Carlos Del Río José, Rencoret Jorge, Gutiérrez Ana, Kim Hoon, Ralph John
Instituto de Recursos Naturales y Agrobiología de Sevilla, Consejo Superior de Investigaciones Científicas, 41012 Seville, Spain
Instituto de Recursos Naturales y Agrobiología de Sevilla, Consejo Superior de Investigaciones Científicas, 41012 Seville, Spain.
Plant Physiol. 2017 Aug;174(4):2072-2082. doi: 10.1104/pp.17.00362. Epub 2017 Jun 6.
Lignin, the plant cell wall polymer that binds fibers together but makes processing difficult, is traditionally formed from three monomers, the so-called monolignols (-coumaryl, coniferyl, and sinapyl alcohols). Recently, we discovered, in grass lignins, a phenolic monomer that falls outside the canonical lignin biosynthetic pathway, the flavone tricin. As we show here, palm fruit (macaúba [], carnauba [], and coconut []) endocarps contain lignin polymers derived in part from a previously unconsidered class of lignin monomers, the hydroxystilbenes, including the valuable compounds piceatannol and resveratrol. Piceatannol could be released from these lignins upon derivatization followed by reductive cleavage, a degradative method that cleaves β-ether bonds, indicating that at least a fraction is incorporated through labile ether bonds. Nuclear magnetic resonance spectroscopy of products from the copolymerization of piceatannol and monolignols confirms the structures in the natural polymer and demonstrates that piceatannol acts as an authentic monomer participating in coupling and cross-coupling reactions during lignification. Therefore, palm fruit endocarps contain a new class of stilbenolignin polymers, further expanding the definition of lignin and implying that compounds such as piceatannol and resveratrol are potentially available in what is now essentially a waste product.
木质素是一种将纤维结合在一起但使加工变得困难的植物细胞壁聚合物,传统上由三种单体形成,即所谓的单木质醇(对香豆醇、松柏醇和芥子醇)。最近,我们在禾本科植物木质素中发现了一种不属于经典木质素生物合成途径的酚类单体,即黄酮类化合物小麦黄素。正如我们在此所示,棕榈果(马卡乌巴果、巴西棕榈果和椰子果)内果皮含有木质素聚合物,部分源自一类以前未被考虑的木质素单体,即羟基芪类化合物,包括有价值的化合物白藜芦醇和白藜芦醇。白藜芦醇可以在衍生化后通过还原裂解从这些木质素中释放出来,还原裂解是一种裂解β-醚键的降解方法,这表明至少有一部分是通过不稳定的醚键掺入的。白藜芦醇与单木质醇共聚产物的核磁共振光谱证实了天然聚合物中的结构,并表明白藜芦醇在木质化过程中作为一种真正的单体参与偶联和交叉偶联反应。因此,棕榈果内果皮含有一类新的芪基木质素聚合物,进一步扩展了木质素的定义,并意味着诸如白藜芦醇和白藜芦醇等化合物在现在基本上是一种废物的物质中可能是可获得的。