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United States Department of Agriculture

Agricultural Research Service

Related Topics

Michael J Bowman
Bioenergy Research
Chemistry

Phone: (309) 681-6327
Fax: (309) 681-6427

Room 2131A

1815 N UNIVERSITY ST
PEORIA , IL 61604

Projects
Technologies for Improving Process Efficiencies in Biomass Refineries
Appropriated (D)
  Accession Number: 427437

Publications (Clicking on the reprint icon Reprint Icon will take you to the publication reprint.)
Bacillus velezensis RC 218 as a biocontrol agent to reduce Fusarium head blight and deoxynivalenol accumulation in wheat -
Palazzini, J.M., Dunlap, C.A., Bowman, M.J., Chulze, S.N. 2016. Bacillus velezensis RC 218 as a biocontrol agent to reduce Fusarium head blight and deoxynivalenol accumulation in wheat. Biological Control. 9:30-36. doi:10.1016/j.micres.2016.06.002.
Modification of the mannitol biosynthetic pathway in Aureobasidium pullulans to alter the structure of the polyol lipid liamocin -
Quinovosamycins: New tunicamycin-type antibiotics in which the alpha, beta-1", 11'-linked N-acetylglucosamine residue is replaced by N-acetylquinovosamine. -
Price, N.P.J., Labeda, D.P., Naumann, T.A., Vermillion, K.E., Bowman, M.J., Berhow, M.A., Metcalf, W.W., Bischoff, K.M. 2016. Quinovosamycins: New tunicamycin-type antibiotics in which the alpha, beta-1", 11'-linked N-acetylglucosamine residue is replaced by N-acetylquinovosamine. The Journal of Antibiotics. doi: 10.1038/ja.2016.49.
Kinetic properties of Rhizopus oryzae RPG1 endo-polygalacturonase hydrolyzing galacturonic acid oligomers Reprint Icon -
Mertens, J.A., Bowman, M.J. 2016. Kinetic properties of Rhizopus oryzae RPG1 endo-polygalacturonase hydrolyzing galacturonic acid oligomers. Biocatalysis and Agricultural Biotechnology. 5:11-16. doi: 10.1016/j.bcab.2015.12.005.
Sugar loss and enzyme inhibition due to oligosaccharides accumulation during high solids-loading enzymatic hydrolysis Reprint Icon -
Xue, S., Uppugundla, N., Bowman, M.J., Cavalier, D., Da Cousta Sousa, L., Dale, B.E., Balan, V. 2015. Sugar loss and enzyme inhibition due to oligosaccharides accumulation during high solids-loading enzymatic hydrolysis. Biotechnology for Biofuels. 8:195. doi: 10.1186/s13068-015-0378-9.
Miscanthus x giganteus xylooligosaccharides: Purification andfermentation -
Chen, M.H., Bowman, M.J., Cotta, M.A., Dien, B.S., Iten, L.B., Whitehead, T.R., Rausch, K.D., Tumbleson, M.E., Singh, V. 2016. Miscanthus x giganteus xylooligosaccharides: Purification and fermentation. Carbohydrate Polymers. 140:96-103. doi: 10.1016/j.carbpol.2015.12.052.
Mass spectrometric analysis to identify arabino-xylo-oligomers generated from hydrothermal processing of switchgrass -
Bowman, M.J., Nguyen, V.H., Dien, B.S. 2015. Mass spectrometric analysis to identify arabino-xylo-oligomers generated from hydrothermal processing of switchgrass [abstract]. p. 1.
Determining elemental composition of phytochemicals in camelina seed meal by high mass accuracy and spectral accuracy -
Berhow, M.A., Bowman, M.J., Gu, M. 2015. Determining elemental composition of phytochemicals in camelina seed meal by high mass accuracy and spectral accuracy [abstract]. American Society for Mass Spectrometry Annual Conference.
Understanding sugar yield loss and enzyme inhibition due to oligosaccharides accumulation during high solids-loading enzymatic hydrolisis. -
Xue, S., Uppugundla, N., Bowman, M.J., Jin, M., da Costa Sousa, L., Chundawat, S.P.S., Fox, B., Cavalier, D., Dale, B.E., Balan, V. 2015. Understanding sugar yield loss and enzyme inhibition due to oligosaccharides accumulation during high solids-loading enzymatic hydrolysis [abstract]. Symposium on Biotechnology for Fuels and Chemicals.
Genomic analysis of Bacillus subtilis OH 131.1 and coculturing with Cryptococcus flavescens for control of fusarium head blight Reprint Icon -
Dunlap, C.A., Schisler, D.A., Bowman, M.J., Rooney, A.P. 2015. Genomic analysis of Bacillus subtilis OH 131.1 and coculturing with Cryptococcus flavescens for control of fusarium head blight. Plant Gene. 2:1-9.
Triacetic acid lactone production in industrial Saccharomyces yeast strains Reprint Icon -
Saunders, L.P., Bowman, M.J., Mertens, J.A., Da Silva, N.A., Hector, R.E. 2015. Triacetic acid lactone production in industrial Saccharomyces yeast strains. Journal of Industrial Microbiology and Biotechnology. 42:711-721.
Isolation and characterization of unhydrolyzed oligosaccharides from switchgrass (Panicum virgatum, L.) xylan after exhaustive enzymatic treatment with commercial enzyme preparations Reprint Icon -
Bowman, M.J., Dien, B.S., Vermillion, K.E., Mertens, J.A. 2015. Isolation and characterization of unhydrolyzed oligosaccharides from switchgrass (Panicum virgatum, L.) xylan after exhaustive enzymatic treatment with commercial enzyme preparations. Carbohydrate Research. 407:42-50.
Collision-induced fragmentation accurate mass spectrometric analysis methods to rapidly characterize plant extracts -
Berhow, M.A., Bowman, M.J. 2014. Collision-induced fragmentation accurate mass spectrometric analysis methods to rapidly characterize plant extracts [abstract]. Illinois Heartland Local Section of the American Chemical Society.
The use of genomics and chemistry to screen for secondary metabolites in bacillus spp. biocontrol organisms -
Dunlap, C.A., Bowman, M.J. 2014. The use of genomics and chemistry to screen for secondary metabolites in bacillus spp. biocontrol organisms. In: Gross, A.D., Coats, J.R., Duke, S.O., Seiber, J.N., editors. Biopesticides: State of the Art and Future Opportunities. Washington, D.C.: American Chemical Society. p. 95-112.
Structural characterization (1->2)-beta-xylose-(1->3)-alpha-arabinose-containing oligosaccharide products of extracted switchgrass (Panicum virgatum, L.) xylan treatment with alpha-arabinofuranosidase and beta-endo-xylanase. Reprint Icon -
Bowman, M.J., Dien, B.S., Vermillion, K., Mertens, J.A. 2014. Structural characterization of (1-2)-ß-xylose-(1-3)-alpha-arabinose-containing oligosaccharide products of extracted switchgrass (Panicum virgatum, L.) xylan after exhaustive enzymatic treatment with alpha-arabinofuranosidase and ß-endo-xylanase. Carbohydrate Research. 398:63-71.
Developing and refining NIR calibrations for total carbohydrate composition and isoflavones and saponins in ground whole soy meal -
Berhow, M.A., Singh, M., Bowman, M.J., Bakota, E.L., Price, N.P. 2014. Developing and refining NIR calibrations for total carbohydrate composition and isoflavones and saponins in ground whole soy meal [abstract]. Phytochemical Society of North America.
Triacetic acid lactone production from Saccharomyces cerevisiae -
Saunders, L.P., Bowman, M.J., Hector, R.E. 2014. Triacetic acid lactone production from Saccharomyces cerevisiae [abstract].
Understanding the fundamental mechanism behind accumulation of oligosaccharides during high solids loading enzymatic hydrolysis -
Uppugundla, N., Bowman, M.J., Chundawat, S., Bergeman, L., Vander Meulen, K., Fox, B., Cavalier, D., Dale, B.E., Balan, V. 2014. Understanding the fundamental mechanism behind accumulation of oligosaccharides during high solids loading enzymatic hydrolysis [abstract].
Collision-induced fragmentation accurate mass spectrometric analysis methods to rapidly characterize phytochemicals in plant extracts -
Berhow, M.A., Duval, S.M., Bowman, M.J. 2014. Collision-induced fragmentation accurate mass spectrometric analysis methods to rapidly characterize phytochemicals in plant extracts [abstract]. Conference of Food Engineering.
Autohydrolysis of Miscanthus x giganteus for the production of xylooligosaccharides (XOS): Kinetics, characterization and recovery -
Chen, M.-H., Bowman, M.J., Dien, B.S., Rausch, K.D., Tumbleson, M.E., Singh, V. 2014. Autohydrolysis of Miscanthus x giganteus for the production of xylooligosaccharides (XOS): Kinetics, characterization and recovery. Bioresource Technology. 155:359-365.
Purification and characterization of xylooligosaccharides (XOS) from Miscanthus x giganteus -
Chen, M., Rajan, K., Bowman, M.J., Carrier, D.J., Dien, B.S., Rausch, K.D., Tumbleson, M.E., Singh, V. 2013. Purification and characterization of xylooligosaccharides (XOS) from Miscanthus x giganteus [abstract].
Antioxidant and sensory properties of rice bran oil-based extraction products -
Bakota, E.L., Moser, J.K., Hwang, H., Bowman, M.J., Palmquist, D.E., Liu, S.X. 2013. Antioxidant and sensory properties of rice bran oil-based extraction products [abstract]. Institute of Food Technologists.
Collision-induced fragmentation accurate mass spectrometric analysis methods to rapidly characterize plant extracts -
Berhow, M.A., Duval, S.M., Bowman, M.J. 2013. Collision-induced fragmentation accurate mass spectrometric analysis methods to rapidly characterize plant extracts [abstract]. In: Proceedings of the 52nd Annual Meeting of the Phytochemical Society of North America, August 3-7, 2013, Corvallis, Oregon. p. 47.
Antioxidant properties of rice bran oil-based extraction products -
Bakota, E.L., Moser, J.K., Hwang, H., Bowman, M.J., Palmquist, D.E., Liu, S.X. 2013. Antioxidant properties of rice bran oil-based extraction products [abstract]. American Oil Chemists' Society.
Functional genomic approaches for understanding the mode of action of Bacillus sp biocontrol strains -
Dunlap, C.A., Bowman, M.J., Schisler, D.A. 2013. Functional genomic approaches for understanding the mode of action of Bacillus sp biocontrol strains. Meeting Abstract.
Solvent fractionation of rice bran oil to produce a spreadable rice bran product -
Bakota, E.L., Winkler-Moser, J.K., Hwang, H., Bowman, M.J., Palmquist, D.E., Liu, S.X. 2013. Solvent fractionation of rice bran oil to produce a spreadable rice bran product. European Journal of Lipid Science and Technology. 115(8):847-857.
Structural characterization of novel extracellular liamocins (mannitol oils) produced by Aureobasidium pullulans strain NRRL 50380 -
Price, N.P., Manitchotpisit, P., Vermillion, K., Bowman, M.J., Leathers, T.D. 2013. Structural characterization of novel extracellular liamocins (mannitol oils) produced by Aureobasidium pullulans strain NRRL 50380. Carbohydrate Research. 370(4):24-32.
Genomic analysis and secondary metabolite production in Bacillus amyloliquefaciens AS 43.3: a biocontrol antagonist of fusarium head blight -
Dunlap, C.A., Bowman, M.J., Schisler, D.A. 2013. Genomic analysis and secondary metabolite production in Bacillus amyloliquefaciens AS 43.3: A biocontrol antagonist of Fusarium head blight. Biocontrol. 64(1):166-175.
Comparative analysis of end point enzymatic digests of arabino-xylan isolated from switchgrass (Panicum virgatum L) of varying maturities using LC-MS(n) -
Bowman, M.J., Dien, B.S., O'Bryan, P.J., Sarath, G., Cotta, M.A. 2012. Comparative analysis of end point enzymatic digests of arabino-xylan isolated from switchgrass (Panicum virgatum L) of varying maturities using LC-MS(n). Metabolites. 2(4):959-982.
Genomic comparisons of two Bacillus subtilis biocontrol strains with different modes of actions -
Dunlap, C.A., Bowman, M.J., Schisler, D.A. 2012. Genomic comparisons of two Bacillus subtilis biocontrol strains with different modes of actions [abstract]. American Phytopathological Society. Paper #133.
Analysis of the cell-wall xylan component of brown midrib mutants of Sorghum bicolor L. by LC-MS^n^ -
Bowman, M.J., Dien, B.S., Sattler, S.E. 2012. Analysis of the cell-wall xylan component of brown midrib mutants of Sorghum bicolor L. by LC-MS^n^. Gordon Research Conference [abstract].
Liquid chromatography-mass spectrometry investigation of enzyme-resistant xylooligosaccharide structures of switchgrass associated with ammonia pretreatment, enzymatic saccharification, and fermentation -
Bowman, M.J., Dien, B.S., Hector, R.E., Sarath, G., Cotta, M.A. 2012. Liquid chromatography-mass spectrometry investigation of enzyme-resistant xylooligosaccharide structures of switchgrass associated with ammonia pretreatment, enzymatic saccharification, and fermentation. Bioresource Technology. 110:437-447.
Pseudomonas syringae coordinates production of a motility-enabling surfactant with flagellar assembly -
Burch, A.Y., Shimada, B.K., Mullin, S.W., Dunlap, C.A., Bowman, M.J., Lindow, S.E. 2012. Pseudomonas syringae coordinates production of a motility-enabling surfactant with flagellar assembly. Journal of Bacteriology. 194(6):1287-1298.
Plant cell walls to ethanol. -
Jordan, D.B., Bowman, M.J., Braker, J.D., Dien, B.S., Hector, R.E., Lee, C.C., Mertens, J.A., Wagschal, K.C. 2012. Plant cell walls to ethanol. Biochemical Journal. 442:247-252.
Subsite binding energies of an exo-polygalacturonase using isothermal titration calorimetry -
Mertens, J.A., Hector, R.E., Bowman, M.J. 2012. Subsite binding energies of an exo-polygalacturonase using isothermal titration calorimetry. Thermochimica Acta. 527:219-222.
Effect of cellulosic sugar degradation products (furfural and hydroxymethylfurfural) on acetone-butanol-ethanol (ABE) fermentation using Clostridium beijerinckii P260 -
Qureshi, N., Bowman, M.J., Saha, B.C., Hector, R.E., Berhow, M.A., Cotta, M.A. 2012. Effect of cellulosic sugar degradation products (furfural and hydroxymethylfurfural) on acetone-butanol-ethanol (ABE) fermentation using Clostridium beijerinckii P260. Journal of Food and Bioproducts Processing. 90:533-540.
Kinetic mechanism of an aldehyde reductase of Saccharomyces cerevisiae that relieves toxicity of furfural and 5-hydroxymethylfurfural -
Jordan, D.B., Braker, J.D., Bowman, M.J., Vermillion, K., Moon, J., Liu, Z. 2011. Kinetic mechanism of an aldehyde reductase of Saccharomyces cerevisiae that relieves toxicity of furfural and 5-hydroxymethylfurfural. Biochimica et Biophysica Acta. 1814:1686-1694.
Saccharomyces cerevisiae engineered for xylose metabolism requires gluconeogenesis and the oxidative branch of the pentose phosphate pathway for aerobic xylose assimilation Reprint Icon -
Hector, R.E., Mertens, J.A., Bowman, M.J., Nichols, N.N., Cotta, M.A., Hughes, S.R. 2011. Saccharomyces cerevisiae engineered for xylose metabolism requires gluconeogenesis and the oxidative branch of the pentose phosphate pathway for aerobic xylose assimilation. Yeast. 28:645-660.
Identifying enzyme resistant xylo-oligomers from processing switchgrass to bioethanol -
Bowman, M.J., Dien, B.S., Hector, R.E., Sarath, G., Cotta, M.A. 2011. Identifying enzyme resistant xylo-oligomers from processing switchgrass to bioethanol [abstract]. American Society for Mass Spectrometry. p. 66.
Switchgrass alkaline pretreatment, enzymatic saccharification, and fermentation with residual oligosaccharide product analysis by mass spectrometry -
Bowman, M.J., Dien, B.S., Hector, R.E., Sarath, G., Cotta, M.A. 2011. Switchgrass alkaline pretreatment, enzymatic saccharification, and fermentation with residual oligosaccharide product analysis by mass spectrometry [abstract]. In: Proceedings of the 33rd Symposium on Biotechnology for Fuels and Chemicals, May 2-5, 2011, Seattle, Washington. Paper NO. 10-19.
Butanol productivity enhancers in wheat straw hydrolyzate: employing potential of enhanced reaction rate -
Qureshi, N., Bowman, M.J., Hector, R.E., Saha, B.C., Cotta, M.A. 2011. Butanol productivity enhancers in wheat straw hydrolyzate: employing potential of enhanced reaction rate [abstract]. In: Proceedings of the 33rd Symposium on Biotechnology for Fuels and Chemicals, May 2-5, 2011, Seattle, Washington. Paper No. 11-11.
Biosynthesis of the tunicamycins: Translocase-I inhibitors that target the synthesis of bacterial peptidoglycan and eukaryotic N-glycoproteins -
Price, N.P., Bowman, M.J., Chen, W., Deng, Z. 2011. Biosynthesis of the tunicamycins: Translocase-I inhibitors that target the synthesis of bacterial peptidoglycan and eukaryotic N-glycoproteins [abstract]. University of Waterloo, Ontario, Canada, Department of Biology Seminar Series. p. 2.
Selective chemical oxidation and depolymerization of switchgrass (Panicum virgatum L.) xylan with oligosaccharide product analysis by mass spectrometry -
Bowman, M.J., Dien, B.S., O Bryan, P.J., Sarath, G., Cotta, M.A. 2011. Selective chemical oxidation and depolymerization of switchgrass (Panicum virgatum L.) xylan with oligosaccharide product analysis by mass spectrometry. Rapid Communications in Mass Spectrometry. 25(8):941-950.
Expression and characterization of fifteen Rhizopus oryzae 99-880 polygalacturonase enzymes in Pichia pastoris -
Mertens, J.A., Bowman, M.J. 2011. Expression and characterization of fifteen Rhizopus oryzae 99-880 polygalacturonase enzymes in Pichia pastoris. Current Microbiology. 62(4):1173-1178.
Stereochemistry of Furfural Reduction by a Saccharomyces cerevisiae Aldehyde Reductase That Contributes to In Situ Furfural Detoxification -
Bowman, M.J., Jordan, D.B., Vermillion, K., Braker, J.D., Moon, J., Liu, Z. 2010. Stereochemistry of Furfural Reduction by a Saccharomyces cerevisiae Aldehyde Reductase That Contributes to In Situ Furfural Detoxification. Applied and Environmental Microbiology. 76(15):4926-4932.
Chemical depolymerization of switchgrass xylan with oligosaccharide product analysis by HPAEC-PAD and mass spectrometry -
Bowman, M.J., Dien, B.S., O Bryan, P.J., Sarath, G., Cotta, M.A. 2010. Chemical depolymerization of switchgrass xylan with oligosaccharide product analysis by HPAEC-PAD and mass spectrometry [abstract]. Biotechnology for Fuels and Chemicals. p. 73.
Functionalized C-Glycoside Ketohydrazones: Carbohydrate Derivatization that Retains the Ring Integrity of the Terminal Reducing Sugar -
Price, N.P., Bowman, M.J., Legall, S., Berhow, M.A., Kendra, D.F., Lerouge, P. 2010. Functionalized C-glycoside ketohydrazones: Carbohydrate derivatization that retains the ring integrity of the terminal reducing sugar. Analytical Chemistry. 82(7):2893-2899.
Production of Butanol (a Biofuel) from Agricultural Residues: Part II - Use of Corn Stover and Switchgrass Hydrolysates -
Qureshi, N., Saha, B.C., Hector, R.E., Dien, B., Hughes, S., Liu, S., Iten, L., Bowman, M.J., Sarath, G., Cotta, M.A. 2010. Production of butanol (a Biofuel) from agricultural residues: Part II - Use of corn stover and switchgrass hydrolysates. Biomass and Bioenergy. 34(4):566-571.
The Saccharomyces cerevisiae YMR315W Gene Encodes an NADP(H)-Specific Oxidoreductase Regulated by the Transcription Factor Stb5p in Response to NADPH Limitation -
Hector, R.E., Bowman, M.J., Skory, C.D., Cotta, M.A. 2009. The Saccharomyces cerevisiae YMR315W gene encodes an NADP(H)-specific Oxidoreductase regulated by the transcription factor Stb5p in response to NADPH limitation. New Biotechnology. 26(3/4):171-180.
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Last Modified: 5/2/2016
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