Department of Biotechnology, Microbiology and Human Nutrition, Faculty of Food Science and Biotechnology, University of Life Sciences in Lublin, Skromna 8, 20-704 Lublin, Poland.
Department of Genetics and Microbiology, Institute of Biological Sciences, Maria Curie-Skłodowska University, Akademicka 19, 20-033 Lublin, Poland.
Int J Mol Sci. 2021 Apr 6;22(7):3780. doi: 10.3390/ijms22073780.
The production of mead holds great value for the Polish liquor industry, which is why the bacterium that spoils mead has become an object of concern and scientific interest. This article describes, for the first time, FLUB newly isolated from mead, as a mead spoilage bacteria. Whole genome sequencing of FLUB revealed a 3 Mbp chromosome and five plasmids, which is the largest reported genome of this species. An extensive phylogenetic analysis and digital DNA-DNA hybridization confirmed the membership of the strain in the species. The genome of FLUB encodes 3043 genes, 2871 of which are protein coding sequences, 79 code for RNA, and 93 are pseudogenes. FLUB possesses three clustered regularly interspaced short palindromic repeats (CRISPR), eight genomic islands (44,155 bp to 6345 bp), and three (two intact and one incomplete) prophage regions. For the first time, the characteristics of the genome of this species were described and a pangenomic analysis was performed. The concept of the pangenome was used not only to establish the genetic repertoire of this species, but primarily to highlight the unique characteristics of FLUB. The core of the genome of is centered around genes related to the storage and processing of genetic information, as well as to carbohydrate and amino acid metabolism. Strains with such a genetic constitution can effectively adapt to environmental changes. FLUB is distinguished by an extensive cluster of metabolic genes, arsenic detoxification genes, and unique surface layer proteins. Variants of MRS broth with ethanol (10-20%), glucose (2-25%), and fructose (2-24%) were prepared to test the strain's growth preferences using Bioscreen C and the PYTHON script. FLUB was found to be more resistant than a reference strain to high concentrations of alcohol (18%) and sugars (25%). It exhibited greater preference for fructose than glucose, which suggests it has a fructophilic nature. Comparative genomic analysis supported by experimental research imitating the conditions of alcoholic beverages confirmed the niche specialization of FLUB to the mead environment.
蜜酒生产对波兰的酒类行业具有重要意义,因此,导致蜜酒变质的细菌成为了关注和科学研究的对象。本文首次描述了从蜜酒中分离到的 FLUB,它是一种蜜酒变质细菌。FLUB 的全基因组测序揭示了一个 3 Mbp 的染色体和五个质粒,这是该物种中报道的最大基因组。广泛的系统发育分析和数字 DNA-DNA 杂交证实了该菌株属于 种。FLUB 的基因组编码 3043 个基因,其中 2871 个是蛋白质编码序列,79 个编码 RNA,93 个是假基因。FLUB 拥有三个簇状规则间隔的短回文重复序列(CRISPR),八个基因组岛(44155 bp 至 6345 bp),和三个(两个完整的和一个不完整的)噬菌体区域。本文首次描述了该物种基因组的特征,并进行了泛基因组分析。泛基因组的概念不仅用于建立该物种的遗传库,而且主要用于突出 FLUB 的独特特征。的基因组核心围绕与遗传信息存储和处理以及碳水化合物和氨基酸代谢相关的基因。具有这种遗传结构的菌株可以有效地适应环境变化。FLUB 以广泛的代谢基因簇、砷解毒基因和独特的表面层蛋白为特征。使用 Bioscreen C 和 PYTHON 脚本,制备了含有 10-20%乙醇、2-25%葡萄糖和 2-24%果糖的改良 MRS 肉汤变体,以测试菌株在不同条件下的生长偏好。与参考菌株相比,FLUB 对高浓度酒精(18%)和糖(25%)的耐受性更强。它对果糖的偏好大于葡萄糖,这表明它具有果糖嗜性。实验研究支持的比较基因组分析证实了 FLUB 对蜜酒环境的特殊适应。