Department of Biochemistry, Laboratory of Plant Biochemistry, State University of Maringá, Maringá, PR, Brazil.
Division of Agroenergy, Brazilian Agricultural Research Corporation, Brasília, DF, Brazil.
Plant Biotechnol J. 2015 Dec;13(9):1224-32. doi: 10.1111/pbi.12292. Epub 2014 Nov 21.
In the near future, grasses must provide most of the biomass for the production of renewable fuels. However, grass cell walls are characterized by a large quantity of hydroxycinnamic acids such as ferulic and p-coumaric acids, which are thought to reduce the biomass saccharification. Ferulic acid (FA) binds to lignin, polysaccharides and structural proteins of grass cell walls cross-linking these components. A controlled reduction of FA level or of FA cross-linkages in plants of industrial interest can improve the production of cellulosic ethanol. Here, we review the biosynthesis and roles of FA in cell wall architecture and in grass biomass recalcitrance to enzyme hydrolysis.
在不久的将来,草类必须为可再生燃料的生产提供大部分生物质。然而,草细胞壁的特点是含有大量的羟基肉桂酸,如阿魏酸和对香豆酸,这些酸被认为会降低生物质的糖化程度。阿魏酸(FA)与木质素、草细胞壁的多糖和结构蛋白结合,将这些成分交联在一起。在具有工业价值的植物中,控制 FA 水平或 FA 交联的降低可以提高纤维素乙醇的产量。在这里,我们综述了 FA 在细胞壁结构和草类生物质对酶水解的抗性中的生物合成和作用。