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Analysis of QTLs on heading date based on single segment substitution lines in rice (Oryza Sativa L.)

机译:基于单节代换系的水稻抽穗期QTL分析(Oryza Sativa L.)

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摘要

Single segment substitution lines (SSSLs) have been confirmed to be powerful tools to perform quantitative trait locus (QTL) analysis. This study illuminated the process and methods of QTL analysis with SSSLs on heading date (HD) in rice. QTL identification under two cropping seasons revealed 98 of 202 SSSLs associated with HD. A total of 22 QTLs were positioned in relative narrow regions on chromosomes by mrMLM.GUI software. QTL qHd3-1 was precisely positioned at 4.4 cM on chromosome 3 by a secondary F2 population. Through SSSL pyramiding, double segment substitution lines were constructed and used to analyze epistatic interactions of digenic loci. Epistatic effects for three pairs of QTLs were estimated, indicating the interactions of QTL qHd3-1 with other QTLs detected and the role to enhance the expression of early ripening or restraining of late flowering QTLs. Additionally, analysis of QTL in different environments provided information about the stability of HD QTLs. This type of research points out the way to excavate favorable genes for design breeding.
机译:单节替换系(SSSL)已被证实是执行定量性状基因座(QTL)分析的强大工具。这项研究阐明了水稻在抽穗期(HD)上用SSSL进行QTL分析的过程和方法。在两个种植季节下的QTL鉴定揭示了202个与HD相关的SSSL中的98个。通过mrMLM.GUI软件,总共22个QTL位于染色体的相对狭窄区域。 QTL qHd3-1由次要F2种群精确定位在3号染色体上的4.4 cM处。通过SSSL金字塔,构建了双节段替换系,并用于分析双基因位点的上位相互作用。估计了三对QTL的上位性作用,表明QTL qHd3-1与检测到的其他QTL的相互作用以及在增强早熟QTL表达或抑制晚开花QTL表达中的作用。此外,在不同环境中对QTL的分析还提供了有关HD QTL稳定性的信息。这类研究指出了挖掘有利于设计育种的基因的方法。

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