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Resistance loci affecting distinct stages of fungal pathogenesis: use of introgression lines for QTL mapping and characterization in the maize - Setosphaeria turcica pathosystem

机译:抗性基因座影响真菌发病机理的不同阶段:使用渗入系进行玉米的QTL定位和鉴定-玉米粉虱发病机理

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摘要

BackgroundStudies on host-pathogen interactions in a range of pathosystems have revealed an array of mechanisms by which plants reduce the efficiency of pathogenesis. While R-gene mediated resistance confers highly effective defense responses against pathogen invasion, quantitative resistance is associated with intermediate levels of resistance that reduces disease progress. To test the hypothesis that specific loci affect distinct stages of fungal pathogenesis, a set of maize introgression lines was used for mapping and characterization of quantitative trait loci (QTL) conditioning resistance to Setosphaeria turcica, the causal agent of northern leaf blight (NLB). To better understand the nature of quantitative resistance, the identified QTL were further tested for three secondary hypotheses: (1) that disease QTL differ by host developmental stage; (2) that their performance changes across environments; and (3) that they condition broad-spectrum resistance.
机译:背景对一系列病理系统中宿主与病原体相互作用的研究揭示了一系列机制,植物可通过这些机制降低发病机理的效率。虽然R基因介导的抗性赋予针对病原体入侵的高度有效的防御反应,但定量抗性与降低疾病进展的中等抗性水平相关。为了检验特定基因座影响真菌发病机制不同阶段的假说,使用了一套玉米基因渗入系来定位和表征对北方稻瘟病(NLB)的致病因子-斜纹夜蛾的数量性状基因座(QTL)的抗性。为了更好地理解定量抗性的性质,对鉴定出的QTL进行了三个次要假设的进一步测试:(1)疾病QTL因宿主发育阶段而异; (2)它们的性能在整个环境中都会发生变化; (3)它们调节广谱抗性。

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