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Transgenic rice lines expressing maize C1 and R?¢????S regulatory genes produce various flavonoids in the endosperm

机译:表达玉米C1和Rα-β-S调节基因的转基因水稻品系在胚乳中产生各种类黄酮

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Flavonoids, compounds that possess diverse health?¢????promoting benefits, are lacking in the endosperm of rice. Therefore, to develop transgenic lines that produce flavonoids, we transformed a white rice cultivar, Oryza sativa japonica cv. Hwa?¢????Young, with maize C1 and R?¢????S regulatory genes. Expression of these transgenes was restricted to the endosperm using the promoter of a rice prolamin gene. The pericarp of the C1 / R?¢????S homozygous lines became dark brown in accordance with their maternal genotype, whereas the endosperm turned chalky, similar to the opaque kernel phenotype. Analysis via high?¢????performance liquid chromatography (HPLC) revealed that numerous kinds of flavonoids were produced in these transgenic kernels. To identify individual flavonoids, the number of HPLC peaks was reduced through moderate acid hydrolysis, followed by ethyl acetate partitioning. Amongst the major flavonoids, dihydroquercetin (taxifolin), dihydroisorhamnetin (3?¢???2?¢???? O ?¢????methyl taxifolin) and 3?¢???2?¢???? O ?¢????methyl quercetin were identified through liquid chromatography/mass spectrometry/mass spectrometry and nuclear magnetic resonance analyses. Fluorescence labelling with diphenylboric acid showed that the flavonoids were highly concentrated in the cells of four to five outer endosperm layers. More importantly, a high fluorescence signal was present in the cytosol of the inner endosperm layers. However, the overall signal in the inner layers was significantly lower because starch granules and protein bodies occupied most of the cytosolic space. Our estimate of the total flavonoid content in the transgenic kernels suggests that C1 / R?¢????S rice has the potential to be developed further as a novel variety that can produce various flavonoids in its endosperm.
机译:大米的胚乳中缺乏黄酮类化合物,它们具有多种健康益处。因此,为了开发可产生类黄酮的转基因品系,我们转化了一个白色水稻品种,水稻杂交品种(Oryza sativa japonica cv)。 Hwa ???????年轻,具有玉米C1和R ??????? S调控基因。使用稻谷醇溶蛋白基因的启动子将这些转基因的表达限制在胚乳中。根据母体基因型,C1 /R1βS纯合子系的果皮变成深棕色,而胚乳变成白垩状,类似于不透明的核表型。通过高效液相色谱法(HPLC)的分析表明,在这些转基因谷粒中产生了多种类黄酮。为鉴定单个类黄酮,可通过中度酸水解和乙酸乙酯分配减少HPLC峰的数量。在主要的类黄酮中,二氢槲皮素(紫杉叶素),二氢异鼠李素(3→2→2→O→3→甲基滑石粉)和3→2→2→3。通过液相色谱/质谱/质谱和核磁共振分析鉴定出O 3-β-甲基槲皮素。用二苯硼酸进行荧光标记表明,类黄酮高度浓缩在四到五个外胚乳层的细胞中。更重要的是,内胚乳层的细胞质中存在高荧光信号。但是,内层的总信号明显较低,因为淀粉颗粒和蛋白质体占据了大部分的胞质空间。我们对转基因籽粒中总类黄酮含量的估计表明,C1 /Rα-β-S水稻有潜力进一步发展为可在其胚乳中产生各种类黄酮的新品种。

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