Le Thanh Tung, Corato Amélie, Gerards Thomas, Gérin Stéphanie, Remacle Claire, Franck Fabrice
Laboratory of Bioenergetics, InBios/PhytoSystems, Department of Life Sciences, University of Liège, Chemin de la Vallée 4, 4000 Liège, Belgium.
Research Institute for Marine Fisheries, 224 Le Lai Street, Ngo Quyen District, Hai Phong City 04000, Vietnam.
Plants (Basel). 2024 Apr 24;13(9):1182. doi: 10.3390/plants13091182.
Four strains of green microalgae (, , , and ) were compared to determine growth and pigment composition under photoautotrophic or heterotrophic conditions. Batch growth experiments were performed in multicultivators with online monitoring of optical density. For photoautotrophic growth, light-limited (CO-sufficient) growth was analyzed under different light intensities during the exponential and deceleration growth phases. The specific growth rate, measured during the exponential phase, and the maximal biomass productivity, measured during the deceleration phase, were not related to each other when different light intensities and different species were considered. This indicates species-dependent photoacclimation effects during cultivation time, which was confirmed by light-dependent changes in pigment content and composition when exponential and deceleration phases were compared. Except for , which does not grow on glucose, heterotrophic growth was promoted to similar extents by acetate and by glucose; however, these two substrates led to different pigment compositions. Weak light increased the pigment content during heterotrophy in the four species but was efficient in promoting growth only in . , and exhibited the best potential for heterotrophic biomass productivities, both on glucose and acetate, with carotenoid (lutein) content being the highest in the former.
对四株绿色微藻(、、、)进行了比较,以确定在光自养或异养条件下的生长情况和色素组成。在多培养器中进行分批生长实验,并在线监测光密度。对于光自养生长,在指数生长阶段和减速生长阶段,在不同光照强度下分析了光限制(二氧化碳充足)生长情况。当考虑不同光照强度和不同物种时,指数生长阶段测得的比生长速率和减速生长阶段测得的最大生物量生产力彼此无关。这表明在培养期间存在物种依赖的光适应效应,当比较指数生长阶段和减速生长阶段时,色素含量和组成的光依赖性变化证实了这一点。除了不能在葡萄糖上生长外,乙酸盐和葡萄糖对异养生长的促进程度相似;然而,这两种底物导致了不同的色素组成。弱光增加了这四个物种在异养过程中的色素含量,但仅对的生长促进有效。、和在葡萄糖和乙酸盐上都表现出了异养生物量生产力的最佳潜力,前者的类胡萝卜素(叶黄素)含量最高。