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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic Architecture of Flowering-Time Variation in Arabidopsis thaliana
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Genetic Architecture of Flowering-Time Variation in Arabidopsis thaliana

机译:拟南芥开花时间变异的遗传结构

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The onset of flowering is an important adaptive trait in plants. The small ephemeral species Arabidopsis thaliana grows under a wide range of temperature and day-length conditions across much of the Northern hemisphere, and a number of flowering-time loci that vary between different accessions have been identified before. However, only few studies have addressed the species-wide genetic architecture of flowering-time control. We have taken advantage of a set of 18 distinct accessions that present much of the common genetic diversity of A. thaliana and mapped quantitative trait loci (QTL) for flowering time in 17 F(2) populations derived from these parents. We found that the majority of flowering-time QTL cluster in as few as five genomic regions, which include the locations of the entire FLC/MAF clade of transcription factor genes. By comparing effects across shared parents, we conclude that in several cases there might be an allelic series caused by rare alleles. While this finding parallels results obtained for maize, in contrast to maize much of the variation in flowering time in A. thaliana appears to be due to large-effect alleles.
机译:开花的开始是植物的重要适应性状。小的短命种拟南芥在北半球的大部分地区都在很宽的温度和一天的长度条件下生长,并且以前已经确定了在不同种质之间变化的许多开花时间基因座。但是,只有很少的研究涉及开花时间控制的全物种遗传结构。我们利用了一组18种不同的种质,这些种质表现出拟南芥的许多常见遗传多样性,并从这些亲本衍生的17个F(2)种群中为开花时间绘制了数量性状基因座(QTL)。我们发现大多数开花时间QTL簇都集中在少至五个基因组区域,其中包括转录因子基因的整个FLC / MAF进化枝的位置。通过比较共有父母之间的影响,我们得出结论,在某些情况下,可能存在由稀有等位基因引起的等位基因系列。尽管这一发现与玉米获得的结果相似,但与玉米相反,拟南芥中开花时间的许多变化似乎是由于等位基因的影响。

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