Journal
JOURNAL OF DAIRY SCIENCE
Volume 104, Issue 2, Pages 1474-1483Publisher
ELSEVIER SCIENCE INC
DOI: 10.3168/jds.2020-18959
Keywords
bacteriocin; antibacterial activity; membrane permeability; biofilm
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Bacteriocin BM173 was successfully expressed and purified, showing broad-spectrum antibacterial activity, high thermal and pH stability, as well as efficacy in disrupting cell membrane integrity and inhibiting biofilm formation. These findings suggest that BM173 has promising potential as a preservative in the dairy industry.
There is an increasing demand for dairy products, but the presence of food-spoilage bacteria seriously affects the development of the dairy industry. Bacteriocins are considered to be a potential antibacterial or antibiofilm agent that can be applied as a preservative. In this study, bacteriocin BM173 was successfully expressed in the Escherichia coli expression system and purified by a 2-step method. Furthermore, it exhibited a broad-spectrum antibacterial activity, high thermal stability (121 degrees C, 20 min), and broad pH stability (pH 3-11). Moreover, the minimum inhibitory concentration values of BM173 against E. coli ATCC 25922 and Staphylococcus aureus ATCC 25923 were 14.8 mu g/mL and 29.6 mu g/mL, respectively. Growth and time-kill curves showed that BM173 exhibited antibacterial and bactericidal activity. The results of scanning electron microscopy and transmission electron microscopy demonstrated that BM173 increased membrane permeability, facilitated pore formation, and even promoted cell lysis. The disruption of cell membrane integrity was further verified by propidium iodide uptake and lactic dehydrogenase release. In addition, BM173 exhibited high efficiency in inhibiting biofilm formation. Therefore, BM173 has promising potential as a preservative used in the dairy industry.
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