Margaritopoulou Theoni, Roka Loukia, Alexopoulou Efi, Christou Myrsini, Rigas Stamatis, Haralampidis Kosmas, Milioni Dimitra
Department of Biotechnology, Agricultural University of Athens, Iera Odos 75, 11855, Athens, Greece.
Center for Renewable Energy Sources, 19th Km Marathonos Ave, 19009, Pikermi, Greece.
Mol Biotechnol. 2016 Mar;58(3):149-58. doi: 10.1007/s12033-016-9913-6.
New crops are gradually establishing along with cultivation systems to reduce reliance on depleting fossil fuel reserves and sustain better adaptation to climate change. These biological assets could be efficiently exploited as bioenergy feedstocks. Bioenergy crops are versatile renewable sources with the potential to alternatively contribute on a daily basis towards the coverage of modern society's energy demands. Biotechnology may facilitate the breeding of elite energy crop genotypes, better suited for bio-processing and subsequent use that will improve efficiency, further reduce costs, and enhance the environmental benefits of biofuels. Innovative molecular techniques may improve a broad range of important features including biomass yield, product quality and resistance to biotic factors like pests or microbial diseases or environmental cues such as drought, salinity, freezing injury or heat shock. The current review intends to assess the capacity of biotechnological applications to develop a beneficial bioenergy pipeline extending from feedstock development to sustainable biofuel production and provide examples of the current state of the art on future energy crops.
随着种植系统的发展,新作物正在逐渐形成,以减少对日益枯竭的化石燃料储备的依赖,并更好地适应气候变化。这些生物资产可以作为生物能源原料得到有效利用。生物能源作物是多功能的可再生资源,有潜力每天为满足现代社会的能源需求做出贡献。生物技术可以促进优良能源作物基因型的培育,使其更适合生物加工和后续使用,从而提高效率、进一步降低成本并增强生物燃料的环境效益。创新的分子技术可以改善一系列重要特性,包括生物量产量、产品质量以及对病虫害或微生物病害等生物因素或干旱、盐碱化、冻害或热休克等环境因素的抗性。本综述旨在评估生物技术应用开发从原料开发到可持续生物燃料生产的有益生物能源管道的能力,并提供未来能源作物的当前技术水平实例。