Laboratory of Cell Cycles of Algae, Centre Algatech, Institute of Microbiology of the Czech Academy of Sciences, 37981 Třeboň, Czech Republic.
Cells. 2022 Apr 11;11(8):1293. doi: 10.3390/cells11081293.
Light is the essential energy source for autotrophically growing organisms, including microalgae. Both light intensity and light quality affect cell growth and biomass composition. Here we used three green algae-, , and -to study the effects of different light intensities and light spectra on their growth. Cultures were grown at three different light intensities (100, 250, and 500 µmol m s) and three different light sources: fluorescent lamps, RGB LEDs, and white LEDs. Cultures of and were saturated at 250 µmol m s, and further increasing the light intensity did not improve their growth. cultures did not reach saturation under the conditions used. All species usually divide into more than two daughter cells by a mechanism called multiple fission. Increasing light intensity resulted in an increase in maximum cell size and division into more daughter cells. In cells, the concentration of photosynthetic pigments decreased with light intensity. Different light sources had no effect on algal growth or photosynthetic pigments. The results show a species-specific response of algae to light intensity and support the use of any white light source for their cultivation without negative effects on growth.
光是自养生物(包括微藻)的基本能量来源。光强和光质都会影响细胞生长和生物量组成。在这里,我们使用三种绿藻——、和——来研究不同光强和光质对它们生长的影响。在三种不同的光强(100、250 和 500 µmol m s)和三种不同的光源下培养:荧光灯、RGB LED 和白色 LED。和的培养物在 250 µmol m s 时达到饱和,进一步增加光强不会提高它们的生长。在使用的条件下,培养物没有达到饱和。所有物种通常通过一种称为多次分裂的机制分裂成两个以上的子细胞。增加光强会导致最大细胞尺寸增加,并分裂成更多的子细胞。在细胞中,光合色素的浓度随着光强的增加而降低。不同的光源对藻类的生长或光合色素没有影响。结果表明藻类对光强有特定的反应,并支持在不影响生长的情况下使用任何白光光源进行培养。