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Use of Probiotic Bacteria and Bacteriocins as an Alternative to Antibiotics in Aquaculture

期刊

MICROORGANISMS
卷 10, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/microorganisms10091705

关键词

probiotic; bacteriocin; antibiotic; aquaculture; biotechnology

资金

  1. Sao Paulo Research Foundation-FAPESP [2018/25511-1, 2021/01570-1]
  2. National Council for Scientific and Technological Development-CNPq [312923/2020-1, 408783/2021-4]
  3. FONDECYT/Postdoctoral [3180765]
  4. FONDECYT/Regular in Chile [1211246, 1200523]

向作者/读者索取更多资源

In addition to human medicine, antimicrobials are used in food animals and aquaculture for therapeutic purposes against bacterial infections. However, their use in aquaculture can lead to environmental consequences and the spread of bacterial resistance genes. Probiotics and bacteriocins derived from lactic acid bacteria offer potential alternatives to antibiotics for controlling bacterial infections.
In addition to their use in human medicine, antimicrobials are also used in food animals and aquaculture, and their use can be categorized as therapeutic against bacterial infections. The use of antimicrobials in aquaculture may involve a broad environmental application that affects a wide variety of bacteria, promoting the spread of bacterial resistance genes. Probiotics and bacteriocins, antimicrobial peptides produced by some types of lactic acid bacteria (LAB), have been successfully tested in aquatic animals as alternatives to control bacterial infections. Supplementation might have beneficial impacts on the intestinal microbiota, immune response, development, and/or weight gain, without the issues associated with antibiotic use. Thus, probiotics and bacteriocins represent feasible alternatives to antibiotics. Here, we provide an update with respect to the relevance of aquaculture in the animal protein production sector, as well as the present and future challenges generated by outbreaks and antimicrobial resistance, while highlighting the potential role of probiotics and bacteriocins to address these challenges. In addition, we conducted data analysis using a simple linear regression model to determine whether a linear relationship exists between probiotic dose added to feed and three variables of interest selected, including specific growth rate, feed conversion ratio, and lysozyme activity.

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