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A High Throughput Barley Stripe Mosaic Virus Vector for Virus Induced Gene Silencing in Monocots and Dicots

机译:高通量大麦条纹花叶病毒载体用于单子叶植物和双子叶植物中病毒诱导的基因沉默

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摘要

Barley stripe mosaic virus (BSMV) is a single-stranded RNA virus with three genome components designated alpha, beta, and gamma. BSMV vectors have previously been shown to be efficient virus induced gene silencing (VIGS) vehicles in barley and wheat and have provided important information about host genes functioning during pathogenesis as well as various aspects of genes functioning in development. To permit more effective use of BSMV VIGS for functional genomics experiments, we have developed an Agrobacterium delivery system for BSMV and have coupled this with a ligation independent cloning (LIC) strategy to mediate efficient cloning of host genes. Infiltrated Nicotiana benthamiana leaves provided excellent sources of virus for secondary BSMV infections and VIGS in cereals. The Agro/LIC BSMV VIGS vectors were able to function in high efficiency down regulation of phytoene desaturase (PDS), magnesium chelatase subunit H (ChlH), and plastid transketolase (TK) gene silencing in N. benthamiana and in the monocots, wheat, barley, and the model grass, Brachypodium distachyon. Suppression of an Arabidopsis orthologue cloned from wheat (TaPMR5) also interfered with wheat powdery mildew (Blumeria graminis f. sp. tritici) infections in a manner similar to that of the A. thaliana PMR5 loss-of-function allele. These results imply that the PMR5 gene has maintained similar functions across monocot and dicot families. Our BSMV VIGS system provides substantial advantages in expense, cloning efficiency, ease of manipulation and ability to apply VIGS for high throughput genomics studies.
机译:大麦条纹花叶病毒(BSMV)是一种单链RNA病毒,具有三个基因组成分,分别为alpha,beta和γ。先前已经证明,BSMV载体是大麦和小麦中有效的病毒诱导的基因沉默(VIGS)载体,并提供了有关发病机理中起作用的宿主基因以及发育中起作用的基因各个方面的重要信息。为了使BSMV VIGS更有效地用于功能基因组学实验,我们开发了用于BSMV的农杆菌递送系统,并将其与结扎独立克隆(LIC)策略结合,以介导宿主基因的有效克隆。渗入的本氏烟草叶为谷物中的继发BSMV感染和VIGS提供了极好的病毒来源。 Agro / LIC BSMV VIGS载体能够在本塞姆氏烟草和本子叶植物,单子叶植物,小麦,大麦和模型草,短枝chy。从小麦中克隆的拟南芥直向同源物(TaPMR5)的抑制也以类似于拟南芥PMR5功能丧失等位基因的方式干扰了小麦白粉病(Blumeria graminis f。sp。tritici)的感染。这些结果表明,PMR5基因在单子叶植物和双子叶植物家族中保持了相似的功能。我们的BSMV VIGS系统在费用,克隆效率,易于操作以及将VIGS应用于高通量基因组学研究方面均具有显着优势。

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