Chair of Microbiology, Technical University of Munich, TUM School of Life Science, Freising, Germany.
Department of Mechanical Engineering, Institute of Biochemical Engineering, Technical University of Munich, Garching, Germany.
Syst Appl Microbiol. 2021 Nov;44(6):126271. doi: 10.1016/j.syapm.2021.126271. Epub 2021 Oct 8.
The development of co-cultures of clostridial strains which combine different physiological traits represents a promising strategy to achieve the environmentally friendly production of biofuels and chemicals. For the optimization of such co-cultures it is essential to monitor their composition and stability throughout fermentation. FISH is a quick and sensitive method for the specific labeling and quantification of cells within microbial communities. This technique is neither limited by the anaerobic fermenter environment nor by the need of prior genetic modification of strains. In this study, two specific 23S rRNA oligonucleotide probes, ClosKluy and ClosCarb, were designed for the monitoring of C. kluyveri and C. carboxidivorans, respectively. After the optimization of hybridization conditions for both probes, which was achieved at 30% (v/v) formamide, a high specificity was observed with epifluorescence microscopy using cells from different pure reference strains. The discriminating properties of the ClosKluy and ClosCarb probes was verified with samples from heterotrophic co-cultures in anaerobic flasks as well as autotrophic stirred-tank bioreactor co-cultures of C. kluyveri and C. carboxidivorans. Besides being suited to monitor defined co-cultures of these two species, the new specific FISH oligonucleotide probes for C. kluyveri and C. carboxidivorans additionally have potential to be applied in environmental studies.
共培养具有不同生理特性的梭菌菌株的发展代表了实现生物燃料和化学品环境友好生产的有前途的策略。为了优化这种共培养物,必须在发酵过程中监测其组成和稳定性。FISH 是一种快速、灵敏的方法,可用于对微生物群落中的细胞进行特异性标记和定量。该技术既不受厌氧发酵器环境的限制,也不受菌株遗传修饰的需要的限制。在这项研究中,设计了两个特定的 23S rRNA 寡核苷酸探针 ClosKluy 和 ClosCarb,分别用于监测 C. kluyveri 和 C. carboxidivorans。在对这两个探针的杂交条件进行优化后,在 30%(v/v)甲酰胺下,使用来自不同纯参考菌株的细胞进行荧光显微镜观察时,观察到了高特异性。ClosKluy 和 ClosCarb 探针的区分特性在厌氧瓶中的异养共培养物以及 C. kluyveri 和 C. carboxidivorans 的自养搅拌罐生物反应器共培养物的样品中得到了验证。除了适合监测这两种特定物种的定义共培养物外,新的用于 C. kluyveri 和 C. carboxidivorans 的特定 FISH 寡核苷酸探针还有可能应用于环境研究。