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Silencing of the rift valley fever virus s-genome segment transcripts using RNA interference in Sf21 insect cells

African Journal of Biotechnology. 2017; 
Juliette Rose Ongus*, Evans Kiplangat Rono and Fred Alexander Wafula Wamunyokoli
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Gene Synthesis Recombinant plasmids were purified using the GenScript kit (GenScript Corporation, Piscataway, NJ) from the overnight LB broth culture containing 100 g/ml ampicillin. The RVFV S-segment cDNA insert was directionally subcloned from the pGEMT-S plasmid into the pFastBac DualTM vector under the control of the PP10 promoter in order to generate a recombinant plasmid pFastBac DualTM -S (abbreviated as pFBD-S) construct. Get A Quote

摘要

Rift Valley fever (RVF) is a mosquito-borne disease that affects humans and livestock. It results in economically disastrous livestock deaths in Africa. The causative agent is RVF virus (RVFV), which possesses a tripartite negative-sense, single-stranded RNA genome, with large (L), medium (M) and small (S) segments. The lack of effective vaccines and anti-RVFV therapies motivates concerted efforts in search for safe and effective remedies. Recent advances in the RNA interference (RNAi) may provide promising tools to control RVFV. This study aimed to use the Baculovirus Expression Vector System to demonstrate that the RVFV S-genome segment is susceptible to RNAi. A multiplex short hairpin RNA (shRNA) transcripti... More

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