Maťátková Olga, Michailidu Jana, Ježdík Richard, Jarošová Kolouchová Irena, Řezanka Tomáš, Jirků Vladimír, Masák Jan
Department of Biotechnology, University of Chemistry and Technology, Technická 5, 166 28 Prague, Czech Republic.
Institute of Microbiology, Czech Academy of Sciences, Vídeňská 1083, 142 20 Prague, Czech Republic.
Microorganisms. 2022 Jun 22;10(7):1272. doi: 10.3390/microorganisms10071272.
Rhamnolipids are extensively studied biosurfactants due to their potential in many industrial applications, eco-friendly production and properties. However, their availability for broader application is severely limited by their production costs, therefore the optimization of efficacy of their cultivation gains significance as well as the information regarding the physio-chemical properties of rhamnolipids resulting from various cultivation strategies. In this work, the bioprocess design focused on optimization of the rhamnolipid yield of DBM 3774 utilizing the response surface methodology (RSM). Six carbon sources were investigated for their effect on the rhamnolipid production. The RSM prediction improved the total rhamnolipid yield from 2.2 to 13.5 g/L and the rhamnolipid productivity from 11.6 to 45.3 mg/L/h. A significant effect of the carbon source type, concentration and the C/N ratio on the composition of the rhamnolipid congeners has been demonstrated for cultivation of DBM 3774 in batch cultivation. Especially, changes in presence of saturated fatty acid in the rhamnolipid congeners, ranging from 18.8% of unsaturated fatty acids (carbon source glycerol; 40 g/L) to 0% (sodium citrate 20 g/L) were observed. This demonstrates possibilities of model based systems as basis in cultivation of industrially important compounds like biosurfactants rhamnolipids and the importance of detailed study of interconnection between cultivation conditions and rhamnolipid mixture composition and properties.
鼠李糖脂因其在许多工业应用中的潜力、环境友好型生产及特性而受到广泛研究。然而,其生产成本严重限制了它们在更广泛应用中的可用性,因此优化其培养效果以及了解各种培养策略所产生的鼠李糖脂的物理化学性质变得至关重要。在这项工作中,生物工艺设计聚焦于利用响应面法(RSM)优化DBM 3774的鼠李糖脂产量。研究了六种碳源对鼠李糖脂生产的影响。RSM预测将鼠李糖脂总产量从2.2克/升提高到13.5克/升,鼠李糖脂生产率从11.6毫克/升/小时提高到45.3毫克/升/小时。在分批培养DBM 3774时,已证明碳源类型、浓度和C/N比对鼠李糖脂同系物组成有显著影响。特别是,观察到鼠李糖脂同系物中饱和脂肪酸含量的变化,从不饱和脂肪酸含量为18.8%(碳源甘油;40克/升)到0%(柠檬酸钠20克/升)。这证明了基于模型的系统作为培养生物表面活性剂鼠李糖脂等重要工业化合物的基础的可能性,以及详细研究培养条件与鼠李糖脂混合物组成及性质之间相互关系的重要性。