Abbate M, Martuscelli E, Ragosta G, Scarinzi G (1991) Tensile properties and impact behaviour of poly(d(−)3-hydroxybutyrate)/rubber blends. J Mater Sci 26:1119–1125
Google Scholar
Anderson AJ, Dawes EA (1990) Occurrence, metabolism, metabolic role and industrial uses of bacterial polyhydroxyalkanoates. Microbiol Rev 54:450–472
CAS
PubMed
Google Scholar
Anderson AJ, Williams DR, Taidi B, Dawes EA, Ewing DF (1992) Studies on copolyester synthesis by Rhodococcus ruber and factors influencing the molecular mass of polyhydroxybutyrate accumulated by Methylobacterium extorquens and Alcaligenes eutrophus. FEMS Microbiol Rev 103:93–102
Google Scholar
ATCC (1985) Gherna R, Nierman W, Pienta P (eds) Catalogue of bacteria, phages and rDNA vectors, 16th edn. ATCC, Rockville, Md
Google Scholar
Berger É, Ramsay BA, Ramsay JA, Chavarie C, Braunegg G (1989) PHB recovery by hypochlorite digestion of non-PHB biomass. Biotechnol Tech 3:227–232
Google Scholar
Bourque D, Ouelette B, André G, Groleau D (1992a) Production of poly-β-hydroxybutyrate from methanol: characterization of a new isolate of Methylobacterium extorquens. Appl Microbiol Biotechnol 37:7–12
Google Scholar
Bourque D, Pomerleau Y, Groleau D (1992b) High cell density production of PHB using methanol in a fed-batch system. In: Vert M, Feijen J, Albertsson A, Scott G, Chiellini E (eds) Proceedings of the Second International Workshop on Biodegradable Polymers and Plastics 1991, Montpellier, France. (Royal Society of Chemistry, Cambridge, UK)
Google Scholar
Brandl H, Gross RA, Lenz RW, Fuller CR (1990) Plastics from bacteria and for bacteria: poly(β-hydroxyalkanoates) as natural, biocompatible, and biodegradable polyesters. In: A. Fiechter (ed) Advances in biochemical engineering/biotechnology, vol 41. Springer, Berlin Heidelberg New York, pp 77–93
Google Scholar
Byrom D (1987) Polymer synthesis by microorganisms: technology and economics. Trends Biotechnol 5:246–250
CAS
Google Scholar
Byrom D (1991) Miscellaneous biomaterials. In: Byrom D (ed) Biomaterials: novel materials from biological sources. Stockton, New York, pp 333–359
Google Scholar
Choi JH, Kim JH, Daniel M, Lebeault JM (1989) Optimization of growth medium and poly-β-hydroxybutyric acid production from methanol in Methylobacterium organophilum. Kor J Appl Microbiol Bioeng 17:392–396
Google Scholar
Daniel M, Choi JH, Kim JH, Lebeault JM (1992) Effect of nutrient deficiency on accumulation and relative molecular weight of poly-β-hydroxybutyric acid by methylophic bacterium, Pseudomonas 135. Appl Microbiol Biotechnol 37:702–706
Google Scholar
Doronina NV, Ostafin M, Trotsenko YA (1992) Methylobacterium extorquens — a new facultative methylotroph forming poly-β-hydroxybutyrate. Microbiology 61:481–485
Google Scholar
Govorukhina NI, Trotsenko YA (1991) Poly-β-hydroxybutyrate contents of methylotrophic bacteria with different routes for methanol assimilation. Appl Biochem Microbiol 27:80–83
Google Scholar
Groleau D, Bourque D, Pormerleau Y (1994) Methylobacterium extorquens microorganism useful for the preparation of poly-β-hydroxybutyric acid polymers. United States patent 5 302 525
Haywood GW, Anderson AJ, Dawes EA (1989) A survey of the accumulation of novel polyhydroxyalkanoates by bacteria. Biotechnol Lett 11:471–476
Google Scholar
Hilger U, Sattler K, Littkowsky U (1991) Studies on the growth-associated accumulation of poly-β-hydroxybutyric acid with Methylobacterium rhodesianum Z. Zentralbl Mikrobiol 146:83–88
Google Scholar
Holmes PA (1988) Biologically produced (B)-3-hydroxyalkanoate polymers and copolymers. In: Bassett DC (ed) Developments in crystalline polymers, vol 2, Elsevier, London, pp 1–65
Google Scholar
Lafferty RM, Korsatko B, Korsatko W (1988) Microbial production of poly-β-hydroxybutyric acid. In: Rehm HJ, Reed G (eds) Biotechnology, vol 6B. VCH, Weinheim, pp 135–176
Google Scholar
Large PJ, Bamforth CW (1988) Methylotrophy and biotechnology. Longman, Scientific & Technical, Burnt Mill, Harlow
Google Scholar
Reymann W, Koch M, Albrecht P (1990) Manufacture of containers from an oriented biopolymer. Tech Mitt Krupp 2:113–118
Google Scholar
Steinbüchel A (1991) Polyhydroxyalkanoic acids. In: Byrom D (ed) Biomaterials: novel materials from biological sources. Stockton, New York, pp 123–213
Google Scholar
Suzuki T, Yamane T, Shimizu S (1986a) Mass production of poly-β-hydroxybutyric acid by fully automatic fed-batch culture of methylotroph. Appl Microbiol Biotechnol 23:322–329
Google Scholar
Suzuki T, Yamane T, Shimizu S (1986b) Kinetics and effect of nitrogen source feeding on production of poly-β-hydroxybutyric acid by fed-batch culture. Appl Microbiol Biotechnol 24:366–369
Google Scholar
Suzuki T, Yamane T, Shimizu S (1986c) Mass production of poly-β-hydroxybutyric acid by fed-batch culture with controlled carbon/nitrogen feeding. Appl Microbiol Biotechnol 24:370–374
Google Scholar
Suzuki T, Deguchi H, Yamane T, Shimizu S, Gekko K (1988) Control of molecular weight of poly-β-hydroxybutyric acid production in fed-batch culture of Protomonas extorquens. Appl Microbiol Biotechnol 27:487–491
Google Scholar
Taidi B, Anderson AJ, Dawes EA, Byrom D (1994) Effect of carbon source and concentration on the molecular mass of poly(3-hydroxybutyrate) produced by Methylobacterium extorquens and Alcaligenes eutrophus. Appl Microbiol Biotechnol 40:786–790
Google Scholar
Toennies G, Gallant D (1949) The relation between photometric turbidity and bacterial concentration (bacterimetric studies IV). Growth 13:7–20
Google Scholar
Trotsenko YA, Doronina NV, Sokolov AP, Ostafin M (1993) Synthesis of polyhydroxybutyrate by methylotrophic bacteria. FEMS Microbiol Rev 103:393–394
Google Scholar
Ueda S, Matsumoto S, Takagi A, Yamane T (1992) Synthesis of poly(3-hydroxybutyrat-co-3-hydroxyvalerate) from methanol and n-amyl alcohol by the methylotrophic bacteria Paracoccus denitrificans and Methylobacterium extorquens. Appl Environ Microbiol 58:3574–3579
Google Scholar
Valentin HE, Steinbüchel A (1993) Cloning and characterization of the Methylobacterium extorquens polyhydroxyalkanoic-acid-synthase structural gene. Appl Microbiol Biotechnol 39:309–317
Google Scholar
Yamane T (1992) Cultivation engineering of microbial bioplastics production. FEMS Microbiol Rev 103:257–264
Google Scholar
Yasin M, Tighe BJ (1993) Strategies for the design of biodegradable polymer systems: manipulation of polyhydroxybutyrate-based materials. Plast Rubber Composites Process Appl 19:15–27
Google Scholar
Zhao S, Fan C, Hu X, Chen J, Feng H (1993) The microbial production of polyhydroxybutyrate from methanol. Appl Biochem Biotechnol 39/40:191–199
Google Scholar