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嗜极端微生物嗜热栖热放线菌DSM 11302利用共底物补料分批培养的生长情况

Growth of the extremophilic Deinococcus geothermalis DSM 11302 using co-substrate fed-batch culture.

作者信息

Bornot Julie, Molina-Jouve Carole, Uribelarrea Jean-Louis, Gorret Nathalie

机构信息

INSA, UPS, INP; LISBP, Université de Toulouse, 135 Avenue de Rangueil, 31077, Toulouse, France.

出版信息

Appl Microbiol Biotechnol. 2014 Feb;98(3):1281-90. doi: 10.1007/s00253-013-5397-5. Epub 2013 Dec 10.

Abstract

Deinococcus geothermalis metabolism has been scarcely studied to date, although new developments on its utilization for bioremediation have been carried out. So, large-scale production of this strain and a better understanding of its physiology are required. A fed-batch experiment was conducted to achieve a high cell density non-limiting culture of D. geothermalis DSM 11302. A co-substrate nutritional strategy using glucose and yeast extract was carried out in a 20-L bioreactor in order to maintain a non-limited growth at a maximal growth rate of 1 h(-1) at 45 °C. Substrate supplies were adjusted by monitoring online culture parameters and physiological data (dissolved oxygen, gas analyses, respiratory quotient, biomass concentration). The results showed that yeast extract could serve as both carbon and nitrogen sources, although glucose and ammonia were consumed too. Yeast extract carbon-specific uptake rate reached a value 4.5 times higher than glucose carbon-specific uptake rate. Cell concentration of 9.6 g L(-1) dry cell weight corresponding to 99 g of biomass was obtained using glucose and yeast extract as carbon and nitrogen sources.

摘要

尽管在利用嗜热栖热放线菌进行生物修复方面有了新进展,但迄今为止,对其代谢的研究仍很少。因此,需要大规模培养这种菌株并更好地了解其生理学特性。进行了补料分批实验,以实现嗜热栖热放线菌DSM 11302的高细胞密度非限制培养。在20升生物反应器中采用葡萄糖和酵母提取物的共底物营养策略,以便在45℃下以1 h⁻¹的最大生长速率维持无限制生长。通过监测在线培养参数和生理数据(溶解氧、气体分析、呼吸商、生物量浓度)来调整底物供应。结果表明,酵母提取物既可以作为碳源也可以作为氮源,尽管葡萄糖和氨也被消耗。酵母提取物的碳特异性摄取率达到的值比葡萄糖的碳特异性摄取率高4.5倍。使用葡萄糖和酵母提取物作为碳源和氮源,获得了细胞浓度为9.6 g L⁻¹干细胞重量,相当于99 g生物量。

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