Basu Aditya, Das Debasish, Bapat Prashant, Wangikar Pramod P, Phale Prashant S
Biotechnology Group, School of Biosciences and Bioengineering, Indian Institute of Technology-Bombay, Powai, Mumbai 400 076, India.
Microbiol Res. 2009;164(4):429-37. doi: 10.1016/j.micres.2007.02.008. Epub 2007 Apr 30.
Pseudomonas putida CSV86 preferentially utilizes aromatics over glucose and co-metabolizes them with organic acids. On aromatics plus glucose, CSV86 utilized aromatics first with concomitant appearance of transient metabolites such as salicylate, benzaldehyde and benzoate. Citrate was the main extracellular metabolite observed during glucose uptake. The strain showed simultaneous utilization of organic acids and aromatic compounds. Based on the metabolite analysis and growth profiles, we hypothesize that the repression of glucose utilization could be due to organic acid intermediates generated from aromatic compound metabolism. The online measurements indicate the instantaneous metabolic state of the culture. For example, the CO(2) evolution and agitation speed show peak values during the two growth phases in the diauxic growth while dissolved oxygen values show decrease at the corresponding durations. These measurements correlated well with the offline measurements but provided a better time resolution of the process.
恶臭假单胞菌CSV86优先利用芳香族化合物而非葡萄糖,并能与有机酸共同代谢这些芳香族化合物。在芳香族化合物加葡萄糖的情况下,CSV86先利用芳香族化合物,同时会出现诸如水杨酸盐、苯甲醛和苯甲酸盐等瞬时代谢产物。柠檬酸盐是葡萄糖摄取过程中观察到的主要细胞外代谢产物。该菌株显示出能同时利用有机酸和芳香族化合物。基于代谢产物分析和生长曲线,我们推测葡萄糖利用的抑制可能是由于芳香族化合物代谢产生的有机酸中间体所致。在线测量表明了培养物的瞬时代谢状态。例如,在双相生长的两个生长阶段,二氧化碳释放量和搅拌速度显示出峰值,而溶解氧值在相应时间段内则显示下降。这些测量结果与离线测量结果相关性良好,但提供了更好的过程时间分辨率。