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The origin of the naked grains of maize

机译:玉米裸粒的起源

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The most critical step in maize (Zea mays ssp. mays) domestication was the liberation of the kernel from the hardened, protective casing that envelops the kernel in the maize progenitor, teosinte(1). This evolutionary step exposed the kernel on the surface of the ear, such that it could readily be used by humans as a food source. Here we show that this key event in maize domestication is controlled by a single gene ( teosinte glume architecture or tga1), belonging to the SBP-domain family(2) of transcriptional regulators. The factor controlling the phenotypic difference between maize and teosinte maps to a 1-kilobase region, within which maize and teosinte show only seven fixed differences in their DNA sequences. One of these differences encodes a non-conservative amino acid substitution and may affect protein function, and the other six differences potentially affect gene regulation. Molecular evolution analyses show that this region was the target of selection during maize domestication. Our results demonstrate that modest genetic changes in single genes can induce dramatic changes in phenotype during domestication and evolution.
机译:玉米驯化中最关键的步骤是从坚硬的保护性外壳中释放出谷粒,该外壳将玉米粒包裹在玉米祖先teosinte(1)中。这个进化步骤使内核暴露在耳朵的表面,因此人类很容易将其用作食物来源。在这里,我们显示了玉米驯化中的这一关键事件是由一个基因(端粒颖胶结构或tga1)控制的,该基因属于转录调节因子的SBP域家族(2)。控制玉米和teosinte之间表型差异的因子定位到一个1碱基对的区域,在该区域中,玉米和teosinte在其DNA序列中仅显示七个固定的差异。这些差异之一编码非保守氨基酸取代,可能影响蛋白质功能,而其他六个差异则可能影响基因调控。分子进化分析表明,该区域是玉米驯化过程中选择的目标。我们的结果表明,单个基因的适度遗传变化可以在驯化和进化过程中诱导表型发生巨大变化。

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