Biomedical Engineering Reference
In-Depth Information
26. Ayres EE (1929) Amyl alcohols from the pentanes. Ind Eng Chem 21:899-904
27. Faith ML, Clark RL, Donald B (1965) Keyes ''industrial chemicals''. Wiley, New York
28. Atsumi S, Hanai T, Liao JC (2008) Non-fermentative pathways for synthesis of branched-
chain higher alcohols as biofuels. Nature 451:86-89
29. Dellomonaco C, Fava F, Gonzalez R (2010) The path to next generation biofuels: successes
and challenges in the era of synthetic biology. Microb Cell Fact 9:3
30. Manzer LE (2010) Recent developments in the conversion of biomass to renewable fuels and
chemicals. Top Catal 53:1193-1196
31. Yan Y, Liao JC (2009) Engineering metabolic systems for production of advanced fuels.
J Ind Microbiol Biotechnol 36:471-479
32. Ma YH (2010) Development report of industrial biotechnology in China. Science Press,
Beijing
33. Pei L, Schmidt M, Wei W (2011) Synthetic biology: an emerging research field in China.
Biotechnol Adv. doi: 10.1016/j.biotechadv
34. Nielsen J (2011) Biofuels: chimeric synthetic pathways. Nat Chem Biol 7:195-196
35. Clomburg JM, Gonzalez R (2010) Biofuel production in Escherichia coli: the role of
metabolic engineering and synthetic biology. Appl Microbiol Biotechnol. 86:419-434
36. Derrick S, Large PJ (1993) Activities of the enzymes of the Ehrlich pathway and formation of
branched-chain alcohols in Saccharomyces cerevisiae and Candida utilis grown in
continuous culture on valine or ammonium as sole nitrogen source. J Gen Microbiol 139:
2783-2792
37. Hanai T, Atsumi S, Liao JC (2007) Engineered synthetic pathway for isopropanol production
in Escherichia coli. Appl Environ Microbiol 73:7814-7818
38. Jojima T, Inui M, Yukawa H (2008) Production of isopropanol by metabolically engineered
Escherichia coli. Appl Microbiol Biotechnol 77:1219-1224
39. Chen X, Nielsen KF, Borodina I, Kielland-Brandt MC, Karhumaa K (2011) Increased
isobutanol production in Saccharomyces cerevisiae by overexpression of genes in valine
metabolism. Biotechnol Biofuels 4:21
40. Minty JJ, Lesnefsky AA, Lin F, Chen Y, Zaroff TA, Veloso AB, Xie B, McConnell CA,
Ward RJ, Schwartz DR, Rouillard JM, Gao Y, Gulari E, Lin XN (2011) Evolution combined
with genomic study elucidates genetic bases of isobutanol tolerance in Escherichia coli.
Microb Cell Fact 10:18
41. Atsumi S, Wu TY, Machado IM, Huang WC, Chen PY, Pellegrini M, Liao JC (2011)
Evolution, genomic analysis, and reconstruction of isobutanol tolerance in Escherichia coli.
Mol Syst Biol 6:449
42. Li S, Wen J, Jia X (2011) Engineering Bacillus subtilis for isobutanol production by
heterologous Ehrlich pathway construction and the biosynthetic 2-ketoisovalerate precursor
pathway overexpression. Appl Microbiol Biotechnol 91:577-589
43. Dunlop MJ, Dossani ZY, Szmidt HL, Chu HC, Lee TS, Keasling JD, Hadi MZ,
Mukhopadhyay A (2011) Engineering microbial biofuel tolerance and export using efflux
pumps. Mol Syst Biol 7:487
44. Jia K, Zhang Y, Li Y (2010) Systematic engineering of microorganisms to improve alcohol
tolerance. Eng Life Sci 10:422-429
45. Chen J-S, Hiu SF (1986) Acetone-butanol-isopropanol production by Clostridium beijerinckii
(synonym, Clostridium butylicum). Biotechnol Lett 8:371-376
46. Bermejo LL, Welker NE, Papoutsakis ET (1998) Expression of Clostridium acetobutylicum
ATCC 824 genes in Escherichia coli for acetone production and acetate detoxification. Appl
Environ Microbiol 64:1079-1085
47. Inokuma K, Liao JC, Okamoto M, Hanai T (2010) Improvement of isopropanol production by
metabolically engineered Escherichia coli using gas stripping. J Biosci Bioeng 110:696-701
48. ter Schure EG, Flikweert MT, van Dijken JP, Pronk JT, Verrips CT (1998) Pyruvate
decarboxylase catalyzes decarboxylation of branched-chain 2-oxo acids but is not essential
for fusel alcohol production by Saccharomyces cerevisiae. Appl Environ Microbiol 64:
1303-1307
Search WWH ::




Custom Search