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. 2016 Feb:228:16-20.
doi: 10.1016/j.jviromet.2015.11.004. Epub 2015 Nov 10.

Multiple virus resistance using artificial trans-acting siRNAs

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Multiple virus resistance using artificial trans-acting siRNAs

Lingyun Chen et al. J Virol Methods. 2016 Feb.

Abstract

Plant TAS gene encoded trans-acting siRNAs (ta-siRNAs) regulate the expression of target mRNAs by guiding their cleavage at the sequence complementary region as microRNAs. Since one TAS transcript is cleaved into multiple ta-siRNAs in a phased manner, TAS genes may be engineered to express multiple artificial ta-siRNAs (ata-siRNAs) that target multiple viruses at several distinct genomic positions. To test this hypothesis, the Arabidopsis TAS3a gene was engineered to express ata-siRNAs targeting the genome of Turnip mosaic virus (TuMV) and Cucumber mosaic virus (CMV). Transgenic Arabidopsis thaliana plants expressing these ata-siRNAs showed high level of resistance to both viruses. These results suggest that plant TAS genes can be modified to express artificial ta-siRNAs to confer multiple virus resistance and could have broad applications for future development in virus resistance strategies.

Keywords: Artificial trans-acting siRNA; Cucumber mosaic virus; Multiple virus resistance; TAS; Turnip mosaic virus.

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