最近获得了植物和微生物基因改造专利,将生物质转化为生物燃料。

Simona Lubieniechi, Thinesh Peranantham, David B Levin
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引用次数: 10

摘要

基于可再生生物质原料的可持续能源系统的发展现在是一项全球性的努力。木质纤维素生物质含有纤维素、半纤维素和木质素的聚合物,以复杂的结构结合在一起。液体生物燃料,如乙醇,可以从生物质中通过发酵从木质纤维素材料中的纤维素和半纤维素中提取的糖来制造,但是生物质的预处理以释放用于微生物转化的糖是木质纤维素生物燃料生产商业成功的一个重大障碍。减少生物质预处理所需的能源和成本投入的策略包括对植物材料进行基因改造以减少木质素含量。目前正在进行重大努力,以创造能够将木质纤维素生物质中的糖转化为各种生物燃料的重组微生物。降低纤维素生物燃料生产成本的另一种策略是使用能够将木质纤维素生物质直接转化为燃料的纤维素分解微生物。本文综述了近年来植物和微生物基因改造的专利,以将生物质转化为生物燃料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent patents on genetic modification of plants and microbes for biomass conversion to biofuels.

Development of sustainable energy systems based on renewable biomass feedstocks is now a global effort. Lignocellulosic biomass contains polymers of cellulose, hemicellulose, and lignin, bound together in a complex structure. Liquid biofuels, such as ethanol, can be made from biomass via fermentation of sugars derived from the cellulose and hemicellulose within lignocellulosic materials, but pre-treatment of the biomass to release sugars for microbial conversion is a significant barrier to commercial success of lignocellulosic biofuel production. Strategies to reduce the energy and cost inputs required for biomass pre-treatment include genetic modification of plant materials to reduce lignin content. Significant efforts are also underway to create recombinant microorganisms capable of converting sugars derived from lignocellulosic biomass to a variety of biofuels. An alternative strategy to reduce the costs of cellulosic biofuel production is the use of cellulolytic microorganisms capable of direct microbial conversion of ligno-cellulosic biomass to fuels. This paper reviews recent patents on genetic modification of plants and microbes for biomass conversion to biofuels.

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