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从鳜鱼中分离出的一种新型双RNA病毒株的基因组特征与致病性

Genomic Characterization and Pathogenicity of a Novel Birnavirus Strain Isolated from Mandarin Fish ().

作者信息

Zhang Hetong, Zhou Dandan, Dong Junjian, Yan Yunyun, Liu Shanshan, Ye Xing, He Jianguo, Sun Chengfei

机构信息

Key Laboratory of Tropical and Subtropical Fisheries Resource Application and Cultivation, Ministry of Agriculture and Rural Affairs, Pearl River Fisheries Institute, Chinese Academy of Fishery Sciences, Guangzhou 510310, China.

Key Laboratory of Aquatic Animal Immune Technology of Guangdong Province, Pearl River Fisheries Institute, Chinese Academy of Fishery Sciences, Guangzhou 510310, China.

出版信息

Genes (Basel). 2025 May 24;16(6):629. doi: 10.3390/genes16060629.

Abstract

BACKGROUND

Birnaviruses infect a wide range of aquatic and terrestrial hosts, including several economically important fish species. This study aimed to isolate and characterize a novel birnavirus strain from mandarin fish (), a high-value freshwater species in Chinese aquaculture.

METHODS

A novel strain, designated mandarin fish birnavirus (MFBV), was isolated from diseased fish and propagated in SCK cells. The complete genome was determined using high-throughput sequencing and RACE. Viral replication kinetics, tissue distribution, and pathogenicity were assessed through in vitro infection, RT-qPCR, histopathology, and experimental challenges. In addition, disinfectant sensitivity and environmental stability were evaluated.

RESULTS

The MFBV genome comprises two segments (A: 3539 bp; B: 2719 bp), and phylogenetic analysis revealed close relatedness to largemouth bass birnavirus (LBBV) and birnavirus (LCBV). MFBV displayed rapid replication in SCK cells, completing a replication cycle in 8-10 h. In juvenile and fry fish, an experimental infection caused acute disease with cumulative mortality ranging from 41.8% to 83.6%, with fry showing higher susceptibility. Viral RNA was detected in multiple tissues (7.9 × 10-7.9 × 10 copies/μg RNA), and histopathological lesions were observed in the intestine, spleen, and kidney. MFBV was highly sensitive to glutaraldehyde (20 ppm), while other disinfectants showed reduced efficacy. Viral half-life ranged from 36.5 to 144.5 h at room temperature.

CONCLUSIONS

These findings demonstrate that MFBV can induce acute systemic infection in mandarin fish. The results offer new insights into the genomic and biological features of birnaviruses, contributing to improved disease management and viral taxonomy.

摘要

背景

双RNA病毒感染多种水生和陆生宿主,包括几种具有重要经济价值的鱼类。本研究旨在从鳜鱼(中国水产养殖中的一种高价值淡水鱼)中分离并鉴定一种新型双RNA病毒株。

方法

从患病鱼中分离出一种新型毒株,命名为鳜鱼双RNA病毒(MFBV),并在SCK细胞中进行增殖。使用高通量测序和RACE技术测定其完整基因组。通过体外感染、RT-qPCR、组织病理学和实验性攻毒评估病毒复制动力学、组织分布和致病性。此外,还评估了消毒剂敏感性和环境稳定性。

结果

MFBV基因组由两个片段组成(A:3539 bp;B:2719 bp),系统发育分析显示其与大口黑鲈双RNA病毒(LBBV)和 双RNA病毒(LCBV)密切相关。MFBV在SCK细胞中显示出快速复制,在8-10小时内完成一个复制周期。在幼鱼和成鱼中,实验性感染导致急性疾病,累积死亡率在41.8%至83.6%之间,幼鱼表现出更高的易感性。在多个组织中检测到病毒RNA(7.9×10-7.9×10拷贝/μg RNA),并在肠道、脾脏和肾脏中观察到组织病理学损伤。MFBV对戊二醛(20 ppm)高度敏感,而其他消毒剂的效果则较差。在室温下,病毒半衰期为36.5至144.5小时。

结论

这些发现表明MFBV可在鳜鱼中诱导急性全身感染。这些结果为双RNA病毒的基因组和生物学特征提供了新的见解,有助于改善疾病管理和病毒分类学。

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