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首页> 外文期刊>Journal of liquid chromatography and related technologies >VARIATION OF SULFORAPHANE LEVELS IN BROCCOLI (BRASSICA OLERACEA VAR. ITALICA) DURING FLOWER DEVELOPMENT AND THE ROLE OF GENE AOP2
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VARIATION OF SULFORAPHANE LEVELS IN BROCCOLI (BRASSICA OLERACEA VAR. ITALICA) DURING FLOWER DEVELOPMENT AND THE ROLE OF GENE AOP2

机译:花椰菜中花蕾中硫丹的含量及其在基因发育中的作用及基因AOP2的作用

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Sulforaphane is abundant in broccoli (Brassica oleracea var. italica) and has been widely studied, since it may reduce the risk of several types of cancer. Here, the variation of sulforaphane levels during different stages of broccoli flower bud development was studied by high-performance liquid, chromalography (HPLC). At the same time, the expressions of gene AOP2 in all the materials were studied by real-time Polymerase chain reaction (RT-PCR), and the purpose was to reveal the correlation of AOP2 and sulforaphane contents in different organs of broccoli flower bud development. Sulforaphane levels were evaluated in broccoli florets, buds in bolting, flowers, arid, ripe seed. The results showed, that there was a good linear equation, Y=3754.22X - 2072.47, R~2=0.9991, and sulforaphane levels increased during development from florets to young buds in bolting plants, thereafter decreased gradually in older buds to flowers. The ripe seed was the highest organ (13.35 g/kg DW (dry weight)) with sulforaphane content in all the materials. RT-PCR result showed an opposite relationship of sulforaphane contents and, the expression levels of gene AOP2 from young buds to flowers in bolting period. The study demonstrated, that the over-expression of the gene AOP2 leads to a peak level of sulforaphane content in organs of broccoli.
机译:西兰花中的萝卜硫素含量很高,并且已经被广泛研究,因为它可以降低几种癌症的风险。在这里,通过高效液相色谱法(HPLC)研究了西兰花花蕾发育不同阶段萝卜硫素水平的变化。同时,通过实时聚合酶链反应(RT-PCR)研究了所有材料中AOP2基因的表达,目的是揭示西兰花花芽发育不同器官中AOP2与萝卜硫素含量的相关性。 。在西兰花小花,抽bolt的芽,花,干旱的成熟种子中评估了萝卜硫素的水平。结果表明,在抽ing植物中,从小花到幼芽的发育过程中,萝卜硫素水平升高,线性方程Y = 3754.22X-2072.47,R〜2 = 0.9991,萝卜硫素水平升高,其后逐渐下降。在所有材料中,成熟种子是最高器官(13.35 g / kg DW(干重)),具有萝卜硫素含量。 RT-PCR结果显示,萝卜硫素含量与螺栓期的AOP2基因从幼芽到花朵的表达水平呈相反的关系。该研究表明,基因AOP2的过度表达导致西兰花器官中萝卜硫素含量达到峰值。

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