INNOVHUB-Stazioni Sperimentali per l'Industria - SSOG Division, Milan, Italy.
Bioresour Technol. 2012 Jun;114:567-72. doi: 10.1016/j.biortech.2012.02.123. Epub 2012 Mar 10.
Nannochloropsis sp. F&M-M24 and Tetraselmis suecica F&M-M33 were cultivated outdoors in Green Wall Panels under nutrient deficiency to stimulate oil synthesis. Under nitrogen deprivation, Nannochloropsis attained average biomass and lipid productivities of 9.9 and 6.5 g m(-2) day(-1), respectively. Starved Tetraselmis cultures achieved a biomass productivity of about 7.6 g m(-2) day(-1) and a lipid productivity of 1.7 g m(-2) day(-1). Lipids represented 39.1% and 68.5% of non-starved and starved Nannochloropsis biomass, respectively. Starvation did not increase lipid content in Tetraselmis biomass. Important differences in lipid classes and in fatty acid composition were observed under the different cultivation conditions for both microalgae.
在营养缺乏的情况下,将 Nannochloropsis sp. F&M-M24 和 Tetraselmis suecica F&M-M33 在绿墙板中进行户外培养,以刺激油脂合成。在氮饥饿条件下,Nannochloropsis 的平均生物量和脂质生产力分别达到 9.9 和 6.5 g/m2/天。饥饿的 Tetraselmis 培养物的生物量生产力约为 7.6 g/m2/天,脂质生产力为 1.7 g/m2/天。未饥饿和饥饿的 Nannochloropsis 生物质中脂质分别占 39.1%和 68.5%。饥饿并没有增加 Tetraselmis 生物质中的脂质含量。在这两种微藻的不同培养条件下,观察到了脂质类和脂肪酸组成的重要差异。