Koch A L
Department of Biology, Indiana University, Bloomington, IN 47405-6801, USA.
Microb Ecol. 2005 Feb;49(2):183-97. doi: 10.1007/s00248-003-1053-4. Epub 2005 Jun 17.
Microorganisms differ in their effectiveness in uptake and selection of substances that they bring in from the environment. They also differ in how they balance the allocation of nutrients for immediate and for delayed use. Moreover, they may not take up resources as fast as they seemingly could, and they may extrude derivatives of substances just pumped in. A good deal of these apparent choices must reside in the uptake systems and the linkage of these with the cell's intermediate metabolism. An important feature is that a resource may vary in concentration from time to time, nutrient to nutrient, and habitat to habitat. This variation must have been critical to the evolution of regulatory processes. Some possibilities for the combined uptake and consumption are considered for substrates serving the same (homologous) and different (heterologous) roles for the bacterium. From the membrane transport processes diagrammed in Fig. 1c and Fig. 2 and corresponding computer program given in Appendix A, the combined effect of uptake processes and cell growth can be studied. The model can be modified for various alternate models to study the possible control of cellular uptake and metabolism for the range of ecological roles of the bacterium.
微生物在从环境中摄取和选择物质的效率方面存在差异。它们在平衡即时使用和延迟使用的营养物质分配方式上也有所不同。此外,它们摄取资源的速度可能不如表面上那么快,并且可能会排出刚摄入物质的衍生物。这些明显的选择很大程度上必定存在于摄取系统以及这些系统与细胞中间代谢的联系之中。一个重要特征是,一种资源的浓度可能会随时间、营养物质以及栖息地的不同而变化。这种变化对于调节过程的进化必定至关重要。对于在细菌中发挥相同(同源)和不同(异源)作用的底物,考虑了联合摄取和消耗的一些可能性。根据图1c和图2所示的膜运输过程以及附录A中给出的相应计算机程序,可以研究摄取过程和细胞生长的综合效应。该模型可以针对各种替代模型进行修改,以研究细菌在一系列生态角色中对细胞摄取和代谢的可能控制。