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首页> 外文期刊>Applied and Environmental Microbiology >Molecular Description and Industrial Potential of Tn6098 Conjugative Transfer Conferring Alpha-Galactoside Metabolism in Lactococcus lactis
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Molecular Description and Industrial Potential of Tn6098 Conjugative Transfer Conferring Alpha-Galactoside Metabolism in Lactococcus lactis

机译:乳酸乳球菌中α-半乳糖苷代谢的Tn6098共轭转移的分子描述和工业潜力

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A novel 51-kb conjugative transposon of Lactococcus lactis, designated Tn6098, encoding the capacity to utilize α-galactosides such as raffinose and stachyose, was identified and characterized. Alpha-galactosides are a dominant carbon source in many plant-derived foods. Most dairy lactococcus strains are unable to use α-galactosides as a growth substrate, yet many of these strains are known to have beneficial industrial traits. Conjugal transfer of Tn6098 was demonstrated from the plant-derived donor strain L. lactis KF147 to the recipient L. lactis NZ4501, a derivative of the dairy model strain L. lactis MG1363. The integration of Tn6098 into the genome of the recipient strain was confirmed by Illumina sequencing of the transconjugant L. lactis NIZO3921. The molecular structure of the integration site was confirmed by a PCR product spanning the insertion site. A 15-bp direct repeat sequence (TTATACCATAATTAC) is present on either side of Tn6098 in the chromosome of L. lactis KF147. One copy of this sequence is also present in the L. lactis MG1363 chromosome and represents the sole integration site. Phenotypic characterization of all strains showed that the transconjugant has not only acquired the ability to grow well in soy milk, a substrate rich in α-galactosides, but also has retained the flavor-forming capabilities of the recipient strain L. lactis MG1363. This study demonstrates how (induced) conjugation can be used to exploit the beneficial industrial traits of industrial dairy lactic acid bacteria in fermentation of plant-derived substrates.
机译:鉴定并鉴定了一种新型的51 kb乳酸乳球菌的共轭转座子,命名为Tn6098,该转座子编码利用α-半乳糖苷如棉子糖和水苏糖的能力。 α-半乳糖苷是许多植物性食品中的主要碳源。大多数乳酸乳球菌菌株不能使用α-半乳糖苷作为生长底物,但是已知其中许多菌株具有有益的工业特性。从植物来源的供体乳酸乳球菌KF147到乳杆菌模型乳酸乳球菌MG1363的衍生物乳酸菌NZ450NZ受体的Tn6098的共轭转移证明。 Tn6098整合入受体菌株的基因组中,通过转导结合乳球菌NIZO3921的Illumina测序证实。整合位点的分子结构由跨越插入位点的PCR产物证实。一个15 bp的直接重复序列(TTATACCATAATTAC)存在于乳酸乳球菌KF147染色体Tn6098的任一侧。该序列的一个拷贝也存在于乳酸乳球菌MG1363染色体中,并且代表唯一的整合位点。所有菌株的表型特征表明,转接合剂不仅获得了在豆奶(富含α-半乳糖苷的底物)中良好生长的能力,而且还保留了受体乳酸杆菌MG1363的风味形成能力。这项研究表明,(诱导)结合可用于在植物来源的底物发酵中利用工业乳品乳酸菌的有益工业特性。

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