Key Laboratory of Marine Biotechnology of Fujian Province, College of Marine Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Faculty of Biosciences and Aquaculture, Nord University, 8026 Bodø, Norway.
Viruses. 2023 Jun 12;15(6):1359. doi: 10.3390/v15061359.
Aquaculture has expanded to become the fastest growing food-producing sector in the world. However, its expansion has come under threat due to an increase in diseases caused by pathogens such as iridoviruses commonly found in aquatic environments used for fish farming. Of the seven members belonging to the family , the three genera causing diseases in fish comprise ranaviruses, lymphocystiviruses and megalocytiviruses. These three genera are serious impediments to the expansion of global aquaculture because of their tropism for a wide range of farmed-fish species in which they cause high mortality. As economic losses caused by these iridoviruses in aquaculture continue to rise, the urgent need for effective control strategies increases. As a consequence, these viruses have attracted a lot of research interest in recent years. The functional role of some of the genes that form the structure of iridoviruses has not been elucidated. There is a lack of information on the predisposing factors leading to iridovirus infections in fish, an absence of information on the risk factors leading to disease outbreaks, and a lack of data on the chemical and physical properties of iridoviruses needed for the implementation of biosecurity control measures. Thus, the synopsis put forth herein provides an update of knowledge gathered from studies carried out so far aimed at addressing the aforesaid informational gaps. In summary, this review provides an update on the etiology of different iridoviruses infecting finfish and epidemiological factors leading to the occurrence of disease outbreaks. In addition, the review provides an update on the cell lines developed for virus isolation and culture, the diagnostic tools used for virus detection and characterization, the current advances in vaccine development and the use of biosecurity in the control of iridoviruses in aquaculture. Overall, we envision that the information put forth in this review will contribute to developing effective control strategies against iridovirus infections in aquaculture.
水产养殖已发展成为世界上增长最快的食品生产部门。然而,由于水产养殖环境中常见的虹彩病毒等病原体引起的疾病增加,其发展受到了威胁。在属于虹彩病毒科的七个成员中,引起鱼类疾病的三个属包括蛙虹彩病毒属、淋巴囊肿病毒属和巨细胞病毒属。由于这些病毒属对广泛的养殖鱼类具有嗜性,会导致鱼类高死亡率,因此成为了全球水产养殖业发展的严重障碍。由于水产养殖中这些虹彩病毒造成的经济损失不断增加,因此迫切需要有效的控制策略。因此,近年来这些病毒引起了很多研究兴趣。虹彩病毒结构形成的一些基因的功能作用尚未阐明。对导致鱼类虹彩病毒感染的诱发因素缺乏了解,对导致疾病爆发的风险因素也缺乏了解,并且缺乏实施生物安全控制措施所需的虹彩病毒的化学和物理特性的数据。因此,本文综述提供了对迄今为止为解决上述信息空白而进行的研究中收集的知识的更新。总之,本综述提供了关于感染鱼类的不同虹彩病毒的病因学和导致疾病爆发的流行病学因素的最新信息。此外,还提供了用于病毒分离和培养的细胞系、用于病毒检测和鉴定的诊断工具、疫苗开发的最新进展以及生物安全在水产养殖中控制虹彩病毒的最新信息。总的来说,我们设想本文综述中提出的信息将有助于制定针对水产养殖中虹彩病毒感染的有效控制策略。