239 - 248 |
Bioleaching review part A: Progress in bioleaching: fundamentals and mechanisms of bacterial metal sulfide oxidation Rohwerder T, Gehrke T, Kinzler K, Sand W |
249 - 257 |
Bioleaching review part B: Progress in bioleaching: applications of microbial processes by the minerals industries Olson GJ, Brierley JA, Brierley CL |
258 - 266 |
Bacteria engineered for fuel ethanol production: current status Dien BS, Cotta MA, Jeffries TW |
267 - 273 |
Optimization of recombinant aminolevulinate synthase production in Escherichia coli using factorial design Xie L, Hall D, Eiteman MA, Altman E |
274 - 281 |
Conversion of aliphatic 2-acetoxynitriles by nitrile-hydrolysing bacteria Heinemann U, Kiziak C, Zibek S, Layh N, Schmidt M, Griengl H, Stolz A |
282 - 285 |
Improved GA(1) production by Fusarium fujikuroi Oller-Lopez JL, Avalos J, Barrero AF, Oltra JE |
286 - 292 |
Synthesis of alpha-galactooligosaccharides with alpha-galactosidase from Lactobacillus reuteri of canine origin Tzortzis G, Jay AJ, Baillon MLA, Gibson GR, Rastall RA |
293 - 299 |
Overexpression of the ATP-dependent helicase RecG improves resistance to weak organic acids in Escherichia coli Steiner P, Sauer U |
300 - 306 |
A delta-endotoxin encoded in Pseudomonas fluorescens displays a high degree of insecticidal activity Peng R, Xiong A, Li X, Fuan H, Yao Q |
307 - 314 |
Pathways of methanol conversion in a thermophilic anaerobic (55 degrees C) sludge consortium Paulo PL, Stams AJM, Field JA, Dijkema C, van Lier JB, Lettinga G |
315 - 321 |
Hydrogenases in sulfate-reducing bacteria function as chromium reductase Chardin B, Giudici-Orticoni MT, De Luca G, Guigliarelli B, Bruschi M |
322 - 334 |
Sulfate-reducing bacterial community structure and their contribution to carbon mineralization in a wastewater biofilm growing under microaerophilic conditions Okabe S, Ito T, Satoh H |