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QTL analysis of early stage heterosis for biomass in Arabidopsis

机译:拟南芥生物量早期杂种优势的QTL分析

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The main objective of this study was to identify genomic regions involved in biomass heterosis using QTL, generation means, and mode-of-inheritance classification analyses. In a modified North Carolina Design III we backcrossed 429 recombinant inbred line and 140 introgression line populations to the two parental accessions, C24 and Col-0, whose F 1 hybrid exhibited 44% heterosis for biomass. Mid-parent heterosis in the RILs ranged from −31 to 99% for dry weight and from −58 to 143% for leaf area. We detected ten genomic positions involved in biomass heterosis at an early developmental stage, individually explaining between 2.4 and 15.7% of the phenotypic variation. While overdominant gene action was prevalent in heterotic QTL, our results suggest that a combination of dominance, overdominance and epistasis is involved in biomass heterosis in this Arabidopsis cross. Communicated by H. Becker.
机译:这项研究的主要目的是使用QTL,产生方式和遗传模式分类分析来确定参与生物量杂种优势的基因组区域。在改良的北卡罗莱纳州设计III中,我们将429个重组自交系和140个渗入系群体回交到两个亲本种,C24和Col-0,它们的F 1 杂种表现出44%的杂种优势。 RIL中的亲本杂种优势的干重范围为-31至99%,叶面积的范围为-58至143%。我们在发育的早期阶段检测到了10个与生物量杂种优势有关的基因组位置,分别解释了表型变异的2.4%至15.7%。尽管杂种QTL中普遍存在着显性的基因作用,但我们的结果表明,该拟南芥杂交中生物量杂种优势涉及优势,优势和上位性的组合。与H. Becker进行了沟通。

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