首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genetic analysis of adult plant, quantitative resistance to stripe rust in wheat cultivar 'Stephens' in multi-environment trials.
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Genetic analysis of adult plant, quantitative resistance to stripe rust in wheat cultivar 'Stephens' in multi-environment trials.

机译:成年植物的遗传分析,在多环境试验中小麦品种“斯蒂芬斯”对条锈病的定量抗性。

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The wheat ( Triticum aestivum L.) cultivar 'Stephens' has been grown commercially in the USA Pacific Northwest for 30 years. The durable resistance of 'Stephens' to stripe rust ( Puccinia striiformis f. sp. tritici) was believed to be due to a combination of seedling and adult plant resistance genes. Multilocation field trials, diversity array technology (DArT), and simple sequence repeat (SSR) markers were used to identify quantitative trait loci (QTL) for resistance. Recombinant inbred lines were assessed for stripe rust response in eight locations/years, five in 2008 and three in 2009. The data from Mt. Vernon, WA, differed from all other environments, and composite interval mapping (CIM) identified three QTL, QYrst.orr-1AL, QYrst.orr-4BS, and QYrpl.orr-6AL, which accounted for 12, 11, and 6% of the phenotypic variance, respectively. CIM across the remaining six environments identified four main QTL. Two QTL, QYrst.orr-2BS.2 and QYrst.orr-7AS, were detected in five of six environments and explained 11 and 15% of the phenotypic variance, respectively. Two other QTL, QYrst.orr-2AS and QYrpl.orr-4BL, were detected across four and three of six environments, and explained 19 and 9% of the phenotypic variance, respectively. The susceptible parent 'Platte' contributed QYrpl.orr-4BL and QYrpl.orr-6AL, with the remaining QTL originating from 'Stephens'. For each environment, additional minor QTL were detected, each accounting for 6-10% of the phenotypic variance. Different QTL with moderate effects were identified in both 'Stephens' and 'Platte'. Significant QTL * environment interactions were evident, suggesting that specificity to plant stage, pathogen genotype, and/or temperature was important.
机译:小麦(Triticum aestivum L.)品种“ Stephens”已经在美国太平洋西北部商业化种植了30年。人们认为“斯蒂芬斯”对条锈病(Puccinia striiformis f。sp。tritici)的持久抗性是由于幼苗和成年植物抗性基因的结合所致。多地点野外试验,多样性阵列技术(DArT)和简单序列重复(SSR)标记用于鉴定抗性的数量性状基因座(QTL)。在8个地点/年,2008年的5个地点和2009年的3个地点,对重组自交系的条纹锈病响应进行了评估。华盛顿州弗农不同于所有其他环境,复合间隔映射(CIM)确定了三个QTL,QYrst.orr-1AL,QYrst.orr-4BS和QYrpl.orr-6AL,分别占12、11和6%表型方差。其余六个环境中的CIM确定了四个主要QTL。在六个环境中的五个中检测到两个QTL,即QYrst.orr-2BS.2和QYrst.orr-7AS,它们分别解释了11%和15%的表型变异。在六个环境中的四个和三个中检测到另外两个QTL QYrst.orr-2AS和QYrpl.orr-4BL,分别解释了19%和9%的表型变异。易感的父本“ Platte”贡献了QYrpl.orr-4BL和QYrpl.orr-6AL,其余QTL来自“ Stephens”。对于每种环境,都检测到其他次要QTL,每个QTL占表型变异的6-10%。在“斯蒂芬斯”和“普拉特”中都鉴定出了具有中等影响的不同QTL。 QTL与环境之间存在明显的相互作用,这表明对植物阶段,病原体基因型和/或温度的特异性很重要。

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