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Molecular mapping of quantitative trait loci for field resistance to Fusarium head blight in a European winter wheat population

机译:欧洲冬小麦种群田间抗枯萎病的数量性状基因座的分子作图

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Fusarium head blight (FHB), one of the most destructive diseases of wheat in many parts of the world, can reduce the grain quality due to mycotoxin contamination up to rejection for usage as food or feed. Objective of this study was to map quantitative trait loci (QTL) associated with FHB resistance in the winter wheat population 'G16-92' (resistant)/'Hussar'. In all, 136 recombinant inbred lines were evaluated in field trials in 2001 and 2002 after spray inoculation with a Fusarium culmorum suspension. The area under disease progress curve was calculated based on the visually scored FHB symptoms. For means across all environments two FHB resistance QTL located on chromosomes 1A, and 2BL were identified. The individual QTL explained 9.7% and 14.1% of the phenotypic variance and together 26.7% of the genetic variance. The resistance QTL on 1A coincided with a QTL for plant height in contrast to the resistance QTL on 2BL that appeared to be independently inherited from morphological characteristics like plant height and ear compactness. Therefore, especially the QTL on 2BL could be of great interest for breeding towards FHB resistance.
机译:镰刀菌枯萎病(FHB)是世界许多地区小麦中最具破坏性的疾病之一,由于霉菌毒素污染而导致谷物品质下降,甚至被拒绝用作食品或饲料。这项研究的目的是绘制与冬小麦群体“ G16-92”(抗性)/“轻骑兵”中的FHB抗性相关的定量性状位点(QTL)。在2001年和2002年用枯萎镰孢菌悬浮液喷雾接种后,共进行了136个重组自交系的田间试验评估。根据视觉评分的FHB症状计算疾病进展曲线下的面积。对于在所有环境中的均值,确定了位于染色体1A和2BL上的两个FHB抗性QTL。个体QTL解释了表型变异的9.7%和14.1%,以及遗传变异的26.7%。 1A上的抗性QTL与植物高度的QTL相吻合,而2BL上的抗性QTL似乎是从形态特征(如植物高度和穗紧密度)中独立继承的。因此,特别是2BL上的QTL可能对FHB抗性的育种很有兴趣。

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