Thayer School of Engineering at Dartmouth College, 8000 Cummings Hall, Hanover, NH 03755, USA.
J Ind Microbiol Biotechnol. 2012 Jun;39(6):943-7. doi: 10.1007/s10295-012-1091-3. Epub 2012 Feb 14.
A growth medium was developed for cultivation of Clostridium thermocellum ATCC 27405 in which "background" carbon present in buffers, reducing agents, chelating agents, and growth factors was a small fraction of the carbon present in the primary growth substrate. Background carbon was 1.6% of primary substrate carbon in the low-carbon (LC) medium, whereas it accounts for at least 40% in previously reported media. Fermentation of cellulose in LC medium was quite similar to Medium for Thermophilic Clostridia (MTC), a commonly used growth medium that contains background carbon at 88% of primary substrate carbon. Of particular note, we found that the organism can readily be cultivated by eliminating some components, lowering the concentrations of others, and employing a tenfold lower concentration of reducing agent. As such, we were able to reduce the amount of background carbon 55-fold compared to MTC medium while reaching the same cell biomass concentration. The final mass ratios of the products acetate:ethanol:formate were 5:3.9:1 for MTC and 4.1:1.5:1 for LC medium. LC medium is expected to facilitate metabolic studies involving identification and quantification of extracellular metabolites. In addition, this medium is expected to be useful in studies of cellulose utilization by anaerobic enrichment cultures obtained from environmental inocula, and in particular to diminish complications arising from metabolism of carbon-containing compounds other than cellulose. Finally, LC medium provides a starting point for industrial growth media development.
开发了一种用于培养嗜热梭菌 ATCC 27405 的生长培养基,其中缓冲液、还原剂、螯合剂和生长因子中的“背景”碳仅占主要生长基质中碳的一小部分。在低碳(LC)培养基中,背景碳是初级底物碳的 1.6%,而在之前报道的培养基中,其占比至少为 40%。在 LC 培养基中发酵纤维素与常用于培养的热厌氧菌培养基(MTC)非常相似,该培养基中的背景碳占初级底物碳的 88%。值得特别注意的是,我们发现通过消除一些成分、降低其他成分的浓度并使用十倍低浓度的还原剂,该生物体可以很容易地被培养。因此,与 MTC 培养基相比,我们能够将背景碳的量减少 55 倍,同时达到相同的细胞生物量浓度。最终产物的质量比为乙酸盐:乙醇:甲酸盐分别为 MTC 中的 5:3.9:1 和 LC 培养基中的 4.1:1.5:1。LC 培养基有望促进涉及鉴定和量化细胞外代谢物的代谢研究。此外,该培养基有望用于研究从环境接种物中获得的厌氧富集培养物对纤维素的利用,特别是减少除纤维素以外的含碳化合物代谢引起的并发症。最后,LC 培养基为工业生长培养基的开发提供了起点。