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Journal Abstract Search


244 related items for PubMed ID: 34051838

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  • 3. Oleaginous yeasts- substrate preference and lipid productivity: a view on the performance of microbial lipid producers.
    Shaigani P, Awad D, Redai V, Fuchs M, Haack M, Mehlmer N, Brueck T.
    Microb Cell Fact; 2021 Dec 07; 20(1):220. PubMed ID: 34876116
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  • 4. Microbial lipid production from crude glycerol and hemicellulosic hydrolysate with oleaginous yeasts.
    Chmielarz M, Blomqvist J, Sampels S, Sandgren M, Passoth V.
    Biotechnol Biofuels; 2021 Mar 12; 14(1):65. PubMed ID: 33712047
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  • 6. Lipid production from hemicellulose with Lipomyces starkeyi in a pH regulated fed-batch cultivation.
    Brandenburg J, Blomqvist J, Pickova J, Bonturi N, Sandgren M, Passoth V.
    Yeast; 2016 Aug 12; 33(8):451-62. PubMed ID: 26945827
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  • 7. Biochemical profiling, prediction of total lipid content and fatty acid profile in oleaginous yeasts by FTIR spectroscopy.
    Shapaval V, Brandenburg J, Blomqvist J, Tafintseva V, Passoth V, Sandgren M, Kohler A.
    Biotechnol Biofuels; 2019 Aug 12; 12():140. PubMed ID: 31178928
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  • 8. Bioethanol and lipid production from the enzymatic hydrolysate of wheat straw after furfural extraction.
    Brandenburg J, Poppele I, Blomqvist J, Puke M, Pickova J, Sandgren M, Rapoport A, Vedernikovs N, Passoth V.
    Appl Microbiol Biotechnol; 2018 Jul 12; 102(14):6269-6277. PubMed ID: 29804136
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  • 9. Oleaginous yeasts from Antarctica: Screening and preliminary approach on lipid accumulation.
    Viñarta SC, Angelicola MV, Barros JM, Fernández PM, Mac Cormak W, Aybar MJ, de Figueroa LI.
    J Basic Microbiol; 2016 Dec 12; 56(12):1360-1368. PubMed ID: 27283113
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  • 10. Assessing an effective feeding strategy to optimize crude glycerol utilization as sustainable carbon source for lipid accumulation in oleaginous yeasts.
    Signori L, Ami D, Posteri R, Giuzzi A, Mereghetti P, Porro D, Branduardi P.
    Microb Cell Fact; 2016 May 05; 15():75. PubMed ID: 27149859
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  • 11. Oil production by oleaginous yeasts using the hydrolysate from pretreatment of wheat straw with dilute sulfuric acid.
    Yu X, Zheng Y, Dorgan KM, Chen S.
    Bioresour Technol; 2011 May 05; 102(10):6134-40. PubMed ID: 21463940
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  • 12. Screening and Growth Characterization of Non-conventional Yeasts in a Hemicellulosic Hydrolysate.
    Monteiro de Oliveira P, Aborneva D, Bonturi N, Lahtvee PJ.
    Front Bioeng Biotechnol; 2021 May 05; 9():659472. PubMed ID: 33996782
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  • 13. Transcriptomic analysis of the oleaginous yeast Lipomyces starkeyi during lipid accumulation on enzymatically treated corn stover hydrolysate.
    Pomraning KR, Collett JR, Kim J, Panisko EA, Culley DE, Dai Z, Deng S, Hofstad BA, Butcher MG, Magnuson JK.
    Biotechnol Biofuels; 2019 May 05; 12():162. PubMed ID: 31289462
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  • 15. Bioconversion of corncob acid hydrolysate into microbial oil by the oleaginous yeast Lipomyces starkeyi.
    Huang C, Chen XF, Yang XY, Xiong L, Lin XQ, Yang J, Wang B, Chen XD.
    Appl Biochem Biotechnol; 2014 Feb 05; 172(4):2197-204. PubMed ID: 24343368
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  • 17. Valorization of Brewers' Spent Grain for the Production of Lipids by Oleaginous Yeast.
    Patel A, Mikes F, Bühler S, Matsakas L.
    Molecules; 2018 Nov 22; 23(12):. PubMed ID: 30469531
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  • 19. FT-NIR: a tool for rapid intracellular lipid quantification in oleaginous yeasts.
    Chmielarz M, Sampels S, Blomqvist J, Brandenburg J, Wende F, Sandgren M, Passoth V.
    Biotechnol Biofuels; 2019 Nov 22; 12():169. PubMed ID: 31297157
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