Genomic Sequence of Streptococcus salivarius MDI13 and Latilactobacillus sakei MEI5: Two Promising Probiotic Strains Isolated from European Hakes (Merluccius merluccius, L.).

IF 2 2区 农林科学 Q2 VETERINARY SCIENCES Veterinary Sciences Pub Date : 2024-08-10 DOI:10.3390/vetsci11080365
Lara Díaz-Formoso, Diogo Contente, Javier Feito, Pablo E Hernández, Juan Borrero, Estefanía Muñoz-Atienza, Luis M Cintas
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Abstract

Frequently, diseases in aquaculture have been fought indiscriminately with the use of antibiotics, which has led to the development and dissemination of (multiple) antibiotic resistances in bacteria. Consequently, it is necessary to look for alternative and complementary approaches to chemotheraphy that are safe for humans, animals, and the environment, such as the use of probiotics in fish farming. The objective of this work was the Whole-Genome Sequencing (WGS) and bioinformatic and functional analyses of S. salivarius MDI13 and L. sakei MEI5, two LAB strains isolated from the gut of commercial European hakes (M. merluccius, L.) caught in the Northeast Atlantic Ocean. The WGS and bioinformatic and functional analyses confirmed the lack of transferable antibiotic resistance genes, the lack of virulence and pathogenicity issues, and their potentially probiotic characteristics. Specifically, genes involved in adhesion and aggregation, vitamin biosynthesis, and amino acid metabolism were detected in both strains. In addition, genes related to lactic acid production, active metabolism, and/or adaptation to stress and adverse conditions in the host gastrointestinal tract were detected in L. sakei MEI5. Moreover, a gene cluster encoding three bacteriocins (SlvV, BlpK, and BlpE) was identified in the genome of S. salivarius MDI13. The in vitro-synthesized bacteriocin BlpK showed antimicrobial activity against the ichthyopathogens Lc. garvieae and S. parauberis. Altogether, our results suggest that S. salivarius MDI13 and L. sakei MEI5 have a strong potential as probiotics to prevent fish diseases in aquaculture as an appropriate alternative/complementary strategy to the use of antibiotics.

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唾液链球菌 MDI13 和日本清酒乳杆菌 MEI5 的基因组序列:从欧洲鳕鱼(Merluccius merluccius, L.)中分离出的两种前景看好的益生菌株。
水产养殖中的疾病往往是通过滥用抗生素来防治的,这导致了细菌(多种)抗生素耐药性的产生和传播。因此,有必要寻找对人类、动物和环境安全的化学疗法的替代和补充方法,如在养鱼业中使用益生菌。这项工作的目的是对从东北大西洋捕获的欧洲商业鲑鱼(M. merluccius, L.)肠道中分离出的两株 LAB 菌株 S. salivarius MDI13 和 L. sakei MEI5 进行全基因组测序(WGS)、生物信息学和功能分析。WGS 和生物信息学及功能分析证实,这两株菌株没有可转移的抗生素耐药基因,没有毒力和致病性问题,而且具有潜在的益生特性。具体来说,在这两种菌株中都检测到了涉及粘附和聚集、维生素生物合成和氨基酸代谢的基因。此外,在清酒酵母 MEI5 中还检测到了与乳酸产生、活性代谢和/或适应宿主胃肠道压力和不利条件有关的基因。此外,在唾液菌 MDI13 的基因组中发现了编码三种细菌素(SlvV、BlpK 和 BlpE)的基因簇。体外合成的细菌素 BlpK 对鱼类病原体 Lc. garvieae 和 S. parauberis 具有抗菌活性。总之,我们的研究结果表明,唾液酸酵母菌 MDI13 和清酒酵母菌 MEI5 作为水产养殖中预防鱼病的益生菌,具有很强的潜力,是使用抗生素的适当替代/补充策略。
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来源期刊
Veterinary Sciences
Veterinary Sciences VETERINARY SCIENCES-
CiteScore
2.90
自引率
8.30%
发文量
612
审稿时长
6 weeks
期刊介绍: Veterinary Sciences is an international and interdisciplinary scholarly open access journal. It publishes original that are relevant to any field of veterinary sciences, including prevention, diagnosis and treatment of disease, disorder and injury in animals. This journal covers almost all topics related to animal health and veterinary medicine. Research fields of interest include but are not limited to: anaesthesiology anatomy bacteriology biochemistry cardiology dentistry dermatology embryology endocrinology epidemiology genetics histology immunology microbiology molecular biology mycology neurobiology oncology ophthalmology parasitology pathology pharmacology physiology radiology surgery theriogenology toxicology virology.
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