Posada-Uribe Luisa F, Romero-Tabarez Magally, Villegas-Escobar Valeska
Grupo de Investigación en Ciencias Biológicas y Bioprocesos (CIBIOP), Department of Process Engineering, Universidad EAFIT, Cra. 49 # 7 Sur-50, Medellín, Antioquia, Colombia.
Centro de Investigaciones del Banano-AUGURA, Carepa, Colombia.
Bioprocess Biosyst Eng. 2015 Oct;38(10):1879-88. doi: 10.1007/s00449-015-1428-1. Epub 2015 Jul 2.
Bacillus subtilis spores have important biotechnological applications; however, achieving both, high spore cell densities and sporulation efficiencies in fermentation, is poorly reported. In this study, medium components and culture conditions were optimized with different statistical methods to increase spore production of the plant growth promoting rhizobacteria B. subtilis EA-CB0575. Key medium components were determined with Plackett-Burman (PB) design, and the optimum concentration levels of two components (glucose, MgSO4·7H2O) were optimized with a full factorial and central composite design, achieving 1.37 × 10(9) CFU/mL of spore cell density and 93.5 % of sporulation efficiency in shake flask. The optimized medium was used to determine the effect of culture conditions on spore production at bioreactor level, finding that maintaining pH control did not affect significantly spore production, while the interaction of agitation and aeration rates had a significant effect on spore cell density. The overall optimization generated a 17.2-fold increase in spore cell density (8.78 × 10(9) CFU/mL) and 1.9-fold increase in sporulation efficiency (94.2 %) compared to that of PB design. These results indicate the potential of B. subtilis EA-CB0575 to produce both, high spore cell densities and sporulation efficiencies, with very low nutrient requirements and short incubation period which can represent savings of process production.
枯草芽孢杆菌孢子具有重要的生物技术应用;然而,在发酵过程中实现高孢子细胞密度和孢子形成效率的相关报道却很少。在本研究中,采用不同的统计方法对培养基成分和培养条件进行了优化,以提高植物促生根际细菌枯草芽孢杆菌EA-CB0575的孢子产量。通过Plackett-Burman(PB)设计确定了关键培养基成分,并采用全因子设计和中心复合设计对两种成分(葡萄糖、MgSO4·7H2O)的最佳浓度水平进行了优化,在摇瓶中实现了1.37×109 CFU/mL的孢子细胞密度和93.5%的孢子形成效率。使用优化后的培养基在生物反应器水平上确定培养条件对孢子产量的影响,发现维持pH控制对孢子产量没有显著影响,而搅拌速率和通气速率的相互作用对孢子细胞密度有显著影响。与PB设计相比,整体优化使孢子细胞密度提高了17.2倍(8.78×109 CFU/mL),孢子形成效率提高了1.9倍(94.2%)。这些结果表明,枯草芽孢杆菌EA-CB0575具有产生高孢子细胞密度和孢子形成效率的潜力,其营养需求极低且培养周期短,这可以节省生产过程成本。