Advanced Engineering School, Institute of Biotechnology, Bioengineering and Food Systems, Far Eastern Federal University, 10 Ajax Bay, Russky Island, 690922 Vladivostok, Russia.
Laboratory of Marine Biochemistry, G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far Eastern Branch, Russian Academy of Sciences, Prospect 100-Letya Vladivostoka 152, 690022 Vladivostok, Russia.
Int J Mol Sci. 2023 Feb 19;24(4):4158. doi: 10.3390/ijms24044158.
Advances in the computational annotation of genomes and the predictive potential of current metabolic models, based on more than thousands of experimental phenotypes, allow them to be applied to identify the diversity of metabolic pathways at the level of ecophysiology differentiation within taxa and to predict phenotypes, secondary metabolites, host-associated interactions, survivability, and biochemical productivity under proposed environmental conditions. The significantly distinctive phenotypes of members of the marine bacterial species and an inability to use common molecular markers make their identification within the genus and prediction of their biotechnology potential impossible without genome-scale analysis and metabolic reconstruction. A new strain, KMM 6257, of a carotenoid-like phenotype, isolated from a deep-habituating starfish, emended the description of , particularly in the temperature growth range from 4 to 37 °C. The taxonomic status of all available closely related species was elucidated by phylogenomics. possesses putative methylerythritol phosphate pathway II and 4,4'-diapolycopenedioate biosynthesis, related to C30 carotenoids, and their functional analogues, aryl polyene biosynthetic gene clusters (BGC). However, the yellow-orange pigmentation phenotypes in some strains coincide with the presence of a hybrid BGC encoding for aryl polyene esterified with resorcinol. The alginate degradation and glycosylated immunosuppressant production, similar to brasilicardin, streptorubin, and nucleocidines, are the common predicted features. Starch, agar, carrageenan, xylose, lignin-derived compound degradation, polysaccharide, folate, and cobalamin biosynthesis are all strain-specific.
在计算基因组注释和基于数千个实验表型的现有代谢模型的预测潜力方面的进展,使得它们能够应用于在分类群内的生态生理学分化水平上识别代谢途径的多样性,并预测表型、次生代谢物、宿主相关相互作用、在拟议环境条件下的生存能力和生化生产力。海洋细菌物种成员的显著不同表型以及无法使用常见的分子标记,使得在没有基因组规模分析和代谢重建的情况下,无法在属内识别它们并预测其生物技术潜力。一种新的类胡萝卜素表型菌株 KMM 6257,从一种深栖海星中分离出来,对 的描述进行了修正,特别是在 4 到 37°C 的温度生长范围内。通过系统发育基因组学阐明了所有可利用的密切相关物种的分类地位。 拥有假定的甲基赤藓糖醇磷酸途径 II 和 4,4'-二聚多烯酸生物合成,与 C30 类胡萝卜素及其功能类似物,芳基聚烯生物合成基因簇(BGC)有关。然而,一些菌株的黄橙色着色表型与存在编码与间苯二酚酯化的芳基聚烯的杂种 BGC 一致。褐藻胶降解和糖基化免疫抑制剂生产与巴西卡丁、链道霉素和核甙相似,是常见的预测特征。淀粉、琼脂、卡拉胶、木糖、木质素衍生化合物降解、多糖、叶酸和钴胺素生物合成都是菌株特异性的。