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Biotechnology of flavonoids and other phenylpropanoid-derived natural products. Part I: Chemical diversity, impacts on plant biology and human health

机译:类黄酮和其他苯丙烷类天然产物的生物技术。第一部分:化学多样性,对植物生物学和人类健康的影响

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Plant natural products derived from phenylalanine and the phenylpropanoid pathway are impressive in their chemical diversity and are the result of plant evolution, which has selected for the acquisition of large repertoires of pigments, structural and defensive compounds, all derived from a phenylpropanoid backbone via the plant-specific phenylpropanoid pathway. These compounds are important in plant growth, development and responses to environmental stresses and thus can have large impacts on agricultural productivity. While plant-based medicines containing phenylpropanoid-derived active components have long been used by humans, the benefits of specific flavonoids and other phenylpropanoid-derived compounds to human health and their potential for long-term health benefits have been only recognized more recently. In this part of the review, we discuss the diversity and biosynthetic origins of phenylpropanoids and particularly of the flavonoid and stilbenoid natural products. We then review data pertaining to the modes of action and biological properties of these compounds, referring on their effects on human health and physiology and their roles as plant defense and antimicrobial compounds. This review continues in Part II discussing the use of biotechnological tools targeting the rational reconstruction of multienzyme pathways in order to modify the production of such compounds in plants and model microbial systems for the benefit of agriculture and forestry.
机译:源自苯丙氨酸和苯丙氨酸途径的植物天然产物在化学多样性方面令人印象深刻,并且是植物进化的结果,该植物已被选择用于收购色素,结构和防御性化合物的全部成分,所有这些都来自于植物中的苯丙氨酸骨架-特异性苯基丙烷途径。这些化合物在植物生长,发育和对环境胁迫的响应中很重要,因此可能对农业生产力产生重大影响。尽管人类长期以来一直使用含有苯丙氨酸衍生的活性成分的植物性药物,但直到最近才认识到特定类黄酮和其他苯丙氨酸衍生的化合物对人体健康的益处以及它们对长期健康有益的潜力。在本部分的综述中,我们讨论了苯丙烷类化合物的多样性和生物合成来源,尤其是类黄酮和类胡萝卜素天然产物。然后,我们回顾与这些化合物的作用方式和生物学特性有关的数据,并参考它们对人体健康和生理的影响及其作为植物防御和抗菌化合物的作用。这篇综述在第二部分中继续进行讨论,讨论了针对多酶途径的合理重建的生物技术工具的使用,以改变植物中这类化合物的产量,并为农业和林业造福微生物系统。

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