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Bean pod mottle virus: a new powerful tool for functional genomics studies in Pisum sativum

机译:豆荚斑块病毒:Pisum Sativum功能基因组学研究的一种新的强大工具

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Pea (Pisum sativum L.) is an important legume worldwide. The importance of pea in arable rotations and nutritional value for both human and animal consumption have fostered sustained production and different studies to improve agronomic traits of interest. Moreover, complete sequencing of the pea genome is currently underway and will lead to the identification of a large number of genes potentially associated with important agronomic traits. Because stable genetic transformation is laborious for pea, virus-induced gene silencing (VIGS) appears as a powerful alternative technology for determining the function of unknown genes. In this work, we present a rapid and efficient viral inoculation method using DNA infectious plasmids of Bean pod mottle virus (BPMV)-derived VIGS vector. Six pea genotypes with important genes controlling biotic and/or abiotic stresses were found susceptible to BPMV carrying a GFP reporter gene and showed fluorescence in both shoots and roots. In a second step, we investigated 37 additional pea genotypes and found that 30 were susceptible to BPMV and only 7 were resistant. The capacity of BPMV to induce silencing of endogenes was investigated in the most susceptible genotype using two visual reporter genes: PsPDS and PsKORRIGAN1 (PsKOR1) encoding PHYTOENE DESATURASE and a 1,4--D-glucanase, respectively. The features of the one-step' BPMV-derived VIGS vector include (i) the ease of rub-inoculation, without any need for biolistic or agro-inoculation procedures, (ii) simple cost-effective procedure and (iii) noninterference of viral symptoms with silencing. These features make BPMV the most adapted VIGS vector in pea to make low- to high-throughput VIGS studies.
机译:豌豆(Pisum sativum L.)是全球重要的豆科植物。豌豆在耕作旋转和人类消费的营养价值中的重要性促进了持续生产​​和不同的研究,以改善利益的农艺性状。此外,目前正在进行完全测序豌豆基因组,并将导致鉴定潜在与重要农艺性状相关的大量基因。由于豌豆的稳定遗传转化对豌豆艰苦艰苦,因此病毒诱导的基因沉默(Vigs)似乎是一种强大的替代技术,用于确定未知基因的功能。在这项工作中,我们使用豆荚斑块病毒(BPMV)的DNA传染性质粒来提出一种快速有效的病毒接种方法(BPMV)的VICTS载体。发现具有重要基因的六豌豆基因型控制生物和/或非生物应激的含有BPMV携带GFP报告基因并在芽和根部显示荧光。在第二步中,我们研究了37种额外的豌豆基因型,发现30易患BPMV,只有7个抗性。使用两种视觉报告基因:PSPDS和PSKORRIGAN1(PSKOR1)分别在最易感的基因型中研究了BPMV诱导内端生成的沉默的能力分别编码植物去饱和酶和1,4-D-葡聚糖酶。单步'BPMV衍生的Vigs Vector的特征包括(i)易擦接种,无需任何对生物或农业接种程序,(ii)简单的成本效益程序和病毒的非干扰沉默的症状。这些功能使BPMV成为豌豆中最适应的Vigs载体,以使高吞吐量Vigs的研究。

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