Lopo Miguel, Montagud Arnau, Navarro Emilio, Cunha Isabel, Zille Andrea, de Córdoba Pedro Fernández, Moradas-Ferreira Pedro, Tamagnini Paula, Urchueguía Javier F
IBMC-Instituto de Biologia Molecular e Celular, Universidade do Porto, Porto, Portugal.
J Mol Microbiol Biotechnol. 2012;22(2):71-82. doi: 10.1159/000336850. Epub 2012 Apr 14.
BACKGROUND/AIMS: The influence of different parameters such as temperature, irradiance, nitrate concentration, pH, and an external carbon source on Synechocystis PCC 6803 growth was evaluated.
4.5-ml cuvettes containing 2 ml of culture, a high-throughput system equivalent to batch cultures, were used with gas exchange ensured by the use of a Parafilm™ cover. The effect of the different variables on maximum growth was assessed by a multi-way statistical analysis.
Temperature and pH were identified as the key factors. It was observed that Synechocystis cells have a strong influence on the external pH. The optimal growth temperature was 33°C while light-saturating conditions were reached at 40 µE·m⁻²·s⁻¹.
It was demonstrated that Synechocystis exhibits a marked difference in behavior between autotrophic and glucose-based mixotrophic conditions, and that nitrate concentrations did not have a significant influence, probably due to endogenous nitrogen reserves. Furthermore, a dynamic metabolic model of Synechocystis photosynthesis was developed to gain insights on the underlying mechanism enabling this cyanobacterium to control the levels of external pH. The model showed a coupled effect between the increase of the pH and ATP production which in turn allows a higher carbon fixation rate.
背景/目的:评估了温度、辐照度、硝酸盐浓度、pH值和外部碳源等不同参数对聚球藻PCC 6803生长的影响。
使用含有2 ml培养物的4.5 ml比色皿,这是一种相当于分批培养的高通量系统,通过使用Parafilm™覆盖物确保气体交换。通过多因素统计分析评估不同变量对最大生长的影响。
温度和pH值被确定为关键因素。观察到聚球藻细胞对外部pH值有很大影响。最佳生长温度为33°C,而在40 µE·m⁻²·s⁻¹时达到光饱和条件。
结果表明,聚球藻在自养和基于葡萄糖的混合营养条件下表现出明显的行为差异,硝酸盐浓度没有显著影响,可能是由于内源性氮储备。此外,建立了聚球藻光合作用的动态代谢模型,以深入了解使这种蓝细菌能够控制外部pH值水平的潜在机制。该模型显示了pH值升高与ATP产生之间的耦合效应,这反过来又允许更高的碳固定率。