Volpe Enrico, Errani Francesca, Mandrioli Luciana, Ciulli Sara
Department of Veterinary Medical Sciences, Alma Mater Studiorum, University of Bologna, 47042 Cesenatico, FC, Italy.
Biology (Basel). 2023 Mar 19;12(3):466. doi: 10.3390/biology12030466.
Aquaculture is the fastest-growing food-producing sector, with a global production of 122.6 million tonnes in 2020. Nonetheless, aquatic animal production can be hampered by the occurrence of viral diseases. Furthermore, intensive farming conditions and an increasing number of reared fish species have boosted the number of aquatic animals' pathogens that researchers have to deal with, requiring the quick development of new detection and study methods for novel unknown pathogens. In this respect, the molecular tools have significantly contributed to investigating thoroughly the structural constituents of fish viruses and providing efficient detection methods. For instance, next-generation sequencing has been crucial in reassignment to the correct taxonomic family, the sturgeon nucleo-cytoplasmic large DNA viruses, a group of viruses historically known, but mistakenly considered as iridoviruses. Further methods such as in situ hybridisation allowed objectifying the role played by the pathogen in the determinism of disease, as the cyprinid herpesvirus 2, ostreid herpesvirus 1 and betanodaviruses. Often, a combination of molecular techniques is crucial to understanding the viral role, especially when the virus is detected in a new aquatic animal species. With this paper, the authors would critically revise the scientific literature, dealing with the molecular techniques employed hitherto to study the most relevant finfish and shellfish viral pathogens.
水产养殖是增长最快的粮食生产部门,2020年全球产量达1.226亿吨。尽管如此,水产动物生产可能会受到病毒性疾病的影响。此外,集约化养殖条件以及养殖鱼类品种数量的增加,使得研究人员需要应对的水产动物病原体数量增多,这就要求快速开发针对新型未知病原体的检测和研究方法。在这方面,分子工具对深入研究鱼类病毒的结构成分并提供高效检测方法做出了重大贡献。例如,新一代测序对于将鲟鱼核质大DNA病毒重新归类到正确的分类科至关重要,这是一类历史上已知但曾被错误地认为是虹彩病毒的病毒。其他方法如原位杂交则能够明确病原体在疾病发生过程中的作用,如鲤疱疹病毒2型、牡蛎疱疹病毒1型和β-诺达病毒。通常,分子技术的组合对于理解病毒的作用至关重要,尤其是当在新的水产动物物种中检测到病毒时。在本文中,作者将批判性地回顾科学文献,探讨迄今为止用于研究最相关的有鳍鱼类和贝类病毒病原体的分子技术。