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Glycerine and levulinic acid: Renewable co-substrates for the fermentative synthesis of short-chain poly(hydroxyalkanoate) biopolymers Ashby RD, Solaiman DKY, Strahan GD, Zhu CJ, Tappel RC, Nomura CT Bioresource Technology, 118, 272, 2012 |
2 |
Substrate interactions during the biodegradation of BTEX and THF mixtures by Pseudomonas oleovorans DT4 Zhou YY, Chen DZ, Zhu RY, Chen JM Bioresource Technology, 102(12), 6644, 2011 |
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A newly isolated strain capable of effectively degrading tetrahydrofuran and its performance in a continuous flow system Chen JM, Zhou YY, Chen DZ, Jin XJ Bioresource Technology, 101(16), 6461, 2010 |
4 |
Production of a new exopolysaccharide (EPS) by Pseudomonas oleovorans NRRL B-14682 grown on glycerol Freitas F, Alves VD, Pais J, Carvalheira M, Costa N, Oliveira R, Reis MAM Process Biochemistry, 45(3), 297, 2010 |
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Characterization of an extracellular polysaccharide produced by a Pseudomonas strain grown on glycerol Freitas F, Alves VD, Pais J, Costa N, Oliveira C, Mafra L, Hilliou L, Oliveira R, Reis MAM Bioresource Technology, 100(2), 859, 2009 |
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PMMA-multigraft copolymers derived from linseed oil, soybean oil, and linoleic acid: Protein adsorption and bacterial adherence Cakmakli B, Hazer B, Acikgoz S, Can M, Comert FB Journal of Applied Polymer Science, 105(6), 3448, 2007 |
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Production of bacterial polyesters from some various new substrates by Alcaligenes eutrophus and Pseudomonas oleovorans Kocer H, Borcakli M, Demirel S, Hazer B Turkish Journal of Chemistry, 27(3), 365, 2003 |
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Production of medium chain length polyhydroxyalkanoates by fed-batch culture of Pseudomonas oleovorans Kim BS Biotechnology Letters, 24(2), 125, 2002 |
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Polymerase-chain-reaction-based detection of individual polyhydroxyalkanoate synthase phaC1 and phaC2 genes Solaiman DKY Biotechnology Letters, 24(4), 245, 2002 |
10 |
Metabolic analysis on fatty acid utilization by Pseudomonas oleovorans: mcl-poly(3-hydroxyalkanoates) synthesis versus beta-oxidation Du GC, Yu J Process Biochemistry, 38(3), 325, 2002 |