Koepff Joachim, Morschett Holger, Busche Tobias, Winkler Anika, Kalinowski Jörn, Wiechert Wolfgang, Oldiges Marco
Inst. of Bio- and Geosciences, IBG-1: Biotechnology, Jülich, Germany.
Bielefeld University, Center for Biotechnology (CeBiTec), Microbial Genomics and Biotechnology, Bielefeld, Germany.
Biotechnol Prog. 2018 Jan;34(1):287-292. doi: 10.1002/btpr.2566. Epub 2017 Nov 3.
Recently, a comprehensive screening workflow for the filamentous bacterium Streptomyces lividans, a highly performant source for pharmaceutically active agents was introduced. This framework used parallelized cultivation in microtiter plates to efficiently accelerate early upstream process development. Focusing on growth performance, cultivation was successfully scaled-up to 1 L stirred tank reactors. However, metabolic adaptation was observed on the transcriptomic level as among others, several genes incorporated in light response were upregulated during bioreactor cultivation. Despite it was assumed that this was attributed to the fact that reactor cultivations were performed in glass vessels exposed to daylight and artificial room light, this setup did not allow distinguishing exclusively between light and other effects. Upon that, the present study directly investigates the influence of light by defined illumination of microtiter plate cultures. Almost identical growth performance was observed for cultures grown in the dark or with illumination. Transcriptomics revealed the upregulation of seven genes of which 6 have previously been described to be relevant for carotenoid synthesis and its regulation. These pigments are effective quenchers of reactive oxygen species. The seventh transcript coded for a photo-lyase incorporated in UV-damage repair of DNA further confirming induced light response. However, this was fully compensated by metabolic adaptation on the transcriptomic level and overall process performance was maintained. Consequently, environmental conditions need extremely careful control and evaluation during in-depth omics analysis of bioprocesses. Otherwise metabolic adaptation induced by such issues can easily be misinterpreted, especially during studies addressing cultivation system comparisons. © 2017 American Institute of Chemical Engineers Biotechnol. Prog., 34:287-292, 2018.
最近,一种针对淡紫链霉菌的全面筛选工作流程被引入,淡紫链霉菌是一种高效的药物活性剂来源。该框架使用微孔板中的平行培养来有效加速早期上游工艺开发。以生长性能为重点,培养成功扩大到1升搅拌罐反应器。然而,在转录组水平上观察到了代谢适应,例如,在生物反应器培养过程中,一些参与光反应的基因被上调。尽管有人认为这是由于反应器培养是在暴露于日光和人工室内光的玻璃容器中进行的,但这种设置无法仅区分光和其他影响。在此基础上,本研究通过对微孔板培养物进行特定光照直接研究光的影响。在黑暗中生长或有光照的培养物观察到几乎相同的生长性能。转录组学揭示了七个基因的上调,其中六个基因先前已被描述与类胡萝卜素合成及其调控有关。这些色素是活性氧的有效猝灭剂。第七个转录本编码一种参与DNA紫外线损伤修复的光裂合酶,进一步证实了诱导的光反应。然而,这在转录组水平上被代谢适应完全补偿,整体工艺性能得以维持。因此,在生物过程的深入组学分析期间,环境条件需要极其仔细的控制和评估。否则,由这些问题引起的代谢适应很容易被误解,尤其是在涉及培养系统比较的研究中。©2017美国化学工程师学会生物技术进展,34:287 - 292,2018。