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Phenylpropanoid Biosynthesis 被引量:171
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作者 Thomas Vogt 《Molecular Plant》 SCIE CAS CSCD 2010年第1期2-20,共19页
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 ... 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 am- plified in several cascades by a combination of reductases, oxygenases, and transferases to result in an organ and devel- opmentally 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 an- alytical 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. Trans- genic 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. 展开更多
关键词 PHENYLPROPANOID biosynthetic pathway flavonoid ANTHOCYANIN TANNIN COUMARIN VOLATILES lignin.
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木质素代谢的生理意义及其遗传控制研究进展 被引量:68
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作者 李伟 熊谨 陈晓阳 《西北植物学报》 CAS CSCD 2003年第4期675-681,共7页
木质素含量及其相关酶系活性与植物的生长发育、抗病性、抗逆性密切相关.在造纸工业中,木质素处理是造成环境污染的重要来源.本文对木质素代谢在植物生长发育过程中的生理意义及近年来通过控制PAL、4CL、CAD、POD等酶的活性调节木质素... 木质素含量及其相关酶系活性与植物的生长发育、抗病性、抗逆性密切相关.在造纸工业中,木质素处理是造成环境污染的重要来源.本文对木质素代谢在植物生长发育过程中的生理意义及近年来通过控制PAL、4CL、CAD、POD等酶的活性调节木质素含量或改变其组分方面的研究进展进行了综合评述,并对今后的林木育种工作进行了展望. 展开更多
关键词 木质素 合成 生理意义 含量 代谢调控 基因工程 遗传控制 植物生长发育
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