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首页> 外文期刊>Theoretical and Applied Genetics >Direct comparison between genomic constitution and flavonoid contents in Allium multiple alien addition lines reveals chromosomal locations of genes related to biosynthesis from dihydrokaempferol to quercetin glucosides in scaly leaf of shallot (Allium cepa L.)
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Direct comparison between genomic constitution and flavonoid contents in Allium multiple alien addition lines reveals chromosomal locations of genes related to biosynthesis from dihydrokaempferol to quercetin glucosides in scaly leaf of shallot (Allium cepa L.)

机译:在葱属的多个外来附加系中,基因组组成和类黄酮含量之间的直接比较揭示了与生物合成相关的基因的染色体位置,该基因位于小葱的鳞片叶中的二氢山emp酚到槲皮素糖苷。

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摘要

The extrachromosome 5A of shallot (Allium cepa L., genomes AA) has an important role in flavonoid biosynthesis in the scaly leaf of Allium fistulosum–shallot monosomic addition lines (FF+nA). This study deals with the production and biochemical characterisation of A. fistulosum–shallot multiple alien addition lines carrying at least 5A to determine the chromosomal locations of genes for quercetin formation. The multiple alien additions were selected from the crossing between allotriploid FFA (♀) and A. fistulosum (♂). The 113 plants obtained from this cross were analysed by a chromosome 5A-specific PGI isozyme marker of shallot. Thirty plants were preliminarily selected for an alien addition carrying 5A. The chromosome numbers of the 30 plants varied from 18 to 23. The other extrachromosomes in 19 plants were completely identified by using seven other chromosome markers of shallot. High-performance liquid chromatography analyses of the 19 multiple additions were conducted to identify the flavonoid compounds produced in the scaly leaves. Direct comparisons between the chromosomal constitution and the flavonoid contents of the multiple alien additions revealed that a flavonoid 3′-hydroxylase (F3′H) gene for the synthesis of quercetin from kaempferol was located on 7A and that an anonymous gene involved in the glucosidation of quercetin was on 3A or 4A. As a result of supplemental SCAR analyses by using genomic DNAs from two complete sets of A. fistulosum–shallot monosomic additions, we have assigned F3′H to 7A and flavonol synthase to 4A.
机译:葱的5A染色体外层(葱属cepa L.,基因组AA)在葱属葱-青葱单倍体附加系(FF + nA)的鳞状叶中的类黄酮生物合成中具有重要作用。这项研究涉及产气和生化特征的A. fistulosum-shallot多个外来附加线至少携带5A来确定槲皮素形成基因的染色体位置。从异源三倍体FFA(♀)和A. fistulosum(♂)之间的杂交中选择了多种外来物种。通过青葱的5A染色体特异性PGI同工酶标记分析了从该杂交获得的113株植物。初步选择了30株携带5A的外来植物。这30株植物的染色体数从18到23不等。通过使用其他七个青葱染色体标记,可以完全鉴定出19种植物中的其他染色体外。进行了19种多次添加的高效液相色谱分析,以鉴定鳞状叶片中产生的类黄酮化合物。染色体结构与多种外来添加物的类黄酮含量之间的直接比较显示,用于从山emp酚合成槲皮素的类黄酮3'-羟化酶(F3'H)基因位于7A上,并且一个匿名基因参与了糖苷的糖苷化反应。槲皮素为3A或4A。通过使用来自两套完整的瘘管-青葱单体性基因组DNA的基因组DNA进行补充SCAR分析的结果,我们将F3'H分配为7A,将黄酮醇合酶分配为4A。

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  • 来源
    《Theoretical and Applied Genetics》 |2006年第4期|607-617|共11页
  • 作者单位

    The United Graduate School of Agricultural Sciences Tottori UniversityDepartment of Biological and Environmental Sciences Faculty of Agriculture Yamaguchi University;

    Department of Biological and Environmental Sciences Faculty of Agriculture Yamaguchi University;

    Department of Biological and Environmental Sciences Faculty of Agriculture Yamaguchi University;

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