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Exploring soybean aphid (Aphis glycines Matsumura) resistance germplasm across the Midwest and its relationship with free amino acids accumulation in leaves

机译:探索中西部地区的大豆蚜(Aphis glycines Matsumura)抗性种质及其与叶片中游离氨基酸积累的关系

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摘要

The soybean aphid (Aphis glycines) has rapidly spread through the Midwest causing consistent yield losses since its introduction. In an effort to find sources of resistance to this pest, several plant introductions have been screened in controlled laboratory conditions or in few locations under field conditions. In order to better characterize different soybean resistant lines we measured resistance on 18 soybean varieties at different locations across the Midwest in two years. Clustering of lines with similar performance was conducted. Correlation analyses between aphid pressure determined by different locations and aphid infestation of groups of lines as determined by the cluster showed no genotypic by environment interaction. Furthermore, we selected one soybean line with known source of resistance (Rag1 gene) and a related line without the Rag1 gene. Consistency of the resistance conferred by Rag1 was tested in terms of yield losses along different levels of aphid infestations at field conditions. Even though the resistant line showed high levels of aphid infestation it did not show yield losses. These results suggest that the Rag1 gene may confer not only resistant to soybean aphid (aphid numbers per plant) but also tolerance to this pest (not significant yield loss when infested). In an effort to understand the Rag1 mechanism of resistance we tested for differences in free amino acid composition of leaves in the Rag1 genotype and its susceptible related line at three soybean developmental stages. We detected constitutive differences in amino acid composition between these two lines, and also differences in induced responses in the presence of aphids. The amino acids detected in this study could be selected to evaluate their putative role in aphids growth and reproduction.
机译:自引进以来,大豆蚜虫(Aphis甘氨酸)已迅速在中西部传播,造成持续的产量损失。为了找到对这种害虫的抗性来源,已经在受控的实验室条件下或在田间条件下的少数地方筛选了几种植物引种。为了更好地表征不同的大豆抗性品系,我们在两年内测量了中西部不同地区的18个大豆品种的抗性。对性能相似的线进行了聚类。由不同位置决定的蚜虫压力与由群决定的线虫群的蚜虫侵染之间的相关性分析表明,环境相互作用没有基因型。此外,我们选择了一个具有已知抗性来源的大豆品系(Rag1基因)和一个不含Rag1基因的相关品系。根据田间条件下不同水平蚜虫侵害的产量损失,测试了Rag1赋予的抗性的一致性。即使抗性品系显示出高水平的蚜虫侵染,也没有显示出产量损失。这些结果表明,Rag1基因不仅可以赋予对大豆蚜虫的抗性(每株植物的蚜虫数量),而且还可以对这种害虫具有耐受性(被侵染时不会产生明显的产量损失)。为了了解抗性的Rag1机制,我们测试了大豆三个发育阶段Rag1基因型及其易感相关品系的叶片游离氨基酸组成的差异。我们检测到这两个品系之间氨基酸组成的组成差异,以及在蚜虫存在下诱导的响应差异。可以选择在这项研究中检测到的氨基酸,以评估其在蚜虫生长和繁殖中的推定作用。

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    Chiozza, Mariana Victoria;

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  • 年度 2009
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