Department of Animal and Aquatic Sciences, Faculty of Agriculture, Chiang Mai University, Chiang Mai, Thailand.
Aquaculture Pathology Laboratory, School of Animal & Comparative Biomedical Sciences, The University of Arizona, Tucson, Arizona, USA.
J Fish Dis. 2024 Jul;47(7):e13941. doi: 10.1111/jfd.13941. Epub 2024 Mar 24.
The emergence of antibiotic-resistant bacteria (ARBs) and genes (ARGs) in aquaculture underscores the urgent need for alternative veterinary strategies to combat antimicrobial resistance (AMR). These measures are vital to reduce the likelihood of entering a post-antibiotic era. Identifying environmentally friendly biotechnological solutions to prevent and treat bacterial diseases is crucial for the sustainability of aquaculture and for minimizing the use of antimicrobials, especially antibiotics. The development of probiotics with quorum-quenching (QQ) capabilities presents a promising non-antibiotic strategy for sustainable aquaculture. Recent research has demonstrated the effectiveness of QQ probiotics (QQPs) against a range of significant fish pathogens in aquaculture. QQ disrupts microbial communication (quorum sensing, QS) by inhibiting the production, replication, and detection of signalling molecules, thereby reducing bacterial virulence factors. With their targeted anti-virulence approach, QQPs have substantial promise as a potential alternative to antibiotics. The application of QQPs in aquaculture, however, is still in its early stages and requires additional research. Key challenges include determining the optimal dosage and treatment regimens, understanding the long-term effects, and integrating QQPs with other disease control methods in diverse aquaculture systems. This review scrutinizes the current literature on antibiotic usage, AMR prevalence in aquaculture, QQ mechanisms and the application of QQPs as a sustainable alternative to antibiotics.
抗生素耐药细菌(ARB)和基因(ARGs)在水产养殖中的出现,突显了迫切需要替代兽医策略来对抗抗微生物药物耐药性(AMR)。这些措施对于减少进入后抗生素时代的可能性至关重要。确定预防和治疗细菌疾病的环保生物技术解决方案对于水产养殖的可持续性以及最大限度减少抗生素,特别是抗生素的使用至关重要。具有群体感应(QS)淬灭(QQ)功能的益生菌的开发为可持续水产养殖提供了一种有前途的非抗生素策略。最近的研究表明,QQ 益生菌(QQP)对水产养殖中一系列重要鱼类病原体具有有效性。QQ 通过抑制信号分子的产生、复制和检测来破坏微生物通讯(QS),从而降低细菌毒力因子。QQP 采用靶向抗毒力方法,具有替代抗生素的巨大潜力。然而,QQP 在水产养殖中的应用仍处于早期阶段,需要进一步研究。关键挑战包括确定最佳剂量和治疗方案、了解长期影响以及将 QQP 与其他疾病控制方法整合到不同的水产养殖系统中。本综述仔细研究了关于抗生素使用、水产养殖中 AMR 流行率、QQ 机制以及 QQP 作为抗生素替代品的可持续性的现有文献。