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应用部分细胞循环恒化器以接近零生长速率连续生产香气化合物。

Application of a partial cell recycling chemostat for continuous production of aroma compounds at near-zero growth rates.

作者信息

van Mastrigt Oscar, Egas Reinier A, Lillevang Søren K, Abee Tjakko, Smid Eddy J

机构信息

Food Microbiology, Wageningen University & Research, Wageningen, The Netherlands.

Arla Innovation Centre, Arla Foods Amba, Aarhus N, Denmark.

出版信息

BMC Res Notes. 2019 Mar 25;12(1):173. doi: 10.1186/s13104-019-4213-4.

Abstract

OBJECTIVE

The partial cell recycling chemostat is a modification of the chemostat in which cells are partially recycled towards the bioreactor. This allows using dilution rates higher than the maximum growth rate resulting in higher biomass concentrations and increased process rates. In this study, we demonstrate with a single observation that this system can also be used to study microorganisms at near-zero growth rates and as production system for compounds specific for slow growth, such as those typical for ripened cheese.

RESULTS

Lactococcus lactis FM03-V2 was cultivated at growth rates between 0.0025 and 0.025 h. Detailed analysis of produced aroma compounds revealed that levels of particular compounds were clearly affected by the growth rate within the studied range demonstrating that we can steer the aroma production by controlling the growth rate. With this approach, we also experimentally validated that the maintenance coefficient of this dairy strain decreased at near-zero growth rates (6.4-fold). An exponentially decreasing maintenance coefficient was included in the growth model, enabling accurate prediction of biomass accumulation in the partial cell recycling chemostat. This study demonstrates the potential of partial cell recycling chemostat both as aroma production system at near-zero growth rates and as unique research tool.

摘要

目的

部分细胞循环恒化器是对恒化器的一种改进,其中细胞被部分循环回生物反应器。这使得能够使用高于最大生长速率的稀释率,从而产生更高的生物量浓度并提高过程速率。在本研究中,我们通过单一观察证明,该系统还可用于研究接近零生长速率的微生物,并作为特定于缓慢生长的化合物(如成熟奶酪中的典型化合物)的生产系统。

结果

乳酸乳球菌FM03-V2在0.0025至0.025 h⁻¹的生长速率下进行培养。对所产生的香气化合物的详细分析表明,在所研究的范围内,特定化合物的水平明显受生长速率的影响,这表明我们可以通过控制生长速率来调控香气的产生。通过这种方法,我们还通过实验验证了该乳杆菌菌株在接近零生长速率时维持系数降低(6.4倍)。生长模型中纳入了呈指数下降的维持系数,从而能够准确预测部分细胞循环恒化器中的生物量积累。本研究证明了部分细胞循环恒化器作为接近零生长速率下的香气生产系统以及独特研究工具的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98d4/6434626/730e19e1f8bc/13104_2019_4213_Fig1_HTML.jpg

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