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Genetic Architecture of Flowering Time in Maize As Inferred From Quantitative Trait Loci Meta-analysis and Synteny Conservation With the Rice Genome

机译:水稻性状的数量性状位点荟萃分析和协同保守性推导得出玉米开花时间的遗传结构

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摘要

Genetic architecture of flowering time in maize was addressed by synthesizing a total of 313 quantitative trait loci (QTL) available for this trait. These were analyzed first with an overview statistic that highlighted regions of key importance and then with a meta-analysis method that yielded a synthetic genetic model with 62 consensus QTL. Six of these displayed a major effect. Meta-analysis led in this case to a twofold increase in the precision in QTL position estimation, when compared to the most precise initial QTL position within the corresponding region. The 62 consensus QTL were compared first to the positions of the few flowering-time candidate genes that have been mapped in maize. We then projected rice candidate genes onto the maize genome using a synteny conservation approach based on comparative mapping between the maize genetic map and japonica rice physical map. This yielded 19 associations between maize QTL and genes involved in flowering time in rice and in Arabidopsis. Results suggest that the combination of meta-analysis within a species of interest and synteny-based projections from a related model plant can be an efficient strategy for identifying new candidate genes for trait variation.
机译:通过合成总计313个可用于该性状的数量性状基因座(QTL),解决了玉米开花时间的遗传结构。首先使用概述统计数据突出显示了重要区域,然后使用荟萃分析方法对这些基因进行了分析,该方法产生了具有62个共有QTL的合成遗传模型。其中六个显示出主要效果。与相应区域内最精确的初始QTL位置相比,Meta分析在这种情况下导致QTL位置估计的精度提高了两倍。首先将62个共有QTL与玉米中已定位的少数开花期候选基因的位置进行比较。然后,我们基于玉米遗传图谱与粳稻实物图谱之间的比较图谱,使用一种保守的保守方法将水稻候选基因投射到玉米基因组上。这在水稻和拟南芥中的玉米QTL和开花时间相关基因之间产生了19种关联。结果表明,将感兴趣的物种内的荟萃分析与相关模型植物的基于协同关系的预测相结合,可以成为识别性状变异的新候选基因的有效策略。

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