首页> 外文期刊>Journal of Applied Phycology >Production and characterization of poly- beta -hydroxybutyrate (PHB) polymer from Aulosira fertilissima.
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Production and characterization of poly- beta -hydroxybutyrate (PHB) polymer from Aulosira fertilissima.

机译:来自Aurosira fertilissima的聚β-羟基丁酸酯(PHB)聚合物的生产和表征。

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Biopolymers such as polyhydroxyalkanoates (PHAs) are a class of secondary metabolites with promising importance in the field of environmental, agricultural, and biomedical sciences. To date, high-cost commercial production of PHAs is being carried out with heterotrophic bacterial species. In this study, a photoautotrophic N2-fixing cyanobacterium, Aulosira fertilissima, has been identified as a potential source for the production of poly- beta -hydroxybutyrate (PHB). An accumulation up to 66% dry cell weight (dcw) was recorded when the cyanobacterium was cultured in acetate (0.3%) + citrate (0.3%)-supplemented medium against 6% control. Aulosira culture supplemented with 0.5% citrate under P deficiency followed by 5 days of dark incubation also depicted a PHB accumulation of 51% (dcw). PHB content of A. fertilissima reached up to 77% (dcw) under P deficiency with 0.5% acetate supplementation. Optimization of process parameters by response surface methodology resulted into polymer accumulation up to 85% (dcw) at 0.26% citrate, 0.28% acetate, and 5.58 mg L-1 K2HPO4 for an incubation period of 5 days. In the A. fertilissima cultures pre-grown in fructose (1.0%)-supplemented BG 11 medium, when subjected to the optimized condition, the PHB pool boosted up to 1.59 g L-1, a value ~50-fold higher than the control. A. fertilissima is the first cyanobacterium where PHB accumulation reached up to 85% (dcw) by manipulating the nutrient status of the culture medium. The polymer extracted from A. fertilissima exhibited comparable material properties with the commercial polymer. As compared with heterotrophic bacteria, carbon requirement in A. fertilissima for PHB production is lower by one order magnitude; thus, low-cost PHB production can be envisaged.
机译:诸如聚羟基链烷酸酯(PHA)之类的生物聚合物是一类次级代谢产物,在环境,农业和生物医学科学领域具有重要前景。迄今为止,正在与异养细菌种一起进行PHA的高成本商业生产。在这项研究中,已确定了一种自养自养N 2 的蓝细菌,Aurosira fertilissima,是生产聚β-羟基丁酸酯(PHB)的潜在来源。当在添加了乙酸盐(0.3%)+柠檬酸盐(0.3%)的培养基中(相对于6%对照)培养蓝细菌时,记录到的干细胞重(dcw)高达66%。在磷缺乏下补充0.5%柠檬酸盐的Aulosira培养物,然后在黑暗中孵育5天,也表明PHB积累为51%(dcw)。在缺磷的情况下,添加0.5%的乙酸盐,铁锈曲霉的PHB含量高达77%(dcw)。通过响应面法优化工艺参数导致聚合物在0.26%柠檬酸盐,0.28%乙酸盐和5.58 mg L -1 K 2 时的累积量高达85%(dcw) HPO 4 的潜伏期为5天。在果糖(1.0%)补充的BG 11培养基中预生长的A. fertilissima培养物中,在优化条件下,PHB池可增加至1.59 g L -1 ,值〜比对照高50倍。 Fertilissima A. fertilissima是第一个通过操纵培养基的营养状况而使PHB积累达到85%(dcw)的蓝细菌。从A. fertilissima提取的聚合物表现出与商业聚合物相当的材料性能。与异养细菌相比,A。fertilissima中生产PHB的碳需求降低了一个数量级。因此,可以设想低成本的PHB生产。

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