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笔者以山羊痘病弱毒疫苗毒株TK基因内KpnI为插入位点,构建了表达绿色荧光蛋白和小反刍兽疫(PPR)H基因的重组山羊痘病毒通用转移载体,为今后研究羊痘病毒活载体疫苗奠定基础。  相似文献   
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[目的]研制小反刍兽疫羊痘活载体疫苗。[方法]利用PCR技术扩增小反刍兽疫病毒H基因,克隆到pGEM-T easy载体,Nhe Ⅰ和Hin-d Ⅲ双酶切重组质粒,将目的片段插入到真核表达载体pEGFP-N1-P7.5中,得到重组载体pEGFP-N1-P7.5-H,重组载体Hin-d Ⅲ、NheⅠ双酶切片段EGFP-P7.5 H平末端连接到KpnⅠ 酶切后的载体pUC119-TK中,得到通用转移载体pUC119-TK-EGFP-P7.5-H。[结果]经酶切鉴定及PCR扩增检测,表明构建载体正确。pUC119-TK-EGFP-P7.5-H转染羊痘病毒感染的BHK21细胞,48 h后报告基因表达。[结论]该研究为研制小反刍兽疫基因工程活载体疫苗奠定基础。  相似文献   
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[Objective] This study was to develop a live vector vaccine of goat pox virus of Peste des petits ruminants(PPR). [Method] Using PCR amplification technique, PPR H gene was obtained, then ligated into pGEM-T easy vector; the recombinants were digested by Nhe Ⅰ and Hind Ⅲ, and ligated into pEGFP-N1-P7.5, yielding the recombinant vector pEGFP-N1-P7.5-H; next the expression cassette EGFP-N1-P7.5-H was first released from recombinant vector pEGFP-N1-P7.5-H by double digestion of Hind Ⅲ and Nhe Ⅰ and ligated into pUC119-TK that was digested by Kpn Ⅰ, yielding the transfer vector pUC119-TK-EGFP-P7.5-H. [Result] Identification and double enzyme digestion showed that the transfer vector pUC119-TK-EGFP-P7.5-H was correctly constructed. From the transfer vector transfected BHK-21 cells which infected GTPV AV41, specific fluorescence was observed at 48th h of transfection. [Conclusion] The construction of goat poxvirus live vector laid a foundation for the live vector vaccine of PPR vaccine.  相似文献   
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