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首页> 外文期刊>Crop science >Genetic Analysis of Visually Scored Orange Kernel Color in Maize
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Genetic Analysis of Visually Scored Orange Kernel Color in Maize

机译:玉米可见核橙色果色的遗传分析

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Increasing levels of provitamin A carotenoids in maize (Zea mays L.) grain through plant breeding has potential to help humans suffering from vitamin A deficiency. In parts of Africa where this deficiency is prevalent, there is a consumer preference for white maize grain and an avoidance of yellow maize grain. White grain has minimal levels of carotenoids whereas yellow grain can have appreciable levels of carotenoids. There is a new effort to introduce orange maize that contains high levels of provitamin A, which appears to be a more acceptable color than yellow to consumers in Africa. The implementation of this program requires backcross selection to convert African-adapted germplasm with white grain to orange. We conducted a study to assess the heritability of visual scores for relative intensity of orange kernel color and identify genetic markers associated with orange color across and within 10 families of the maize nested association mapping population. We found visually scored kernel color to have a moderately high heritability and identified five common quantitative trait loci (QTL) and six rare QTL for intensity of orange color. Notably, half of them coincided with carotenoid biosynthetic genes. Our results indicate that breeders in Africa, Asia, and throughout the world would have flexibility to select for orange kernel color visually and/or with gene-specific markers. Such selection can be combined with marker-assisted selection efforts to increase provitamin A levels in maize grain.
机译:通过植物育种增加玉米(Zea mays L.)谷物中维生素原A类胡萝卜素的水平有可能帮助患有维生素A缺乏症的人。在非洲这种缺粮普遍存在的地区,消费者偏爱白玉米粒,而避免了黄玉米粒。白色谷物中的类胡萝卜素含量最低,而黄色谷物中的类胡萝卜素含量可观。有一种新的努力来引入含有高水平维生素A的橙色玉米,非洲消费者似乎比黄色更能接受这种颜色。该计划的实施需要回交选择,以将具有白色谷物的非洲适应种质转化为橙色。我们进行了一项研究,以评估视觉评分相对于橙仁颜色相对强度的遗传力,并确定与玉米嵌套关联作图群体中的10个科系以及之内的橙色相关的遗传标记。我们发现视觉评分的内核颜色具有中等高的遗传力,并确定了五个常见的定量性状位点(QTL)和六个罕见的橙色强度的QTL。值得注意的是,其中一半与类胡萝卜素的生物合成基因相吻合。我们的结果表明,非洲,亚洲和世界各地的育种者将可以灵活地通过视觉和/或使用基因特异性标记来选择橙仁颜色。这种选择可以与标记辅助选择工作相结合,以增加玉米籽粒中维生素原A的水平。

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