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首页> 外文期刊>Crop Protection >Xa21, Bph14, and Bph15 genes into the elite restorer line Yuehui9113 increases resistance to bacterial blight and the brown planthopper in rice]]>
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Xa21, Bph14, and Bph15 genes into the elite restorer line Yuehui9113 increases resistance to bacterial blight and the brown planthopper in rice]]>

机译:<! 线跃辉9113增加了对细菌枯萎病的抗性和米饭中的棕色Planthopper]]>

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摘要

Utilization of resistant varieties is the most economical and effective strategy to control bacterial blight (BB) and brown planthopper (BPH) in rice. Yuehui9113 is a widely used elite restorer line with high combining ability, and one of its hybrids, C815S/Yuehui9113, has been designated as a check variety for late season single-cropping rice; however, both of the parental lines are susceptible to BB and BPH. To simultaneously improve resistance to both BB and BPH in Yuehui9113 and F1hybrids derived from it, one BB resistance gene (Xa21) and two BPH resistance genes (Bph14andBph15) were pyramided in Yuehui9113 using a marker-assisted backcrossing (MABC) strategy coupled with phenotypic selection in this study. Evaluation of BB and BPH resistance showed that all improved restorer lines that were homozygous for the resistance genes, and their derived F1hybrids crossed with C815S, were at least moderately resistant to fourteenXanthomonas oryzaepv.oryzae(Xoo) strains except for strain FuJ. They were also resistant or highly resistant to BPH, except for the improved line BX9113-06 and its hybrid C815S/BX9113-06, suggesting that BB and BPH resistances were significantly improved compared with the parent Yuehui9113 and the original hybrid C815S/Yuehui9113. Evaluation of agronomic traits and plot yields in 2014 and 2016 suggested that the improved lines BX9113-01 and BX9113-12 and their hybrids with C815S are superior or similar to the original parental line Yuehui9113 and the original hybrid C815S/Yuehui9113 with respect to important agronomic traits, and the two hybrids showed higher yield potential than the control hybrid C815S/Yuehui9113. The results of this study show that introgression of theXa21,Bph14, andBph15genes can significantly improve resistance to BB and BPH in Yuehui9113 and its hybrids. Thus, the improved restorer lines BX9113-01 and BX9113-12 will play an important role in breeding hybrid rice with high levels of resistance to BB and BPH in the Yangtze River valley of China.
机译:利用抗性品种是控制细菌枯萎(BB)和棕色Planthopper(BPH)在水稻中最经济和有效的策略。 Yuehui9113是一种广泛使用的精英恢复系列,具有高合成能力,其混合动力车C815s / yuehui9113已被指定为晚期单种稻米的检查品种。然而,两种父母线都易于BB和BPH。为了同时改善越橘9113的BB和BPH的抵抗力,并且使用与表型选择的标记辅助回复(MABC)策略在yuehui9113中赞美yuehui9113中的一个BB电阻基因(XA21)和两个BPH14bph15)。在这个研究中。 BB和BPH抗性的评估表明,除菌株FUJ外,所有改进的抗性基因均匀的抗腐蚀细胞及其衍生的F1次组的源于抗性基因,以及除菌株FUJ之外的菌株至少抗体。除了改进的线BX9113-06及其杂种C815S / BX9113-06外,它们也对BPH进行耐抗体或高度耐抗体,表明与母辉9113和原始杂交C815S / yuehui9113相比,BB和Bph抗性显着改善。 2014年和2016年的农艺性状和地块产量的评估表明,改进的线BX9113-01和BX9113-12及其与C815S的杂种是优越的或类似于原始父母线yuehui9113和主要农艺学的原始杂交C815s / yuehui9113特征,两个杂种显示比对照杂交C815s / yuehui9113更高的产量潜力。该研究的结果表明,XA21,BPH14,ANDBPH15GENes的速增收可以显着改善越华9113及其杂种的BB和BPH的抗性。因此,改进的恢复系BX9113-01和BX9113-12将在育种杂交水稻中发挥重要作用,在中国的长江谷的高抗BB和BPH中培育杂交水稻。

著录项

  • 来源
    《Crop Protection》 |2019年第2019期|共9页
  • 作者单位

    Longping Branch of Graduate School Central South University;

    Key Laboratory of Agro-ecological Processes in Subtropical Region Institute of Subtropical Agriculture Chinese Academy of Sciences;

    Key Laboratory of Agro-ecological Processes in Subtropical Region Institute of Subtropical Agriculture Chinese Academy of Sciences;

    Key Laboratory of Agro-ecological Processes in Subtropical Region Institute of Subtropical Agriculture Chinese Academy of Sciences;

    Key Laboratory of Agro-ecological Processes in Subtropical Region Institute of Subtropical Agriculture Chinese Academy of Sciences;

    Longping Branch of Graduate School Central South University;

    Key Laboratory of Agro-ecological Processes in Subtropical Region Institute of Subtropical Agriculture Chinese Academy of Sciences;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 病虫害及其防治;
  • 关键词

    Resistant varieties; Bacterial blight resistance; Brown planthopper resistance; Gene pyramiding;

    机译:抗性品种;细菌枯萎;棕色植物潜伏抗性;基因金字塔;

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