首页> 外文期刊>Molecular Plant-Microbe Interactions >Microarray Analysis Shows That Recessive Resistance to Watermelon mosaic virus in Melon Is Associated with the Induction of Defense Response Genes
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Microarray Analysis Shows That Recessive Resistance to Watermelon mosaic virus in Melon Is Associated with the Induction of Defense Response Genes

机译:基因芯片分析表明,甜瓜对西瓜花叶病毒的隐性抗性与防御反应基因的诱导有关。

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Resistance to Watermelon mosaic virus (WMV) in melon (Cucumis melo L.) accession TGR-1551 is characterized by a significant reduction in virus titer, and is inherited as a recessive, loss-of-susceptibility allele. We measured virus RNA accumulation in TGR-1551 plants and a susceptible control (‘Tendral’) by real-time quantitative polymerase chain reaction, and also profiled the expression of 17,443 unigenes represented on a melon microarray over a 15-day time course. The virus accumulated to higher levels in cotyledons of the resistant variety up to 9 days postinoculation (dpi) but, thereafter, levels increased in the susceptible variety while those in the resistant variety declined. Microarray experiments looking at the early response to infection (1 and 3 dpi), as well as responses after 7 and 15 dpi, revealed more profound transcriptomic changes in resistant plants than susceptible ones. The gene expression profiles revealed deep and extensive transcriptome remodeling in TGR-1551 plants, often involving genes with pathogen response functions. Overall, our data suggested that resistance to WMV in TGR-1551 melon plants is associated with a defense response, which contrasts with the recessive nature of the resistance trait.
机译:西瓜(Cucumis melo L.)登录号TGR-1551中对西瓜花叶病毒(WMV)的抗性的特征在于病毒滴度的显着降低,并被遗传为隐性易感性等位基因。我们通过实时定量聚合酶链反应测量了TGR-1551植物和易感对照(“ Tendral”)中病毒RNA的积累,并分析了在15天的时间过程中瓜芯片上代表的17,443种单基因的表达。直至接种后第9天(dpi),病毒在抗性品种的子叶中积累的水平更高,但是此后,易感品种的水平增加,而抗性品种的水平下降。通过微阵列实验观察了对感染的早期响应(1和3 dpi)以及7和15 dpi之后的响应,发现抗性植物中的转录组变化比易感植物更深刻。基因表达谱揭示了TGR-1551植物中转录组的深入和广泛的重塑,通常涉及具有病原体应答功能的基因。总体而言,我们的数据表明,TGR-1551甜瓜植物对WMV的抗性与防御反应有关,这与抗性性状的隐性相反。

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