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Identification of Stably Expressed Quantitative Trait Loci for Grain Yield and Protein Content Using Recombinant Inbred Line and Reciprocal Introgression Line Populations in Rice

机译:利用水稻重组自交系和互渗种系群体鉴定稳定表达的产量和蛋白质含量定量性状位点

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Improvements of rice (Oryza sativa L.) grain yield and protein content are important breeding objectives. Two hundred forty recombinant inbred lines (RILs) derived from a cross between japonica cultivar Xiushui09 and indica breeding line IR2061-520-6-9 were used to identify quantitative trait loci (QTLs) affecting grain yield per plant (GYP) and protein content (PC) in rice. A total of five main-effect QTLs (M-QTLs) were identified on chromosomes 2, 4, 7, 10, and 12, which collectively explained 50.06% of the total phenotypic variance. As for PC, a total of four M-QTLs were identified on chromosomes 2, 5, 10, and 11, which explained 41.44% of the total phenotypic variance. A total six pairs of epistatic QTLs (E-QTLs) were identified. Furthermore, the M-QTLs for GYP and PC detected in the RIL population were confirmed by two sets of BC2F6 reciprocal introgression lines (ILs) derived from the same parents and tested in Sanya and Hangzhou. The results indicated that four M-QTLs (qGYP-7 and qGYP-12 for GYP and qPC-10 and qPC-11 for PC) showed stable expressions and consistent pyramiding effects across different environments under different genetic backgrounds. The ILs with pyramided nonallelic alleles at M-QTLs for GYP from Xiushui09 in IR2061-520-6-9 genetic background or the alleles of M-QTLs for PC from IR2061-520-6-9 in Xiushui09 genetic background provided some useful information on marker-assisted selection (MAS) for developing either higher GYP or higher PC cultivars. Two lines, XS-198 and IR146, with favorable alleles at four M-QTLs from the two parents showed high GYP and PC and thus could be directly used in production.
机译:提高水稻(Oryza sativa L.)的籽粒产量和蛋白质含量是重要的育种目标。利用粳稻秀水09与and稻育种系IR2061-520-6-9杂交得到的240个重组自交系(RIL)鉴定影响单株籽粒产量(GYP)和蛋白质含量的定量性状位点(QTL) PC)在大米中。在第2、4、7、10和12号染色体上共鉴定了五个主要效应QTL(M-QTL),共同解释了总表型变异的50.06%。至于PC,在2号,5号,10号和11号染色体上总共鉴定出四个M-QTL,这解释了41.44%的总表型变异。总共确定了六对上位QTL(E-QTL)。此外,在RIL人群中检测到的GYP和PC的M-QTL由来自同一亲本的两组BC2F6互渗基因组(IL)证实,并在三亚和杭州进行了测试。结果表明,四个M-QTL(对于GYP是qGYP-7和qGYP-12,对于PC是qPC-10和qPC-11)在不同遗传背景下的不同环境中显示稳定的表达和一致的金字塔效应。在IR2061-520-6-9遗传背景下秀水09的GYP的M-QTL上带有金字塔等位基因的等位基因或在Xiushui09遗传背景下IR2061-520-6-9的PC的M-QTL等位基因提供了一些有用的信息标记辅助选择(MAS)用于开发更高的GYP或更高的PC品种。 XS-198和IR146两条品系,来自两个亲本的四个M-QTL具有良好的等位基因,显示出较高的GYP和PC,因此可以直接用于生产。

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