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首页> 外文期刊>Journal of applied microbiology >High production of poly(3-hydroxybutyrate) from a wild Bacillus megaterium Bolivian strain.
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High production of poly(3-hydroxybutyrate) from a wild Bacillus megaterium Bolivian strain.

机译:从野生巨大芽孢杆菌玻利维亚菌株高产聚(3-羟基丁酸酯)。

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Aim: Taking into account that a novel strain of Bacillus megaterium was isolated from Uyuni salt lake (Bolivia) in a previous work, the objectives of this new study were to determine the maximal Poly-3-hydroxybutyrate production potential of B. megaterium strain uyuni S29 in an industrial conventional media, the possibility that the strain accumulates different types of polyhydroxyalkanoates, the cellular morphology during the biosynthesis process and the characterization of the produced biopolymers. Methods and Results: The micro-organism was first tested in a 3-L bioreactor obtaining a high specific growth rate of 1.64 h-1. A second fed-batch experiment was carried out in shaking flasks, reaching up to 70% PHB of cell dry mass. The biosynthesized polymers were extracted by two different extraction procedures and characterized. The results showed that all of them were PHB with thermal properties different to the conventional PHB. The micrographs taken by TEM show the different cell morphology during the fermentation process. Conclusions: In this previous study, the strain not only grew properly in the industrial conditions proposed without spore formation, but also produced and accumulated a large content of PHB, never reached before for its genus. Therefore, if the culture conditions can be optimized, the biopolymer production could be increased. Significance and Impact of the Study: The impact of the study has related to the area of the biomaterials and their production. The study provides new data related to the high production of PHB from the wild novel strain B. megaterium uyuni S29, the highest polymer accumulation for the genus Bacillus without spores formation.
机译:目的:考虑到以前的工作是从乌尤尼盐湖(玻利维亚)分离出一种新的巨大芽孢杆菌菌株,这项新研究的目的是确定巨大芽孢杆菌uyuni菌株最大的Poly-3-hydroxybutyate生产潜力。在工业常规介质中的S29中,菌株积累不同类型的聚羟基链烷酸酯的可能性,在生物合成过程中的细胞形态以及所产生的生物聚合物的表征。方法与结果:首先在3-L生物反应器中对微生物进行了测试,获得了1.64 h -1 的高比生长速率。在摇瓶中进行第二次补料分批实验,使细胞干重达到PHB的70%。通过两种不同的提取程序对生物合成的聚合物进行了提取并进行了表征。结果表明,它们都是PHB,其热性能不同于常规PHB。 TEM拍摄的显微照片显示了发酵过程中不同的细胞形态。结论:在先前的研究中,该菌株不仅在提出的工业条件下适当生长而没有孢子形成,而且还产生并积累了大量的PHB,这是该属以前从未有过的。因此,如果可以优化培养条件,则可以提高生物聚合物的产量。研究的意义和影响:研究的影响与生物材料及其生产领域有关。该研究提供了与野生新型菌株B. megaterium uyuni S29高产PHB有关的新数据,该菌株是芽孢杆菌属中没有孢子形成的最高聚合物积累。

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