Rautio Jari J, Bailey Michael, Kivioja Teemu, Söderlund Hans, Penttilä Merja, Saloheimo Markku
VTT Technical Research Centre of Finland, Tietotie 2, Espoo, VTT-Espoo, Finland.
BMC Biotechnol. 2007 May 30;7:28. doi: 10.1186/1472-6750-7-28.
Biologically relevant molecular markers can be used in evaluation of the physiological state of an organism in biotechnical processes. We monitored at high frequency the expression of 34 marker genes in batch, fed-batch and continuous cultures of the filamentous fungus Trichoderma reesei by the transcriptional analysis method TRAC (TRanscript analysis with the aid of Affinity Capture). Expression of specific genes was normalised either with respect to biomass or to overall polyA RNA concentration. Expressional variation of the genes involved in various process relevant cellular functions, such as protein production, growth and stress responses, was related to process parameters such as specific growth and production rates and substrate and dissolved oxygen concentrations.
Gene expression of secreted cellulases and recombinant Melanocarpus albomyces laccase predicted the trends in the corresponding extracellular enzyme production rates and was highest in a narrow "physiological window" in the specific growth rate (micro) range of 0.03-0.05 h-1. Expression of ribosomal protein mRNAs was consistent with the changes in mu. Nine starvation-related genes were found as potential markers for detection of insufficient substrate feed for maintaining optimal protein production. For two genes induced in anaerobic conditions, increasing transcript levels were measured as dissolved oxygen decreased.
The data obtained by TRAC supported the usefulness of focused and intensive transcriptional analysis in monitoring of biotechnical processes providing thus tools for process optimisation purposes.
具有生物学相关性的分子标记可用于评估生物技术过程中生物体的生理状态。我们通过转录分析方法TRAC(借助亲和捕获的转录本分析),对丝状真菌里氏木霉在分批培养、补料分批培养和连续培养过程中34个标记基因的表达进行了高频监测。特定基因的表达以生物量或总polyA RNA浓度进行标准化。参与各种与过程相关的细胞功能(如蛋白质生产、生长和应激反应)的基因的表达变化与特定生长速率、生产速率以及底物和溶解氧浓度等过程参数相关。
分泌型纤维素酶和重组黑孢块菌漆酶的基因表达预测了相应细胞外酶生产速率的趋势,并且在特定生长速率(μ)为0.03 - 0.05 h⁻¹的狭窄“生理窗口”内最高。核糖体蛋白mRNA的表达与μ的变化一致。发现九个与饥饿相关的基因可作为检测维持最佳蛋白质生产所需底物供应不足的潜在标记。对于在厌氧条件下诱导的两个基因,随着溶解氧的降低,转录水平升高。
通过TRAC获得的数据支持了聚焦且深入的转录分析在监测生物技术过程中的有用性,从而为过程优化提供了工具。