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Published on: June 26, 2014
Channel catfish virus ORF25 and ORF63 genes are essential for viral replication in vitro
Xiaodong Zhang1, Kai Hao1, Shuxin Li1
1Department of Marine Biology, College of Oceanography, Hohai University, Nanjing, China.
Abstract:
The channel catfish virus (CCV) is a lethal pathogen to aquatic animals that can provoke severe haemorrhagic disease in juvenile channel catfish. Although the CCV genome has been fully sequenced, the molecular mechanisms of CCV infection and pathogenesis are less well known. Genomic DNA replication is a necessary and key event for the CCV life cycle. In this study, the impacts of the putative helicase and primase encoded by viral ORF25 and ORF63 on CCV genome replication and infection were evaluated in channel catfish ovary (CCO) cells. The results showed that the number of CCV genome copies was decreased significantly in virus-infected CCO cells after knockdown of ORF25 and ORF63 using RNA interference. In contrast, the overexpression of ORF25 and ORF63 led to slight increase in the number of virus genome copies. Consistent with the above results, the present results also showed that the expressions of CCV true-late genes which strictly depend on viral DNA replication, were significantly increased or repressed by overexpression or RNA interference targeting viral ORF25 and ORF63 genes in virus-infected CCO cells. In addition, knockdown of ORF25 and ORF63 remarkably inhibited CCV-induced cytopathic effects and decreased progeny virus titres in CCO cells. Moreover, transmission electron microscopy observation of CCO cells infected with CCV accompanied by siRNA targeting the viral ORF25 and ORF63 genes showed that the number of virus particles was remarkably reduced. Taken together, these results indicated that ORF25 and ORF63 are essential for regulating CCV genome replication and CCV-induced infection. Our findings will provide an understanding of the replication mechanisms of CCV and contribute to the development of antiviral strategies for controlling CCV infection in channel catfish culture.
Insights
Viral ORF25 and ORF63 proteins are essential for channel catfish virus (CCV) genome replication and infection. Knocking down these genes significantly reduces CCV replication and disease symptoms in channel catfish ovary cells.
Area of Science:
- Virology
- Molecular Biology
- Aquatic Animal Health
Background:
- Channel catfish virus (CCV) causes lethal hemorrhagic disease in juvenile channel catfish.
- CCV genome sequencing is complete, but molecular mechanisms of infection and pathogenesis remain unclear.
- Viral DNA replication is crucial for the CCV life cycle.
Purpose of the Study:
- To investigate the roles of viral ORF25 (helicase) and ORF63 (primase) in CCV genome replication and infection.
- To evaluate the impact of these viral proteins on CCV pathogenesis in channel catfish ovary (CCO) cells.
Main Methods:
- RNA interference (RNAi) to knock down ORF25 and ORF63 expression.
- Overexpression of ORF25 and ORF63.
- Quantification of CCV genome copies.
- Analysis of CCV true-late gene expression.
- Assessment of CCV-induced cytopathic effects and progeny virus titres.
- Transmission electron microscopy (TEM).
Main Results:
- Knockdown of ORF25 and ORF63 significantly decreased CCV genome copy numbers.
- Overexpression of ORF25 and ORF63 slightly increased CCV genome copy numbers.
- Knockdown of ORF25 and ORF63 repressed CCV true-late gene expression, while overexpression increased it.
- Knockdown of ORF25 and ORF63 inhibited CCV-induced cytopathic effects and reduced progeny virus titres.
- TEM confirmed a significant reduction in virus particles upon ORF25 and ORF63 knockdown.
Conclusions:
- Viral ORF25 and ORF63 are essential for regulating CCV genome replication.
- These proteins play critical roles in CCV-induced infection and pathogenesis.
- Findings contribute to understanding CCV replication and developing antiviral strategies for channel catfish culture.

