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Expression of genes involved in the salicylic acid pathway in type h1 thioredoxin transiently silenced pepper plants during a begomovirus compatible interaction

机译:在与begomovirus兼容的相互作用中,h1型硫氧还蛋白短暂沉默的辣椒植物中水杨酸途径中涉及的基因的表达

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The type-h thioredoxins (TRXs) play a fundamental role in oxidative stress tolerance and defense responses against pathogens. In pepper plants, type-h TRXs participate in the defense mechanism against Cucumber mosaic virus. The goal of this study was to analyze the role of the CaTRXh1-cicy gene in pepper plants during compatible interaction with a DNA virus, the Euphorbia mosaic virus-Yucatan Peninsula (EuMV-YP). The effects of a transient silencing of the CaTRXh1-cicy gene in pepper plants wA re evaluated by observing the accumulation of viral DNA and the visible symptoms of pepper plants under different treatments. The accumulation of salicylic acid (SA) and the relative expression of the defense genes NPR1 and PR10 were also evaluated. Results showed that viral DNA accumulation was higher in transiently CaTRXh1-cicy silenced plants that were also infected with EuMV-YP. Symptoms in these plants were more severe compared to the non-silenced plants infected with EuMV-YP. The SA levels in the EuMV-YP-infected plants were rapidly induced at 1 h post infection (hpi) in comparison to the non-silenced plants inoculated with EuMV-YP. Additionally, in pepper plants infected with EuMV-YP, the expression of NPR1 decreased by up to 41 and 58 % at 28 days post infection (dpi) compared to the non-silenced pepper plants infected with only EuMV-YP and healthy non-inoculated pepper plants, respectively. PR10 gene expression decreased by up to 70 % at 28 dpi. Overall, the results indicate that the CaTRXh1-cicy gene participates in defense mechanisms during the compatible interaction of pepper plants with the EuMV-YP DNA virus.
机译:H型硫氧还蛋白(TRX)在氧化应激耐受性和对病原体的防御反应中起着基本作用。在辣椒植物中,h型TRX参与了针对黄瓜花叶病毒的防御机制。这项研究的目的是分析CaTRXh1-cicy基因在辣椒植物中与DNA病毒大戟花叶病毒-尤加坦半岛(EuMV-YP)的相容相互作用中的作用。通过观察病毒DNA的积累和不同处理条件下辣椒植物的可见症状,重新评估了CaTRXh1-cicy基因在辣椒植物中瞬时沉默的作用。还评估了水杨酸(SA)的积累以及防御基因NPR1和PR10的相对表达。结果表明,在也被EuMV-YP感染的瞬时CaTRXh1-cicy沉默植物中,病毒DNA的积累较高。与感染了EuMV-YP的非沉默植物相比,这些植物的症状更为严重。与接种EuMV-YP的非沉默植物相比,感染EuMV-YP的植物在感染后1 h(hpi)迅速诱导出SA水平。此外,与仅用EuMV-YP和健康未接种的非沉默辣椒植物相比,在用EuMV-YP感染的辣椒植物中,感染后28天(dpi)NPR1的表达下降了41%和58%。辣椒植物分别。 PR10基因表达在28 dpi时降低多达70%。总体而言,结果表明CaTRXh1-cicy基因参与了辣椒植物与EuMV-YP DNA病毒的相容性相互作用过程中的防御机制。

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