Moreira Márcio, Schrama Denise, Farinha Ana Paula, Cerqueira Marco, Raposo de Magalhães Cláudia, Carrilho Raquel, Rodrigues Pedro
CCMAR-Centre of Marine Sciences, University of Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.
University of Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.
Animals (Basel). 2021 Jan 8;11(1):125. doi: 10.3390/ani11010125.
One of the main constraints in aquaculture production is farmed fish vulnerability to diseases due to husbandry practices or external factors like pollution, climate changes, or even the alterations in the dynamic of product transactions in this industry. It is though important to better understand and characterize the intervenients in the process of a disease outbreak as these lead to huge economical losses in aquaculture industries. High-throughput technologies like proteomics can be an important characterization tool especially in pathogen identification and the virulence mechanisms related to host-pathogen interactions on disease research and diagnostics that will help to control, prevent, and treat diseases in farmed fish. Proteomics important role is also maximized by its holistic approach to understanding pathogenesis processes and fish responses to external factors like stress or temperature making it one of the most promising tools for fish pathology research.
水产养殖生产的主要制约因素之一是,由于养殖方式或污染、气候变化等外部因素,甚至该行业产品交易动态的变化,养殖鱼类易患疾病。然而,更好地了解和描述疾病爆发过程中的干预因素非常重要,因为这些因素会给水产养殖业带来巨大的经济损失。蛋白质组学等高通量技术可以成为一种重要的表征工具,特别是在病原体鉴定以及与疾病研究和诊断中宿主-病原体相互作用相关的毒力机制方面,这将有助于控制、预防和治疗养殖鱼类的疾病。蛋白质组学通过其全面理解发病机制过程以及鱼类对压力或温度等外部因素的反应的方法,使其重要作用得以最大化,从而使其成为鱼类病理学研究最有前途的工具之一。