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首页> 外文期刊>Breeding science >Confirming a major QTL and finding additional loci responsible for field resistance to brown spot ( Bipolaris oryzae ) in rice
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Confirming a major QTL and finding additional loci responsible for field resistance to brown spot ( Bipolaris oryzae ) in rice

机译:确认主要的QTL并找到其他对稻田褐斑病(Bipolaris oryzae)产生抗性的基因座

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Brown spot is a devastating rice disease. Quantitative resistance has been observed in local varieties (e.g., ‘Tadukan’), but no economically useful resistant variety has been bred. Using quantitative trait locus (QTL) analysis of recombinant inbred lines (RILs) from ‘Tadukan’ (resistant) × ‘Hinohikari’ (susceptible), we previously found three QTLs ( qBS2 , qBS9 , and qBS11 ) that conferred resistance in seedlings in a greenhouse. To confirm their effect, the parents and later generations of RILs were transplanted into paddy fields where brown spot severely occurred. Three new resistance QTLs ( qBSfR1 , qBSfR4 , and qBSfR11 ) were detected on chromosomes 1, 4, and 11, respectively. The ‘Tadukan’ alleles at qBSfR1 and qBSfR11 and the ‘Hinohikari’ allele at qBSfR4 increased resistance. The major QTL qBSfR11 coincided with qBS11 from the previous study, whereas qBSfR1 and qBSfR4 were new but neither qBS2 nor qBS9 were detected. To verify the qBSfR1 and qBSfR11 ‘Tadukan’ resistance alleles, near-isogenic lines (NILs) with one or both QTLs in a susceptible background (‘Koshihikari’) were evaluated under field conditions. NILs with qBSfR11 acquired significant field resistance; those with qBSfR1 did not. This confirms the effectiveness of qBSfR11 . Genetic markers flanking qBSfR11 will be powerful tools for marker-assisted selection to improve brown spot resistance.
机译:褐斑病是毁灭性的水稻病。在本地品种(例如“ Tadukan”)中观察到了定量抗性,但未育出具有经济价值的抗性品种。通过对'Tadukan'(抗性)×'Hinohikari'(易感)的重组自交系(RIL)进行定量性状基因座(QTL)分析,我们先前发现了三个QTL(qBS2,qBS9和qBS11)赋予了幼苗抗性。温室。为了证实其效果,将RIL的亲本和后代移植到严重发生褐斑的稻田中。在染色体1、4和11上分别检测到三个新的抗性QTL(qBSfR1,qBSfR4和qBSfR11)。 qBSfR1和qBSfR11的“ Tadukan”等位基因以及qBSfR4的“ Hinohikari”等位基因增加了抗性。主要QTL qBSfR11与先前研究的qBS11相符,而qBSfR1和qBSfR4是新的,但未检测到qBS2和qBS9。为了验证qBSfR1和qBSfR11的“ Tadukan”抗性等位基因,在田间条件下评估了在易感背景(“越光”)中具有一个或两个QTL的近等基因系(NIL)。具有qBSfR11的NIL具有显着的场电阻;那些使用qBSfR1的人则没有。这证实了qBSfR11的有效性。 qBSfR11侧翼的遗传标记将是强大的工具,可帮助标记辅助选择以改善褐斑病抗性。

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