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Major Regulatory Genes in Maize Contribute to Standing Variation in Teosinte (Zea mays ssp. parviglumis)

机译:玉米的主要调控基因助长了Teosinte(Zea mays ssp。parviglumis)的站立变异。

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摘要

In plants, many major regulatory genes that control plant growth and development have been identified and characterized. Despite a detailed knowledge of the function of these genes little is known about how they contribute to the natural variation for complex traits. To determine whether major regulatory genes of maize contribute to standing variation in Balsas teosinte we conducted association mapping in 584 Balsas teosinte individuals. We tested 48 markers from nine candidate regulatory genes against 13 traits for plant and inflorescence architecture. We identified significant associations using a mixed linear model that controls for multiple levels of relatedness. Ten associations involving five candidate genes were significant after correction for multiple testing, and two survive the conservative Bonferroni correction. zfl2, the maize homolog of FLORICAULA of Antirrhinum, was associated with plant height. zap1, the maize homolog of APETALA1 of Arabidopsis, was associated with inflorescence branching. Five SNPs in the maize domestication gene, teosinte branched1, were significantly associated with either plant or inflorescence architecture. Our data suggest that major regulatory genes in maize do play a role in the natural variation for complex traits in teosinte and that some of the minor variants we identified may have been targets of selection during domestication.
机译:在植物中,已经鉴定和表征了许多控制植物生长和发育的主要调控基因。尽管对这些基因的功能有详尽的了解,但对于它们如何促进复杂性状的自然变异却知之甚少。为了确定玉米的主要调控基因是否会导致巴尔萨斯teosinte的站立变异,我们在584个巴尔萨斯teosinte个体中进行了关联作图。我们测试了来自9个候选调控基因的48个标记,这些标记针对植物和花序结构的13个性状。我们使用混合线性模型控制多个相关程度,从而确定了重要的关联。经过多次测试校正后,涉及五个候选基因的十个关联显着,其中两个在保守的Bonferroni校正中幸存下来。 zfl2是Antirrhinum的FLORICAULA的玉米同源物,与植物高度相关。拟南芥APETALA1的玉米同源物zap1与花序分支有关。玉米驯化基因teosinte branched1中的五个SNP与植物或花序结构均显着相关。我们的数据表明,玉米中的主要调控基因确实在端粒中复杂性状的自然变异中起作用,并且我们鉴定出的一些次要变异可能已成为驯化过程中选择的目标。

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