Biomedical Engineering Reference
In-Depth Information
Reusch, R. N. (1992). Biological complexes of
poly-beta-hydroxybutyrate. Bioscience Fems
Microbiological Reviews 9 (2-4), 119-129.
Reusch, R. N. (1995). Low molecular weight
complexed poly(3-hydroxybutyrate): a dynamic
and versatile molecule in vivo . Canadian Jour-
nal of Microbiology 41 , 50-54.
Reusch, R. N. and Sadoff, H. L. (1983). D-(-)-
poly-beta-hydroxybutyrate in membranes of ge-
netically competent bacteria. Journal of Bacteri-
ology 156 (2), 778-788.
Reusch, R. N., Hiske, T. W., And Sadoff, H. L.
(1986). Poly-beta-hydroxybutyrate membrane
structure and its relationship to genetic trans-
formability in Escherichia coli. Journal of Bac-
teriology 168 (2), 553-564.
Reusch, R. N., Hiske, T. W., Sadoff, H. L., Har-
ris, R., and Beveridge, T. (1987) Cellular incor-
poration of poly-β-hydroxbutyrate into plasma
membranes of Escherichia coli and Azotobacter
vinelandii , alters native membrane structure. Ca-
nadian Journal of Microbiology 33 , 435-444.
Sayyed, R. Z. and Chincholkar, S. B. (2004).
Production of Poly -b-hydroxy butyrate (PHB)
from Alcaligenes faecalis. Indian Journal of Mi-
crobiology 44 (4), 269-272.
Sayyed, R. Z. and Gangurde, N. S. (2010). Poly-
β-hydroxybutyrate production by Pseudomonas
sp. RZS 1 under aerobic and semi-aerobic condi-
tion. Indian Journal of Experimental Biology 48 ,
942-947.
Sayyed, R. Z., Gangurde, N. S., and Chinchol-
kar, S. B. (2009). Hypochlorite digestion method
for efficient recovery of PHB from A. faecalis .
Indian Journal of Microbiology 49 (3), 230-232.
Schembri, M. A., Bayly, R. C., and Davies, J.
K. (1994). Cloning and analysis of the poly hy-
droxyalkanoic acid synthase gene from an Aci-
netobacter sp.: Evidence that the gene is both
plasmid and chromosomally located. FEMS Mi-
crobiology Letter 118 , 145-152.
Schlegel, H. G., Lafferty, R., and Krauss, I.
(1970). The isolation of mutants not accumulat-
ing poly-beta-hydroxybutyric acid. Archives of
Microbiology 71 , 283-294.
Serafim, L. S., Lemos, P. C., Oliveira, R., and
Reis, M. A. (2004). Optimization of Polyhy-
droxybutyrate Production by Mixed Cultures
Submitted to Aerobic Dynamic Feeding
Conditions. Biotechnology and Bioengineering
87 (2), 145-160.
Shi, H. P., Lee, C. M., and Ma, W. H. (2007).
Influence of electron acceptor, carbon, nitro-
gen, and phosphorus on polyhydroxyalkanoate
(PHA) production by Brachymonas sp. P12.
World Journal of Microbiology and Biotechnol-
ogy 23 , 625-632.
Silva, L. F., Taciro, M. K., Ramos, M. E. M.,
Carter, J. M., Pradella, J. G., and Gomez, J. G.
(2004). Poly-3-hydroxybutyrate (P3HB) produc-
tion by bacteria from xylose, glucose and sugar-
cane bagasse hydrolysate. Journal of Industrial
Microbiology and Biotechnology 31 , 245-254.
Slater, S., Houmiel, K. L., Tran, H., Mitsky, T.
A., Taylor, N. B., Padgette, S. R., and Gruys, K.
(1998). Multiple beta-ketothiolases mediate poly
(beta-hydroxyalkanoate) copolymer synthesis
in Ralstonia eutropha . Journal of Bacteriology
180 , 1979-1987.
Smet, M. J., Eggink, G., Witholt, B., Kingamma,
J., and Wynberg, H., (1983). Characterization of
intracellular inclusions formed by Pseudomonas
oleovorans during growth on octane. Journal of
Bacteriology 154 , 870-878.
Son, H., Park, G., and Lee, S. (2004). Growth-as-
sociated production of poly-β-hydroxybutyrate
from glucose or alcoholic distillery wastewater
by Actinobacillus sp. EL-9. Biotechnology Letter
18 , 1229-1234.
Spiekermann, P., Rehm, B. H. A., Kalscheuer,
R., Baumeister, D., and Steinbüchel, A. (1999).
A sensitive, viable-colony staining method using
Nile red for direct screening of bacteria that ac-
cumulate polyhydroxyalkanoic acids and other
lipid storage compounds. Archives of Microbiol-
ogy 171 , 73-80.
Suzuki, T., Yamane, T., and Shimizu, S. (1986).
Mass production of poly-β-hydroxybutyric acid
by fed-batch culture with controlled carbon/ni-
trogen feeding. Applied Journal of Microbiology
and Biotechnology 24 , 370-374.
Tuominen, J., Kylma, J., Kapanen, A., Venelam-
pi, O., Itavaara, M., and Seppala, J. (2002). Bio-
degradation of lactic acid based polymers under
controlled composting conditions and evaluation
of the ecotoxicological impact. Biomacromol-
ecules 3 , 445-455.
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