首页> 外文期刊>Journal of Applied Phycology >Cyanobacterial production of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) from carbon dioxide or a single organic substrate: improved polymer elongation with an extremely high 3-hydroxyvalerate mole proportion
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Cyanobacterial production of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) from carbon dioxide or a single organic substrate: improved polymer elongation with an extremely high 3-hydroxyvalerate mole proportion

机译:来自二氧化碳或单一有机基质的聚(3-羟基丁酸酯-CO-3-羟基戊羟苯甲酸盐)的蓝细菌产生:具有极高的3-羟基戊米摩尔比例的改进的聚合物伸长率

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The bioplastic poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) changes material properties upon altering mole ratio (mol%) of the two monomers: 3-hydroxybutyrate (HB) and 3-hydroxyvalerate (HV). Biotechnology for producing PHBV with a wide range of HV mol% using low amount of organic substrate is required. Here, 20 evolutionarily divergent cyanobacteria were examined for PHBV production. Under photoautotrophy with carbon dioxide (CO2) supply, one strain produced PHBV. But under heterotrophy using a medium containing only one type of organic substrate, 4, 15, and 13 strains were found to accumulate PHBV when supplied with acetate (C2H3O2), propionate (C3H5O2), and valerate (C5H9O2), respectively. Hence, these cyanobacterial PHBV productions required only CO2 or a single type of organic substrate. The obtained PHBV showed a broad range of HV mole ratios from 4 to 96 mol%. The cells producing PHBV with high HV mole ratios (31-96 mol%) exhibited low cellular acetyl-CoA levels. The PHBV with a 96.2 mol% HV and 3.8 mol% HB from Nostoc microscopicum elongated at 98 +/- 15% (length/length), a 19.6-fold higher elongation than that of commercial poly-3-hydroxybutyrate containing 100 mol% HB. The results demonstrated the economical utility of cyanobacterial conversion of CO2 and a single organic substrate to synthesize PHBV with improved elongation quality.
机译:生物塑料聚(3-羟基丁酸酯-CO-3-羟基戊戊烷)(PHBV)在改变两种单体的摩尔比(摩尔%)时改变材料性能:3-羟基丁酸酯(HB)和3-羟基戊烯(HV)。需要使用使用少量有机基质的具有宽范围HV摩尔%的PHBV的生物技术。在此,研究了20种进化的发散性肌菌用于PHBV生产。在具有二氧化碳(CO2)供应的光辐射术下,一个菌株产生PHBV。但是在使用仅含有一种类型的有机基质的培养基中的介质下,分别在供应乙酸盐(C 2 H 3 O 2),丙酸盐(C 3 O 2)和戊酯(C5H9O2)时发现4,15和13个菌株的培养基。因此,这些蓝藻pHBV制造仅需要二氧化碳或单一类型的有机基质。所得PHBV显示出宽范围的HV摩尔比从4-96摩尔%。产生具有高HV摩尔比(31-96mol%)的PHBV的细胞表现出低细胞乙酰基COA水平。 PHBV,具有96.2mol%HV和3.8mol%HB的来自Nostoc微观的HB,在98 +/-15%(长/长),比含有100mol%Hb的商业聚-3-羟基丁酸盐的伸长率高于19.6倍。结果证明了CO 2和单个有机基质的氨基抗性转化率的经济用途,以合成PHBV,具有改善的伸长质量。

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