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Fed-Batch Synthesis of Poly(3-Hydroxybutyrate) and Poly(3-Hydroxybutyrate-co-4-Hydroxybutyrate) from Sucrose and 4-Hydroxybutyrate Precursors by Burkholderia sacchari Strain DSM 17165

机译:蔗糖和4-羟基丁酸酯前体通过蔗糖伯克霍尔德菌菌株DSM 17165补料分批合成聚(3-羟基丁酸)和聚(3-羟基丁酸-co-4-羟基丁酸)

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摘要

Based on direct sucrose conversion, the bacterium Burkholderia sacchari is an excellent producer of the microbial homopolyester poly(3-hydroxybutyrate) (PHB). Restrictions of the strain’s wild type in metabolizing structurally related 3-hydroxyvalerate (3HV) precursors towards 3HV-containing polyhydroxyalkanoate (PHA) copolyester calls for alternatives. We demonstrate the highly productive biosynthesis of PHA copolyesters consisting of 3-hydroxybuytrate (3HB) and 4-hydroxybutyrate (4HB) monomers. Controlled bioreactor cultivations were carried out using saccharose from the Brazilian sugarcane industry as the main carbon source, with and without co-feeding with the 4HB-related precursor γ-butyrolactone (GBL). Without GBL co-feeding, the homopolyester PHB was produced at a volumetric productivity of 1.29 g/(L·h), a mass fraction of 0.52 g PHB per g biomass, and a final PHB concentration of 36.5 g/L; the maximum specific growth rate µmax amounted to 0.15 1/h. Adding GBL, we obtained 3HB and 4HB monomers in the polyester at a volumetric productivity of 1.87 g/(L·h), a mass fraction of 0.72 g PHA per g biomass, a final PHA concentration of 53.7 g/L, and a µmax of 0.18 1/h. Thermoanalysis revealed improved material properties of the second polyester in terms of reduced melting temperature Tm (161 °C vs. 178 °C) and decreased degree of crystallinity Xc (24% vs. 71%), indicating its enhanced suitability for polymer processing.
机译:基于直接的蔗糖转化,细菌伯克霍尔德氏菌是微生物均聚酯聚(3-羟基丁酸酯)(PHB)的优良生产者。该菌株野生型在将结构相关的3-羟基戊酸酯(3HV)前体代谢为含3HV的聚羟基链烷酸酯(PHA)共聚酯方面的限制要求采用其他方法。我们证明了由3-羟基丁酸酯(3HB)和4-羟基丁酸酯(4HB)单体组成的PHA共聚酯的高产生物合成。使用来自巴西甘蔗业的蔗糖作为主要碳源,进行有控制的生物反应器培养,同时添加和不添加与4HB相关的前体γ-丁内酯(GBL)。在没有GBL共同进料的情况下,均聚酯PHB的生产能力为1.29 g /(L·h),质量分数为0.52 g PHB / g生物量,最终PHB浓度为36.5 g / L;最大比生长率μmax为0.15 1 / h。添加GBL后,我们以1.87 g /(L·h)的容积生产率,每g生物质0.72 g PHA的质量分数,53.7 g / L的最终PHA浓度和µmax的含量获得了聚酯中的3HB和4HB单体。 0.18 1 / h。热分析表明,就降低熔融温度Tm(161°C对178°C)和降低结晶度Xc(24%对71%)而言,第二种聚酯的材料性能得到了改善,表明其对聚合物加工的适应性增强。

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