提高生物乙醇产量的植物遗传改良。

Sanghamitra Saha, Srinivasan Ramachandran
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引用次数: 9

摘要

当前的世界能源形势迫切需要探索和开发可替代的、可持续的燃料来源。生物燃料已被证明是一种有效的能源,但要实现能源目标,还需要生产更多的生物燃料。虽然主要从玉米和甘蔗中提取的第一代生物燃料仍在继续使用和生产,但“原料与粮食”之间的争论仍在继续。对可在不同环境条件下生长的能源的需求导致了对新能源的探索。木质纤维素生物质是生产生物燃料的一个有吸引力的来源,但是去除木质素的预处理成本很高,而且这个过程很耗时。转基因植物增加了糖或淀粉含量,改变了木质素含量,或产生纤维素降解酶是一些正在探索和测试的选择。本文综述了利用植物基因工程提高生物燃料产量的研究现状。本文还讨论了该领域最近申请的专利。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic improvement of plants for enhanced bio-ethanol production.

The present world energy situation urgently requires exploring and developing alternate, sustainable sources for fuel. Biofuels have proven to be an effective energy source but more needs to be produced to meet energy goals. Whereas first generation biofuels derived from mainly corn and sugarcane continue to be used and produced, the contentious debate between "feedstock versus foodstock" continues. The need for sources that can be grown under different environmental conditions has led to exploring newer sources. Lignocellulosic biomass is an attractive source for production of biofuel, but pretreatment costs to remove lignin are high and the process is time consuming. Genetically modified plants that have increased sugar or starch content, modified lignin content, or produce cellulose degrading enzymes are some options that are being explored and tested. This review focuses on current research on increasing production of biofuels by genetic engineering of plants to have desirable characteristics. Recent patents that have been filed in this area are also discussed.

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