首页> 外文期刊>BMC Microbiology >Antimicrobial activity, antibiotic susceptibility and virulence factors of Lactic Acid Bacteria of aquatic origin intended for use as probiotics in aquaculture
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Antimicrobial activity, antibiotic susceptibility and virulence factors of Lactic Acid Bacteria of aquatic origin intended for use as probiotics in aquaculture

机译:拟用作水产养殖益生菌的水生乳酸菌的抗菌活性,抗生素敏感性和毒力因子

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Background The microorganisms intended for use as probiotics in aquaculture should exert antimicrobial activity and be regarded as safe not only for the aquatic hosts but also for their surrounding environments and humans. The objective of this work was to investigate the antimicrobial/bacteriocin activity against fish pathogens, the antibiotic susceptibility, and the prevalence of virulence factors and detrimental enzymatic activities in 99 Lactic Acid Bacteria (LAB) (59 enterococci and 40 non-enterococci) isolated from aquatic animals regarded as human food. Results These LAB displayed a broad antimicrobial/bacteriocin activity against the main Gram-positive and Gram-negative fish pathogens. However, particular safety concerns based on antibiotic resistance and virulence factors were identified in the genus Enterococcus (86%) (Enterococcus faecalis, 100%; E. faecium, 79%). Antibiotic resistance was also found in the genera Weissella (60%), Pediococcus (44%), Lactobacillus (33%), but not in leuconostocs and lactococci. Antibiotic resistance genes were found in 7.5% of the non-enterococci, including the genera Pediococcus (12.5%) and Weissella (6.7%). One strain of both Pediococcus pentosaceus and Weissella cibaria carried the erythromycin resistance gene mef(A/E), and another two P. pentosaceus strains harboured lnu(A) conferring resistance to lincosamides. Gelatinase activity was found in E. faecalis and E. faecium (71 and 11%, respectively), while a low number of E. faecalis (5%) and none E. faecium exerted hemolytic activity. None enterococci and non-enterococci showed bile deconjugation and mucin degradation abilities, or other detrimental enzymatic activities. Conclusions To our knowledge, this is the first description of mef(A/E) in the genera Pediococcus and Weissella, and lnu(A) in the genus Pediococcus. The in vitro subtractive screening presented in this work constitutes a valuable strategy for the large-scale preliminary selection of putatively safe LAB intended for use as probiotics in aquaculture.
机译:背景技术打算在水产养殖中用作益生菌的微生物应发挥抗微生物活性,不仅对水生寄主而且对周围环境和人类都是安全的。这项工作的目的是调查分离自99种乳酸菌(LAB)(59种肠球菌和40种非肠球菌)对鱼类病原体的抗菌/细菌活性,抗生素敏感性以及毒力因子和有害酶活性的发生率。水生动物被视为人类食物。结果这些LAB对主要革兰氏阳性和革兰氏阴性鱼病原体表现出广泛的抗菌/细菌活性。但是,在肠球菌属(86%)中发现了基于抗生素耐药性和毒力因子的特殊安全性问题(粪肠球菌为100%;粪肠球菌为79%)。 Weissella(60%),Pecococcus(44%),Lactobacillus(33%)属也发现了抗生素耐药性,但在leuconostocs和laccoocci中却没有。在7.5%的非肠球菌中发现了抗生素抗性基因,其中包括Pediococcus属(12.5%)和Weissella(6.7%)。一株戊糖小球菌和Weissella cibaria菌株均带有红霉素抗性基因mef(A / E),另外两株戊糖小球菌带有lnu(A)赋予对林可酰胺类的抗性。在粪肠球菌和粪肠球菌中发现明胶酶活性(分别为71%和11%),而少量的粪肠球菌(5%)和无粪肠球菌具有溶血活性。没有肠球菌和非肠球菌显示胆汁解偶联和粘蛋白降解能力,或其他有害的酶活性。结论据我们所知,这是Pediococcus和Weissella属中mef(A / E)和Pediococcus属lnu(A)的首次描述。这项工作中提出的体外消减筛选构成了大规模初步选择拟用作水产养殖益生菌的公认安全实验室的宝贵策略。

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