Laboratorio de Biotecnología e Inocuidad de los Alimentos, Facultad de Ciencias Bioquímicas y Farmacéuticas - Municipalidad de Granadero Baigorria, Universidad Nacional de Rosario, Suipacha 590, Rosario, Argentina; Laboratorio de Genética y Fisiología de Bacterias Lácticas by Laboratorio de Fisiología y Genética de Bacterias Lácticas, Instituto de Biología Molecular y Celular de Rosario - IBR, CONICET - UNR, Argentina.
Laboratorio de Biotecnología e Inocuidad de los Alimentos, Facultad de Ciencias Bioquímicas y Farmacéuticas - Municipalidad de Granadero Baigorria, Universidad Nacional de Rosario, Suipacha 590, Rosario, Argentina; IQUIR Instituto de Química de Rosario, CONICET-UNR, Argentina.
J Biotechnol. 2018 Sep 20;282:25-31. doi: 10.1016/j.jbiotec.2018.06.345. Epub 2018 Jun 23.
Lactococcus lactis strains constitute one of the most important starter cultures for cheese production. In this study, a genome-wide analysis was performed including 68 available genomes of L. lactis group strains showing the existence of two species (L. lactis and L. cremoris) and two biovars (L. lactis biovar. diacetylactis and L. cremoris biovar. lactis). The proposed classification scheme revealed coherency among phenotypic (through in silico and in vivo bacterial function profiling), phylogenomic (through maximum likelihood trees) and genomic (using overall genome sequence-based parameters) approaches. Strain biodiversity for the industrial biovar. diacetylactis was also analyzed, finding they are formed by at least three variants with the CC1 clonal complex as the only one distributed worldwide. These findings and methodologies will help improve the selection of L. lactis group strains for industrial use as well as facilitate the interpretation of previous or future research studies on this diverse group of bacteria.
乳球菌属菌株是奶酪生产中最重要的起始培养物之一。在这项研究中,对包括 68 个乳球菌属菌株的全基因组进行了分析,结果表明存在两个种(乳球菌和乳脂球亚种)和两个生物型(乳球菌乳亚种和乳脂球亚种)。所提出的分类方案显示了表型(通过计算机和体内细菌功能分析)、系统发育基因组学(通过最大似然树)和基因组(使用基于全基因组序列的参数)方法之间的一致性。还分析了工业生物型乳亚种的菌株多样性,发现它们由至少三种变体组成,其中 CC1 克隆复合体是唯一分布在全球的变体。这些发现和方法将有助于改进工业用乳球菌属菌株的选择,也有助于解释对这一多样化细菌群体的先前或未来的研究。