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Enhancing cellulose utilization for fuels and chemicals by genetic modification of plant cell wall architecture

机译:通过对植物细胞壁结构进行遗传修饰来提高纤维素对燃料和化学物质的利用

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摘要

Cellulose from plant biomass can serve as a sustainable feedstock for fuels, chemicals and polymers that are currently produced from petroleum. In order to enhance economic feasibility, the efficiency of cell wall deconstruction needs to be enhanced. With the use of genetic and biotechnological approaches cell wall composition can be modified in such a way that interactions between the major cell wall polymers - cellulose, hemicellulosic polysaccharides and lignin - are altered. Some of the resulting plants are compromised in their growth and development, but this may be caused in part by the plant's overcompensation for metabolic perturbances. In other cases novel structures have been introduced in the cell wall without negative effects. The first field studies with engineered bioenergy crops look promising, while detailed structural analyses of cellulose synthase offer new opportunities to modify cellulose itself.
机译:来自植物生物质的纤维素可以用作目前由石油生产的燃料,化学品和聚合物的可持续原料。为了增强经济可行性,需要提高细胞壁解构的效率。使用遗传和生物技术方法,可以改变细胞壁的组成,从而改变主要细胞壁聚合物(纤维素,半纤维素多糖和木质素)之间的相互作用。某些植物的生长发育受到损害,但这可能部分是由于植物对代谢紊乱的过度补偿所致。在其他情况下,新的结构被引入细胞壁而没有负面影响。工程生物能源作物的首次田间研究看起来很有希望,而纤维素合酶的详细结构分析提供了修饰纤维素本身的新机会。

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