USDA-Forest Service, Southern Research Station, 521 Devall Drive, Auburn, AL, 36849, USA.
Instituto de Recursos Naturales y Agrobiología de Sevilla (IRNAS), CSIC, Av. Reina Mercedes, 10, 41012, Seville, Spain.
Phytochemistry. 2022 May;197:113122. doi: 10.1016/j.phytochem.2022.113122. Epub 2022 Feb 5.
Diferuloylputrescine has been found in a variety of plant species, and recent work has provided evidence of its covalent bonding into lignin. Results from nuclear magnetic resonance spectroscopy revealed the presence of bonding patterns consistent with homo-coupling of diferuloylputrescine and the possibility of cross-coupling with lignin. In the present work, density functional theory calculations have been applied to assess the energetics associated with radical coupling, rearomatization, and dehydrogenation for possible homo-coupled dimers of diferuloylputrescine and cross-coupled dimers of diferuloylputrescine and coniferyl alcohol. The values obtained for these reaction energetics are consistent with those reported for monolignols and other novel lignin monomers. As such, this study shows that there would be no thermodynamic impediment to the incorporation of diferuloylputrescine into the lignin polymer and its addition to the growing list of non-canonical lignin monomers.
已在多种植物物种中发现二呋喃酰基腐胺,并且最近的研究提供了其与木质素共价键合的证据。核磁共振波谱学的结果表明存在与二呋喃酰基腐胺的同偶联一致的键合模式,并且可能与木质素交叉偶联。在本工作中,应用密度泛函理论计算来评估与自由基偶联、再芳构化和脱氢相关的能量学,以用于可能的二呋喃酰基腐胺同偶联二聚体和二呋喃酰基腐胺和松柏醇的交叉偶联二聚体。这些反应能量学的获得值与报道的木质醇单体和其他新型木质素单体的值一致。因此,这项研究表明,将二呋喃酰基腐胺掺入木质素聚合物中并且将其添加到不断增加的非典型木质素单体列表中不会存在热力学障碍。