Torres-Maravilla Edgar, Parra Mick, Maisey Kevin, Vargas Rodrigo A, Cabezas-Cruz Alejandro, Gonzalez Alex, Tello Mario, Bermúdez-Humarán Luis G
Facultad de Medicina Mexicali, Universidad Autónoma de Baja California, Mexicali 21000, Mexico.
Laboratorio de Metagenómica Bacteriana, Centro de Biotecnología Acuícola, Universidad de Santiago de Chile, Santiago 9160000, Chile.
Microorganisms. 2024 Mar 21;12(3):626. doi: 10.3390/microorganisms12030626.
Aquaculture is a growing industry worldwide, but it faces challenges related to animal health. These challenges include infections by parasites, bacteria, and viral pathogens. These harmful pathogens have devastating effects on the industry, despite efforts to control them through vaccination and antimicrobial treatments. Unfortunately, these measures have proven insufficient to address the sanitary problems, resulting in greater environmental impact due to the excessive use of antimicrobials. In recent years, probiotics have emerged as a promising solution to enhance the performance of the immune system against parasitic, bacterial, and viral pathogens in various species, including mammals, birds, and fish. Some probiotics have been genetically engineered to express and deliver immunomodulatory molecules. These promote selective therapeutic effects and specific immunization against specific pathogens. This review aims to summarize recent research on the use of probiotics in fish aquaculture, with a particular emphasis on genetically modified probiotics. In particular, we focus on the advantages of using these microorganisms and highlight the main barriers hindering their widespread application in the aquaculture industry.
水产养殖是一个在全球范围内不断发展的产业,但它面临着与动物健康相关的挑战。这些挑战包括寄生虫、细菌和病毒病原体的感染。尽管人们通过疫苗接种和抗菌治疗来努力控制这些有害病原体,但它们对该产业仍具有毁灭性影响。不幸的是,事实证明这些措施不足以解决卫生问题,由于抗菌药物的过度使用,导致了更大的环境影响。近年来,益生菌已成为一种有前景的解决方案,可增强各种物种(包括哺乳动物、鸟类和鱼类)针对寄生虫、细菌和病毒病原体的免疫系统性能。一些益生菌经过基因工程改造,能够表达和传递免疫调节分子。这些分子可促进选择性治疗效果以及针对特定病原体的特异性免疫。本综述旨在总结鱼类水产养殖中益生菌使用的最新研究,特别强调转基因益生菌。具体而言,我们关注使用这些微生物的优势,并突出阻碍它们在水产养殖行业广泛应用的主要障碍。