Literature DB >> 17965920

Silencing VP28 gene of white spot syndrome virus of shrimp by bacterially expressed dsRNA.

M Sarathi1, Martin C Simon, V P Ishaq Ahmed, S Rajesh Kumar, A S Sahul Hameed.   

Abstract

An in vivo expression system to produce large amounts of virus-derived dsRNAs in bacteria to provide a practical control of white spot syndrome virus (WSSV) in shrimp was developed. The bacterially synthesized dsRNA specific to VP28 gene of WSSV promoted gene-specific interference with the WSSV infection in shrimp. Virus infectivity was significantly reduced in WSSV-challenged shrimp injected with VP28-dsRNA and 100% survival was recorded. The inhibition of the expression of WSSV VP28 gene in experimentally challenged animals by VP28-dsRNA was confirmed by RT-PCR and Western blot analyses. Furthermore, we have demonstrated the efficacy of bacterially expressed VP28-dsRNA to silence VP28 gene expression in SISK cell line transfected with eukaryotic expression vector (pcDNA3.1) inserted with VP28 gene of WSSV. The expression level of VP28 gene in SISK cells was determined by fluorescent microscopy and ELISA. The results showed that the expression was significantly reduced in cells transfected with VP28dsRNA, whereas the cells transected with pcDNA-VP28 alone showed higher expression. The in vivo production of dsRNA using prokaryotic expression system could be an alternative to in vitro method for large-scale production of dsRNA corresponding to VP28 gene of WSSV for practical application to control the WSSV in shrimp farming.

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Year:  2007        PMID: 17965920     DOI: 10.1007/s10126-007-9052-y

Source DB:  PubMed          Journal:  Mar Biotechnol (NY)        ISSN: 1436-2228            Impact factor:   3.619


  29 in total

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Journal:  Mar Biotechnol (NY)       Date:  2007-03-15       Impact factor: 3.619

5.  White spot syndrome virus envelope protein VP28 is involved in the systemic infection of shrimp.

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8.  Production of polyclonal antiserum against recombinant VP28 protein and its application for the detection of white spot syndrome virus in crustaceans.

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Review 9.  RNA interference in cancer.

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  17 in total

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3.  Protection of shrimp Penaeus monodon from WSSV infection using antisense constructs.

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4.  Oral administration of bacterially expressed VP28dsRNA to protect Penaeus monodon from white spot syndrome virus.

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5.  White spot syndrome virus: an overview on an emergent concern.

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Review 7.  Application of nucleic-acid-based therapeutics for viral infections in shrimp aquaculture.

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8.  Protection of Penaeus monodon from Infection of White spot syndrome virus by DNA Construct Expressing Long Hairpin-RNA Against ICP11 Gene.

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Review 9.  Tsetse salivary gland hypertrophy virus: hope or hindrance for tsetse control?

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10.  Transcriptome analysis on Chinese shrimp Fenneropenaeus chinensis during WSSV acute infection.

Authors:  Shihao Li; Xiaojun Zhang; Zheng Sun; Fuhua Li; Jianhai Xiang
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