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玉米( Zea mays L.)纤维中木质素的结构特征:玉米籽粒木质素聚合物中含有二糠酰基腐胺的证据。

Structural Characterization of Lignin from Maize ( Zea mays L.) Fibers: Evidence for Diferuloylputrescine Incorporated into the Lignin Polymer in Maize Kernels.

机构信息

Instituto de Recursos Naturales y Agrobiología de Sevilla (IRNAS), CSIC , Avenida Reina Mercedes, 10 , 41012 Seville , Spain.

Department of Energy Great Lakes Bioenergy Research Center , Wisconsin Energy Institute, University of Wisconsin-Madison , Madison , Wisconsin 53726 , United States.

出版信息

J Agric Food Chem. 2018 May 2;66(17):4402-4413. doi: 10.1021/acs.jafc.8b00880. Epub 2018 Apr 24.

Abstract

The structure of the phenolic polymer in maize grain fibers, with 5.5% Klason lignin content, has been studied. For this, the milled wood lignin (MWL) and dioxane lignin (DL) preparations were isolated and analyzed. The data indicated that the lignin in maize fibers was syringyl rich, mostly involved in β-aryl ether, resinol, and phenylcoumaran substructures. 2D NMR and derivatization followed by reductive cleavage (DFRC) also revealed the occurrence of associated ferulates together with trace amounts of p-coumarates acylating the γ-OH of lignin side chains, predominantly on S-lignin units. More interesting was the occurrence of diferuloylputrescine, a ferulic acid amide, which was identified by 2D NMR and comparison with a synthesized standard, that was apparently incorporated into this lignin. A phenylcoumaran structure involving a diferuloylputrescine coupled through 8-5' linkages to another diferuloylputrescine (or to a ferulate or a guaiacyl lignin unit) was found, providing compelling evidence for its participation in radical coupling reactions. The occurrence of diferuloylputrescine in cell walls of maize kernels and other cereal grains appears to have been missed in previous works, perhaps due to the alkaline hydrolysis commonly used for composition studies.

摘要

对含 5.5% Klason 木质素的玉米籽粒纤维中的酚类聚合物结构进行了研究。为此,分离并分析了磨木木素 (MWL) 和二氧六环木质素 (DL) 制剂。数据表明,玉米纤维中的木质素富含愈创木基,主要涉及 β-芳基醚、树脂醇和苯并呋喃型亚结构。二维 NMR 和衍生化后还原裂解 (DFRC) 还揭示了与阿魏酸酯一起存在的结合阿魏酸酯,以及痕量的对香豆酸酰化木质素侧链的 γ-OH,主要在 S-木质素单元上。更有趣的是发现了二阿魏酰腐胺,一种阿魏酸酰胺,通过二维 NMR 鉴定并与合成标准品进行比较,显然将其掺入这种木质素中。发现了涉及二阿魏酰腐胺的苯并呋喃型结构,通过 8-5'键与另一个二阿魏酰腐胺(或阿魏酸酯或愈创木基木质素单元)偶联,为其参与自由基偶联反应提供了有力证据。在玉米籽粒和其他谷物的细胞壁中存在二阿魏酰腐胺,这似乎在以前的工作中被忽略了,也许是由于通常用于组成研究的碱性水解。

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