Laboratory of Cell Cycles of Algae, Centre Algatech, Institute of Microbiology of the Czech Academy of Sciences, 379 81 Třeboň, Czech Republic.
Faculty of Science, University of South Bohemia, Branišovská 1760, 370 05 České Budějovice, Czech Republic.
Cells. 2021 May 1;10(5):1084. doi: 10.3390/cells10051084.
An increase in temperature can have a profound effect on the cell cycle and cell division in green algae, whereas growth and the synthesis of energy storage compounds are less influenced. In laboratory experiments have shown that exposure to a supraoptimal temperature (39 °C) causes a complete block of nuclear and cellular division accompanied by an increased accumulation of starch. In this work we explore the potential of supraoptimal temperature as a method to promote starch production in in a pilot-scale photobioreactor. The method was successfully applied and resulted in an almost 3-fold increase in the starch content of dry matter. Moreover, a maximum starch content at the supraoptimal temperature was reached within 1-2 days, compared with 5 days for the control culture at the optimal temperature (30 °C). Therefore, supraoptimal temperature treatment promotes rapid starch accumulation and suggests a viable alternative to other starch-inducing methods, such as nutrient depletion. Nevertheless, technical challenges, such as bioreactor design and light availability within the culture, still need to be dealt with.
温度升高会对绿藻的细胞周期和细胞分裂产生深远影响,而生长和储能化合物的合成受影响较小。实验室研究表明,暴露在超适温度(39°C)下会完全阻止核分裂和细胞分裂,并伴随着淀粉的积累增加。在这项工作中,我们探索了超适温度作为一种在中试规模光生物反应器中促进淀粉生产的方法。该方法已成功应用,使的干物质中的淀粉含量增加了近 3 倍。此外,与在最佳温度(30°C)下的对照培养相比,超适温度下的最大淀粉含量在 1-2 天内达到,而在最佳温度下则需要 5 天。因此,超适温度处理可促进淀粉快速积累,并为其他淀粉诱导方法(如营养物耗尽)提供了可行的替代方法。然而,仍需要解决生物反应器设计和培养物内光照可用性等技术挑战。