首页> 外文期刊>Journal of Phytopathology >Identification of quantitative trait loci for bacterial blight resistance derived from Oryza meyeriana and agronomic traits in recombinant inbred lines of Oryza sativa.
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Identification of quantitative trait loci for bacterial blight resistance derived from Oryza meyeriana and agronomic traits in recombinant inbred lines of Oryza sativa.

机译:鉴定了来自Oryza meyeriana的细菌抗白叶枯病的数量性状基因座和重组自交系Oryza sativa的农艺性状。

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Bacterial blight (BB) is one of the major diseases that affect rice productivity. In previous studies, BB resistance was transferred to cultivated rice Oryza sativa from wild rice Oryza meyeriana using asymmetric somatic hybridization. One of the resistant hybrid progenies (Y73) has also been shown to possess novel resistance gene(s) different from any of those previously associated with BB resistance. We have mapped quantitative trait loci (QTLs) for BB resistance in a recombinant inbred line (RIL) population derived from a cross between Y73 and a BB-susceptible cv. IR24. Five QTLs were detected where Y73 alleles contributed to increased BB resistance. Three minor QTLs were identified on chromosomes 3, 10 and 11, and two major QTLs on chromosomes 1 and 5, respectively. QTL on chromosome 5, designated qBBR5, had the strongest effect on BB resistance, explaining approximately 37% of the phenotypic variance. Using the same RIL population, we also mapped QTLs for agronomic traits including plant height (PH), heading date (HD), plant yield (PYD) and PYD component traits. A total of 21 QTLs were identified, of which four were detected for PH, six for HD, three for panicle number per plant (PNPP), one for spikelets per panicle (SPP), six for 1000-grain weight (TGW) and one for PYD. qPH1 (a QTL for PH) was found in the same interval as qBBR1 for BB resistance, and qHD11 for HD and qBBR11 for BB resistance also shared a similar interval. Additionally, BB resistance was significantly correlated with PH or HD in the RIL population. This suggests that the resistance genes may have pleiotropic effects on, or close linkage to, genes controlling PH or HD. These results will help deduce the resistance mechanisms of the novel resistance gene(s) and provide the basis for cloning them and using them in marker-assisted breeding.
机译:细菌性疫病(BB)是影响水稻生产力的主要疾病之一。在以前的研究中,通过不对称体细胞杂交将BB抗性从野生稻 Oryza meyeriana 转移到栽培稻 Oryza sativa 。还显示出一种抗性杂交子代(Y73)具有不同于先前与BB抗性相关的任何一种的新型抗性基因。我们绘制了来自Y73和BB易感性之间的杂交的重组自交系(RIL)人群中BB抗性的定量性状基因座(QTL)。 IR24。检测到五个QTL,其中Y73等位基因导致BB抗性增加。在3号,10号和11号染色体上分别鉴定出三个次要QTL,在1号和5号染色体上鉴定了两个主要QTL。 5号染色体上的QTL(称为qBBR5)对BB的抵抗力最强,解释了约37%的表型变异。使用相同的RIL种群,我们还绘制了农艺性状的QTL,包括植物高度(PH),抽穗期(HD),植物产量(PYD)和PYD组分性状。总共鉴定出21个QTL,其中检测到4个PH,6个HD,3个单株穗数(PNPP),1个小穗/穗(SPP),6个​​千粒重(TGW)和1个对于PYD。发现qPH1(PH的QTL)与BB抵抗的qBBR1处于相同的间隔,HD的qHD11和BB抵抗的qBBR11也具有相似的间隔。另外,在RIL人群中,BB抵抗与PH或HD显着相关。这表明抗性基因可能对控制PH或HD的基因具有多效性作用或与其紧密联系。这些结果将有助于推断新的抗性基因的抗性机制,并为克隆它们并将其用于标记辅助育种提供基础。

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