Faculty of Science and Arts, Department of Molecular Biology and Genetics, Mehmet Akif Ersoy University, Burdur, Turkey.
Prep Biochem Biotechnol. 2020;50(1):98-105. doi: 10.1080/10826068.2019.1697884. Epub 2019 Dec 6.
Nitrogen, being one of the building blocks of biomacromolecules, is an important nutrient for microalgae growth. Nitrogen availability alters the growth and biochemical composition of microalgae. We investigated the effects of different nitrogen concentrations on specific growth rate (SGR), biomass productivity (BP), total protein and lipid content and amino acid and fatty acid composition of . Nitrogen deficiency increased algal growth and changed the lipid amount and composition. The maximum growth and BP were detected in 75% N-medium. The highest total protein and lipid amount were detected in 50% N- and 75% N-media, respectively. Amino acid and fatty acid compositions of samples varied widely depending on the nutrient concentrations. The amount of unsaturated fatty acid (USFAs) was higher than saturated fatty acid (SFAs) and Linolenic acid percentage is higher than the limit of European standards in all media. The data reported here provide important contributions how nitrogen scarcity and abundance affect the growth and biochemical content of microalgae and this information can further be utilized in culture optimization in studies aimed at microalgae production for biofuels.
氮是生物大分子的组成部分之一,是微藻生长的重要营养物质。氮的供应会改变微藻的生长和生物化学组成。我们研究了不同氮浓度对特定生长率(SGR)、生物量生产力(BP)、总蛋白和脂质含量以及氨基酸和脂肪酸组成的影响。氮缺乏会促进藻类生长并改变脂质的含量和组成。在 75% N 培养基中检测到最大的生长和 BP。在 50% N 和 75% N 培养基中分别检测到最高的总蛋白和脂质含量。样品的氨基酸和脂肪酸组成因营养浓度而异。不饱和脂肪酸(USFAs)的含量高于饱和脂肪酸(SFAs),并且所有培养基中的亚麻酸百分比均高于欧洲标准的限制。这里报告的数据提供了关于氮的缺乏和丰度如何影响微藻的生长和生物化学含量的重要贡献,这些信息可以进一步用于以微藻生产生物燃料为目的的培养优化研究。