Lee Ho-Sang, Kim Z-Hun, Park Hanwool, Lee Choul-Gyun
National Marine Bioenergy R&D Center & Department of Biological Engineering, Inha University, Incheon, 22212, Korea.
Bioprocess Biosyst Eng. 2016 May;39(5):815-23. doi: 10.1007/s00449-016-1561-5. Epub 2016 Feb 12.
Lumostatic operation was applied for efficient astaxanthin production in autotrophic Haematococcus lacustris cultures using 0.4-L bubble column photobioreactors. The lumostatic operation in this study was performed with three different specific light uptake rates (q(e)) based on cell concentration, cell projection area, and fresh weight as one-, two- and three-dimensional characteristics values, respectively. The q(e) value from the cell concentration (q(e1D)) obtained was 13.5 × 10⁻⁸ μE cell⁻¹ s⁻¹, and the maximum astaxanthin concentration was increased to 150 % compared to that of a control with constant light intensity. The other optimum q e values by cell projection area (q(e2D)) and fresh weight (q( e3D)) were determined to be 195 μE m⁻² s⁻¹ and 10.5 μE g⁻¹ s⁻¹ for astaxanthin production, respectively. The maximum astaxanthin production from the lumostatic cultures using the parameters controlled by cell projection area (2D) and fresh weight (3D) also increased by 36 and 22% over that of the controls, respectively. When comparing the optimal q e values among the three different types, the lumostatic cultures using q(e) based on fresh weight showed the highest astaxanthin productivity (22.8 mg L⁻¹ day⁻¹), which was a higher level than previously reported. The lumostatic operations reported here demonstrated that more efficient and effective astaxanthin production was obtained by H. lacustris than providing a constant light intensity, regardless of which parameter is used to calculate the specific light uptake rate.
在使用0.4升鼓泡柱光生物反应器的自养型湖生红球藻培养物中,采用光强恒定操作以高效生产虾青素。本研究中的光强恒定操作分别基于细胞浓度、细胞投影面积和鲜重作为一维、二维和三维特征值,以三种不同的比光吸收速率(q(e))进行。从细胞浓度获得的q(e)值(q(e1D))为13.5×10⁻⁸ μE细胞⁻¹ s⁻¹,与恒定光强对照相比,虾青素最大浓度提高到了150%。通过细胞投影面积(q(e2D))和鲜重(q(e3D))确定的其他最佳q(e)值分别为195 μE m⁻² s⁻¹和10.5 μE g⁻¹ s⁻¹用于虾青素生产。使用由细胞投影面积(2D)和鲜重(3D)控制的参数进行光强恒定培养的虾青素最大产量也分别比对照提高了36%和22%。在比较三种不同类型的最佳q(e)值时,基于鲜重的q(e)进行光强恒定培养显示出最高的虾青素生产率(22.8 mg L⁻¹ day⁻¹),这是一个高于先前报道的水平。此处报道的光强恒定操作表明,无论使用哪个参数来计算比光吸收速率,湖生红球藻通过光强恒定操作比提供恒定光强能获得更高效的虾青素生产。