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机构地区:[1]中国热带农业科学院热带生物技术研究所农业部热带作物生物技术重点开放实验室,海南海口571101
出 处:《热带作物学报》2009年第9期1345-1350,共6页Chinese Journal of Tropical Crops
基 金:国家科技支撑计划项目(No.2007BAD48B01);教育部/海南省教育厅联合资助博士点基金项目(No.20050565002)资助
摘 要:应用PCR方法从感染香蕉束顶病毒的香蕉植株幼嫩假茎和叶片总DNA中克隆NSP(Nuclear shuttle protein)基因的编码区,并通过Gateway技术定向重组到原核表达载体pDESTTM-17中的6×His标签下游,经菌落PCR和测序鉴定结果表明,成功构建了原核表达载体pDESTTM-17-NSP。阳性克隆转化E.coliBL21(DE3),经IPTG诱导表达、SDS-PAGE分析和western blot检测,结果显示,融合蛋白以包涵体的形式稳定表达,分子量约为20ku,与预计值相符。通过诱导条件的优化,确定了最佳的融合蛋白表达条件为25℃、0.1mmol/LIPTG条件下诱导4h。从而为制备NSP多克隆抗体和进一步研究NSP的功能奠定了基础。The opening reading frame of NSP gene of banana bunchy top virus was cloned by polymerase chain reaction(PCR) using total DNA isolated from tender pseudostem and leaf of banana plant infected with the virus as a template, and directionally cloned to the downstream of 6 His tag by the Gateway technology. The construction of prokaryotic expressive vector, pDESTTM-17-NSP have been identified by the colony PCR and sequencing, and transformed into E.coli BI21(DE3) . Transformants were cultured and induced by IPTG, and then analyzed by SDS-PAGE and Western blot. The results showed that the fusion protein of approximately 20 ku was expressed steadily as an inclusion body and accorded with the predicted size. The expression of NSP gene was optimized under the conditions that the transformants were induced with 0.1 mmol/1 IPTG at 25 ℃ for 4 hours. This result might provide a foundation for preparation of the polyclonal antibody against NSP and further functional study of NSP.
关 键 词:香蕉束顶病毒 Gateway重组技术 NSP 原核表达
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