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首页> 外文期刊>The Journal of general virology >Transgenic banana plants expressing small interfering RNAs targeted against viral replication initiation gene display high-level resistance to banana bunchy top virus infection
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Transgenic banana plants expressing small interfering RNAs targeted against viral replication initiation gene display high-level resistance to banana bunchy top virus infection

机译:表达针对病毒复制起始基因的小干扰RNA的转基因香蕉植物显示出对香蕉束顶病毒感染的高水平抗性

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The banana aphid-transmitted Banana bunchy top virus (BBTV) is the most destructive viral pathogen of bananas and plantains worldwide. Lack of natural sources of resistance to BBTV has necessitated the exploitation of proven transgenic technologies for obtaining BBTV-resistant banana cultivars. In this study, we have explored the concept of using intron-hairpin-RNA (ihpRNA) transcripts corresponding to viral master replication initiation protein (Rep) to generate BBTV-resistant transgenic banana plants. Two ihpRNA constructs namely ihpRNA-Rep and ihpRNA-ProRep generated using Rep full coding sequence or Rep partial coding sequence together with its 5′ upstream regulatory region, respectively, and castor bean catalase intron were successfully transformed into banana embryogenic cells. ihpRNA-Rep- and ihpRNA-ProRep-derived transgenic banana plants, selected based on preliminary screening for efficient reporter gene expression, were completely resistant to BBTV infection as indicated by the absence of disease symptoms after 6 months of viruliferous aphid inoculation. The resistance to BBTV infection was also evident by the inability to detect cDNAs coding for viral coat protein, movement protein and Rep protein by RT-PCR from inoculated transgenic leaf extracts. Southern analysis of the two groups of transgenics showed that ihpRNA transgene was stably integrated into the banana genome. The detection of small interfering RNAs (siRNAs) derived from the ihpRNA transgene sequence in transformed BBTV-resistant plants positively established RNA interference as the mechanism underlying the observed resistance to BBTV. Efficient screening of optimal transformants in this vegetatively propagated non-segregating fruit crop ensured that all the transgenic plants assayed were resistant to BBTV infection.
机译:香蕉蚜虫传播的香蕉束顶病毒(BBTV)是全世界香蕉和车前草中最具破坏性的病毒病原体。缺乏对BBTV的天然抗性来源,必须利用成熟的转基因技术来获得BBTV抗性的香蕉品种。在这项研究中,我们已经探索了使用与病毒主复制起始蛋白(Rep)相对应的内含子发夹RNA(ihpRNA)转录本来产生抗BBTV的转基因香蕉植物的概念。分别使用Rep全编码序列或Rep部分编码序列及其5'上游调控区生成的两个ihpRNA构建体,即ihpRNA-Rep和ihpRNA-ProRep,以及蓖麻子过氧化氢酶内含子已成功转化到香蕉胚发生细胞中。基于有效筛选的报告基因表达的初步筛选而选出的ihpRNA-Rep和ihpRNA-ProRep衍生的转基因香蕉植株对BBTV感染具有完全抗性,接种有毒蚜虫6个月后无疾病症状。通过无法从接种的转基因叶提取物中通过RT-PCR检测编码病毒外壳蛋白,运动蛋白和Rep蛋白的cDNA,也证明了对BBTV感染的抵抗力。两组转基因的Southern分析表明,ihpRNA转基因已稳定整合到香蕉基因组中。在转化的BBTV抗性植物中检测到从ihpRNA转基因序列衍生的小干扰RNA(siRNA)可以肯定地建立RNA干扰,作为观察到的对BBTV抗性的基础。在这种无性繁殖的无性繁殖的水果作物中对最佳转化体的有效筛选确保了所有测定的转基因植物均对BBTV感染具有抗性。

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