The ΔF/F m′-guided supply of nitrogen in culture medium facilitates sustainable production of TAG in Nannochloropsis oceanica IMET1

Abstract Background Triacylglycerol (TAG) from photosynthetic microalgae is a sustainable feedstock for biodiesel production. Physiological stress triggers microalgal TAG accumulation. However excessive physiological stress will impair the photosynthesis system seriously thus decreasing TAG producti...

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Main Authors: Jiao Liu, Changhong Yao, Yingying Meng, Xupeng Cao, Peichun Wu, Song Xue
Format: Article
Language:English
Published: BMC 2018-06-01
Series:Biotechnology for Biofuels
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13068-018-1168-y
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spelling doaj-8bc18c69483c42c486847c2fc5642dc62020-11-25T02:04:36ZengBMCBiotechnology for Biofuels1754-68342018-06-011111910.1186/s13068-018-1168-yThe ΔF/F m′-guided supply of nitrogen in culture medium facilitates sustainable production of TAG in Nannochloropsis oceanica IMET1Jiao Liu0Changhong Yao1Yingying Meng2Xupeng Cao3Peichun Wu4Song Xue5Marine Bioengineering Group, Dalian Institute of Chemical Physics, Chinese Academy of SciencesDepartment of Pharmaceutical & Biological Engineering, School of Chemical Engineering, Sichuan UniversityMarine Bioengineering Group, Dalian Institute of Chemical Physics, Chinese Academy of SciencesMarine Bioengineering Group, Dalian Institute of Chemical Physics, Chinese Academy of SciencesMarine Bioengineering Group, Dalian Institute of Chemical Physics, Chinese Academy of SciencesMarine Bioengineering Group, Dalian Institute of Chemical Physics, Chinese Academy of SciencesAbstract Background Triacylglycerol (TAG) from photosynthetic microalgae is a sustainable feedstock for biodiesel production. Physiological stress triggers microalgal TAG accumulation. However excessive physiological stress will impair the photosynthesis system seriously thus decreasing TAG productivity because of the low biomass production. Hence, it is critical to quantitatively and timely monitor the degree of the stress while the microalgal cells growing so that the optimal TAG productivity can be obtained. Results The lack of an on-line monitored indicator has limited our ability to gain knowledge of cellular “health status” information regarding high TAG productivity. Therefore, to monitor the degree of nitrogen stress of the cells, we investigated the correlation between the photosynthetic system II (PS II) quantum yield and the degree of stress based on the high relevancy between photosynthetic reduction and nitrogen stress-induced TAG accumulation in microalgal cells. ΔF/F m′, which is the chlorophyll fluorescence parameter that reflects the effective capability of PS II, was identified to be a critical factor to indicate the degree of stress of the cells. In addition, the concept of a nitrogen stress index has been defined to quantify the degree of stress. Based on this index and by monitoring ΔF/F m′ and guiding the supply of nitrogen in culture medium to maintain a stable degree of stress, a stable and efficient semi-continuous process for TAG production has been established. Conclusion The results indicate that the semi-continuous cultivation process with a controlled degree of stress by monitoring the ΔF/F m′ indicator will have a significant impact on microalgal TAG production, especially for the outdoor controllable cultivation of microalgae on a large scale.http://link.springer.com/article/10.1186/s13068-018-1168-ySemi-continuous cultivationΔF/F m ′ monitoringNitrogen stress indexMicroalgae
collection DOAJ
language English
format Article
sources DOAJ
author Jiao Liu
Changhong Yao
Yingying Meng
Xupeng Cao
Peichun Wu
Song Xue
spellingShingle Jiao Liu
Changhong Yao
Yingying Meng
Xupeng Cao
Peichun Wu
Song Xue
The ΔF/F m′-guided supply of nitrogen in culture medium facilitates sustainable production of TAG in Nannochloropsis oceanica IMET1
Biotechnology for Biofuels
Semi-continuous cultivation
ΔF/F m ′ monitoring
Nitrogen stress index
Microalgae
author_facet Jiao Liu
Changhong Yao
Yingying Meng
Xupeng Cao
Peichun Wu
Song Xue
author_sort Jiao Liu
title The ΔF/F m′-guided supply of nitrogen in culture medium facilitates sustainable production of TAG in Nannochloropsis oceanica IMET1
title_short The ΔF/F m′-guided supply of nitrogen in culture medium facilitates sustainable production of TAG in Nannochloropsis oceanica IMET1
title_full The ΔF/F m′-guided supply of nitrogen in culture medium facilitates sustainable production of TAG in Nannochloropsis oceanica IMET1
title_fullStr The ΔF/F m′-guided supply of nitrogen in culture medium facilitates sustainable production of TAG in Nannochloropsis oceanica IMET1
title_full_unstemmed The ΔF/F m′-guided supply of nitrogen in culture medium facilitates sustainable production of TAG in Nannochloropsis oceanica IMET1
title_sort δf/f m′-guided supply of nitrogen in culture medium facilitates sustainable production of tag in nannochloropsis oceanica imet1
publisher BMC
series Biotechnology for Biofuels
issn 1754-6834
publishDate 2018-06-01
description Abstract Background Triacylglycerol (TAG) from photosynthetic microalgae is a sustainable feedstock for biodiesel production. Physiological stress triggers microalgal TAG accumulation. However excessive physiological stress will impair the photosynthesis system seriously thus decreasing TAG productivity because of the low biomass production. Hence, it is critical to quantitatively and timely monitor the degree of the stress while the microalgal cells growing so that the optimal TAG productivity can be obtained. Results The lack of an on-line monitored indicator has limited our ability to gain knowledge of cellular “health status” information regarding high TAG productivity. Therefore, to monitor the degree of nitrogen stress of the cells, we investigated the correlation between the photosynthetic system II (PS II) quantum yield and the degree of stress based on the high relevancy between photosynthetic reduction and nitrogen stress-induced TAG accumulation in microalgal cells. ΔF/F m′, which is the chlorophyll fluorescence parameter that reflects the effective capability of PS II, was identified to be a critical factor to indicate the degree of stress of the cells. In addition, the concept of a nitrogen stress index has been defined to quantify the degree of stress. Based on this index and by monitoring ΔF/F m′ and guiding the supply of nitrogen in culture medium to maintain a stable degree of stress, a stable and efficient semi-continuous process for TAG production has been established. Conclusion The results indicate that the semi-continuous cultivation process with a controlled degree of stress by monitoring the ΔF/F m′ indicator will have a significant impact on microalgal TAG production, especially for the outdoor controllable cultivation of microalgae on a large scale.
topic Semi-continuous cultivation
ΔF/F m ′ monitoring
Nitrogen stress index
Microalgae
url http://link.springer.com/article/10.1186/s13068-018-1168-y
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