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NMR characterization of lignins from transgenic poplars with suppressed caffeic acid O-methyltransferase activity

机译:抑制咖啡酸O-甲基转移酶活性的转基因杨树木质素的NMR表征

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摘要

Perturbing the lignin biosynthetic pathway provides a tool for understanding the complex process of lignification. Caffeic acd O-methyltransferase (COMT) is required to produce syringyl units in lignins. Down-regulating the expression of its gene in poplar dramatically affects the lignin composition. 2D and 3D NMR investigations detail structural differences between lignins from a control and COMT-deficient poplars obtained by means of two independnet transformation techniques. This first application of 3D NMR to natural abundance lignins reveals the full side-chain network and provides diagnostic evidence for the intimate incorporation of 5-hydroxyconiferyl alcohol into the lignins to form novel benzodioxanes as major structures. The flexibility fo a plant to utilize novel monomers to produce functional lignins provides opportunities for engineering the structure and affecting the consequent properties of lignins.
机译:扰动木质素的生物合成途径为理解木质化的复杂过程提供了一种工具。需要咖啡酸acd O-甲基转移酶(COMT)在木质素中产生丁香基单元。下调其基因在杨树中的表达会显着影响木质素的组成。 2D和3D NMR研究详细介绍了通过两种独立网络转化技术获得的对照和缺乏COMT的杨树木质素之间的结构差异。 3D NMR在自然丰度木质素中的首次应用揭示了完整的侧链网络,并为将5-羟基松柏醇直接引入木质素中形成主要结构的新型苯并二恶烷提供了诊断依据。植物利用新型单体生产功能性木质素的灵活性为工程结构和影响木质素的后续性能提供了机会。

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