复制子与aspC和一个多克隆位点相结合。当电穿孔入乳酸乳球菌JLS400(AspC-)中时,所得载体pSUW611(3.9 kbp)恢复了突变体在牛奶中生长的能力,从而可以选择转化子。该载体在100代非选择性生长中稳定(每代损失0.2%)。通过在usp45启动子的控制下将aspC与aglL交换,构建了第二个载体pSUW711(5.1 kbp)。用pSUW711转化的乳酸乳球菌在含melibiose的平板上48-72 h内产生了独特的菌落。使用这些新载体尝试表达两种瑞士乳杆菌肽酶。在pSUW611和pSUW711上将pepN引入乳酸乳球菌会分别导致氨肽酶活性增加6倍或27倍。然而,在携带带有三个不同启动子控制下的pepO2的pSUW611转化后,未记录到内肽酶活性的变化。还尝试构建pSUW711的高拷贝变体。结论:aspC和aglL可作为乳酸乳球菌的食品级遗传标记。载体pSUW611和pSUW711已成功用于表达Lact。乳杆菌中的helveticus PepN。研究的意义和影响:开发了两种新颖的食品级载体,它们为乳酸乳球菌提供了简便的选择和维护方法。

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