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首页> 外文期刊>Biochemical Engineering Journal >Understanding the biocalorimetric and respirometric behaviour of co-culture (R. eutropha, P. putida and A. vinelandii) in poly (3-hydroxybutyrate) batch production
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Understanding the biocalorimetric and respirometric behaviour of co-culture (R. eutropha, P. putida and A. vinelandii) in poly (3-hydroxybutyrate) batch production

机译:了解聚(3-羟基丁酸盐)分批生产中共培养(R. Eutropha,P. Putida和A.Vinelandii)的生物植物学和呼吸方法

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Limiting nitrogen and excess carbon sources induce accumulation of the bioplastic, Poly-(3-hydroxybutyrate) (PHB) as inclusion bodies in microbes. Here, we designed a co-culture (R. eutropha, P.putida, A.vinelandii) that produced higher PHB yield than in monocultures or pairwise combination. PHB concentration of 8.3 +/- 0.42 g/L, which is 63% of total Cell Dry Mass (CDM), was achieved using co-culture in batch mode of operation in biocalorimeter. Maximum total biomass based specific growth rate (mu(x): 0.49 h(-1)) was achieved in co-culture and bioenergetics profiles were compared for individual and co-culture. In this co-culture, P. putida and R. eutropha greatly contributed to PHB accumulation, while A. vinelandii induced faster growth. Aeration and agitation rates were optimized in the biocalorimeter, 1 liter per minute (lpm) and 150 rotations per minute (rpm) respectively for improved PHB yield. Oxygen uptake rate and carbon dioxide evolution rates correlated well with heat profiles, suggesting aerobic metabolism in consortia. Cellular accumulation of PHB granules in the co-culture was visualized using fluorescent microscopy.
机译:限制氮气和过量碳源诱导生物塑料,聚 - (3-羟基丁酸酯)(PHB)作为含有微生物夹杂物体的积累。在这里,我们设计了一种共同培养(R. Eutropha,PPutida,A.Vinelandii),其比单一栽培或成对组合产生更高的PHB产量。 PHB浓度为8.3 +/- 0.42g / L,其为总细胞干含量(CDM)的63%,在生物植物中的批量操作模式中使用共培养来实现。基于总生物量的基于生物量(mu(x):0.49h(-1))在共培养中实现,并且对个体和共同培养进行了生物植物谱。在这种共同培养中,P.Putida和R. Eutropha大大促进了PHB积累,而A.Vinelandii诱导更快的增长。曝气和搅拌速率分别在生物植物仪,每分钟(LPM)1升/分钟(LPM)和每分钟150次(RPM)中进行优化,以改善PHB产量。氧气吸收率和二氧化碳进化速率与热型材相比好,提示联盟有氧代谢。使用荧光显微镜可视化共培养中PHB颗粒的细胞积累。

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