首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Cultivation temperature modulated the monomer composition and polymer properties of polyhydroxyalkanoate synthesized by Cupriavidus sp L7L from levulinate as sole carbon source
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Cultivation temperature modulated the monomer composition and polymer properties of polyhydroxyalkanoate synthesized by Cupriavidus sp L7L from levulinate as sole carbon source

机译:培养温度调节Cupriavidus SP L7L从v uRiavidus sp L7l作为唯一碳源合成的多羟基烷烃的单体组合物和聚合物性质

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摘要

Cupriavidus sp. L7L, a newly isolated wild-type soil bacterium, was found to synthesize polyhydroxyalkanoate (PHA) terpolymers from levulinic acid (LA), a top bio-based platform chemical, as the sole carbon source. NMR spectra showed that the terpolymers consisted mainly of 3-hydroxybutyrate (3HB), 3-hydroxyvalerate (3HV), and a small amount (2.1-4.8 mol%) of 4-hydroxyvalerate (4HV). The combination of monomers together with high molecular weights improved markedly the thermal and mechanical properties of the terpolymers. Increasing cultivation temperature of Cupriavidus sp. L7L increased the proportions of 3HB and decreased the proportions of 3HV. A fed-batch fermentation using LA as the sole carbon source without pH control produced a biomass of 15.8 dry weight g L-1 that contained 81 dry weight% of a terpolymer P(3HB-co-33.7 mol% 3HV-co-2.1 mol% 4HV), equaling a productivity of 0.213 g PHA L-1 h(-1). The terpolymer showed a melting point of 92 degrees C and elongation at break of 630%, compared to 84.6 degrees C and 462%, respectively, for the copolymer P(3H8-co-35.9 mol% 3HV) that contained no 4HV. This study showed that Cupriavidus sp. L7L exhibited a great potential for producing PHA polymers with excellent mechanical property that could be modulated by cultivation temperature when cultivated exclusively in LA. (C) 2018 Elsevier BV. All rights reserved.
机译:Cupriavidus sp。发现新分离的野生型土壤细菌,发现从左素酸(La),基于顶部生物的平台化学品,作为唯一的碳源合成多羟基烷酸酯(PHA)三元共聚物。 NMR光谱表明,三元共聚物主要由3-羟基丁酸酯(3HB),3-羟基戊戊酸(3HV)组成,少量(2.1-4.8mol%)4-羟基戊戊烷(4HV)。单体与高分子量一起的组合显着改善了三元共聚物的热和机械性能。增加了崔建血培养温度。 L7L增加了3HB的比例并降低了3HV的比例。使用La作为无需pH控制的唯一碳源的FED分批发酵制成了15.8干重G L-1的生物质,其含有81个干重量%的三元共聚物P(3HB-CO-33.7mol%3HV-Co-2.1mol %4HV),等于0.213g PHA L-1 H(-1)的生产率。三元共聚物显示出92℃的熔点,分别为630%的伸长率,分别为84.6℃和462%,用于含有4HV的共聚物P(3H8-CO-35.9摩尔%3HV)。这项研究表明,崔普利斯SP。 L7L表现出具有优异机械性能的PHA聚合物的巨大潜力,该性能可以通过在La中培养时通过培养温度调节。 (c)2018 Elsevier BV。版权所有。

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