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Emerging strategies of lignin engineering and degradation for cellulosic biofuel production.

机译:木质素工程化和纤维素生物燃料生产降解的新兴策略。

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摘要

Ethanol and other biofuels produced from lignocellulosic biomass represent a renewable, more carbon-balanced alternative to both fossil fuels and corn-derived or sugarcane-derived ethanol. Unfortunately, the presence of lignin in plant cell walls impedes the breakdown of cell wall polysaccharides to simple sugars and the subsequent conversion of these sugars to usable fuel. Recent advances in the understanding of lignin composition, polymerization, and regulation have revealed new opportunities for the rational manipulation of lignin in future bioenergy crops, augmenting the previous successful approach of manipulating lignin monomer biosynthesis. Furthermore, recent studies on lignin degradation in nature may provide novel resources for the delignification of dedicated bioenergy crops and other sources of lignocellulosic biomass.
机译:由木质纤维素生物质生产的乙醇和其他生物燃料代表了可再生的,碳平衡性更高的替代品,可替代化石燃料和玉米衍生或甘蔗衍生的乙醇。不幸的是,植物细胞壁中木质素的存在阻碍了细胞壁多糖分解为单糖以及随后将这些糖转化为可用燃料。对木质素组成,聚合和调节的了解的最新进展为合理操纵未来生物能源作物中的木质素揭示了新的机会,从而扩大了以前成功的操纵木质素单体生物合成的方法。此外,关于自然界中木质素降解的最新研究可能为专用生物能源作物和木质纤维素生物质其他来源的脱木质素提供新的资源。

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