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首页> 外文期刊>Journal of Plant Physiology >Temporal and spatial assessment of defence responses in resistant and susceptible hop cultivars during infection with Verticillium nonalfalfae
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Temporal and spatial assessment of defence responses in resistant and susceptible hop cultivars during infection with Verticillium nonalfalfae

机译:抗黄藻幼虫病感染抗性和敏感啤酒花品种防御反应的时空评估

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摘要

Hop (Humulus lupulus L.) is an important industrial plant providing ingredients for brewing and pharmaceutical industry worldwide. Its intensive production is challenged by numerous diseases. One of the most lethal and difficult to control is verticillium wilt, a vascular disease caused by the fungal pathogen Verticillium nonalfalfae. The disease can be successfully controlled by the host resistance. Despite various studies that already researched resistance mechanisms of hops, only limited number of resistance genes and markers that could be utilized for efficient resistance breeding has been identified. In this study we aimed to follow fungus colonization pattern and the differential expression of selected genes during pre-symptomatic period of susceptible (Celeia) and resistant (Wye Target) hop cultivars. Results of gene expressions and fungal colonisation of compatible and incompatible interactions with V. nonalfalfae suggest that the hop plant is challenged already at the very early fungal colonisation stages. In total, nine out of 17 gene targets investigated in our study resulted in differential expression between inoculated and control plants of susceptible and resistant cultivars. The difference was the most evident in stems at an early stage of colonisation (6 dpi), showing relatively stronger changes in targeted gene expression to infection in the resistant cultivar than in the susceptible one. Analysed gene targets are involved in the overall defence response processes of nucleic acid binding, signalling, protein ubiquitination, cell oxidative burst, hydroxylation, peroxidation, alternative splicing, and metabolite biosynthesis. The up-regulation of some genes (e.g. glycine-rich RNA-binding family protein, protein phosphatase, cysteine-rich receptorlike protein kinase, zinc finger CCCH domain-containing protein 40, cinnamic acid 4-hydroxylase, class III peroxidase, putative MAPK2, peroxiredoxin-2F) upon infection in incompatible interactions might reflect defence activation, restriction of disease spreading throughout the plant and successful response of resistant genotype.
机译:跃点(Humulus Lupulus L.)是一个重要的工业厂,为全球酿造和制药行业提供成分。它的密集产量受到众多疾病的挑战。一种最致命且难以控制的是黄藻枯萎病,一种由真菌病原体缺乏非血磷导致的血管疾病。该疾病可以通过宿主阻力成功控制。尽管已经研究了已经研究了跳跃的抵抗机制,但只有有限数量的抗性基因和可用于有效抗性育种的标记。在这项研究中,我们旨在遵循真菌定植模式和所选基因的差异在敏感(Celeia)和抗性(Wye靶)啤酒花品种期间所选基因的差异表达。基因表达和与V.NONALFALE相容和不相容的相互作用的真菌定植的结果表明HOP植物已经在早期的真菌定植阶段攻击。在我们的研究中研究的17个基因靶标的总共有九种基因靶标导致易感和抗性品种的接种和对照植物之间的鉴别表达。差异是殖民化早期(6dpi)的茎中最明显的,显示靶向基因表达对抗性品种的感染相对较强的变化,而不是易感态度。分析的基因靶标涉及核酸结合,信号传导,蛋白质泛素,细胞氧化突发,羟基化,过氧化,替代剪接和代谢物生物合成的整体防御响应过程。一些基因的上调(例如富含甘氨酸的RNA结合家庭蛋白质,蛋白磷酸酶,富含半胱氨酸的受体状蛋白激酶,锌指CCCH畴内蛋白40,肉桂酸4-羟化酶,III类过氧化物酶,推定的MAPK2,过氧化毒素-2F)在不相容的相互作用中感染可能反映防御激活,限制疾病在整个植物中扩散的和抗性基因型的成功响应。

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