Chen Jun, Shen Jing, Ingvar Hellgren Lars, Ruhdal Jensen Peter, Solem Christian
National Food Institute, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
Department of Systems Biology, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
Sci Rep. 2015 Sep 21;5:14199. doi: 10.1038/srep14199.
Lactococcus lactis is essential for most cheese making, and this mesophilic bacterium has its growth optimum around 30 °C. We have, through adaptive evolution, isolated a mutant TM29 that grows well up to 39 °C, and continuous growth at 40 °C is possible if pre-incubated at a slightly lower temperature. At the maximal permissive temperature for the wild-type, 38 °C, TM29 grows 33% faster and has a 12% higher specific lactate production rate than its parent MG1363, which results in fast lactate accumulation. Genome sequencing was used to reveal the mutations accumulated, most of which were shown to affect thermal tolerance. Of the mutations with more pronounced effects, two affected expression of single proteins (chaperone; riboflavin transporter), two had pleiotropic effects (RNA polymerase) which changed the gene expression profile, and one resulted in a change in the coding sequence of CDP-diglyceride synthase. A large deletion containing 10 genes was also found to affect thermal tolerance significantly. With this study we demonstrate a simple approach to obtain non-GMO derivatives of the important L. lactis that possess properties desirable by the industry, e.g. thermal robustness and increased rate of acidification. The mutations we have identified provide a genetic basis for further investigation of thermal tolerance.
乳酸乳球菌对大多数奶酪制作至关重要,这种嗜温细菌在30°C左右生长最佳。我们通过适应性进化分离出了一个突变体TM29,它在高达39°C的温度下仍能良好生长,如果在略低的温度下预培养,甚至可以在40°C持续生长。在野生型的最高允许温度38°C时,TM29的生长速度比其亲本MG1363快33%,乳酸产生率比亲本高12%,这导致乳酸快速积累。通过基因组测序揭示了积累的突变,其中大部分被证明影响耐热性。在具有更显著影响的突变中,两个影响单一蛋白质(伴侣蛋白;核黄素转运蛋白)的表达,两个具有多效性作用(RNA聚合酶)从而改变了基因表达谱,还有一个导致CDP - 甘油二酯合酶的编码序列发生变化。还发现一个包含10个基因的大缺失显著影响耐热性。通过这项研究,我们展示了一种简单的方法来获得重要的乳酸乳球菌的非转基因衍生物,这些衍生物具有该行业所期望的特性,例如热稳定性和更高的酸化速率。我们鉴定出的突变提供了进一步研究耐热性的遗传基础。