Production of Polyhydroxyalkanotes from Complex Polysaccharides

B. Kim, S. S. Sawant, T. Tran
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Abstract

Global energy demand and environmental concerns have stimulated increasing efforts to produce bioenergy and biofuels directly from renewable resources. The production of petroleum alternative compounds like bioplastics from abundantly available renewable materials in nature such as cellulosic and algal biomass through consolidated bioprocessing is an innovative approach. Here we show the production of bioplastics polyhydroxylkanotes (PHA) by consolidated bioprocessing using a bacterium with ability to degrade complex polysaccharides such as agarose and xylan without pre-treatment. The association of the bacterium in coculture with another bacterium dynamically enhanced agarose degradation and PHA production from xylan. Consolidated bioprocessing of complex polysaccharides to PHA investigated in this study opens up new avenues of employment of pure and co-culture for efficient production of PHA.
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复合多糖制备聚羟基烷烃的研究
全球能源需求和对环境的关切促使人们越来越努力地直接利用可再生资源生产生物能源和生物燃料。利用自然界中丰富的可再生材料,如纤维素和藻类生物质,通过综合生物处理生产生物塑料等石油替代化合物是一种创新方法。在这里,我们展示了生物塑料多羟基kanotes (PHA)的生产,通过整合生物处理,利用细菌降解复杂的多糖,如琼脂糖和木聚糖,而无需预处理。这种细菌与另一种细菌的联合培养动态地促进了琼脂糖的降解和木聚糖的PHA生产。本研究研究的复合多糖对PHA的强化生物处理为利用纯培养和共培养高效生产PHA开辟了新的途径。
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