Enhanced lipid accumulation and biodiesel production by oleaginous Chlorella protothecoides under a structured heterotrophic-iron (II) induction strategy

被引:0
作者
Yuqin Li
Jinxiu Mu
Di Chen
Hua Xu
Fangxin Han
机构
[1] Xiangtan University,School of Chemical Engineering
来源
World Journal of Microbiology and Biotechnology | 2015年 / 31卷
关键词
Heterotrophic-iron (II) induction; Lipid; Biodiesel; Proteomic;
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学科分类号
摘要
A structured heterotrophic-iron (II) induction (HII) strategy was proposed to enhance lipid accumulation in oleaginous Chlorella protothecoides. C. protothecoides subjected to heterotrophic-iron (II) induction achieved a favorable lipid accumulation up to 62 % and a maximum lipid productivity of 820.17 mg/day, representing 2.78-fold and 3.64-fold increase respectively over heterotrophic cultivation alone. HII-induced cells produced significantly elevated levels of 16:0, 18:1Δ9, and 18:2Δ9,12 fatty acids (over 90 %). The lipid contents and plant lipid-like fatty acid compositions exhibit the potential of HII-induced C. protothecoides as biodiesel feedstock. Furthermore, 31 altered proteins in HII-induced algal cells were successfully identified. These differentially expressed proteins were assigned into nine molecular function categories, including carbohydrate metabolism, lipid biosynthesis, Calvin cycle, cellular respiration, photosynthesis, energy and transport, protein biosynthesis, regulate and defense, and unclassified. Analysis using the Kyoto encyclopedia of genes and genomes and gene ontology annotation showed that malic enzyme, acyltransferase, and ACP were key metabolic checkpoints found to modulate lipid accumulation in C. protothecoides. The results provided possible applications of HII cultivation strategy in other microalgal species and new possibilities in developing genetic and metabolic engineering microalgae for desirable lipid productivity.
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页码:773 / 783
页数:10
相关论文
共 104 条
  • [1] Alves M(2011)The analysis of J Proteomics 74 1351-1363
  • [2] Moes S(2012) root proteome revealed cytoskeleton altered features due to long-term boron deficiency Bioresour Technol 119 429-432
  • [3] Jeno P(2007)Enhancement of lipid accumulation in Plant Physiol Biochem 45 260-261
  • [4] Pinheiro C(2010) by optimizing CO Limnol Oceanogr 55 714-724
  • [5] Passarinho J(2012) and Fe Fuel 94 270-273
  • [6] Ricardo CP(2007) levels for biodiesel production Biotechnol Adv 25 294-306
  • [7] Baky HHAE(2014)FIT, the FER-like iron deficiency induced transcription factor in Bioresour Technol 153 340-350
  • [8] El-Baroty GS(2009)A model of phytoplankton acclimation to iron-light colimitation J Biotechnol 141 31-41
  • [9] Bouaid A(2012)Fuel properties of microalgae ( Nature 488 329-335
  • [10] Martinez M(2013)) oil biodiesel and its blends with petroleum diesel J Proteomics 93 245-253