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Updated: Jun 20, 2026

Bacterial Artificial Chromosomes: A Functional Genomics Tool for the Study of Positive-strand RNA Viruses
Published on: December 29, 2015
Experimental evidence that RNA recombination occurs in the Japanese encephalitis virus
Ching-Kai Chuang1, Wei-June Chen
1Division of Microbiology, Graduate Institute of Biomedical Sciences, Chang Gung University, Kwei-San, Tao-Yuan 33332, Taiwan.
Abstract:
Due to the lack of a proofreading function and error-repairing ability of genomic RNA, accumulated mutations are known to be a force driving viral evolution in the genus Flavivirus, including the Japanese encephalitis (JE) virus. Based on sequencing data, RNA recombination was recently postulated to be another factor associated with genomic variations in these viruses. We herein provide experimental evidence to demonstrate the occurrence of RNA recombination in the JE virus using two local pure clones (T1P1-S1 and CJN-S1) respectively derived from the local strains, T1P1 and CJN. Based on results from a restriction fragment length polymorphism (RFLP) assay on the C/preM junction comprising a fragment of 868 nucleotides (nt 10-877), the recombinant progeny virus was primarily formed in BHK-21 cells that had been co-infected with the two clones used in this study. Nine of 20 recombinant forms of the JE virus had a crossover in the nt 123-323 region. Sequencing data derived from these recombinants revealed that no nucleotide deletion or insertion occurred in this region favoring crossovers, indicating that precisely, not aberrantly, homologous recombination was involved. With site-directed mutagenesis, three stem-loop secondary structures were destabilized and re-stabilized in sequence, leading to changes in the frequency of recombination. This suggests that the conformation, not the free energy, of the secondary structure is important in modulating RNA recombination of the virus. It was concluded that because RNA recombination generates genetic diversity in the JE virus, this must be considered particularly in studies of viral evolution, epidemiology, and possible vaccine safety.
Insights
RNA recombination generates genetic diversity in Japanese encephalitis virus (JEV), contributing to viral evolution. This study provides experimental evidence for homologous recombination in JEV, highlighting its role in viral variation.
Area of Science:
- Virology
- Molecular Biology
- Genetics
Background:
- Genomic RNA of Flaviviruses, including Japanese encephalitis virus (JEV), lacks proofreading, leading to mutation accumulation and viral evolution.
- RNA recombination has been postulated as another source of genomic variation in JEV, but experimental evidence was lacking.
Purpose of the Study:
- To provide experimental evidence for RNA recombination in Japanese encephalitis virus (JEV).
- To investigate the mechanisms and factors influencing RNA recombination in JEV.
Main Methods:
- Co-infection of BHK-21 cells with two distinct JEV clones (T1P1-S1 and CJN-S1).
- Restriction fragment length polymorphism (RFLP) assay to identify recombinant progeny viruses.
- Sequencing of recombinant viruses to determine crossover points and identify mutations.
- Site-directed mutagenesis to assess the role of secondary RNA structures in recombination frequency.
Main Results:
- Experimental evidence confirmed RNA recombination in JEV, primarily occurring in co-infected BHK-21 cells.
- Recombinant JEV viruses were identified with crossovers predominantly in the nt 123-323 region, indicating precise homologous recombination.
- Destabilizing and re-stabilizing specific stem-loop secondary structures altered recombination frequency, suggesting conformational importance.
Conclusions:
- RNA recombination is a significant source of genetic diversity in Japanese encephalitis virus (JEV).
- The study demonstrates homologous recombination in JEV, contributing to its genomic variation.
- Understanding RNA recombination is crucial for JEV evolution, epidemiology, and vaccine safety studies.
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