Hoang Manh Dat, Riessner Sophi, Oropeza Vargas Jose Enrique, von den Eichen Nikolas, Heins Anna-Lena
Chair of Biochemical Engineering, TUM School of Engineering and Design, Technical University of Munich, 85748 Garching, Germany.
Microorganisms. 2023 Jul 6;11(7):1763. doi: 10.3390/microorganisms11071763.
When targeting robust, high-yielding bioprocesses, phenomena such as population heterogeneity have to be considered. Therefore, the influence of the conditions which the cells experience prior to the main culture should also be evaluated. Here, the influence of a pre-culture medium (complex vs. minimal medium), optical density for inoculation of the main culture (0.005, 0.02 and 0.0125) and harvest time points of the pre-culture in exponential growth phase (early, mid and late) on the level of population heterogeneity in batch cultures of the triple reporter strain G7 in stirred-tank bioreactors was studied. This strain allows monitoring the growth (-EmGFP), general stress response (-mStrawberry) and oxygen limitation (-TagRFP657) of single cells through the expression of fluorescent proteins. Data from batch cultivations with varying pre-culture conditions were analysed with principal component analysis. According to fluorescence data, the pre-culture medium had the largest impact on population heterogeneities during the bioprocess. While a minimal medium as a pre-culture medium elevated the differences in cellular growth behaviour in the subsequent batch process, a complex medium increased the general stress response and led to a higher population heterogeneity. The latter was promoted by an early harvest of the cells with low inoculation density. Seemingly, -operon expression acted independently of the pre-culture conditions.
在针对稳健、高产的生物过程时,必须考虑群体异质性等现象。因此,还应评估细胞在主培养之前所经历的条件的影响。在此,研究了预培养基(复合培养基与基本培养基)、主培养接种的光密度(0.005、0.02和0.0125)以及指数生长期预培养的收获时间点(早期、中期和晚期)对搅拌罐生物反应器中三报告菌株G7分批培养中群体异质性水平的影响。该菌株能够通过荧光蛋白的表达监测单细胞的生长(-EmGFP)、一般应激反应(-mStrawberry)和氧气限制(-TagRFP657)。采用主成分分析法对不同预培养条件下的分批培养数据进行分析。根据荧光数据,预培养基对生物过程中的群体异质性影响最大。作为预培养基的基本培养基会加大后续分批过程中细胞生长行为的差异,而复合培养基则会增强一般应激反应并导致更高的群体异质性。后者在低接种密度下早期收获细胞时更为明显。似乎,-操纵子表达独立于预培养条件。