Characterization and pathogenicity analysis of a newly isolated strain of infectious hematopoietic necrosis virus

传染性造血坏死病毒 生物 虹鳟 病毒学 病毒 病菌 免疫系统 系统发育树 细胞病变效应 微生物学 基因 序列分析 遗传学 渔业
作者
Di Wu,Jing Wang,Yuanxing Zhang,Qiyao Wang,Qin Liu,Shuai Shao
出处
期刊:Microbial Pathogenesis [Elsevier]
卷期号:185: 106443-106443 被引量:2
标识
DOI:10.1016/j.micpath.2023.106443
摘要

Rainbow trout is one of the fastest-growing aquaculture species and infectious hematopoietic necrosis virus (IHNV) is endemic throughout almost all rainbow trout farms in China nowadays. In this study, IHNV GS21 was identified as the causative pathogen, which resulted in massive mortality of rainbow trout occurring in northwest China. GS21 isolate was propagated in Chinook salmon embryonic cell line (CHSE-214) and induced apparent cytopathic effects (CPE) at 3 days post-infection (dpi). Phylogenetic analysis revealed that GS21 isolate was clustered with other reported Chinese isolates within the J genogroup. Moreover, the complete cDNA sequence of GS21 isolate was obtained and it possesses more than 98 % of ANI values and 89 % of DDH values with other Chinese IHNV isolates. The detailed sequence analysis of G gene revealed the distinct amino acid substitutions of G230, G252, G270, and I277 in GS21 isolate. Furthermore, the artificially infected rainbow trout exhibited similar clinical disease symptoms as natural infection did. The cumulative mortality infected by GS21 isolate of 104 PFU/mL reached 93 % at approximately 13.5 °C. Additionally, viral loads in tissues increased first and declined then as well as the expression of immune-associated genes. Collectively, our results characterized a novel IHNV GS21 isolate that can lead to massive mortality in juvenile rainbow trout and provided a basis to define the pathogenic characteristics and evolutionary relationship of IHNV and host immune response against IHNV infection.
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