Potential of industrial biotechnology with cyanobacteria and eukaryotic microalgae

被引:279
|
作者
Wijffels, Rene H. [1 ]
Kruse, Olaf [2 ]
Hellingwerf, Klaas J. [3 ]
机构
[1] Wageningen Univ, NL-6700 EV Wageningen, Netherlands
[2] Univ Bielefeld, Dep Biol, Ctr Biotechnol CeBiTec, D-33615 Bielefeld, Germany
[3] Univ Amsterdam, Microbiol Lab, Swammerdam Inst Life Sci, NL-1090 GE Amsterdam, Netherlands
关键词
BOTRYOCOCCUS-BRAUNII; PHOTOSYNTHETIC PRODUCTION; GENETIC-TRANSFORMATION; CARBON-DIOXIDE; CHLAMYDOMONAS; BIOFUELS; FOOD; CELL; ACCUMULATION; EXPRESSION;
D O I
10.1016/j.copbio.2013.04.004
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Both cyanobacteria and eukaryotic microalgae are promising organisms for sustainable production of bulk products such as food, feed, materials, chemicals and fuels. In this review we will summarize the potential and current biotechnological developments.Cyanobacteria are promising host organisms for the production of small molecules that can be secreted such as ethanol, butanol, fatty acids and other organic acids. Eukaryotic microalgae are interesting for products for which cellular storage is important such as proteins, lipids, starch and alkanes.For the development of new and promising lines of production, strains of both cyanobacteria and eukaryotic microalgae have to be improved. Transformation systems have been much better developed in cyanobacteria. However, several products would be preferably produced with eukaryotic microalgae. In the case of cyanobacteria a synthetic-systems biology approach has a great potential to exploit cyanobacteria as cell factories. For eukaryotic microalgae transformation systems need to be further developed. A promising strategy is transformation of heterologous (prokaryotic and eukaryotic) genes in established eukaryotic hosts such as Chlamydomonas reinhardtii.Experimental outdoor pilots under containment for the production of genetically modified cyanobacteria and microalgae are in progress. For full scale production risks of release of genetically modified organisms need to be assessed.
引用
收藏
页码:405 / 413
页数:9
相关论文
共 50 条
  • [31] Applications of cyanobacteria in biotechnology
    Abed, R. M. M.
    Dobretsov, S.
    Sudesh, K.
    [J]. JOURNAL OF APPLIED MICROBIOLOGY, 2009, 106 (01) : 1 - 12
  • [32] Energy biotechnology with cyanobacteria
    Angermayr, S. Andreas
    Hellingwerf, Klaas J.
    Lindblad, Peter
    de Mattos, M. Joost Teixeira
    [J]. CURRENT OPINION IN BIOTECHNOLOGY, 2009, 20 (03) : 257 - 263
  • [33] BIOTECHNOLOGY Microalgae crop
    O'Driscoll, Cath
    [J]. CHEMISTRY & INDUSTRY, 2018, 82 (09) : 8 - 8
  • [34] REVIEW: MICROALGAE BIOTECHNOLOGY
    Bertoldi, Fabiano Cleber
    Sant'Anna, Ernani
    Oliveira, Jorge Luiz Barcelos
    [J]. BOLETIM DO CENTRO DE PESQUISA DE PROCESSAMENTO DE ALIMENTOS, 2008, 26 (01): : 9 - 20
  • [35] Soil microalgae and cyanobacteria: the biotechnological potential in the maintenance of soil fertility and health
    Abinandan, Sudharsanam
    Subashchandrabose, Suresh R.
    Venkateswarlu, Kadiyala
    Megharaj, Mallavarapu
    [J]. CRITICAL REVIEWS IN BIOTECHNOLOGY, 2019, 39 (08) : 981 - 998
  • [36] Isolation and characterization of soil cyanobacteria and microalgae and evaluation of their potential as plant biostimulants
    Roque, Jessica
    Brito, Angela
    Rocha, Mariana
    Pissarra, Joao
    Nunes, Telma
    Bessa, Marcia
    Vieira, Jorge
    Vieira, Cristina P.
    Melo, Paula
    Tamagnini, Paula
    [J]. PLANT AND SOIL, 2023, 493 (1-2) : 115 - 136
  • [37] Potential use of some species of microalgae and cyanobacteria as erythrocyte agglutinators and bactericides
    Cristina Rodriguez-Palacio, Monica
    Lozano-Ramirez, Cruz
    Alvarez-Hernandez, Sergio H.
    [J]. HIDROBIOLOGICA, 2022, 32 (01): : 17 - 24
  • [38] Immobilized microalgae in biotechnology
    Vasilieva S.G.
    Lobakova E.S.
    Lukyanov A.A.
    Solovchenko A.E.
    [J]. Moscow University Biological Sciences Bulletin, 2016, 71 (3) : 170 - 176
  • [39] Isolation and characterization of soil cyanobacteria and microalgae and evaluation of their potential as plant biostimulants
    Jéssica Roque
    Ângela Brito
    Mariana Rocha
    João Pissarra
    Telma Nunes
    Márcia Bessa
    Jorge Vieira
    Cristina P. Vieira
    Paula Melo
    Paula Tamagnini
    [J]. Plant and Soil, 2023, 493 : 115 - 136
  • [40] Methods in industrial biotechnology and bioprocess engineering-Microalgae as a source of valuable compounds
    Sivaramakrishnan, Ramachandran
    Ramadoss, Govindarajan
    Pancha, Imran Y.
    Incharoensakdi, Aran
    [J]. FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2023, 11