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首页> 外文期刊>Journal of Biotechnology >Positive effect of reduced aeration rate on growth and stereospecificity of DL-malic acid consumption by Azospirillum brasilense: Improving the shelf life of a liquid inoculant formulation
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Positive effect of reduced aeration rate on growth and stereospecificity of DL-malic acid consumption by Azospirillum brasilense: Improving the shelf life of a liquid inoculant formulation

机译:降低曝气速率对巴西固氮螺旋菌消耗DL-苹果酸的生长和立体定向的积极影响:延长液体接种剂配方的保质期

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Azospirillum brasilense has significance as a growth promoter in plants of commercial interest. Two industrial native strains (Start and Calf), used as a part of an inoculant formulation in Mexico during the last 15 years, were incubated in laboratory-scale pneumatic bioreactors at different aeration rates. In both strains, the positive effect of decreased aeration was observed. At the lowest (0.1 vvm, air volume/liquid volume x minute), the highest biomass were obtained for Calf (7.8 x 10(10) CFU/ml), and Start (2.9 x 10(9) CFU/ml). These were higher in one magnitude order compared to cultures carried out at 0.5 vvm, and two compared to those at 1.0 vvm. At lower aeration, both stereoisomeric forms of malic acid were consumed, but at higher aeration, just l-malate was consumed. A reduction in aeration allows an increase of the shelf life and the microorganism saved higher concentrations of polyhydroxybutyrate. The selected fermentation conditions are closely related to those prevalent in large-scale bioreactors and offer the possibility of achieving high biomass titles with high shelf life at a reduced costs, due to the complete use of a carbon source at low aeration of a low cost raw material as DL-malic acid mixture in comparison with the l-malic acid stereoisomer. (C) 2015 Elsevier B.V. All rights reserved.
机译:巴西固氮螺菌作为具有商业意义的植物中的生长促进剂具有重要意义。在过去的15年中,将两种工业本地菌株(Start和Calf)用作墨西哥接种制剂的一部分,并在实验室规模的气动生物反应器中以不同的通气速率进行了孵育。在两种菌株中,均观察到通气减少的积极作用。在最低的条件下(0.1 vvm,空气体积/液体体积x分钟),小牛(7.8 x 10(10)CFU / ml)和起始(2.9 x 10(9)CFU / ml)的生物质最高。与在0.5 vvm下进行的培养相比,它们的数量级更高,而在1.0 vvm下进行的培养则更高。在较低的通气量下,苹果酸的两种立体异构形式均被消耗,但是在较高的通气量下,仅消耗了1-苹果酸。减少曝气可以延长保质期,并且微生物可以节省更高浓度的聚羟基丁酸酯。选定的发酵条件与大规模生物反应器中普遍存在的发酵条件密切相关,并且由于完全使用了碳源,而在低成本原料中的通气性较低,因此可以以较低的成本获得具有高保质期的高生物质标题。与1-苹果酸立体异构体相比,该材料为DL-苹果酸混合物。 (C)2015 Elsevier B.V.保留所有权利。

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