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首页> 外文期刊>Journal of Zhejiang University. Science, B >Development and application of an efficient virus-induced gene silencing system in Nicotiana tabacum using geminivirus alphasatellite
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Development and application of an efficient virus-induced gene silencing system in Nicotiana tabacum using geminivirus alphasatellite

机译:使用Geminivirus alphasatellite在尼古利亚纳塔卡蟾蜍中高效病毒诱导基因沉默系统的开发与应用

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Virus-induced gene silencing (VIGS) is a recently developed technique for characterizing the function of plant genes by gene transcript suppression and is increasingly used to generate transient loss-of-function assays. Here we report that the 2mDNA1, a geminivirus satellite vector, can induce efficient gene silencing in Nicotiana tabacum%29&ck%5B%5D=abstract&ck%5B%5D=keyword'>Nicotiana tabacum with Tobacco curly shoot virus. We have successfully silenced the β-glucuronidase (GUS) gene in GUS transgenic N. tabacum plants and the sulphur desaturase (Su) gene in five different N. tabacum cultivars. These pronounced and severe silencing phenotypes are persistent and ubiquitous. Once initiated in seedlings, the silencing phenotype lasted for the entire life span of the plants and silencing could be induced in a variety of tissues and organs including leaf, shoot, stem, root, and flower, and achieved at any growth stage. This system works well between 18–32 °C. We also silenced the NtEDS1 gene and demonstrated that NtEDS1 is essential for N gene mediated resistance against Tobacco mosaic virus in N. tabacum. The above results indicate that this system has great potential as a versatile VIGS system for routine functional analysis of genes in N. tabacum.
机译:病毒诱导的基因沉默(Vigs)是最近开发的技术,用于通过基因转录物抑制表征植物基因的功能,越来越多地用于产生瞬时函数测定。在这里,我们报告说,2MDNA1,Geminivirus卫星载体可以诱导尼累累的塔巴突发烟库的有效基因%29&CK%5B%5d =摘要&CK%5b%5d =关键词'>烟草塔巴氏菌与烟草卷发病毒。我们成功地沉默于Gus转基因N.Babacum植物中的β-葡萄糖醛酸酶(GUS)基因,并在五种不同的N.簇生品种中硫磺酸血清植物和硫去饱和酶(SU)基因。这些明显和严重的沉默表型是持续和普遍的。一旦在幼苗中发起,持续到植物的整个寿命和沉默的沉默表型可以在各种组织和器官中诱导,包括叶,芽,茎,根和花,并在任何生长阶段实现。该系统运行在18-32°C之间。我们还沉默了NTEDS1基因,并证明NTEDS1对于N基因介导的N.Babacum中的烟草病毒的抗性是必不可少的。上述结果表明,该系统具有巨大的潜力作为N. Tabacum中基因常规功能分析的多功能vigs系统。

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