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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Flavonoid biosynthetic pathways in plants: Versatile targets for metabolic engineering
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Flavonoid biosynthetic pathways in plants: Versatile targets for metabolic engineering

机译:植物中黄酮类生物合成途径:代谢工程的多功能靶

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Plants, fungi, and microorganisms are equipped with biosynthesis machinery for producing thousands of secondary metabolites. These compounds have important functions in nature as a defence against predators or competitors as well as other ecological significances. The full utilization of these compounds for food, medicine, and other purposes requires a thorough understanding of their structures and the distinct biochemical pathways of their production in cellular systems. In this review, flavonoids as classical examples of secondary metabolites are employed to highlight recent advances in understanding how valuable compounds can be regulated at various levels. With extensive diversity in their chemistry and pharmacology, understanding the metabolic engineering of flavonoids now allows us to fine-tune the eliciting of their production, accumulation, and extraction from living systems. More specifically, recent advances in the shikimic acid and acetate biosynthetic pathways of flavonoids production from metabolic engineering point of view, from genes expression to multiple principles of regulation, are addressed. Specific examples of plants and microorganisms as the sources of flavonoids-based compounds with particular emphasis on therapeutic applications are also discussed.
机译:植物,真菌和微生物配备生物合成机械,用于生产成千上万的次生代谢物。这些化合物本质上具有重要功能,作为防范捕食者或竞争对手以及其他生态意义。充分利用这些化合物用于食品,药物和其他目的需要彻底了解它们的结构和它们在细胞系统中产生的不同生化途径。在该评论中,作为次级代谢物的经典实例,使用黄酮类化合物,以突出最近理解有价值的化合物可以在各种水平监管的近期进步。在化学和药理学中具有广泛的多样性,了解黄酮类化合物的代谢工程现在使我们能够微调其生产,积累和从生活系统中提取的诱因。更具体地说,从代谢工程角度来看,来自代谢工程的黄酮类化合物的脂肪酸和醋酸酯生物合成途径的最新进展从基因表达到多种调节原则。还讨论了植物和微生物的具体实例,作为一种特别强调治疗应用的黄酮类化合物的来源。

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