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It takes a garden. How work on diverse plant species has contributed to an understanding of flavonoid metabolism

机译:它需要一个花园。如何对多种植物进行研究有助于了解类黄酮的代谢

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Flavonoid biosynthesis is one of the most extensively studied areas of plant secondary metabolism. Modern-day reports date back to 1664 and Robert Boyle's description of the effects of acids and bases on plant pigments. Today, through the study of fiavonoid metabolism in diverse plant systems, a great deal is known about the genes involved in this pathway and the variety of biological functions in which flavonoids participate. What is abundantly clear from the sum of this work is that the central fiavonoid pathway has been highly conserved during the course of plant evolution, but that there has been considerable divergence in the functional roles of its end products and, perhaps related to this, the mechanisms by which expression of the pathway is controlled. For this reason, the use of a variety of species in these studies has contributed much to developing a general view of flavonoid metabolism and function across the plant kingdom, in addition to providing a variety of experimental tools to facilitate the characterization of this complex system.
机译:类黄酮的生物合成是植物次生代谢研究最广泛的领域之一。现代报告的历史可以追溯到1664年,Robert Boyle对酸和碱对植物色素的影响进行了描述。如今,通过研究多种植物系统中的类黄酮代谢,人们已对该途径中涉及的基因以及类黄酮参与的多种生物学功能有了很多了解。从这项工作的总和中可以很明显地看出,中央黄酮类途径在植物进化过程中是高度保守的,但是其终产物的功能作用却存在很大差异,也许与此相关。途径表达受控制的机制。因此,在这些研究中使用各种物种,除了提供各种实验工具以促进对该复杂系统的表征外,还有助于建立整个植物界中类黄酮代谢和功能的总体观点。

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