Previous Issue
Volume 6, September
 
 

Aquac. J., Volume 6, Issue 4 (December 2026) – 1 article

  • Issues are regarded as officially published after their release is announced to the table of contents alert mailing list.
  • You may sign up for e-mail alerts to receive table of contents of newly released issues.
  • PDF is the official format for papers published in both, html and pdf forms. To view the papers in pdf format, click on the "PDF Full-text" link, and use the free Adobe Reader to open them.
Order results
Result details
Select all
Export citation of selected articles as:
21 pages, 5012 KB  
Review
Mechanisms Driving Antimicrobial Resistance in Aquaculture
by Deyan Stratev
Aquac. J. 2026, 6(4), 44; https://doi.org/10.3390/aquacj6040044 - 22 Sep 2026
Abstract
Aquaculture is a rapidly growing industry, with worldwide production reaching new levels. Intensive aquaculture often leads to the occurrence of bacterial diseases, which cause large economic losses. Antibiotics are the first choice for the treatment of these diseases, but their frequency or improper [...] Read more.
Aquaculture is a rapidly growing industry, with worldwide production reaching new levels. Intensive aquaculture often leads to the occurrence of bacterial diseases, which cause large economic losses. Antibiotics are the first choice for the treatment of these diseases, but their frequency or improper use results in the development of antimicrobial resistance. The aim of this study was to present the mechanisms of antimicrobial resistance to the most widely used groups of antibiotics, such as quinolones, tetracyclines, and phenicols, for controlling bacterial diseases in fish. The selective pressure exerted by these pharmaceuticals drives the emergence of resistant bacterial strains and the horizontal transfer of genes encoding this resistance. The transmission of resistant pathogens from aquaculture to other animals and humans is well documented, which complicates the treatment of emerging bacterial diseases. Hence, the aquatic environment is a major reservoir of resistant bacteria, genes, and antimicrobials. Efforts should be made to stop the excessive and improper use of antibiotics in aquaculture and encourage farmers to use alternative means for the prevention and control of bacterial diseases. Several alternative strategies can be employed in aquaculture as substitutes for antibiotics, thereby mitigating the development of antimicrobial resistance. Among the most prominent alternative measures are vaccines, immunostimulants, and bacteriophage therapy. Encouraging the adoption of sustainable farming practices plays a critical role in fostering optimal conditions for aquaculture systems, thereby mitigating disease outbreaks and obviating the need for antibiotic treatments. Antimicrobial resistance is effectively mitigated through the implementation of a holistic One Health approach, which systematically curtails the emergence and dissemination of resistant bacteria while safeguarding human and animal health. Full article
Show Figures

Figure 1

Previous Issue
Back to TopTop