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2-DE proteomic approach to the Botrytis cinerea secretome induced with different carbon sources and plant-based elicitorsFERNANDEZ-ACERO, Francisco Javier; COLBY, Thomas; HARZEN, Anne et al.Proteomics (Weinheim. Print). 2010, Vol 10, Num 12, pp 2270-2280, issn 1615-9853, 11 p.Article

The effect of carbon source on the secretome of Kluyveromyces lactisMADINGER, Catherine L; SHARMA, Shamik S; ANTON, Brian P et al.Proteomics (Weinheim. Print). 2009, Vol 9, Num 20, pp 4744-4754, issn 1615-9853, 11 p.Article

Expression of Corynebacterium glutamicum glycolytic genes varies with carbon source and growth phaseSUNG OK HAN; INUI, Masayuki; YUKAWA, Hideaki et al.Microbiology (Reading). 2007, Vol 153, pp 2190-2202, issn 1350-0872, 13 p., 7Article

Transcriptome response to different carbon sources in Acetobacter acetiSAKURAI, Kenta; ARAI, Hiroyuki; ISHII, Masaharu et al.Microbiology (Reading). 2011, Vol 157, pp 899-910, issn 1350-0872, 12 p., 3Article

Evaluation of N-acetylchitooligosaccharides as the main carbon sources for the growth of intestinal bacteriaCHEN, Hsing-Chen; CHANG, Chiao-Ching; MAU, Wei-Juin et al.FEMS microbiology letters. 2002, Vol 209, Num 1, pp 53-56, issn 0378-1097Article

Functions of the Duplicated hik31 Operons in Central Metabolism and Responses to Light, Dark, and Carbon Sources in Synechocystis sp. Strain PCC 6803NAGARAJAN, Sowmya; SHERMAN, Debra M; SHAW, Isaac et al.Journal of bacteriology. 2012, Vol 194, Num 2, pp 448-459, issn 0021-9193, 12 p.Article

Aspirin commits yeast cells to apoptosis depending on carbon sourceBALZAN, Rena; SAPIENZA, Karen; GALEA, Dolores R et al.Microbiology (Reading). 2004, Vol 150, pp 109-115, issn 1350-0872, 7 p., 1Article

The Combination of Different Carbon Sources Enhances Bacterial Growth Efficiency in Aquatic EcosystemsFONTE, Ellen S; AMADO, André M; MEIRELLES-PEREIRA, Frederico et al.Microbial ecology. 2013, Vol 66, Num 4, pp 871-878, issn 0095-3628, 8 p.Article

Effect of external voltage on Pseudomonas putida F1 in a bio electrochemical cell using toluene as sole carbon and energy sourceFRIMAN, Hen; SCHECHTER, Alex; NITZAN, Yeshayahu et al.Microbiology (Reading). 2012, Vol 158, pp 414-423, issn 1350-0872, 10 p., 2Article

Growth of E. coli BL21 in minimal media with different gluconeogenic carbon sources and salt contentsPALIY, Oleg; GUNASEKERA, Thusitha S.Applied microbiology and biotechnology. 2007, Vol 73, Num 5, pp 1169-1172, issn 0175-7598, 4 p.Article

Differential carbon source utilization by Campylobacter jejuni 11168 in response to growth temperature variationLINE, J. E; HIETT, K. L; GUARD-BOULDIN, J et al.Journal of microbiological methods. 2010, Vol 80, Num 2, pp 198-202, issn 0167-7012, 5 p.Article

Modeling Microbial Dynamics in Heterogeneous Environments: Growth on Soil Carbon SourcesRESAT, Haluk; BAILEY, Vanessa; MCCUE, Lee Ann et al.Microbial ecology. 2012, Vol 63, Num 4, pp 883-897, issn 0095-3628, 15 p.Article

The Marine Isolate Novosphingobium sp. PP1Y Shows Specific Adaptation to Use the Aromatic Fraction of Fuels as the Sole Carbon and Energy SourceNOTOMISTA, Eugenio; PENNACCHIO, Francesca; CAFARO, Valeria et al.Microbial ecology. 2011, Vol 61, Num 3, pp 582-594, issn 0095-3628, 13 p.Article

Assimilation of levoglucosan (1,6-anhydro-β-D-glucopyranose) by several yeastsKITAMURA, Y; YASUI, T.Hakkōkōgaku Kaishi. 1991, Vol 69, Num 5, pp 373-378, issn 0385-6151Article

The Antibacterial Activity of Ga3+ Is Influenced by Ligand Complexation as Well as the Bacterial Carbon SourceRZHEPISHEVSKA, Olena; EKSTRAND-HAMMARSTRÖM, Barbro; POPP, Maximilian et al.Antimicrobial agents and chemotherapy. 2011, Vol 55, Num 12, pp 5568-5580, issn 0066-4804, 13 p.Article

Genomic analysis of carbon source metabolism of Shewanella oneidensis MR-1 : Predictions versus experimentsSERRES, Margrethe H; RILEY, Monica.Journal of bacteriology. 2006, Vol 188, Num 13, pp 4601-4609, issn 0021-9193, 9 p.Article

Effects of nitrogen and carbon sources on transcription of soluble methyltransferases in Methanosarcina mazei strain Gö1VEIT, Katharina; EHLERS, Claudia; SCHMITZ, Ruth A et al.Journal of bacteriology. 2005, Vol 187, Num 17, pp 6147-6154, issn 0021-9193, 8 p.Article

Production and characterization of polyhydroxyalkanoates in Pseudomonas aeruginosa ATCC 9027 from glucose, an unrelated carbon sourceROJAS-ROSAS, Oscar; VILLAFANA-ROJAS, Juan; LOPEZ-DELLAMARY, Fernando A et al.Canadian journal of microbiology. 2007, Vol 53, Num 7, pp 840-851, issn 0008-4166, 12 p.Article

Strong indirect effects of a submersed aquatic macrophyte, Vallisneria americana, on bacterioplankton densities in a mesotrophic lakeHUSS, A. A; WEHR, J. D.Microbial ecology. 2004, Vol 47, Num 4, pp 305-315, issn 0095-3628, 11 p.Article

Evaluation of the BIOLOG substrate metabolism system for classification of marine bacteriaRÜGER, H.-J; KRAMBECK, H.-J.Systematic and applied microbiology. 1994, Vol 17, Num 2, pp 281-288, issn 0723-2020Article

Denitrification by thermophilic soil bacteria with ethanol as substrate in a USB reactorLAURINO, C. N; SINERIZ, F.Biotechnology letters. 1991, Vol 13, Num 4, pp 299-304, issn 0141-5492, 6 p.Article

Utilization of homoserine lactone as a sole source of carbon and energy by soil Arthrobacter and burkholderia speciesYANG, Wan-Wan; HAN, Jong-In; LEADBETTER, Jared Renton et al.Archives of microbiology. 2006, Vol 185, Num 1, pp 47-54, issn 0302-8933, 8 p.Article

Fluorene transformation by bacteria of the genus RhodococcusFINKELSTEIN, Z. I; BASKUNOV, B. P; GOLOVLEV, E. L et al.Microbiology (New York, NY). 2003, Vol 72, Num 6, pp 660-665, issn 0026-2617, 6 p.Article

Utilisation du diméthylterephthalate par Rhodococcus erythropolisSLIZEN, Z. M; ZIMENKO, T. G; SAMSONOVA, A. S et al.Mikrobiologija (Moskva). 1989, Vol 58, Num 3, pp 382-386Article

The fermentation of different carbon sources by Fusarium oxysporum = Fermentation de différentes sources de carbone par F.oSUIHKO, M.-L.Biotechnology letters. 1983, Vol 5, Num 11, pp 721-724, issn 0141-5492Article

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