Isolation of high-lipid content strains of the marine microalga Tetraselmis suecica for biodiesel production by flow cytometry and single-cell sorting
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M. Montero | M. Aristizábal | G. García Reina | María F. Montero | Manuela Aristizábal | Guillermo García Reina
[1] L. Rodolfi,et al. Microalgae for oil: Strain selection, induction of lipid synthesis and outdoor mass cultivation in a low‐cost photobioreactor , 2009, Biotechnology and bioengineering.
[2] M. Sommerfeld,et al. Characterization of the growth and lipid content of the diatom Chaetoceros muelleri , 1997, Journal of Applied Phycology.
[3] Y. Chisti. Biodiesel from microalgae. , 2007, Biotechnology advances.
[4] Simon C Watkins,et al. Current Protocols In Cytometry , 1997 .
[5] H. Guzman,et al. Estimate by means of flow cytometry of variation in composition of fatty acids from Tetraselmis suecica in response to culture conditions , 2010, Aquaculture International.
[6] Patrik R. Callis,et al. Fluorometric determination of the neutral lipid content of microalgal cells using Nile Red , 1987 .
[7] Graziella Chini Zittelli,et al. Productivity and photosynthetic efficiency of outdoor cultures of Tetraselmis suecica in annular columns , 2006 .
[8] J. Vives-Rego,et al. Assessment of the effects of gramicidin, formaldehyde, and surfactants on Escherichia coli by flow cytometry using nucleic acid and membrane potential dyes. , 1997, Cytometry.
[9] C. Sensen,et al. The production of clonal and axenic cultures of microalgae using fluorescence-activated cell sorting , 1993 .
[10] Teresa Lopes da Silva,et al. Multi-parameter flow cytometry as a tool to monitor heterotrophic microalgal batch fermentations for oil production towards biodiesel , 2009 .
[11] David Jameson,et al. Fluorescent measurement of microalgal neutral lipids. , 2007, Journal of microbiological methods.
[12] H. Mendoza,et al. Flow cytometric determination of lipid content in a marine dinoflagellate, Crypthecodinium cohnii , 2003, Journal of Applied Phycology.
[13] P. Williams. Biofuel: microalgae cut the social and ecological costs , 2007, Nature.
[14] S. Harrison,et al. Lipid productivity as a key characteristic for choosing algal species for biodiesel production , 2009, Journal of Applied Phycology.
[15] Wei Chen,et al. A high throughput Nile red method for quantitative measurement of neutral lipids in microalgae. , 2009, Journal of microbiological methods.
[16] J. Comas-Riu,et al. Effects of deflected droplet electrostatic cell sorting on the viability and exoproteolytic activity of bacterial cultures and marine bacterioplankton. , 2001, Systematic and applied microbiology.
[17] Q. Hu,et al. Microalgal triacylglycerols as feedstocks for biofuel production: perspectives and advances. , 2008, The Plant journal : for cell and molecular biology.
[18] O. Pulz,et al. Photobioreactors: production systems for phototrophic microorganisms , 2001, Applied Microbiology and Biotechnology.
[19] G Charles Dismukes,et al. Aquatic phototrophs: efficient alternatives to land-based crops for biofuels. , 2008, Current opinion in biotechnology.