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Fluctuation of Isoflavone Concentration in Soybean Varieties Under Conventional and Organic Farming

机译:传统和有机耕作方式下大豆品种异黄酮浓度的波动

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Polyphenols have a wide range of secondary metabolic compounds, which enter several fundamental processes in plant physiology. Some polyphenols, such as lignins, flavonoids, and others, have good effects on human health. Soybean is unique among the legumes, in that it is a concentrated source of isoflavones. Soybean contains three major isoflavone aglycones (i.e., daidzein, genistein, glycitein) and their corresponding glucosides, malonyl-esters and acetyls (Jackson et al, 2002). Ingestion of isoflavones is associated with many health benefits (Sarkar and Li, 2004). Soybean seed is made up of a large embryo containing two primary organ systems - germ and cotyledons - surrounded by a seed coat of maternal origin, and their isoflavone accumulation varies in both quantity and type. During maturation, the embryonic cells synthesize proteins and secondary metabolites, among which are isoflavones. The latter are considered natural active compounds in plant defence, produced against unfavourable conditions, and their amount is expected to vary with agronomic management. Until now, as regards isoflavone production, the effects of organic farming and low input have not been clearly recognised in soybean. In this framework, the aim of this research was to evaluate the influence of the environment, agricultural management (conventional vs. organic) and choice of variety on soybean isoflavone production in the seed sites.
机译:多酚具有多种次级代谢化合物,这些化合物进入植物生理学的几个基本过程。一些多酚,例如木质素,类黄酮等,对人体健康有很好的作用。大豆在豆类中是独特的,因为它是异黄酮的集中来源。大豆含有三种主要的异黄酮苷元(即大豆苷元,染料木黄酮,糖精蛋白)及其相应的糖苷,丙二酸酯和乙酰基(Jackson等,2002)。摄入异黄酮具有许多健康益处(Sarkar和Li,2004年)。大豆种子由一个大胚芽构成,该胚芽包含两个主要器官系统-胚芽和子叶-被母体来源的种皮包围,它们的异黄酮积累在数量和类型上都不同。在成熟过程中,胚胎细胞合成蛋白质和次级代谢产物,其中包括异黄酮。后者被认为是植物防御中的天然活性化合物,是在不利条件下生产的,预计其含量会因农艺管理而异。迄今为止,关于异黄酮的生产,大豆尚未明确认识到有机耕作和低投入的影响。在此框架下,本研究的目的是评估环境,农业管理(常规与有机)以及品种选择对种子所在地大豆异黄酮生产的影响。

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