Institute of Sustainable Chemistry, Leuphana University of Lueneburg, Lueneburg, Germany.
Strategic Science Consult Ltd, Hamburg, Germany.
Lipids. 2022 Jul;57(4-5):221-232. doi: 10.1002/lipd.12343. Epub 2022 Apr 22.
Blue-green light is known to maximize the degree of fatty acid (FA) unsaturation in microalgae. However, knowledge on the particular waveband responsible for this stimulation of FA desaturation and its impact on the pigment composition in microalgae remains limited. In this study, Acutodesmus obliquus was cultivated for 96 h at 15°C with different light spectra (380-700 nm, 470-700 nm, 520-700 nm, 600-700 nm, and dark controls). Growth was monitored daily, and qualitative characterization of the microalgal FA composition was achieved via gas chromatography coupled with electron impact ionization mass spectrometry (GC-EI/MS). Additionally, a quantitative analysis of microalgal pigments was performed using high-performance liquid chromatography with diode array detection (HPLC-DAD). Spectra that included wavelengths between 470 and 520 nm led to a significantly higher percentage of the polyunsaturated fatty acids (PUFA) 18:3 and 16:4, compared to all other light conditions. However, no significant differences between the red light cultivations and the heterotrophic dark controls were observed for the FA 18:3 and 16:4. These results indicate, that exclusively the blue-green light waveband between 470 and 520 nm is responsible for a maximized FA unsaturation in A. obliquus. Furthermore, the growth and production of pigments were impaired if blue-green light (380-520 nm) was absent in the light spectrum. This knowledge can contribute to achieving a suitable microalgal pigment and FA composition for industrial purposes and must be considered in spectrally selective microalgae cultivation systems.
蓝绿光被认为可以最大限度地提高微藻中脂肪酸(FA)的不饱和程度。然而,对于导致 FA 去饱和的特定波段以及其对微藻色素组成的影响的知识仍然有限。在这项研究中,斜生栅藻在 15°C 下用不同的光光谱(380-700nm、470-700nm、520-700nm、600-700nm 和黑暗对照)培养 96 小时。每天监测生长情况,并通过气相色谱与电子轰击电离质谱(GC-EI/MS)对微藻 FA 组成进行定性表征。此外,还使用带有二极管阵列检测(HPLC-DAD)的高效液相色谱法对微藻色素进行定量分析。与所有其他光照条件相比,包含 470nm 至 520nm 波长的光谱导致多不饱和脂肪酸(PUFA)18:3 和 16:4 的比例显著增加。然而,红光培养和异养黑暗对照之间在 FA 18:3 和 16:4 方面没有观察到显著差异。这些结果表明,只有 470nm 至 520nm 之间的蓝绿光波段才是斜生栅藻 FA 不饱和度最大化的原因。此外,如果光光谱中缺少蓝绿光(380-520nm),则会损害生长和色素的产生。这些知识可以为实现适合工业用途的微藻色素和 FA 组成做出贡献,并且必须在光谱选择性微藻培养系统中加以考虑。