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Application of marker-assisted backcross to introgress Bph3, Bph14 and Bph15 into an elite indica rice variety for improving its resistance to brown planthopper

机译:标记辅助回交将Bph3,Bph14和Bph15渗入优质in稻品种中以提高其对褐飞虱的抗性

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To improve brown planthopper (Nilaparvata lugens Stal; BPH) resistance of an elite indica cultivar of South China, Hemeizhan (HMZ), we applied marker-assisted backcross (MABC) to incorporate three BPH-resistance genes (Bph3, Bph14 and Bph15) into the genetic background of HMZ. In the third backcross (BC3) generation, we obtained near-isogenic lines (Bph3-NIL, Bph14-NIL, Bph15-NIL and Bph14+Bph15-NIL) with more than 96% recovery of recurrent parent genome, and pyramided lines (Bph3+Bph14-PYL, Bph3+Bph15-PYL and Bph3+Bph14+Bph15-PYL) with more than 89% recovery of recurrent parent genome. These lines showed stronger resistance against BPH than HMZ at seedling and booting stages. The rank of resistance gene effect was Bph3+Bph14+Bph15Bph3+Bph15Bph3+Bph14Bph14+Bph15Bph3Bph15Bph14>none. Compared with HMZ, only Bph3+Bph14+Bph15-PYL had a significant difference in yield per plant, and the lines carrying Bph3 had higher amylose contents, indicating that Bph3 was tightly linked to Wx(a) allele. These improved lines are good intermediate sources of broad-spectrum and durable BPH resistance to improve other indica cultivars. Our results demonstrate that MABC is a very efficient approach to improve BPH resistance of elite rice cultivar.
机译:为了提高华南优良in稻(HMZ)的褐飞虱(Nilaparvata lugens Stal; BPH)的抗性,我们应用了标记辅助回交(MABC)技术,将三个BPH抗性基因(Bph3,Bph14和Bph15)整合入HMZ的遗传背景。在第三回交(BC3)世代中,我们获得了近等基因系(Bph3-NIL,Bph14-NIL,Bph15-NIL和Bph14 + Bph15-NIL),其复发亲本基因组的回收率超过96%,并形成了金字塔形系(Bph3 + Bph14-PYL,Bph3 + Bph15-PYL和Bph3 + Bph14 + Bph15-PYL),其复发亲本基因组的回收率超过89%。在苗期和孕穗期,这些品系对BPH的抵抗力强于HMZ。抗性基因作用的等级为Bph3 + Bph14 + Bph15Bph3 + Bph15Bph3 + Bph14Bph14 + Bph15Bph3Bph15Bph14>无。与HMZ相比,只有Bph3 + Bph14 + Bph15-PYL的单株产量差异显着,带有Bph3的品系具有更高的直链淀粉含量,表明Bph3与Wx(a)等位基因紧密相连。这些改良品系是广谱和持久的BPH抗性的良好中间来源,可改善其他in稻品种。我们的结果表明,MABC是提高优良水稻品种对BPH抗性的一种非常有效的方法。

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