Department of Biology, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, 91779-48974, Iran.
Department of Chemistry, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, 91779-48974, Iran.
Bioprocess Biosyst Eng. 2024 Mar;47(3):341-353. doi: 10.1007/s00449-023-02964-4. Epub 2024 Jan 28.
Natural-based chemicals from microalgae such as lipids and pigments are the interests in industries and the bioeconomy. Cold-adapted Ankistrodesmus sp. OR119838, an isolated strain from Cheshmeh-Sabz Lake in northeastern Iran, was cultivated using a two-stage culture strategy under different environmental conditions. With doubling the nitrate concentration at the vegetative stage (170 mg/L) and increasing the light intensity (180 µmol photons/m/s) the highest specific growth rate (0.61 ± 0.02 per day) and biomass productivity (121.1 ± 7.2 mg/L/day) were observed at 25 °C. In the optimal growth condition Chl a and Chl b contents of Ankistrodesmus sp. OR119838 reached the highest amount (11.07 ± 0.14 and 11.23 ± 0.29 µg/mL, respectively) at 25 °C. While carotenoid content correlated negatively with optimum biomass productivity (- 0.708) and had the best value (12.23 ± 0.29 µg/mL) in nitrogen deficiency (42 mg/L) and intense light conditions (180 µmol photons/m/s) at 15 °C. Lipid content was increased with declined nitrate concentration (42 mg/L), high light intensity, and 180 µmol photons/m/s at 25 °C. The highest percentage of polyunsaturated fatty acids (71.94%) and α-linolenic acid (57.73 ± 6.63%) was observed in conditions with 170 mg/L nitrate concentration and low light intensity (40 µmol photons/m/ s) at the low temperature (15 °C). While saturated fatty acids content (43.27%) and palmitic acid reached the highest amount under 40 µmol photons/m/s, 42 mg/L nitrate at 25 °C (35.02 ± 5.33%). Biomass productivity of Ankistrodesmus sp. OR119838, as a cold-adapted strain, decreased by only 8.2% with a 10-degree decline in temperature. Therefore, this strain has good potential to grow in open ponds by tolerating the daily temperature fluctuations.
从伊朗东北部 Cheshmeh-Sabz 湖分离得到的耐冷鱼腥藻 Ankistrodesmus sp. OR119838,采用两段式培养策略,在不同的环境条件下进行培养。在营养生长阶段将硝酸盐浓度提高到 170mg/L,光照强度提高到 180μmol 光子/m/s,在 25℃下可获得最高的比生长速率(0.61±0.02 天-1)和生物量生产力(121.1±7.2mg/L/天)。在最佳生长条件下,鱼腥藻 Ankistrodesmus sp. OR119838 在 25℃时叶绿素 a 和叶绿素 b 的含量达到最高(分别为 11.07±0.14 和 11.23±0.29μg/mL)。类胡萝卜素含量与最佳生物量生产力呈负相关(-0.708),在氮饥饿(42mg/L)和强光(180μmol 光子/m/s)条件下 15℃时含量最高(12.23±0.29μg/mL)。在 25℃时,降低硝酸盐浓度(42mg/L)、提高光照强度和 180μmol 光子/m/s,可增加脂质含量。在 170mg/L 硝酸盐浓度和低光照强度(40μmol 光子/m/s)条件下,于低温(15℃)下可获得最高的多不饱和脂肪酸含量(71.94%)和α-亚麻酸含量(57.73±6.63%)。在 40μmol 光子/m/s、42mg/L 硝酸盐浓度下,于 25℃时饱和脂肪酸含量(43.27%)和棕榈酸含量最高(35.02±5.33%)。作为一种耐冷菌株,鱼腥藻 Ankistrodesmus sp. OR119838 的生物量生产力仅下降了 8.2%,随着温度降低 10℃。因此,该菌株具有良好的在开放池塘中生长的潜力,可以耐受每日的温度波动。