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QTL underlying the resistance to soybean aphid (Aphis glycines Matsumura) through isoflavone-mediated antibiosis in soybean cultivar ‘Zhongdou 27’

机译:通过异黄酮介导的大豆品种“中豆27”对大豆蚜虫(甘氨酸松村蚜虫)的抗性的QTL

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摘要

Soybean aphid (Aphis glycines Matsumura) results in severe yield loss of soybean in many soybean-growing countries of the world. A few loci have been previously identified to be associated with the aphid resistance in soybean. However, none of them was via isoflavone-mediated antibiosis process. The aim of the present study was to conduct genetic analysis of aphid resistance and to identify quantitative trait loci (QTL) underlying aphid resistance in a Chinese soybean cultivar with high isoflavone content. One hundred and thirty F5:6 derived recombinant inbred lines from the ‘Zhongdou 27’ × ‘Jiunong 20’ cross were used. Two QTL were directly associated with resistance to aphid as measured by aphid damage index. qRa_1, close to Satt470 on soybean linkage group (LG) A2 (chromosome 8), was consistently detected for 3- and 4-week ratings and explained a large portion of phenotypic variations ranging from 25 to 35%. qRa_2, close to Satt144 of LG F (chromosome 13), was detected for 3- and 4-week ratings and could explain 7 and 11% of the phenotypic variation, respectively. These two QTL were highly associated with high isoflavone content and both positive alleles were derived from ‘Zhongdou 27’, a cultivar with higher isoflavone content. The results revealed that higher individual or total isoflavones contents in soybean lines could protect soybean against aphid attack. These two QTL detected jointly provide potential for marker-assisted selection to improve the resistance of soybean cultivars to aphid along with the increase of isoflavone content.
机译:大豆蚜虫(Aphis glycines Matsumura)导致世界上许多大豆种植国的大豆严​​重减产。先前已经鉴定出一些基因座与大豆中的蚜虫抗性有关。然而,它们都不是通过异黄酮介导的抗菌过程。本研究的目的是对蚜虫抗性进行遗传分析,并确定具有高异黄酮含量的中国大豆品种对蚜虫抗性的定量性状位点(QTL)。使用了来自“中豆27”ד酒农20”杂交的130个F5:6 衍生的重组自交系。如通过蚜虫损害指数所测量的,两个QTL与对蚜虫的抗性直接相关。 qRa_1接近大豆连锁群(LG)A2(染色体8)的Satt470,连续3周和4周都被检测到,并解释了很大一部分表型变异,范围从25%到35%。 qRa_2,接近LG F的Satt144(13号染色体),检测了3周和4周的评分,可以分别解释7%和11%的表型变异。这两个QTL与异黄酮含量高相关,两个阳性等位基因均来自异黄酮含量较高的品种“中豆27”。结果表明,大豆系中较高的单个或全部异黄酮含量可以保护大豆免受蚜虫侵袭。这两个检测到的QTL共同为标记辅助选择提供了潜力,以提高大豆品种对蚜虫的抗性以及异黄酮含量的增加。

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  • 来源
    《Theoretical and Applied Genetics》 |2011年第8期|1459-1465|共7页
  • 作者单位

    Soybean Research Institute Key Laboratory of Soybean Biology in Chinese Ministry of Education Northeast Agricultural University Harbin 150030 China;

    Soybean Research Institute Key Laboratory of Soybean Biology in Chinese Ministry of Education Northeast Agricultural University Harbin 150030 China;

    Soybean Research Institute Key Laboratory of Soybean Biology in Chinese Ministry of Education Northeast Agricultural University Harbin 150030 China;

    Soybean Research Institute Key Laboratory of Soybean Biology in Chinese Ministry of Education Northeast Agricultural University Harbin 150030 China;

    Soybean Research Institute Key Laboratory of Soybean Biology in Chinese Ministry of Education Northeast Agricultural University Harbin 150030 China;

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