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Analysis of a Triple Testcross Design With Recombinant Inbred Lines Reveals a Significant Role of Epistasis in Heterosis for Biomass-Related Traits in Arabidopsis

机译:具有重组自交系的三重测试杂交设计的分析揭示了上位性在拟南芥中生物量相关性状杂种优势中的重要作用

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摘要

Primary causes of heterosis are still unknown. Our goal was to investigate the extent and underlying genetic causes of heterosis for five biomass-related traits in Arabidopsis thaliana. We (i) investigated the relative contribution of dominance and epistatic effects to heterosis in the hybrid C24 × Col-0 by generation means analysis and estimates of variance components based on a triple testcross (TTC) design with recombinant inbred lines (RILs), (ii) estimated the average degree of dominance, and (iii) examined the importance of reciprocal and maternal effects in this cross. In total, 234 RILs were crossed to parental lines and their F1's. Midparent heterosis (MPH) was high for rosette diameter at 22 days after sowing (DAS) and 29 DAS, growth rate (GR), and biomass yield (BY). Using the F2-metric, directional dominance prevailed for the majority of traits studied but reciprocal and maternal effects were not significant. Additive and dominance variances were significant for all traits. Additive × additive and dominance × dominance variances were significant for all traits but GR. We conclude that dominance as well as digenic and possibly higher-order epistatic effects play an important role in heterosis for biomass-related traits. Our results encourage the use of Arabidopsis hybrid C24 × Col-0 for identification and description of quantitative trait loci (QTL) for heterosis for biomass-related traits and further genomic studies.
机译:杂种优势的主要原因仍然未知。我们的目标是调查拟南芥中五个生物量相关性状杂种优势的程度和潜在的遗传原因。我们(i)通过基于重组自交系(RIL)的三重测试杂交(TTC)设计的生成方式分析和方差分量估计,研究了杂种优势C24×Col-0中优势和上位效应对杂种优势的相对贡献,( ii)估计平均优势程度,并且(iii)检验了在这个十字架上相互和母性影响的重要性。共有234个RIL与亲本系及其F1杂交。播种后第22天(DAS)和第29天DAS的莲座直径中亲本杂种优势(MPH)高,生长速率(GR)和生物量产量(BY)。使用F2度量,大多数研究的性状都以方向性优势为主,但相互和母性的影响并不显着。所有性状的加性和显性差异均显着。除遗传外,所有性状的加性×加性和显性×显性×显着差异。我们得出的结论是,优势以及双基因和可能的上位上位效应在生物量相关性状的杂种优势中起重要作用。我们的结果鼓励使用拟南芥杂种C24×Col-0来鉴定和描述与生物量相关的性状杂种优势的定量性状基因座(QTL),并进行进一步的基因组研究。

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