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不同氮源及浓度下寇氏隐甲藻的生长动力学、脂肪酸组成及代谢活性变化

Growth kinetics, fatty acid composition and metabolic activity changes of Crypthecodinium cohnii under different nitrogen source and concentration.

作者信息

Safdar Waseem, Shamoon Muhammad, Zan Xinyi, Haider Junaid, Sharif Hafiz Rizwan, Shoaib Muhammad, Song Yuanda

机构信息

State Key Laboratory of Food Science & Technology, School of Food Science & Technology, Jiangnan University, Wuxi, 214122, Jiangsu, People's Republic of China.

Colin Ratledge Center for Microbial Lipids, School of Agriculture Engineering and Food Science, Shandong University of Technology, Zibo, 255049, Shandong, People's Republic of China.

出版信息

AMB Express. 2017 Dec;7(1):85. doi: 10.1186/s13568-017-0384-3. Epub 2017 Apr 20.

Abstract

The effect of varying concentrations of the nitrogen source on the growth kinetics, lipid accumulation, lipid and DHA productivity, and fatty acid composition of C. cohnii was elucidated. Growth of C. cohnii was in three distinct growth stages: cell growth, lipid accumulation and a final lipid turnover stage. Most of lipids were accumulated in lipid accumulation stage (48-120 h) though, slow growth rate was observed during this stage. NaNO supported significantly higher lipid content (26.9% of DCW), DHA content (0.99 g/L) and DHA yield (44.2 mg/g glucose) which were 2.5 to 3.3-folds higher than other N-sources. The maximum level of C16-C18 content (% TFA) was calculated as 43, 54 and 43% in lipid accumulation stage under low nitrogen (LN, 0.2 g/L), medium nitrogen (MN, 0.8 g/L) and high nitrogen (HN, 1.6 g/L) treatments, respectively. Cultures with LN, by down-regulating cell metabolism, trigger onset of lipogenic enzymes. Conversely, NAD/NADP-dependent isocitrate dehydrogenase (NAD/NADP-ICDH) were less active in LN than HN treatments which resulted in retardation of Kreb's Cycle and thereby divert citrate into cytoplasm as substrate for ATP-citrate lyase (ACL). Thereby, ACL and fatty acid synthase (FAS) were most active in lipid accumulation stage at LN treatments. Glucose-6-phosphate dehydrogenase (G6PDH) was more active than malic enzyme (ME) in lipid accumulation stage and showed higher activities in NaNO than other N-sources. This represents that G6PDH contributes more NADPH than ME in C. cohnii. However, G6PDH and ME together seems to play a dual role in offering NADPH for lipid biosynthesis. This concept of ME together with G6PD in offering NADPH for lipogenesis might be novel in this alga and needed to be explored.

摘要

研究了不同浓度氮源对科氏杜氏藻生长动力学、脂质积累、脂质和DHA生产力以及脂肪酸组成的影响。科氏杜氏藻的生长分为三个不同阶段:细胞生长、脂质积累和最终的脂质周转阶段。尽管在此阶段观察到生长速率较慢,但大多数脂质在脂质积累阶段(48-120小时)积累。NaNO支持显著更高的脂质含量(占干重的26.9%)、DHA含量(0.99 g/L)和DHA产量(44.2 mg/g葡萄糖),分别比其他氮源高2.5至3.3倍。在低氮(LN,0.2 g/L)、中氮(MN,0.8 g/L)和高氮(HN,1.6 g/L)处理下,脂质积累阶段C16-C18含量(% TFA)的最高水平分别计算为43%、54%和43%。低氮培养通过下调细胞代谢,触发脂肪生成酶的启动。相反,NAD/NADP依赖的异柠檬酸脱氢酶(NAD/NADP-ICDH)在低氮处理中比高氮处理中活性更低,这导致三羧酸循环受阻,从而将柠檬酸作为ATP-柠檬酸裂解酶(ACL)的底物转移到细胞质中。因此,ACL和脂肪酸合酶(FAS)在低氮处理的脂质积累阶段活性最高。在脂质积累阶段,葡萄糖-6-磷酸脱氢酶(G6PDH)比苹果酸酶(ME)更活跃,并且在NaNO中比其他氮源表现出更高的活性。这表明在科氏杜氏藻中,G6PDH比ME贡献更多的NADPH。然而,G6PDH和ME似乎共同在为脂质生物合成提供NADPH方面发挥双重作用。ME与G6PD共同为脂肪生成提供NADPH的这一概念在这种藻类中可能是新颖的,需要进一步探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/348b/5399014/bbec9b87fdc5/13568_2017_384_Fig1_HTML.jpg

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