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Inhibition of <scp><i>S</i></scp><i>almonella</i> by Bacteriocin‐Producing Lactic Acid Bacteria Derived from <scp>U.S.</scp> Kimchi and Broiler Chicken

36

Citations

38

References

2014

Year

Abstract

Abstract In this study, lactic acid bacteria ( LAB ) were isolated from kimchi prepared in the U.S.A. and from broiler chickens. The resulting isolates were examined for potential probiotic characteristics. A total of 488 LAB strains were isolated, and among them, 16 originating from kimchi and 14 from broilers produced bacteriocin‐like substances, which showed antimicrobial effects against S almonella E nteritidis, H eidelberg, N ewport and T yphimurium. These strains were investigated with regard to additional probiotic properties such as tolerance to gastric juice and bile, resistance to enzymes, and antibiotics susceptibilities. L actobacillus casei or paracasei Cab‐18, L b . saniviri Cuc‐1, and L euconostoc mesenteroides Com‐54 isolated from kimchi and L b. johnsonii F ‐6 and L b. crispatus F ‐59 isolated from broiler chicken demonstrated promising probiotic properties with the ability to produce bacteriocin‐like substances with relatively strong antimicrobial activity against S almonella . These strains could potentially be applied as supplements to poultry in order to reduce S almonella contamination. Practical Applications Salmonellosis associated with consumption of contaminated meats, especially poultry products, is a major concern due to the common outbreaks in the U.S.A . Although it has been shown that lactic acid bacteria ( LAB ) could reduce S almonella contaminations, LAB isolated from kimchi have not been studied for the potential to inhibit the persistence of S almonella spp. in live poultry. The present study screened LAB , which showed antimicrobial effects against four clinically important serotypes of S almonella . Additionally, we selected LAB that had additional probiotic properties, which would allow for the strains use as potential feed additives. Therefore, the LAB strains isolated in this study could be applied as feed supplements to poultry for the purpose of reducing colonization of S almonella in poultry as well as contamination during processing.

References

YearCitations

2013

47.5K

1989

4.1K

1989

1.3K

2003

800

2005

525

2013

481

2011

457

2006

430

1999

399

1998

388

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