Three pairs of primer were designed for amplification of porcine pseudorabies virus (PRV) gB, gE, and TK gene by multiplex PCR (multi-PCR) in order to differentiate vaccine strains from field isolates. Three speci...
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Three pairs of primer were designed for amplification of porcine pseudorabies virus (PRV) gB, gE, and TK gene by multiplex PCR (multi-PCR) in order to differentiate vaccine strains from field isolates. Three specific bands were obtained respectively at the expected size, 427 bp (gB gene), 298 bp (gEgene), and 208 bp (TKgene), Then four different gene-deleted vaccines of PRV were detected by multi-PCR. One ex- pected specific band was observed in one of samples, while two bands in the others. As shown by the detection results, the multi-PCR has high sensitivity and specificity and should be applied in pathogen diagnosis and epidemiological investigation in the future.
[Objective] The study aimed to clone RPO30 gene from Sheeppox virus (SPPV) and predict the structure and function of the sequence. [Method] RPO30 gene of SPPV was cloned with PCR, linked into pMD18-T simple vector a...
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[Objective] The study aimed to clone RPO30 gene from Sheeppox virus (SPPV) and predict the structure and function of the sequence. [Method] RPO30 gene of SPPV was cloned with PCR, linked into pMD18-T simple vector and then transformed into E. coli DH5a. In blue-white screen, the white colonies were selected to prepare plasmids. The positive plasmids were selected by double digestion and PCR, and then sequenced. Finally, the structure and function of the sequence obtained were predicted by bioinformatics methods. [Results] The RPO30 gene was successfully obtained; its ORF was 585 bp, encoding 193 amino acids and containing a recognition site for Hind III. Moreover, the SPPV RPO30 gene shared different homologies with the RPO30 gene sequences of other pox virus strains from GenBank database. Further analysis by biological software showed that in RPO30 protein, amino acids 4-12, 18-26, 50- 61, 68- 92 and 176-190 had a high possibility to form the active center, and acting to these regions was likely to inactivate the enzyme encoded by the sequence, thus to inhibit viral replication efficiently. [Conclusion] This study will lay foundation for further study on the structure and function of RPO30.
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