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Advances in biotechnology and genomics of switchgrass

机译:柳枝bio的生物技术和基因组学研究进展

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摘要

Switchgrass (Panicum virgatum L.) is a C4 perennial warm season grass indigenous to the North American tallgrass prairie. A number of its natural and agronomic traits, including adaptation to a wide geographical distribution, low nutrient requirements and production costs, high water use efficiency, high biomass potential, ease of harvesting, and potential for carbon storage, make it an attractive dedicated biomass crop for biofuel production. We believe that genetic improvements using biotechnology will be important to realize the potential of the biomass and biofuel-related uses of switchgrass. Tissue culture techniques aimed at rapid propagation of switchgrass and genetic transformation protocols have been developed. Rapid progress in genome sequencing and bioinformatics has provided efficient strategies to identify, tag, clone and manipulate many economically-important genes, including those related to higher biomass, saccharification efficiency, and lignin biosynthesis. Application of the best genetic tools should render improved switchgrass that will be more economically and environmentally sustainable as a lignocellulosic bioenergy feedstock.
机译:柳枝((Panicum virgatum L.)是C4多年生暖季草,原产于北美长草草原。它的许多自然和农艺性状,包括适应广泛的地理分布,低养分需求和生产成本,高用水效率,高生物质能,易于收割和碳储存的潜力,使其成为有吸引力的专用生物质作物用于生物燃料生产。我们认为,利用生物技术进行遗传改良对于实现柳枝the生物量和生物燃料相关用途的潜力至关重要。已经开发了针对柳枝rapid的快速繁殖和基因转化方案的组织培养技术。基因组测序和生物信息学的快速进步提供了有效的策略来鉴定,标记,克隆和操纵许多经济上重要的基因,包括那些与更高的生物量,糖化效率和木质素生物合成有关的基因。最好的遗传工具的应用应能改善柳枝switch,作为木质纤维素生物能源的原料,将在经济和环境上更具可持续性。

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