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Apigenin accumulation and expression analysis of apigenin biosynthesis relative genes in celery.

机译:芹菜芹菜素的合成及相关基因的表达分析。

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Apigenin, a naturally occurring plant flavone, abundantly present in common fruits and vegetables, is recognized as a bioactive flavonoid shown to possess anti-inflammatory, antioxidant, and anticancer properties. Apigenin content in different tissues and during leaf development was analyzed in celery cv. Shanghai yellow heart and cv. Ventura. Apigenin mainly accumulated in leaf and flower, and Shanghai yellow heart accumulated more apigenin than Ventura. The apigenin content increased rapidly in the middle stage of leaf development (Shanghai yellow heart: from stage 3 to stage 5, Ventura: stage 4). In addition, the cDNA library was constructed using stage 4 Shanghai yellow heart leaves, and 9266 cDNA clones were selected. The clones with high homology to chalcone synthase (CHS), chalcone isomerise (CHI), flavanone 3 beta -hydroxylase (F3H), flavonoid 3'-hydroxylase (F3'H), flavone synthase I (FSI), which are all involved in apigenin biosynthesis, were used for gene expression analysis quantitative real-time PCR to elucidate the molecular mechanism of apigenin biosynthesis in celery. These genes exhibited maximum transcript levels before the apigenin content reached its maximum in both Shanghai yellow heart and Ventura leaves. The results indicated that the expressions of CHS and CHI are involved in apigenin biosynthesis, but not exclusively. FSI expression was specifically associated with apigenin biosynthesis. There was no correlation between apigenin accumulation and the expression of F3H or F3'H. These results not only revealed the distribution of apigenin but also helped to elucidate the regulation mechanism of apigenin biosynthesis in celery.
机译:芹菜素是一种天然存在的植物黄酮,广泛存在于常见的水果和蔬菜中,被认为是一种具有抗炎,抗氧化和抗癌特性的生物活性黄酮。在芹菜简历中分析了不同组织和叶片发育过程中的芹菜素含量。上海黄心和简历。文图拉。芹菜素主要在叶和花中积累,上海黄心的芹菜素比文图拉多。在叶片发育的中期(上海黄心:从第3阶段到第5阶段,Ventura:第4阶段),芹菜素含量迅速增加。此外,使用第4阶段上海黄心叶构建了cDNA文库,并选择了9266个cDNA克隆。与查尔酮合酶(CHS),查尔酮异构体(CHI),黄烷酮3β-羟化酶(F3H),类黄酮3'-羟化酶(F3'H),黄酮合成酶I(FSI)具有高度同源性的克隆芹菜素的生物合成,用于基因表达分析定量实时荧光定量PCR,阐明芹菜芹菜素的生物合成分子机制。这些基因在芹菜素含量在上海黄心和文图拉叶中均达到最大含量之前表现出最高的转录水平。结果表明,CHS和CHI的表达与芹菜素的生物合成有关,但不是排他性的。 FSI表达与芹菜素生物合成特别相关。芹菜素积累与F3H或F3'H的表达之间没有相关性。这些结果不仅揭示芹菜素的分布,而且有助于阐明芹菜中芹菜素生物合成的调控机制。

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