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通过最低限度的氮供应提高小球藻A2中性脂质的生产力。

Improved Productivity of Neutral Lipids in Chlorella sp. A2 by Minimal Nitrogen Supply.

作者信息

Zhu Junying, Chen Weixian, Chen Hui, Zhang Xin, He Chenliu, Rong Junfeng, Wang Qiang

机构信息

SINOPEC Research Institute of Petroleum Processing Beijing, China.

Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of SciencesWuhan, China; University of Chinese Academy of SciencesBeijing, China.

出版信息

Front Microbiol. 2016 Apr 21;7:557. doi: 10.3389/fmicb.2016.00557. eCollection 2016.

Abstract

Nitrogen starvation is an efficient environmental pressure for increasing lipid accumulation in microalgae, but it could also significantly lower the biomass productivity, resulting in lower lipid productivity. In this study, green alga Chlorella sp. A2 was cultivated by using a minimal nitrogen supply strategy under both laboratory and outdoor cultivation conditions to evaluate biomass accumulation and lipid production. Results showed that minimal nitrogen supply could promote neutral lipid accumulation of Chlorella sp. A2 without a significant negative effect on cell growth. In laboratory cultivation mode, alga cells cultured with 18 mg L(-1) d(-1) urea addition could generate 74 and 416% (w/w) more neutral lipid productivity than cells cultured with regular BG11 and nitrogen starvation media, respectively. In outdoor cultivation mode, lipid productivity of cells cultured with 18 mg L(-1) d(-1) urea addition is approximately 10 and 88% higher than the one with regular BG11 and nitrogen starvation media, respectively. Notably, the results of photosynthetic analysis clarified that minimal nitrogen supply reduced the loss of photosynthetic capacity to keep CO2 fixation during photosynthesis for biomass production. The minimal nitrogen supply strategy for microalgae cultivation could promote neutral lipid accumulation without a significant negative effect on cell growth, resulting in a significant improvement in the lipid productivity.

摘要

氮饥饿是一种促使微藻中脂质积累增加的有效环境压力,但它也可能显著降低生物量生产力,从而导致脂质生产力降低。在本研究中,绿藻小球藻A2在实验室和室外培养条件下均采用低氮供应策略进行培养,以评估生物量积累和脂质产量。结果表明,低氮供应可促进小球藻A2中性脂质的积累,且对细胞生长无显著负面影响。在实验室培养模式下,添加18 mg L(-1) d(-1)尿素培养的藻细胞分别比用常规BG11和氮饥饿培养基培养的细胞产生的中性脂质生产力高74%和416%(w/w)。在室外培养模式下,添加18 mg L(-1) d(-1)尿素培养的细胞脂质生产力分别比用常规BG11和氮饥饿培养基培养的细胞高约10%和88%。值得注意的是,光合分析结果表明,低氮供应减少了光合作用过程中用于生物量生产的二氧化碳固定时光合能力的损失。微藻培养的低氮供应策略可促进中性脂质积累,且对细胞生长无显著负面影响,从而显著提高脂质生产力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/956c/4838625/4d17c35f0e16/fmicb-07-00557-g0001.jpg

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