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Development of Rice Stripe Tenuivirus Minireplicon Reverse Genetics Systems Suitable for Analyses of Viral Replication and Intercellular Movement

Front Microbiol. 2021-03; 
Xiaoyan Zhang, Kai Sun, Yan Liang, Shuo Wang, Kaili Wu, Zhenghe Li
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Codon Optimization … 1 , Shuo Wang 1 , Kaili Wu 1 and Zhenghe Li 1,2,3*. 1 State Key Laboratory of Rice Biology, Institute of Biotechnology, Zhejiang University?… The codon-optimized L code sequence was chemically synthesized in the cloning vector pUC57 by GenScript Biotech Crop (Nanjing, China?… Get A Quote

摘要

Rice stripe virus (RSV), a tenuivirus with four negative-sense/ambisense genome segments, is one of the most devastating viral pathogens affecting rice production in many Asian countries. Despite extensive research, our understanding of RSV infection cycles and pathogenesis has been severely impaired by the lack of reverse genetics tools. In this study, we have engineered RSV minireplicon (MR)/minigenome cassettes with reporter genes substituted for the viral open reading frames in the negative-sense RNA1 or the ambisense RNA2-4 segments. After delivery to leaves via agroinfiltration, MR reporter gene expression was detected only when the codon-optimized large viral RNA polymerase protein (L) was coexpressed w... More

關(guān)鍵詞

bunyavirus, codon optimization, minireplicon, reverse genetics, rice stripe virus, tenuivirus
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