Tang Qing-Qing, Fang Zhi-Guo, Ji Wen-Wen, Xia Hui-Long
Huan Jing Ke Xue. 2014 Nov;35(11):4212-7.
Effect of light quality, including red light, blue light, white light, red and blue mixing light with ratios of 8: 1, 8:2 and 8 : 3, on the growth characteristics and biochenmical composition of Chlorella pyrenoidosa was investigated based on light emitting diode (LED). Results showed that Chlorella pyrenoidosa grew best under blue light, and the optical density, specific growth rate and biomass of Chlorella pyrenoidosa was about 2.4, 0.10 d(-1) and 0.64 g x L(-1), respectively, while the optical density of Chlorella pyrenoidosa was between 1.0 and 1.7, the specific growth rate was between 0.07-0.10 d(-1) and the biomass was between 0.27 and 0.38 g x L(-1) under other light quality after 30 days of cultivation. Under blue light, the optical density, specific growth rate and biomass of Chlorella pyrenoidosa was approximately 2.05 times, 1.33 times and 2.06 times higher than red light, respectively. Moreover, red and blue mixing light was conducive to the synthesis of chlorophyll a and β-carotene of Chlorella pyrenoidosa, and blue light could promote the synthesis of chlorophyll b. Chlorophyll a and carotenoids content of Chlorella pyrenoidosa was 13.5 mg xg(-1) and 5.8 mg x g(-1) respectively under red and blue mixing light with a ratio of 8:1, while it was 8.4 mg x g(-1) and 3.6 mg x g(-1) respectively under blue light. Red and blue mixing light was more conducive to protein and total lipid content per dry cell of Chlorella pyrenoidosa. Protein and total lipid content was 489.3 mg x g(-1) and 311.2 mg x g(-1) under red and blue mixing light with a ratio of 8 : 3, while it was 400.9 mg x g(-1) and 231.9 mg x g(-1) respectively under blue light.
基于发光二极管(LED),研究了红光、蓝光、白光以及比例为8:1、8:2和8:3的红蓝光混合光等光质对小球藻生长特性和生化组成的影响。结果表明,小球藻在蓝光下生长最佳,培养30天后,小球藻的光密度、比生长速率和生物量分别约为2.4、0.10 d⁻¹和0.64 g·L⁻¹,而在其他光质下,小球藻的光密度在1.0至1.7之间,比生长速率在0.07 - 0.10 d⁻¹之间,生物量在0.27至0.38 g·L⁻¹之间。在蓝光下,小球藻的光密度、比生长速率和生物量分别比红光高约2.05倍、1.33倍和2.06倍。此外,红蓝光混合光有利于小球藻叶绿素a和β-胡萝卜素的合成,蓝光可促进叶绿素b的合成。在比例为8:1的红蓝光混合光下,小球藻的叶绿素a和类胡萝卜素含量分别为13.5 mg·g⁻¹和5.8 mg·g⁻¹,而在蓝光下分别为8.4 mg·g⁻¹和3.6 mg·g⁻¹。红蓝光混合光更有利于小球藻每干细胞的蛋白质和总脂含量。在比例为8:3的红蓝光混合光下,蛋白质和总脂含量分别为489.3 mg·g⁻¹和311.2 mg·g⁻¹,而在蓝光下分别为400.9 mg·g⁻¹和231.9 mg·g⁻¹。