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Production of Polyhydroxyalkanoate Co-polymer by Bacillus thuringiensis

机译:苏云金芽孢杆菌生产聚羟基链烷酸酯共聚物

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摘要

Integrative processes for the production of bioenergy and biopolymers are gaining importance in recent years as alternatives to fossil fuels and synthetic plastics. In the present study, Bacillus thuringiensis strain EGU45 has been used to generate hydrogen (H_2), polyhydroxybutyrate (PHB) and new co-polymers (NP). Under batch culture conditions with 250 ml synthetic media, B. thuringiensis EGU45 produced up to 0. 58 mol H_2/mol of glucose. Effluent from the H_2 production stage was incubated under shaking conditions leading to the production of PHB up to 95 mg/l along with NP of levulinic acid up to 190 mg/l. A twofold to fourfold enhancement in PHB and up to 1. 5 fold increase in NP yields was observed on synthetic medium (mixture of M-9+GM-2 medium in 1:1 ratio) containing at 1-2 % glucose concentration. The novelty of this work lies in developing modified physiological conditions, which induce bacterial culture to produce NP.
机译:作为化石燃料和合成塑料的替代品,近年来,生物能源和生物聚合物生产的集成工艺正变得越来越重要。在本研究中,苏云金芽孢杆菌菌株EGU45已用于产生氢(H_2),聚羟基丁酸酯(PHB)和新共聚物(NP)。在具有250 ml合成培养基的分批培养条件下,苏云金芽孢杆菌EGU45产生高达0. 58 mol H_2 / mol的葡萄糖。 H 2生产阶段的流出物在摇动条件下孵育,导致PHB的生产最高可达95 mg / l,而乙酰丙酸的NP最高可达190 mg / l。在含有1-2%葡萄糖浓度的合成培养基(M-9 + GM-2培养基以1:1比例的混合物)上观察到PHB升高了2倍至4倍,NP产量提高了1倍。这项工作的新颖性在于发展改良的生理条件,从而诱导细菌培养产生NP。

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