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Identification of major quantitative trait loci qSBR11-1 for sheath blight resistance in rice

机译:水稻抗白叶枯病的主要数量性状基因座qSBR11-1的鉴定

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摘要

Sheath blight caused by Rhizoctonia solani Kuhn is one of the important diseases of rice, resulting in heavy yield loss in rice every year. No rice line resistant to sheath blight has been identified till date. However, in some rice lines a high degree of resistance to R. solani has been observed. An indica rice line, Tetep, is a well documented source of durable and broad spectrum resistance to rice blast as well as quantitative resistance to sheath blight. The present study identified genetic loci for quantitative resistance to sheath blight in rice line Tetep. A mapping population consisting of 127 recombinant inbred lines derived from a cross between rice cultivars HP2216 (susceptible) and Tetep (resistant to sheath blight) was evaluated for sheath blight resistance and other agronomic traits for 4 years across three locations. Based on sheath blight phenotypes and genetic map with 126 evenly distributed molecular markers, a quantitative trait loci (QTLs) contributing to sheath blight resistance was identified on long arm of chromosome 11. Two QTL mapping approaches i.e., single marker analysis and composite interval mapping in multi environments were used to identify QTLs for sheath blight resistance and agronomical traits. The QTL qSBR11-1 for sheath blight resistance was identified between the marker interval RM1233 (26.45 Mb) to sbq33 (28.35 Mb) on chromosome 11. This region was further narrowed down to marker interval K39516 to sbq33 (similar to 0.85 Mb) and a total of 154 genes were predicted including 11 tandem repeats of chitinase genes which may be responsible for sheath blight resistance in rice line Tetep. A set of 96 varieties and a F-2 population were used for validation of markers linked to the QTL region. The results indicate that there is very high genetic variation among varieties at this locus, which can serve as a starting point for allele mining of sheath blight resistance.
机译:solani Kuhn引起的鞘枯病是水稻的重要病害之一,每年导致水稻的严重减产。迄今为止,尚未发现抗枯萎病的水稻系。然而,在一些水稻品系中,已经观察到了对茄红假单胞菌的高度抗性。 et稻系Tetep是有据可查的耐稻瘟病和广谱抗稻瘟病以及定量抗鞘枯病的来源。本研究确定了水稻基因组中对白叶枯病定量抗性的遗传基因座。评估了由127个重组自交系组成的作图群体,这些自交系来自水稻品种HP2216(易感)和Tetep(抗鞘枯病)之间的杂交,在三个地点进行了4年的抗鞘枯病和其他农艺性状的评估。基于鞘枯病的表型和具有126个均匀分布的分子标记的遗传图谱,在11号染色体的长臂上鉴定了导致鞘枯病抗性的定量性状位点(QTL)。两种QTL映射方法,即单标记分析和复合区间作图使用多种环境来鉴定抗白叶枯病和农艺性状的QTL。在11号染色体上的标记间隔RM1233(26.45 Mb)至sbq33(28.35 Mb)之间鉴定到了抗白叶枯病的QTL qSBR11-1。该区域进一步缩小至标记范围K39516至sbq33(近似0.85 Mb)和一个总共预测到154个基因,包括几丁质酶基因的11个串联重复序列,这可能与水稻Tetep的抗白叶枯病有关。使用一组96个变种和一个F-2种群来验证与QTL区域相关的标记。结果表明,该位点的品种间遗传变异非常高,可以作为抗白叶枯病等位基因挖掘的起点。

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