The combined effect of nitrogen deprivation and overexpression of malic enzyme gene on growth and lipid accumulation in Phaeodactylum tricornutum

被引:0
作者
Ruihao Zhang
Baohua Zhu
Changchao Tu
Yun Li
Yan Zhao
Kehou Pan
机构
[1] Ocean University of China,Key Laboratory of Mariculture, Ministry of Education
[2] Ocean University of China,College of Marine Life Sciences
[3] Qingdao National Laboratory for Marine Science and Technology,Function Laboratory for Marine Fisheries Science and Food Production Processes
来源
Journal of Applied Phycology | 2021年 / 33卷
关键词
Overexpression of malic enzyme gene; Nitrogen deprivation; Lipid productivity; Algal growth; Diatom;
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学科分类号
摘要
Oleaginous microalgae have great application potential in the field of bioenergy. Increasing the biomass and lipid productivity of microalgae is beneficial to realize such potential. In this study, to explore the effect of overexpression of malic enzyme (ME) gene on the growth and lipid productivity in the diatom Phaeodactylum tricornutum, the transformant (overexpression of ME) was cultivated under nitrogen deprivation and normal condition. The biomass of the transformant was higher significantly than that of the wild type (WT) both under nitrogen deprivation and normal condition. This suggested that overexpression of malic enzyme gene stimulated the growth in P. tricornutum. The lipid content of the transformant under normal condition increased significantly compared with that of WT under nitrogen deprivation. The transformant strain exhibited further increase in lipid accumulation subjected to nitrogen deprivation. Upon nitrogen deprivation, lipid productivity of the transformant was significantly increased by 87.02% compared with that of the WT strain. These findings suggested that ME overexpression increased the production of NADPH, further stimulated the growth and lipid synthesis, resulting in enhancing lipid productivity in the transformant under nitrogen deprivation. This ME overexpression-nitrogen deprivation cultivation pattern provided a new route to enhance biodiesel production in microalgae.
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页码:3637 / 3645
页数:8
相关论文
共 229 条
[1]  
Alipanah L(2015)Whole-cell response to nitrogen deprivation in the diatom J Exp Bot 66 6281-6296
[2]  
Rohloff J(2007)Biodiesel from microalgae Biotechnol Adv 25 294-306
[3]  
Winge P(2010)Visualizing “green oil” in live algal cells J Biosci Bioeng 109 98-201
[4]  
Bones AM(2019) microalgae as a rich source of omega-3 oil: progress in lipid induction techniques towards industry adoption Food Chem 297 4831-668
[5]  
Brembu T(2014)Genome engineering empowers the diatom Nat Commun 5 637-890
[6]  
Chisti Y(2017) for biotechnology Clean Technol Envir 19 875-202
[7]  
Cooper MS(2019)A review of biodiesel production from microalgae Aquacult Int 27 193-275
[8]  
Hardin WR(2015)Nutritional value and production performance of the rotifer Hidrobiológica 25 272-31369
[9]  
Petersen TW(1997) Müller, 1786 cultured with different feeds at commercial scale Nature 387 31363-507
[10]  
Cattolico RA(2013) and J Biol Chem 288 493-693