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首页> 外文期刊>International Journal of Medical Reviews >Cucumber Response to Sphaerotheca fuliginea: Differences in Antioxidant Enzymes Activity and Pathogenesis-Related Gene Expression in Susceptible and Resistant Genotypes
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Cucumber Response to Sphaerotheca fuliginea: Differences in Antioxidant Enzymes Activity and Pathogenesis-Related Gene Expression in Susceptible and Resistant Genotypes

机译:黄瓜对Sphaerotheca fuliginea的响应:易感和抗性基因型中抗氧化酶活性和发病相关基因表达的差异

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Cucurbits powdery mildew is one of the most detrimental diseases of cucumber plants worldwide. A detailed insight into the biological processes leading to resistance or susceptibility to the pathogen would pave the road for an efficient disease-resistance breeding program. In the present study, the molecular and biochemical responses of a resistant vs. a susceptible cucumber cultivar infected with Sphaerotheca fuliginea were investigated. The alterations in the activity of two antioxidant enzymes i.e. superoxide dismutase (SOD) and catalase (CAT) were analyzed during different time courses. The changing pattern of the expression of PR-8 gene (chitinase class III) was evaluated through qPCR. Results showed that the PR-8 gene expression was raised in the leaves of both cultivars 96 hours post inoculation (hpi), however, with a 6 times higher expression rate in resistant cultivar compared to the susceptible one. The results imply that PR-8 may be a key factor of resistance to the pathogen. For both cultivars, SOD showed similar activity pattern and was raised at the early hours post inoculation and showed a peak 6 hours post inoculation with higher activity in the resistant cultivar. In contrast, CAT showed distinct activity patterns between cultivars and showed comparatively higher activity in the susceptible host. The possible reasons for these differences are discussed. The results of the present work give a more clarified insight into the possible mechanisms behind the resistance to cucumber powdery mildew caused by S. fuliginea.
机译:葫芦白粉病是全世界黄瓜植物中最有害的疾病之一。对导致病原体产生抗性或易感性的生物学过程的详细了解将为有效的抗病育种计划铺平道路。在当前的研究中,研究了抗性与易感黄瓜花叶单核球菌感染的黄瓜易感品种的分子和生化反应。在不同的时间过程中,分析了两种抗氧化酶即超氧化物歧化酶(SOD)和过氧化氢酶(CAT)的活性变化。通过qPCR评估PR-8基因(几丁质酶III类)表达的变化模式。结果表明,接种后96小时(hpi),两个品种叶片中的PR-8基因表达均升高,但是与易感品种相比,抗性品种中PR-8基因的表达率高6倍。结果表明PR-8可能是抵抗病原体的关键因素。对于这两个品种,SOD表现出相似的活性模式,并在接种后数小时升高,并在接种后6小时达到峰值,在抗性品种中具有较高的活性。相反,CAT在不同品种之间表现出不同的活性模式,并且在易感宿主中表现出相对较高的活性。讨论了这些差异的可能原因。本工作的结果使人们更加清楚地了解了由S. fuliginea引起的黄瓜白粉病抗性背后的可能机制。

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