首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Quantitative trait loci for maysin synthesis in maize (Zea mays L.) lines selected for high silk maysin content
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Quantitative trait loci for maysin synthesis in maize (Zea mays L.) lines selected for high silk maysin content

机译:玉米silk丝含量高的玉米品系中s丝素合成的数量性状基因座

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Maysin is a naturally occurring C-glycosyl flavone found in maize (Zea mays L.) silk tissue that confers resistance to corn earworm (Helicoverpa zea, Boddie). Recently, two new maize populations were derived for high silk maysin. The two populations were named the exotic populations of maize (EPM) and the southern inbreds of maize (SIM). Quantitative trait locus (QTL) analysis was employed to determine which loci were responsible for elevated maysin levels in inbred lines derived from the EPM and SIM populations. The candidate genes consistent with QTL position included the p (pericarp color), c2 (colorless2), whp1 (white pollen1) and in1 (intensifier1) loci. The role of these loci in controlling high maysin levels in silks was tested by expression analysis and use of the loci as genetic markers onto the QTL populations. These studies support p, c2 and whp1, but not in1, as loci controlling maysin. Through this study, we determined that the p locus regulates whp1 transcription and that increased maysin in these inbred lines was primarily due to alleles at both structural and regulatory loci promoting increased flux through the flavone pathway by increasing chalcone synthase activity.
机译:Maysin是在玉米(Zea mays L.)丝组织中发现的天然存在的C-糖基黄酮,赋予玉米穗虫(Helicoverpa zea,Boddie)抗性。最近,有两个新的玉米种群用于高丝蛋黄素。这两个种群分别被称为玉米外来种群(EPM)和南部玉米自交系(SIM)。使用定量性状基因座(QTL)分析来确定哪个基因座负责从EPM和SIM群体衍生的自交系中的maysin水平升高。与QTL位置一致的候选基因包括p(果皮颜色),c2(无色2),whp1(白色花粉1)和in1(增强剂1)基因座。这些基因座在控制蚕丝中高蛋黄素水平中的作用通过表达分析和将基因座用作QTL群体的遗传标记进行了测试。这些研究支持p,c2和whp1,但不支持in1,因为控制maysin的基因座。通过这项研究,我们确定p基因座调控whp1转录,而这些近交系中的maysin升高主要是由于结构和调控位点上的等位基因通过增加查尔酮合酶活性促进了通过黄酮途径的通量的增加。

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