首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Statistical epistasis between candidate gene alleles for complex tuber traits in an association mapping population of tetraploid potato
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Statistical epistasis between candidate gene alleles for complex tuber traits in an association mapping population of tetraploid potato

机译:四倍体马铃薯的群体作图群体中复杂块茎性状的候选基因等位基因之间的统计上位

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摘要

Association mapping using DNA-based markers is a novel tool in plant genetics for the analysis of complex traits. Potato tuber yield, starch content, starch yield and chip color are complex traits of agronomic relevance, for which carbohydrate metabolism plays an important role. At the functional level, the genes and biochemical pathways involved in carbohydrate metabolism are among the best studied in plants. Quantitative traits such as tuber starch and sugar content are therefore models for association genetics in potato based on candidate genes. In an association mapping experiment conducted with a population of 243 tetraploid potato varieties and breeding clones, we previously identified associations between individual candidate gene alleles and tuber starch content, starch yield and chip quality. In the present paper, we tested 190 DNA markers at 36 loci scored in the same association mapping population for pairwise statistical epistatic interactions. Fifty marker pairs were associated mainly with tuber starch content and/or starch yield, at a cut-off value of q a parts per thousand currency sign 0.20 for the experiment-wide false discovery rate (FDR). Thirteen marker pairs had an FDR of q a parts per thousand currency sign 0.10. Alleles at loci encoding ribulose-bisphosphate carboxylase/oxygenase activase (Rca), sucrose phosphate synthase (Sps) and vacuolar invertase (Pain1) were most frequently involved in statistical epistatic interactions. The largest effect on tuber starch content and starch yield was observed for the paired alleles Pain1-8c and Rca-1a, explaining 9 and 10% of the total variance, respectively. The combination of these two alleles increased the means of tuber starch content and starch yield. Biological models to explain the observed statistical epistatic interactions are discussed.
机译:使用基于DNA的标记进行的关联作图是植物遗传学中用于分析复杂性状的新工具。马铃薯块茎产量,淀粉含量,淀粉产量和木片色是农艺相关性的复杂特征,其中碳水化合物的代谢起着重要的作用。在功能水平上,参与碳水化合物代谢的基因和生化途径是植物中研究得最好的。因此,诸如块茎淀粉和糖含量等定量性状是基于候选基因的马铃薯关联遗传模型。在对243个四倍体马铃薯品种和育种克隆种群进行的关联作图实验中,我们先前确定了单个候选基因等位基因与块茎淀粉含量,淀粉产量和芯片质量之间的关联。在本论文中,我们在成对统计上位相互作用中,在相同关联作图群体中的36个基因座处测试了190个DNA标记。五十个标记对主要与块茎淀粉含量和/或淀粉产量相关,在整个实验范围内的错误发现率(FDR)的临界值为q a /千分之一货币符号0.20。十三对标记的FDR为每千货币符号0.10 q。编码核糖二磷酸羧化酶/加氧酶激活酶(Rca),蔗糖磷酸合酶(Sps)和液泡转化酶(Pain1)的基因座的等位基因最常参与统计上位相互作用。配对的等位基因Pain1-8c和Rca-1a对块茎淀粉含量和淀粉产量的影响最大,分别解释了总变异的9%和10%。这两个等位基因的结合增加了块茎淀粉含量和淀粉产量的手段。讨论了解释观察到的统计学上位相互作用的生物学模型。

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