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首页> 外文期刊>Plant Biotechnology Journal >Altered leaf colour is associated with increased superoxide-scavenging activity in aureusidin-producing transgenic plants
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Altered leaf colour is associated with increased superoxide-scavenging activity in aureusidin-producing transgenic plants

机译:改变的叶子颜色与Aureusidin的转基因植物中的超氧化物清除活性增加有关

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The health-promoting property of diets rich in fruits and vegetables is based, in part, on the additive and synergistic effects of multiple antioxidants. In an attempt to further enhance food quality, we introduced into crops the capability to synthesize a yellow antioxidant, aureusidin, that is normally produced only by some ornamental plants. For this purpose, the snapdragon (Antirrhinum majus) chalcone 4′-O-glucosyltransferase (Am4’CGT) and aureusidin synthase (AmAs1) genes, which catalyse the synthesis of aureusidin from chalcone, were expressed in tobacco (Nicotiana tabacum) and lettuce (Lactuca sativa) plants that displayed a functionally active chalcone/flavanone biosynthetic pathway. Leaves of the resulting transgenic plants developed a yellow hue and displayed higher superoxide dismutase (SOD) inhibiting and oxygen radical absorbance capacity (ORAC) activities than control leaves. Our results suggest that the nutritional qualities of leafy vegetables can be enhanced through the introduction of aurone biosynthetic pathways.
机译:部分富含水果和蔬菜饮食的健康促进性质是基于多种抗氧化剂的添加剂和协同作用。为了进一步提高食品质量,我们介绍了农作物,这是合成黄色抗氧化剂,Aureusidin的能力,通常仅由某些观赏植物生产。为此目的,Snapdragon(Antirrhinum Majus)Chalcone 4'-O-葡糖基转移酶(AM4'cgt)和aureusidin合酶(AMAS1)基因催化来自Chalcone的合成,在烟草(Nicotiana Tabacum)和生菜( Lactuca Sativa)展示功能源性活性的Chalcone / Flavanone生物合成途径的植物。由此产生的转基因植物的叶片产生黄色色调,呈现出更高的超氧化物歧化酶(SOD)抑制和氧自由基吸收能力(orac)活性,而不是对照叶。我们的研究结果表明,通过引入Aurone生物合成途径可以提高叶形蔬菜的营养品质。

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