Aachener Verfahrenstechnik - Chair of Biochemical Engineering, RWTH Aachen University, Bldg. NGP², Forckenbeckstr. 51, 52074, Aachen, Germany.
Departamento de Ingeniería Celular y Biocatálisis, Instituto de Biotecnología, UNAM, Universidad Nacional Autónoma de México, Ave. Universidad 2001, Col. Chamilpa, 62210, Cuernavaca, Morelos, México.
Microb Cell Fact. 2023 May 11;22(1):99. doi: 10.1186/s12934-023-02112-3.
In research and production, reproducibility is a key factor, to meet high quality and safety standards and maintain productivity. For microbial fermentations, complex substrates and media components are often used. The complex media components can vary in composition, depending on the lot and manufacturing process. These variations can have an immense impact on the results of biological cultivations. The aim of this work was to investigate and characterize the influence of the complex media component yeast extract on cultivations of Azotobacter vinelandii under microaerobic conditions. Under these conditions, the organism produces the biopolymer alginate. The focus of the investigation was on the respiration activity, cell growth and alginate production.
Yeast extracts from 6 different manufacturers and 2 different lots from one manufacturer were evaluated. Significant differences on respiratory activity, growth and production were observed. Concentration variations of three different yeast extracts showed that the performance of poorly performing yeast extracts can be improved by simply increasing their concentration. On the other hand, the results with well-performing yeast extracts seem to reach a saturation, when their concentration is increased. Cultivations with poorly performing yeast extract were supplemented with grouped amino acids, single amino acids and micro elements. Beneficial results were obtained with the supplementation of copper sulphate, cysteine or a combination of both. Furthermore, a correlation between the accumulated oxygen transfer and the final viscosity (as a key performance indicator), was established.
The choice of yeast extract is crucial for A. vinelandii cultivations, to maintain reproducibility and comparability between cultivations. The proper use of specific yeast extracts allows the cultivation results to be specifically optimised. In addition, supplements can be applied to modify and improve the properties of the alginate. The results only scratch the surface of the underlying mechanisms, as they are not providing explanations on a molecular level. However, the findings show the potential of optimising media containing yeast extract for alginate production with A. vinelandii, as well as the potential of targeted supplementation of the media.
在研究和生产中,可重复性是一个关键因素,可满足高质量和安全标准并保持生产力。对于微生物发酵,通常使用复杂的底物和培养基成分。复杂的培养基成分的组成可能因批次和制造工艺而异。这些变化会对生物培养的结果产生巨大影响。本工作旨在研究和表征复杂培养基成分酵母提取物对好氧条件下固氮菌培养的影响。在这些条件下,该生物体产生生物聚合物海藻酸盐。研究的重点是呼吸活性、细胞生长和海藻酸盐生产。
评估了来自 6 家不同制造商的酵母提取物和来自一家制造商的 2 个不同批次的酵母提取物。观察到呼吸活性、生长和生产有明显差异。三种不同酵母提取物的浓度变化表明,通过简单地增加其浓度,可以提高性能较差的酵母提取物的性能。另一方面,当增加性能良好的酵母提取物的浓度时,结果似乎达到饱和。用分组氨基酸、单一氨基酸和微量元素对性能较差的酵母提取物进行了补充。用硫酸铜、半胱氨酸或两者的组合进行补充会获得有益的结果。此外,还建立了累积氧传递和最终粘度(作为关键性能指标)之间的相关性。
选择酵母提取物对于维持固氮菌培养的可重复性和可比性至关重要。正确使用特定的酵母提取物可以使培养结果得到专门优化。此外,还可以添加补充剂来修饰和改善海藻酸盐的性质。结果仅触及潜在机制的表面,因为它们没有提供分子水平的解释。然而,这些发现表明了优化含酵母提取物的培养基以用于固氮菌生产海藻酸盐的潜力,以及对培养基进行有针对性补充的潜力。