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Biotechnology for bioenergy dedicated trees: meeting future energy demands

机译:生物能源专用树木的生物技术:满足未来的能源需求

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With the increase in human demands for energy, purpose-grown woody crops could be part of the global renewable energy solution, especially in geographical regions where plantation forestry is feasible and economically important. In addition, efficient utilization of woody feedstocks would engage in mitigating greenhouse gas emissions, decreasing the challenge of food and energy security, and resolving the conflict between land use for food or biofuel production. This review compiles existing knowledge on biotechnological and genomics-aided improvements of biomass performance of purpose-grown poplar, willow, eucalyptus and pine species, and their relative hybrids, for efficient and sustainable bioenergy applications. This includes advancements in tree in vitro regeneration, and stable expression or modification of selected genes encoding desirable traits, which enhanced growth and yield, wood properties, site adaptability, and biotic and abiotic stress tolerance. Genetic modifications used to alter lignin/cellulose/hemicelluloses ratio and lignin composition, towards effective lignocellulosic feedstock conversion into cellulosic ethanol, are also examined. Biotech-trees still need to pass challengeable regulatory authorities’ processes, including biosafety and risk assessment analyses prior to their commercialization release. Hence, strategies developed to contain transgenes, or to mitigate potential transgene flow risks, are discussed.
机译:随着人类能源需求的增加,目的种植的木质作物可能是全球可再生能源解决方案的一部分,特别是在种植园林业可行和经济上重要的地理区域。此外,伍德原料的有效利用将涉及减轻温室气体排放,降低食品和能源安全的挑战,并解决土地利用之间的冲突,用于食品或生物燃料生产。本综述编制了现有的生物技术和基因组学的知识 - 促进了目的种植杨树,柳树,桉树和松树种的生物质能性能及其相对杂种的改善,以实现高效和可持续的生物能源应用。这包括树的体外再生的进步,以及编码所需性状的所选基因的稳定表达或修饰,其增强了生长和产量,木质性质,位点适应性和生物和非生物应激耐受性。还检查了用于改变木质素/纤维素/半纤维素/半纤维素的遗传修饰,以及木质素组合物,朝向有效的木质纤维素原料转化为纤维素乙醇。生物技术树仍需要通过挑战的监管机构的流程,包括在商业化发布之前的生物安全和风险评估分析。因此,讨论了含有转基因或减轻潜在的转基因流风险的策略。

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