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D75和D76的全基因组测序证实了其安全性和益生菌潜力。

Whole-Genome Sequencing of D75 and D76 Confirms Safety and Probiotic Potential.

作者信息

Toropov Vyacheslav, Demyanova Elena, Shalaeva Olga, Sitkin Stanislav, Vakhitov Timur

机构信息

Department of Microbiology, State Research Institute of Highly Pure Biopreparations, 197110 St. Petersburg, Russia.

Department of Internal Diseases, Gastroenterology and Dietetics, North-Western State Medical University named after I.I. Mechnikov, 195067 St. Petersburg, Russia.

出版信息

Microorganisms. 2020 Feb 26;8(3):329. doi: 10.3390/microorganisms8030329.

Abstract

Whole-genome DNA sequencing of D75 and D76 strains (Vitaflor, Russia) was determined using the PacBio RS II platform, which was followed by de novo assembly with SMRT Portal 2.3.0. The average nucleotide identity (ANI) test showed that both strains belong to the , but not to the , as previously assumed. In addition, 31 exopolysaccharide (EPS) production genes (nine of which form a single genetic cluster), 13 adhesion genes, 38 milk protein and 11 milk sugar utilization genes, 13 genes for and against specific antagonistic activity, eight antibiotic resistance genes, and also three CRISPR blocks and eight Cas I-B system genes were identified in the genomes of both strains. The expression of bacteriocin helveticin J genes was confirmed. In fact, the presence of identified genes suggests that D75 and D76 are able to form biofilms on the outer mucin layer, inhibit the growth of pathogens and pathobionts, utilize milk substrates with the formation of digestible milk sugars and bioactive peptides, resist bacteriophages, show some genome-determined resistance to antibiotics, and stimulate the host's immune system. Pathogenicity genes have not been identified. The study results confirm the safety and high probiotic potential of the strains.

摘要

使用PacBio RS II平台对D75和D76菌株(俄罗斯Vitaflor)进行全基因组DNA测序,随后使用SMRT Portal 2.3.0进行从头组装。平均核苷酸同一性(ANI)测试表明,这两种菌株都属于 ,但并不像之前假设的那样属于 。此外,在两种菌株的基因组中鉴定出31个胞外多糖(EPS)产生基因(其中9个形成一个单一基因簇)、13个粘附基因、38个乳蛋白和11个乳糖利用基因、13个针对特定拮抗活性的基因、8个抗生素抗性基因,以及3个CRISPR模块和8个Cas I-B系统基因。已证实了细菌素瑞士菌素J基因的表达。事实上,已鉴定基因的存在表明D75和D76能够在外层粘蛋白层上形成生物膜,抑制病原体和致病共生菌的生长,利用牛奶底物形成可消化的乳糖和生物活性肽,抵抗噬菌体,表现出一定的基因组决定的抗生素抗性,并刺激宿主免疫系统。尚未鉴定出致病基因。研究结果证实了这些菌株的安全性和高益生菌潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db43/7142726/a5a95f6da9b1/microorganisms-08-00329-g001.jpg

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