Abstract
Reverse genetics systems allow researchers to generate recombinant viruses with precise genetic modifications, advancing studies of viral replication, pathogenicity, and vaccine development. However, constructing a full-length viral genome expressing plasmids is often time-consuming and technically demanding. To bypass the cloning process, a simple, cloning-free reverse genetics platform based on the circular polymerase extension reaction (CPER) has been applied for positive-sense RNA viruses. In this study, we applied the CPER-based reverse genetics system for rabies virus (RABV), a mononegavirus, enabling rapid and flexible generation of recombinant RABVs, including mutant, reporter-expressing, and chimeric clones. Our approach greatly facilitates genetic engineering of RABV and provides a versatile framework that can be extended to other mononegaviruses, thereby accelerating both basic and applied virology research.
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CITATION STYLE
Itakura, Y., Kawaguchi, N., Tabata, K., Gonzalez, G., Konishi, K., Ohnuma, A., … Sasaki, M. (2026). Application of the CPER reverse genetics system for genetic engineering of rabies virus. Journal of Virology, 100(4). https://doi.org/10.1128/jvi.01872-25
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