Rubin Edward M
DOE Joint Genome Institute, 2800 Mitchell Drive, Walnut Creek, California 94598, USA.
Nature. 2008 Aug 14;454(7206):841-5. doi: 10.1038/nature07190.
The development of alternatives to fossil fuels as an energy source is an urgent global priority. Cellulosic biomass has the potential to contribute to meeting the demand for liquid fuel, but land-use requirements and process inefficiencies represent hurdles for large-scale deployment of biomass-to-biofuel technologies. Genomic information gathered from across the biosphere, including potential energy crops and microorganisms able to break down biomass, will be vital for improving the prospects of significant cellulosic biofuel production.
开发替代化石燃料的能源是全球紧迫的优先事项。纤维素生物质有潜力助力满足液体燃料需求,但土地使用要求和工艺效率低下是生物质转化生物燃料技术大规模部署的障碍。从整个生物圈收集的基因组信息,包括潜在的能源作物和能够分解生物质的微生物,对于改善大规模纤维素生物燃料生产的前景至关重要。