Zhang Dongmei, Xue Shengzhang, Sun Zhongliang, Liang Kehong, Wang Lu, Zhang Qinghua, Cong Wei
National Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, China.
Bioprocess Biosyst Eng. 2014 Oct;37(10):2073-82. doi: 10.1007/s00449-014-1185-6. Epub 2014 Apr 13.
Microalgal lipid induction through nitrogen stress often suffers from a contradiction between biomass productivity and lipid content, i.e., either high biomass productivity with low lipid content or vice versa. A two-stage nitrogen-replete and nitrogen-deplete (NR-ND) culture was suggested to be an option to attain high lipid productivity. In this study, the effects of culture conditions and modes on biomass productivity and lipid productivity of Nannochloropsis sp. in the two stages were comprehensively investigated. The optimal culture conditions for the two stages, aiming to high biomass productivity and lipid productivity respectively, were consistent, i.e., CO2 content in aeration (1 %), phosphorus concentration in medium (181 μmol/L), incident light intensity (150 μE/(m(2)s)), temperature (25 °C). Different culture modes of the two stages were compared. The overall lipid productivity of the two-stage continuous-batch mode achieved 0.123 g/(L day), which was 60.3, 48.2, 34.9 and 13.5 % higher than that of single nitrogen-replete batch, single nitrogen-limited batch, continuous nitrogen-replete culture and two-stage batch-batch culture, respectively, and also higher than most reported values. This contribution provides fundamental data for the two-stage NR-ND cultivation process design of Nannochloropsis sp.
通过氮胁迫诱导微藻脂质合成往往面临生物量生产力与脂质含量之间的矛盾,即要么生物量生产力高但脂质含量低,要么反之。有人提出采用两阶段富氮和缺氮(NR-ND)培养作为实现高脂质生产力的一种选择。在本研究中,全面考察了培养条件和培养模式对两阶段中微拟球藻生物量生产力和脂质生产力的影响。分别以高生物量生产力和高脂质生产力为目标的两阶段最佳培养条件是一致的,即通气中的二氧化碳含量(1%)、培养基中的磷浓度(181 μmol/L)、入射光强(150 μE/(m²·s))、温度(25℃)。比较了两阶段的不同培养模式。两阶段连续分批模式的总脂质生产力达到0.123 g/(L·天),分别比单阶段富氮分批培养、单阶段氮限制分批培养、连续富氮培养和两阶段分批-分批培养高60.3%、48.2%、34.9%和13.5%,也高于大多数已报道的值。本研究为微拟球藻两阶段NR-ND培养工艺设计提供了基础数据。