期刊论文详细信息
Biotechnology for Biofuels
Integrated lipase production and in situ biodiesel synthesis in a recombinant Pichia pastoris yeast: an efficient dual biocatalytic system composed of cell free enzymes and whole cell catalysts
Jinyong Yan1  Xianliang Zheng1  Lei Du1  Shengying Li1 
[1] Key Laboratory of Biofuels, Shandong Provincial Key Laboratory of Energy Genetics, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, No. 189 Songling Road, Qingdao, Shandong 266101, China
关键词: Waste cooking oils;    Thermomyces lanuginosus;    Pichia pastoris;    Lipase;    Integrated biodiesel production;   
Others  :  792768
DOI  :  10.1186/1754-6834-7-55
 received in 2013-12-20, accepted in 2014-03-20,  发布年份 2014
PDF
【 摘 要 】

Background

Lipase-catalyzed biotransformation of acylglycerides or fatty acids into biodiesel via immobilized enzymes or whole cell catalysts has been considered as one of the most promising methods to produce renewable and environmentally friendly alternative liquid fuels, thus being extensively studied so far. In all previously pursued approaches, however, lipase enzymes are prepared in an independent process separated from enzymatic biodiesel production, which would unavoidably increase the cost and energy consumption during industrial manufacture of this cost-sensitive energy product. Therefore, there is an urgent need to develop novel cost-effective biocatalysts and biocatalytic processes with genuine industrial feasibility.

Result

Inspired by the consolidated bioprocessing of lignocellulose to generate bioethanol, an integrated process with coupled lipase production and in situ biodiesel synthesis in a recombinant P. pastoris yeast was developed in this study. The novel and efficient dual biocatalytic system based on Thermomyces lanuginosus lipase took advantage of both cell free enzymes and whole cell catalysts. The extracellular and intracellular lipases of growing yeast cells were simultaneously utilized to produce biodiesel from waste cooking oils in situ and in one pot. This integrated system effectively achieved 58% and 72% biodiesel yield via concurrent esterified-transesterified methanolysis and stepwise hydrolysis-esterification at 3:1 molar ratio between methanol and waste cooking oils, respectively. Further increasing the molar ratio of methanol to waste cooking oils to 6:1 led to an 87% biodiesel yield using the stepwise strategy. Both water tolerance and methanol tolerance of this novel system were found to be significantly improved compared to previous non-integrated biodiesel production processes using separately prepared immobilized enzymes or whole cell catalysts.

Conclusion

We have proposed a new concept of integrated biodiesel production. This integrated system couples lipase production to lipase-catalyzed biodiesel synthesis in one pot. The proof-of-concept was established through construction of a recombinant P. pastoris yeast strain that was able to grow, overexpress T. lanuginosus lipase, and efficiently catalyze biodiesel production from fed waste cooking oils and methanol simultaneously. This simplified single-step process represents a significant advance toward achieving economical production of biodiesel at industrial scale via a ‘green’ biocatalytic route.

【 授权许可】

   
2014 Yan et al.; licensee BioMed Central Ltd.

【 预 览 】
附件列表
Files Size Format View
20140705035724749.pdf 879KB PDF download
Figure 4. 36KB Image download
Figure 3. 95KB Image download
Figure 2. 56KB Image download
Figure 1. 48KB Image download
【 图 表 】

Figure 1.

Figure 2.

Figure 3.

Figure 4.

【 参考文献 】
  • [1]Lam MK, Lee KT, Mohamed AR: Homogeneous, heterogeneous and enzymatic catalysis for transesterification of high free fatty acid oil (waste cooking oil) to biodiesel: a review. Biotechnol Adv 2010, 28:500-518.
  • [2]Serrano-Ruiz JC, Ramos-Fernandez EV, Sepulveda-Escribano A: From biodiesel and bioethanol to liquid hydrocarbon fuels: new hydrotreating and advanced microbial technologies. Energy Environ Sci 2012, 5:5638-5652.
  • [3]Hernández-Martín E, Otero C: Different enzyme requirements for the synthesis of biodiesel: Novozym 435 and Lipozyme TLIM. Bioresour Technol 2008, 99:277-286.
  • [4]Balasubramaniam B, Perumal AS, Jayaraman J, Mani J, Ramanujam P: Comparative analysis for the production of fatty acid alkyl esterase using whole cell biocatalyst and purified enzyme from Rhizopus oryzae on waste cooking oil (sunflower oil). Waste Manage 2012, 32:1539-1547.
  • [5]Takaya T, Koda R, Adachi D, Nakashima K, Wada J, Bogaki T, Ogino C, Kondo A: Highly efficient biodiesel production by a whole-cell biocatalyst employing a system with high lipase expression in Aspergillus oryzae. Appl Microbiol Biotechnol 2011, 90:1171-1177.
  • [6]Yan JY, Li AT, Xu Y, Ngo Thao PN, Phua SC, Li Z: Efficient production of biodiesel from waste grease: one-pot esterification and transesterification with tandem lipases. Bioresour Technol 2012, 123:332-337.
  • [7]Matsumoto T, Fukuda H, Ueda M, Tanaka A, Kondo A: Construction of yeast strains with high cell surface lipase activity by using novel display systems based on the Flo1p flocculation functional domain. Appl Environ Microbiol 2002, 68:4517-4522.
  • [8]Jin Z, Han SY, Zhang L, Zheng SP, Wang Y, Lin Y: Combined utilization of lipase-displaying Pichia pastoris whole-cell biocatalysts to improve biodiesel production in co-solvent media. Bioresour Technol 2013, 130:102-109.
  • [9]Matsumoto T, Takahashi S, Kaieda M, Ueda M, Tanaka A, Fukuda H, Kondo A: Yeast whole-cell biocatalyst constructed by intracellular overproduction of Rhizopus oryzae lipase is applicable to biodiesel fuel production. Appl Microbiol Biotechnol 2001, 57:515-520.
  • [10]Yan JY, Zheng XL, Li SY: A novel and robust recombinant Pichia pastoris yeast whole cell biocatalyst with intracellular overexpression of a Thermomyces lanuginosus lipase: preparation, characterization and application in biodiesel production. Bioresour Technol 2014, 151:43-48.
  • [11]Lynd LR, van Zyl WH, McBride JE, Laser M: Consolidated bioprocessing of cellulosic biomass: an update. Curr Opin Biotechnol 2005, 16:577-583.
  • [12]Fernandez-Lafuente R: Lipase from Thermomyces lanuginosus: uses and prospects as an industrial biocatalyst. J Mol Catal B Enzym 2010, 62:197-212.
  • [13]Patrick SM, Fazenda ML, McNeil B, Harvey LM: Heterologous protein production using the Pichia pastoris expression system. Yeast 2005, 22:249-270.
  • [14]Yan JY, Yang JK, Xu L, Yan YJ: Gene cloning, overexpression and characterization of a novel organic solvent tolerant and thermostable lipase from Galactomyces geotrichum Y05. J Mol Catal B Enzym 2007, 49:28-35.
  • [15]Echim C, Verhé R, Greyt WD, Stevens C: Production of biodiesel from side-stream refining products. Energy Environ Sci 2009, 2:1131-1141.
  • [16]Rodrigues RC, Pessela BCC, Volpato G, Fernandez-Lafuente R, Guisan JM, Ayub MAZ: Two step ethanolysis: a simple and efficient way to improve the enzymatic biodiesel synthesis catalyzed by an immobilized–stabilized lipase from Thermomyces lanuginosus. Process Biochem 2010, 45:1268-1273.
  • [17]De Diego T, Manjón A, Lozano P, Vaultier M, Iborra J: An efficient activity ionic liquid-enzyme system for biodiesel production. Green Chem 2011, 13:444-451.
  • [18]Meng YH, Wang GL, Yang N, Zhou ZQ, Li YJ, Liang XM, Chen JN, Li Y, Li JL: Two-step synthesis of fatty acid ethyl ester from soybean oil catalyzed by Yarrowia lipolytica lipase. Biotechnol Biofuels 2011, 4:6-14. BioMed Central Full Text
  • [19]Rahman TMM, Wu JC, Fen NM, Shi MYL: Two-step lipase catalysis for production of biodiesel. Biochem Eng J 2010, 49:207-212.
  • [20]Li Z, Li X, Wang Y, Wang YD, Wang F, Jiang JC: Expression and characterization of recombinant Rhizopus oryzae lipase for enzymatic biodiesel production. Bioresour Technol 2011, 102:9810-9813.
  • [21]Guan FF, Peng P, Wang GL, Yin T, Peng Q, Huang JJ, Guan GH, Li Y: Combination of two lipases more efficiently catalyzes methanolysis of soybean oil for biodiesel production in aqueous medium. Process Biochem 2010, 45:1677-1682.
  • [22]Yan JY, Yan YJ, Liu SX, Hu J, Wang GL: Preparation of cross-linked lipase-coated micro-crystals for biodiesel production from waste cooking oil. Bioresour Technol 2011, 102:4755-4758.
  • [23]Li AT, Ngo Thao PN, Yan JY, Tian KY, Li Z: Whole-cell based solvent-free system for one-pot production of biodiesel from waste grease. Bioresour Technol 2012, 114:725-729.
  文献评价指标  
  下载次数:65次 浏览次数:29次