References
- Microbiol. Rev. v.54 Occurrence, metabolism, metabolic role, and industrial uses of bacterial polyhydroxyalkanoates Anderson, A. J.;E. A. Dawes
- Macromolecules v.32 Bacterial polyesters by Pseudomonas oleovorans containing nitrophenyl groups Arostegui, S. M.;M. A. Aponte;E. Diaz;E. Schroder
- Int. J. Biol. Macromol. v.27 Viscoelastic properties of linseed oil-based medium chain length poly(hydroxyalkanoates) films: Effects of epoxidation and curing Ashby, R. D.;T. A. Foglia;D. K. Y. Solaiman;C. K. Liu;A. Nunez;G. Eggink
- Appl. Environ. Microbiol. v.60 Polyester biosynthesis characteristics of Pseudomonas citronellolis grown on various carbon sources, including 3-methyl-branched substrates Choi, M. H.;S. C. Yoon
- J. Microbiol. Biotechnol. v.9 Isolation of a Pseudomonas sp. strain exhibiting unusual behavior of poly(3-hydroxyalkanoates) biosynthesis and characterization of synthesized polyesters Chung, C. W.;Y. S. Kim;Y. B. Kim;K. S. Bae;Y. H. Rhee
- Macromolecules v.29 Production of poly(3-hydroxyalkanoates) containing aromatic substituents by Pseudomonas oleovorans Curley, J. M.;B. Hazer;R. W. Lenz;R. C. Fuller
- Microbial Polysters Doi, Y.
- Makromol. Chem. v.191 An unusual bacterial polyester with a phenyl pendant group Fritzsche, K.;R. W. Lenz;R. C. Fuller
- J. Biol. Chem. v.274 Novel biodegradable aromatic plastics from a bacterial source Garcia, B.;E. R. Olivera;B. Minambres;M. Fernandez-Valverde;L. M. Canedo;M. A. Prieto;J. L. Garcia;M. Martinez;J. M. Luengo
- Macromolecules v.26 Effects of intermolecular forces on the glass transition of polymers Jenekhe, S. A.;M. F. Roberts
- Appl. Environ. Microbiol. v.58 Pseudomonas putida KT2442 cultivated on glucose accumulates poly(3-hydroxyalkanoates) consisting of saturated and unsaturated monomers Huijberts, G. N. M.;G. Eggink;P. de Waard;G. W. Huisman;B. Witholt
- J. Microbiol. Biotechnol. v.8 Isolation of an aromatic polyhydroxyalkanoates-degrading bacterium Ju, H. S.;J. Kim;H. Kim
- Macromolecules v.32 PHAs produced by Pseudomonas oleovorans and Pseudomonas putida grown with n-alkanoic acids containing aromatic groups Kim, Y. B.;D. Y. Kim;Y. H. Rhee
- Macromolecules v.24 Preparation and characterization of poly(β-hydroxyalkanoates) obtained from Pseudomonas oleovorans grown with mixtures of 5-phenylvaleric acid and n-alkanoic acids Kim, Y. B.;R. W. Lenz;R. C. Fuller
- Macromolecules v.29 Poly-3-hydroxyalkanoates produced from Pseudomonas oleovorans grown with ω-phenoxyalkanoates Kim, Y. B.;Y. H. Rhee;S. H. Han;G. S. Heo;J. S. Kim
- FEMS Microbiol. Rev. v.103 Production of unusual bacterial polyesters by Pseudomonas oleovorans through cometabolism Lenz, R. W.;Y. B. Kim;R. C. Fuller
- FEMS Microbiol. Lett. v.150 Functional expression of the PHA synthase gene phaC1 from Pseudomonas aeruginosa in Escherichia coli results in poly(3-hydroxyalkanoate) synthesis Langenbach, S.;B. H. A. Rehm;A. Steinbuchel
- Microbiol. Mol. Biol. Rev. v.63 Metabolic engineering of poly(3-hydroxyalkanoates): From DNA to plastic Madison, L. L.;G. W. Huisman
- J. Biol. Chem. v.265 Purification and biochemical characterization of phenylacetyl-CoA ligase from Pseudomonas putida Martinez-Blanco, H.;A. reglero;L. B. Rodriguez-Aparicio;J. M. Luengo
- Proc. Natl. Acad. Sci. USA v.95 Molecular characterization of the phenylacetic acid catabolic pathway in Pseudomonas putida U: The phenylacetyl-CoA catabolon Olivera, E. R.;B. Minambres;B. Garcia;C. Muniz;M. A. Moreno;A. Fernandez;E. Diaz;J. L. Garcia;J. M. Luengo
- Can. J. Microbiol. v.41 no.SUP.1 The role of β-oxidation of short-chain alkanoates in polyhydroxyalkanoate copolymer synthesis in Azotobacter vinelandii UWD Page, W. J.;J. Manchak
- Appl. Environ. Microbiol. v.58 Formation of poly(hydroxybutyate-co-hydroxyvalerate) by Azotobacter vinelandii UWD Page, W. J.;J. Manchak;B. Rudy
- Macromol. Chem. Phys. v.195 Bacterial production of polyesters bearing phenoxy groups in the side chains: Poly(3-hydroxy-5-phenoxypentanoate-co-3-hydroxy-9-phenoxynonanoate) from Pseudomonas oleovorans Ritter, H.;A. G. von Spee
- J. Bacteriol. v.176 Aerobic catabolism of phenylacetic acid in Pseudomonas putida U: Biochemical characterization of a specific phenylacetic acid transport system and formal demonstration that phenylacetyl-coenzyme A is a catabolic intermediate Schleissner, C.;E. R. Olivera;M. Fernandez-Valverde;J. M. Luengo
- J. Microbiol. Biotechnol. v.3 P(3HB) accumulation in Alcaligenes eutrophus H16 (ATCC 17699) under nutrient-rich condition and its induced production from saccharides and their derivatives Song, J. J.;Y. C. Shin;S. C. Yoon
- J. Microbiol. Biotechnol. v.4 Isolation of Pseudomonas putida BM01 accumulating high amount of MCL-PHA Song, J. J.;S. C. Yoon
- Appl. Environ. Microbiol. v.62 Biosynthesis of novel aromatic copolyesters from insoluble 11-phenoxyundecanoic acid by Pseudomonas putida BM01 Song, J. J.;S. C. Yoon
- FEMS Microbiol. Lett. v.128 Diversity of bacterial polyhydroxyalkanoic acids Steinbuchel, A.;H. E. Valentin
- FEMS Microbiol. Lett. v.184 Molecular cloning of two (R)-specific enoyl-CoA hydratase genes from Pseudomonas aeruginosa and their use for polyhydroxyalkanoate synthesis Tsuge, T.;T. Fukui;H. Matsusaki;S. Taguchi;G. Kobayashi;A. Ishizaki;Y. Doi