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Epistatic Interactions in Crosses of Illinois High Oil x Illinois Low Oil and of Illinois High Protein x Illinois Low Protein Corn Strains

机译:伊利诺伊州高油x伊利诺斯州低油价和伊利诺伊州高蛋白x伊利诺伊州低蛋白玉米菌株的杂交中的上位相互作用

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Epistasis has been proposed as a possible explanation for the long continued progress from selection in the Illinois long-term corn (Zea mays L.) selection strains. From the crosses of Illinois High Oil (IHO) x Illinois Low Oil (ILO) and of Illinois High Protein (IHP) x Illinois Low Protein (ILP), 500 S2 lines were developed. Each IHOxILO line was genotyped for 479 single nucleotide polymorphism (SNP) markers, and each IHPxILP line was genotyped for 499 SNP markers. Per se and testcross progenies of each S2 line were evaluated for oil, protein, and starch. A large number of QTL were found to control these traits. The objective of this paper is to report the results of analysis of these crosses for two-way epistatic interactions. More epistatic interactions were significant than expected by chance. The proportion of significant interactions that involved a marker significant in a single marker analysis (SMA) was no greater than expected by chance. The number of markers associated only with significant epistatic effects ranged from 46.3 to 72.2% of the total number of markers significant for either an interaction effect or from SMA. The number of QTL controlling a trait is much greater than will be found by analyzing for significant QTL main effects. Thus, epistasis could contribute to the long continued response to selection in the Illinois long-term selection strains and also may help explain the continued success of commercial corn breeding.
机译:已经提出上位转移作为伊利诺伊州长期玉米(Zea mays L.)选择菌株选择长期持续进展的可能解释。从伊利诺斯州高油(IHO)x伊利诺斯州低油(ILO)和伊利诺斯州高蛋白(IHP)x伊利诺斯州低蛋白(ILP)的杂交中,开发了500条S2品系。对每个IHOxILO系进行479个单核苷酸多态性(SNP)标记的基因分型,对每个IHPxILP系进行499个SNP标记的基因分型。评估每个S2系的本身和testcross后代的油脂,蛋白质和淀粉。发现大量QTL控制这些性状。本文的目的是报告针对双向上位性相互作用的这些杂交的分析结果。上位的相互作用更多是偶然的。在单个标记物分析(SMA)中涉及标记物的重要相互作用的比例不超过偶然的预期。仅与显着的上位性作用相关的标志物的数量为对相互作用作用或来自SMA的显着标志物总数的46.3%至72.2%。控制性状的QTL数量比通过分析显着的QTL主要作用所发现的数量要多得多。因此,上位性可能有助于伊利诺伊州长期选择菌株对选择的长期持续响应,也可能有助于解释商品化玉米育种的持续成功。

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