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Alcaligenes latus

Ammonium Alcaligenes latus Pseudomonas oleovorans Pseudomonas cepacia Ralstonia eutrophus Rhodobacter sphaeroides Speudomonas sp. K. Methylocystus oarvus Thiosphaera pantotropha Rhizobium ORS 571... [Pg.56]

Such a situation occurs in continuous processes, and can be realized in special cases with cells growing unlimited in discontinuous processes, e. g., as reported in several studies of Alcaligenes latus [60], Azotobacter vinelandii [98], or Methylobacterium rhodesianum [74]. [Pg.145]

Hanggi UJ (1990) Pilot scale production of poly(3HB) with Alcaligenes latus. In Dawes EA (ed) Novel biodegradable microbial polymers. Kluwer, Dordrecht, p 65... [Pg.178]

Ashby, R. D., Shi, F.-Y., and Gross, R. A. 1997. Use of polyfethylene glycol) to control the end group structure and molecular weight of poly(3-hydroxybutyrate) formed by Alcaligenes latus DSM 1122. Tetrahedron Lett., 53,15209-15223. [Pg.150]

Wang, F., and Lee, S. Y. 1997. Poly(3-hydroxybutyrate) production with high productivity and high polymer content by a fed-batch culture of Alcaligenes latus under nitrogen limitation. Appl. Env. Microbiol., 63, 3703-3706. [Pg.555]

Alcaligenes latus [8,12], Comamonas acidovorans [9,13], Comamonas testostero-nii [14] and Hydrogenphaga pseudoflava [15] have been reported. In the present study, we report the biosynthesis of P(3HB-co HB) by Cupriavidus sp. USMAA1020 that was isolated from Malaysian environment... [Pg.188]

Lee SY, Choi JI (1998) Effect of fermentation performance on the economics of poly(3-hydroxy-butyrate) production by Alcaligenes latus. Polym Degrad Stab 59 387-393 Lee SY, Choi J, Wong HH (1999) Recent advances in polyhydroxyalkanoate production by bacterial fermentation mini-review. Int J Biol Macromol 25 31-36 Lee SY, Lee KM, Chan HN, Steinbiichel A (1994) Comparison of recombinant Escherichia coli strains for synthesis and accumulation of poly(3-hydroxybutyric acid) and morphological changes. Biotechnol Bioeng 44 1337-1347... [Pg.116]

Takeoka GR, Full GH, Dao LT (1997) Effect of heating on the characteristics and chemical composition of selected frying oils and fats. J Agric Food Chem 45 3244-3249 Tamer IM, Murray MY, Chisti Y (1998) Optimization of poly(p-hydroxybutyric acid) recovery from Alcaligenes latus combined mechanical and chemical treatments. Biopioc Biosyst Eng 19 459-468... [Pg.126]

Lee and coworkers [53] demonstrated that PHB could be efficiently produced in vivo by manipulating the environmental conditions. In studying Alcaligenes latus, for example, it was found that providing a more acidic environment, on the order of pH to 3-4, induced a high activity level of intracellular PHB depolymerase. Ren and coworkers [54] placed PHA-containing P. putida cells in phosphate buffer at different pHs and determined that a more basic pH, i.e., pH 11, was the most efficient. [Pg.120]

Production of Poly-3-hydroxybutyrate-co-3-hydroxy-valerate with Alcaligenes latus DSM1124 on Various Carbon Sources... [Pg.147]

Sodium valerate normally is only used as a precursor. Beigey s manual indicates that Alcaligenes latus DSM 1122 shows no growdi on valerate. [Pg.152]

Fiptre 3. Fennentation on Na>valerate as sole caibon source and precursor for the production of P(3HB-co-3HV) vn i Alcaligenes latus DSM 1124. [Pg.152]

Unlike as in the literature reported, Alcaligenes latus DSM 1124 is also able to grow on Na-valerate as sole carbon source which is an economical draw back in respect of the costs for valerate as a precursor. Again the specifrc growth rate is much lower than on the growth with glucose. Unfortunately the experiment was broken off too early so it is not possible to make more detailed conclusions. More experimental worir has to be done here. [Pg.154]

Bogensbeiger B., 1985, Doctoral thesis. Poly-D(-)-3-Hydroxybuttersaure Studien an Alcaligenes latus unter Verwendung technischer Substrate, Graz University of Technology... [Pg.154]

Renner, G. et al. 1994, Effect ofa carbon starvation period on die kinetics of copolymer production by Alcaligenes latus DSM 1122. International Symposium on bactmal PHA, Mc.Gill University, Montreal, Canada, p.68... [Pg.156]

Chemie Linz (technology transferred to Urs Hanggi, Biomer) Austria Late 1980s to early 1990s Alcaligenes latus DSM 1124 (today Azohydromonas lata) Glucose from carbohydrate feedstocks PHB < 501... [Pg.153]

To choose the adequate bioreactor design for continuous PHA production, kinetics for both biomass and PHA production by the microbial strain should be considered. In the case of PHA production directly associated with microbial growth as it is found in Alcaligenes latus DSM 1122 on sucrose [128], or for Pseudomonasputida ATCC 29147 on fatty acids [97,98], a one-step continuous process using a continuous stirred tank reactor (CSTR) is a viable solution. [Pg.160]


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