College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266100, China.
College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266100, China; Key Laboratory of Marine Environmental and Ecology, Ministry of Education, Ocean University of China, Qingdao, 266100, China.
Chemosphere. 2021 Sep;278:130435. doi: 10.1016/j.chemosphere.2021.130435. Epub 2021 Mar 31.
The coordination between photosynthesis and aerobic respiration under mixotrophic cultivation can make a difference to the growth and biochemical composition of microalgae. However, the response of carbon metabolism to carbon source composition under mixotrophic microalgae cultivation has not been well studied. In this study, the synergistic effects of inorganic carbon (IC) and organic carbon (OC) supply on the growth and carbon metabolism of Chlorella vulgaris under mixotrophic cultivation were investigated. The increase of the proportion of HCO had a positive effect on the expression of ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO), which promoted the biomass production and carbon fixing. The activity of citrate synthase was attenuated with the increase of IC/OC ratio, indicating that the energy needed for the biomass production in groups with high IC/OC ratio was contributed by photoreaction. Biochemical analysis showed that CO was more efficient than HCO for carbohydrate and lipid accumulation of Chlorella vulgaris, and the highest amount of carbohydrate (30.2%) and lipid (35.8%) was recorded with the combined use of CO and glucose. The results could provide a new perspective on carbon metabolism and enzyme regulation in mixotrophic microalgae cultivation.
在混合营养培养下,光合作用和需氧呼吸的协调可以影响微藻的生长和生化组成。然而,混合营养微藻培养下碳代谢对碳源组成的响应尚未得到很好的研究。本研究探讨了无机碳(IC)和有机碳(OC)供应的协同作用对混合营养培养下普通小球藻生长和碳代谢的影响。HCO3-比例的增加对核酮糖-1,5-二磷酸羧化酶/加氧酶(RuBisCO)的表达有积极影响,促进了生物量的产生和碳固定。随着 IC/OC 比值的增加,柠檬酸合酶的活性减弱,表明高 IC/OC 比值组的生物量生产所需的能量来自光反应。生化分析表明,CO 比 HCO3-更有利于普通小球藻的碳水化合物和脂质积累,当 CO 和葡萄糖联合使用时,记录到最高的碳水化合物(30.2%)和脂质(35.8%)含量。研究结果为混合营养微藻培养中的碳代谢和酶调控提供了新的视角。