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Improvement of Stable Restorer Lines for Blast Resistance through Functional Marker in Rice (

机译:通过水稻功能标志物的耐磨性稳定恢复系的改进(

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摘要

Two popular stable restorer lines, CB 87 R and CB 174 R, were improved for blast resistance through marker-assisted back-cross breeding (MABB). The hybrid rice development program in South India extensively depends on these two restorer lines. However, these restorer lines are highly susceptible to blast disease. To improve the restorer lines for resistance against blasts, we introgressed the broad-spectrum dominant gene Pi54 into these elite restorer lines through two independent crosses. Foreground selection for Pi54 was done by using gene-specific functional marker, Pi54 MAS, at each back-cross generation. Back-crossing was continued until BC3 and background analysis with seventy polymorphic SSRs covering all the twelve chromosomes to recover the maximum recurrent parent genome was done. At BC3F2, closely linked gene-specific/SSR markers, DRRM-RF3-10, DRCG-RF4-8, and RM 6100, were used for the identification of fertility restoration genes, Rf3 and Rf4, along with target gene (Pi54), respectively, in the segregating population. Subsequently, at BC3F3, plants, homozygous for the Pi54 and fertility restorer genes (Rf3 and Rf4), were evaluated for blast disease resistance under uniform blast nursery (UBN) and pollen fertility status. Stringent phenotypic selection resulted in the identification of nine near-isogenic lines in CB 87 R × B 95 and thirteen in CB 174 R × B 95 as the promising restorer lines possessing blast disease resistance along with restoration ability. The improved lines also showed significant improvement in agronomic traits compared to the recurrent parents. The improved restorer lines developed through the present study are now being utilized in our hybrid development program.
机译:通过标记辅助背跨育种(MABB),改善了两种流行的稳定恢复系CB 87 R和CB 174 R.南印度的杂交水稻开发计划广泛取决于这两个修复程序。然而,这些恢复系高度易受爆炸疾病的影响。为了改善抗爆炸的抗腐蚀性线,我们通过两个独立的十字架突出了广谱优势基因PI54进入这些精英恢复系。通过使用基因特异性官能标记,PI54 MAS,在每个背跨一代中完成PI54的前景选择。继续横向于BC3和背景分析,覆盖所有12个染色体的七十多态SSR以回收最大反复性母体基因组。在BC3F2,密切连接的基因特异性/ SSR标记物,DRRM-RF3-10,DRCG-RF4-8和RM 6100用于鉴定生育恢复基因,RF3和RF4以及靶基因(PI54),分别在分离人群中。随后,在BC3F3,在均匀的煎炸苗圃(UBN)和花粉生育状态下评估对PI54和生育恢复基因(RF3和RF4)的植物,对PI54和生育恢复基因的纯合(RF3和RF4)进行评估。严格的表型选择导致CB 87 R×B 95和13个中的九条近似同学线鉴定为CB 174 R×B 95中的有前景的恢复系具有恢复能力。与经常性父母相比,改良的线还显示出农艺性状的显着改善。通过本研究开发的改进的恢复系现在正在我们的混合发展计划中使用。

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