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Phenylpropanoid biosynthesis. (Special Issue: Plant metabolism.)

机译:苯丙烷生物合成。 (特刊:植物代谢。)

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The general phenylpropanoid metabolism generates an enormous array of secondary metabolites based on the few intermediates of the shikimate pathway as the core unit. The resulting hydroxycinnamic acids and esters are amplified in several cascades by a combination of reductases, oxygenases, and transferases to result in an organ and developmentally specific pattern of metabolites, characteristic for each plant species. During the last decade, methodology driven targeted and non-targeted approaches in several plant species have enabled the identification of the participating enzymes of this complex biosynthetic machinery, and revealed numerous genes, enzymes, and metabolites essential for regulation and compartmentation. Considerable success in structural and computational biology, combined with the analytical sensitivity to detect even trace compounds and smallest changes in the metabolite, transcript, or enzyme pattern, has facilitated progress towards a comprehensive view of the plant response to its biotic and abiotic environment. Transgenic approaches have been used to reveal insights into an apparently redundant gene and enzyme pattern required for functional integrity and plasticity of the various phenylpropanoid biosynthetic pathways. Nevertheless, the function and impact of all members of a gene family remain to be completely established. This review aims to give an update on the various facets of the general phenylpropanoid pathway, which is not only restricted to common lignin or flavonoid biosynthesis, but feeds into a variety of other aromatic metabolites like coumarins, phenolic volatiles, or hydrolyzable tannins.
机译:基于sh草酸酯途径的少量中间体作为核心单元,一般的苯丙烷代谢会产生大量的次级代谢产物。通过还原酶,加氧酶和转移酶的组合,将所得的羟基肉桂酸和酯以多个级联放大,从而形成了每种植物所特有的代谢产物的器官和发育特定模式。在过去的十年中,由方法学驱动的几种植物的靶向和非靶向方法已使该复杂生物合成机制的参与酶得以鉴定,并揭示了调控和区隔必不可少的众多基因,酶和代谢产物。在结构和计算生物学上取得了相当大的成功,结合分析灵敏度可以检测甚至痕量的化合物以及最小的代谢物,转录物或酶模式变化,已经促进了对植物对其生物和非生物环境反应的全面了解。转基因方法已被用来揭示对各种苯基丙烷生物合成途径的功能完整性和可塑性所需的表面上冗余基因和酶模式的见解。然而,基因家族所有成员的功能和影响仍有待完全确立。这篇综述旨在提供有关一般苯丙烷途径的各个方面的最新信息,该途径不仅限于常见的木质素或类黄酮生物合成,而且还可以加入多种其他芳香族代谢产物,如香豆素,酚类挥发物或可水解单宁。

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