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选择对沙门氏菌和粪便大肠菌群具有抑制活性的潜在益生菌乳杆菌。

Selection of Potential Probiotic Lactobacillus with Inhibitory Activity Against Salmonella and Fecal Coliform Bacteria.

机构信息

Food Biotechnology Laboratory, Food Biotechnology Research Unit, National Center for Genetic Engineering and Biotechnology, 113 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang, Pathum Thani, 12120, Thailand.

出版信息

Probiotics Antimicrob Proteins. 2018 Jun;10(2):218-227. doi: 10.1007/s12602-017-9304-8.

Abstract

Three hundred and sixty presumptive lactic acid bacteria (LAB) isolated from pregnant sows, newborn, suckling, and weaned piglets were preliminarily screened for anti-Salmonella activity. Fifty-eight isolates consisting of Lactobacillus reuteri (n = 32), Lactobacillus salivarius (n = 10), Lactobacillus mucosae (n = 8), Lactobacillus johnsonii (n = 5), and Lactobacillus crispatus (n = 3) were selected and further characterized for probiotic properties including production of antimicrobial substances, acid and bile tolerance, and cell adherence to Caco-2 cells. Eight isolates including Lact. johnsonii LJ202 and Lact. reuteri LR108 were identified as potential probiotics. LJ202 was selected for further use in co-culture studies of two-bacterial and multiple-bacterial species to examine its inhibitory activity against Salmonella enterica serovar Enteritidis DMST7106 (SE7106). Co-culture of LJ202 and SE7106 showed that LJ202 could completely inhibit the growth of SE7106 in 10 h of co-culture. In co-culture of multiple-bacterial species, culturable fecal bacteria from pig feces were used as representative of multiple-bacterial species. The study was performed to examine whether interactions among multiple-bacterial species would influence antagonistic activity of LJ202 against SE7106 and fecal coliform bacteria. Co-culture of SE7106 with different combinations of fecal bacteria and probiotic (LJ202 and LR108) or non-probiotic (Lact. mucosae LM303) strains revealed that the growth of SE7106 was completely inhibited either in the presence or in the absence of probiotic strains. Intriguingly, LJ202 exhibited notable inhibitory activity against fecal coliform bacteria while LR108 did not. Taken together, the results of co-culture studies suggested that LJ202 is a good probiotic candidate for further study its inhibitory effects against pathogen infections in pigs.

摘要

从妊娠母猪、新生仔猪、哺乳仔猪和断奶仔猪中分离出 360 株疑似乳酸菌(LAB),对其抗沙门氏菌活性进行了初步筛选。选择了 58 株分离株,包括罗伊氏乳杆菌(n=32)、唾液乳杆菌(n=10)、黏膜乳杆菌(n=8)、约氏乳杆菌(n=5)和詹氏乳杆菌(n=3),并进一步对其益生菌特性进行了表征,包括抗菌物质的产生、酸和胆汁耐受性以及细胞对 Caco-2 细胞的黏附性。其中包括约翰逊乳杆菌 LJ202 和罗伊氏乳杆菌 LR108 的 8 株分离株被鉴定为潜在的益生菌。选择 LJ202 用于进一步研究两种和多种细菌的共培养,以研究其对肠炎沙门氏菌血清型肠炎亚种 DMST7106(SE7106)的抑制活性。LJ202 和 SE7106 的共培养表明,在 10 小时的共培养中,LJ202 可完全抑制 SE7106 的生长。在多细菌物种的共培养中,使用猪粪便中的可培养粪便细菌作为多细菌物种的代表。进行这项研究是为了检验多细菌物种之间的相互作用是否会影响 LJ202 对 SE7106 和粪便大肠菌群的拮抗活性。将 SE7106 与粪便细菌和益生菌(LJ202 和 LR108)或非益生菌(黏膜乳杆菌 LM303)菌株的不同组合进行共培养,结果表明,无论是在存在还是不存在益生菌菌株的情况下,SE7106 的生长均完全受到抑制。有趣的是,LJ202 对粪便大肠菌群表现出显著的抑制活性,而 LR108 则没有。综上所述,共培养研究结果表明,LJ202 是一种很好的益生菌候选物,可进一步研究其对猪病原体感染的抑制作用。

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