Characterization of Antimicrobial Substance Produced by Lactobacillus sp. HN 235 Isolated from Pig Intestine

In order to develop probiotics which may be a viable alternative of antibiotic use in pig industry, five bacterial strains (Lactobacillus sp. HN 52, 92, 98, 235 and AP 116) possessing antimicrobial properties were selected from 500 strains isolates of pig intestines. The bacteriocin in produced by L...

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Veröffentlicht in:Han'gug mi'saengmul saengmyeong gong haghoeji 2009-06, Vol.37 (2), p.125-132
Hauptverfasser: Shin, M.S., Korea Bio Science Research Institute of Organic Bio Tech Co. Ltd., Jincheon, Republic of Korea, Han, S.K., Chungbuk National University, Cheongju, Republic of Korea, Choi, J.H., Chungbuk National University, Cheongju, Republic of Korea, Ji, A.R., Korea Bio Science Research Institute of Organic Bio Tech Co. Ltd., Jincheon, Republic of Korea, Kim, K.S., Korea Bio Science Research Institute of Organic Bio Tech Co. Ltd., Jincheon, Republic of Korea, Lee, W.K., Chungbuk National University, Cheongju, Republic of Korea
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Zusammenfassung:In order to develop probiotics which may be a viable alternative of antibiotic use in pig industry, five bacterial strains (Lactobacillus sp. HN 52, 92, 98, 235 and AP 116) possessing antimicrobial properties were selected from 500 strains isolates of pig intestines. The bacteriocin in produced by Lactobacillus sp. HN 235 displayed a relative broad spectrum of inhibitory activity against all Enterococcus strains, Pseudomonas aeruginosa, Listeria monocytogenes and Clostridium perfringens using the spot-on-lawn method. The production of antimicrobial substance started in the middle of the exponential growth phase, reached maximum levels (6,400 AU/ mL) in the stationary phase, and then declined. Bacteriocin activity remained unchanged after 30 min of heat treatment at 95℃ and stable from pH 2.0 to 10 for 1 h, or exposure to organic solvents; however, it diminished after treatment with proteolytic enzymes. The molecular weight of the bacteriocin in was about 5 kDa according to a tricine SDS-PAGE analysis.
ISSN:1598-642X