Bernard Eve, Guéguen Céline
Département de Chimie, Université de Sherbrooke, 2500 Boulevard de l'Université, Sherbrooke, QC J1K 2R1, Canada.
Biomolecules. 2022 Jun 7;12(6):795. doi: 10.3390/biom12060795.
Industrial development and urbanization has led to the diverse presence of metals in wastewater that are often improperly treated. The microalgae can tolerate high concentrations of metal via the excretion of organic metabolites, including phenolics. This study aims to evaluate how carbon amendment stimulates phenolic compound production by . The number, relative intensity and molecular composition of the phenolic compounds were significantly different between each of four carbon amended cultures (i.e., glutamic acid, malic acid, glucose, reduced glutathione) during the log phase. Phenolic compounds were mainly produced during the minimum growth rate, likely a response to stressful conditions. A better understanding of phenolic compounds production by and the impact of growth conditions will help identify conditions that favor certain phenolic compounds for dietary and metal chelation applications.
工业发展和城市化导致废水中存在多种金属,而这些金属往往未得到妥善处理。微藻能够通过分泌包括酚类在内的有机代谢物来耐受高浓度金属。本研究旨在评估碳添加如何刺激微藻产生酚类化合物。在对数期,四种添加碳的培养物(即谷氨酸、苹果酸、葡萄糖、还原型谷胱甘肽)中的酚类化合物数量、相对强度和分子组成均存在显著差异。酚类化合物主要在最低生长速率期间产生,这可能是对压力条件的一种反应。更好地了解微藻产生酚类化合物的情况以及生长条件的影响,将有助于确定有利于某些酚类化合物用于饮食和金属螯合应用的条件。