Research Project:
INDUSTRIALLY ROBUST ENZYMES AND MICROORGANISMS FOR PRODUCTION OF SUGARS AND ETHANOL FROM AGRICULTURAL BIOMASS
Location: Fermentation Biotechnology Research
Publications
Beta-D-xylosidase from Selenomonas ruminantium: role of glutamate 186 in catalysis revealed by site-directed mutagenesis, alternate substrates, and inhibitors
- (Abstract)
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(06-May-09) |
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Conversion of switchgrass to sugars and ethanol using dilute ammonium hydroxide pretreatment
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(06-May-09) |
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Conversion of lower lignin mutants of Sorghum bicolor (L.) to ethanol
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(13-Mar-09) |
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Development of an Ethanol Yield Procedure for Dry Grind Corn Processing
- (Peer Reviewed Journal)
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(23-Feb-09) |
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Mass balances and analytical methods for biomass pretreatment experiments
- (Book/Chapter)
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(31-Oct-08) |
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Novel family of carbohydrate esterases, based on identification of the Hypocrea jecorina acetyl esterase gene
- (Peer Reviewed Journal)
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Li, X., Skory, C.D., Cotta, M.A., Puchart, V., Biely, P. 2008. Novel family of carbohydrate esterases, based on identification of the Hypocrea jecorina acetyl esterase gene. Applied and Environmental Microbiology. 74(24):7482-7489. |
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Beta-D-xylosidase from Selenomonas ruminantium: thermodynamics of enzyme-catalyzed and noncatalyzed reactions
- (Peer Reviewed Journal)
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Jordan, D.B., Braker, J.D. 2009. Beta-D-xylosidase from Selenomonas ruminantium: Thermodynamics of Enzyme-catalyzed and Noncatalyzed Reactions. Applied Biochemistry and Biotechnology. 155(1-3):330-346. |
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Identification, biochemical characterization, and evolution of the Rhizopus oryzae 99-880 polygalacturonase gene family
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Mertens, J.A., Burdick, R.C., Rooney, A.P. 2008. Identification, biochemical characterization, and evolution of the Rhizopus oryzae 99-880 polygalacturonase gene family. Fungal Genetics and Biology. 45(12):1616-1624. |
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Simultaneous Saccharification and Fermentation and Partial Saccharification and Co-fermentation of Lignocellulosic Biomass for Ethanol Production
- (Book/Chapter)
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(26-Sep-08) |
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Aminoalcohols as probes of the two-subsite active site of Beta-D-xylosidase from Selenomonas ruminantium
- (Peer Reviewed Journal)
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Jordan, D.B., Mertens, J.A., Braker, J.D. 2009. Aminoalcohols as probes of the two-subsite active site of Beta-D-xylosidase from Selenomonas ruminantium. Biochimica et Biophysica Acta. 1794(1):144-158. |
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Challenges of converting agricultural abundance to biofuels: Agricultural Research Service-United States Department of Agriculture Research
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(28-Aug-08) |
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Microbial fuel cell performance with a pressurized cathode chamber
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Fornero, J.J., Rosenbaum, M., Cotta, M.A., Angenent, L.T. 2008. Microbial fuel cell performance with a pressurized cathode chamber. Environmental Science and Technology. 42(22):8578-8584. |
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Opportunities for increasing biomass conversion efficiencies to ethanol by engineering energy crops
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(17-Aug-08) |
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Isolation and characterization of 17 different genes encoding putative endopolygalacturonase genes from Rhizopus oryzae
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Mertens, J.A., Burdick, R.C. 2008. Isolation and characterization of 17 different genes encoding putative endopolygalacturonase genes from Rhizopus oryzae [abstract]. Society of Industrial Microbiology. p. 116. |
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Beta-D-xylosidase from Selenomonas ruminantium: thermodynamics of enzyme-catalyzed and noncatalyzed reactions
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(18-Jul-08) |
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Thin stillage fractionation using ultrafiltration: resistance in series model
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Arora, A., Dien, B.S., Belyea, R.L., Wang, P., Singh, V., Tumbleson, M.E., Rausch, K.D. 2009. Thin stillage fractionation using ultrafiltration: resistance in series model. Bioprocess and Biosystems Engineering. 32(2):225-233. |
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Evaluating low lignin mutants of forage sorghum for increased conversion efficiency to sugars and ethanol
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Dien, B.S., Sarath, G., Pedersen, J.F., Funnell-Harris, D.L., Sattler, S.E., Nichols, N.N. 2008. Evaluating low lignin mutants of forage sorghum for increased conversion efficiency to sugars and ethanol. Biotechnology for Fuels and Chemicals. p. 267. |
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Beta-D-xylosidase from Selenomonas ruminantium: thermodynamics of enzyme-catalyzed and noncatalyzed reactions
- (Abstract)
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(07-May-08) |
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Beta-D-xylosidase from Selenomonas ruminantium: catalyzed reactions with natural substrates
- (Abstract)
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(07-May-08) |
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Energy crops for ethanol: a processing perspective
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Dien, B.S. 2008. Energy crops for ethanol: a processing perspective. International Crop Science. Paper No. CS4-S4-06. |
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Energy crops for ethanol: a processing perspective
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Dien, B.S., Sarath, G., Pedersen, J.F., Vogel, K.P., Jung, H.G., Sattler, S.E., Casler, M.D., Mitchell, R., Cotta, M.A. 2008. Energy crops for ethanol: a processing perspective. In: Proceedings of the 5th International Crops Science Congress, April 13-18, 2008, Jeju Island, Korea. p. 1-5. |
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Identification and transcriptional profiling of Pseudomonas putida genes involved in furoic acid metabolism
- (Peer Reviewed Journal)
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Nichols, N.N., Mertens, J.A. 2008. Identification and transcriptional profiling of Pseudomonas putida genes involved in furoic acid metabolism. FEMS Microbiology Letters. 284:52-57. |
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Structure of the two-subsite beta-D-xylosidase from Selenomonas ruminantium in complex with 1,3-bis[tris(hydroxymethyl)methylamino]propane
- (Peer Reviewed Journal)
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Brunzelle, J.S., Jordan, D.B., McCaslin, D.R., Olczak, A., Wawrzak, Z. 2008. Structure of the two-subsite beta-D-xylosidase from Selenomonas ruminantium in complex with 1,3-bis[tris(hydroxymethyl)methylamino] propane. Archives Of Biochemistry and Biophysics. 474(1):157-166. |
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Crystallization and preliminary X-ray diffraction analysis of the glucuronoyl esterase catalytic domain from Hypocrea jecorina
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Wood, S.J., Li, X., Cotta, M.A., Biely, P., Duke, N.E., Schiffer, M., Pokkuluri, P.R. 2008. Crystallization and preliminary X-ray diffraction analysis of the glucuronoyl esterase catalytic domain from Hypocrea jecorina. Acta Crystallographica Section F. 64(4):255-257. |
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Fungal metabolism of fermentation inhibitors present in corn stover dilute acid hydrolysate
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Nichols, N.N., Sharma, L.N., Mowery, R.A., Chambliss, C.K., Van Walsum, G.P., Dien, B.S., Iten, L.B. 2008. Fungal metabolism of fermentation inhibitors present in corn stover dilute acid hydrolysate. Enzyme and Microbial Technology. 42(7):624-630. |
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Production of Ethanol from Corn and Sugarcane
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Nichols, N.N., Dien, B.S., Monceaux, D.A., Bothast, R.J. 2008. Production of ethanol from corn and sugarcane. In: Wall, J., Harwood, C.S., Demain, A.L., editors. Bioenergy. Chapter 1. Washington, DC: ASM Press. p. 3-15. |
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Production of Ethanol from Grain
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Nichols, N.N., Bothast, R.J. 2008. Production of ethanol from grain. In: Vermerris, W., editor. Genetic Improvement of Bioenergy Crops. New York, NY: Springer. p. 75-88. |
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Process review of lignocellulose biochemical conversion to fuel ethanol
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Dien, B.S. 2007. Process review of lignocellulose biochemical conversion to fuel ethanol. Proceedings of U.S. Frontiers of Engineering. p. 65-74. |
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Developing herbaceous energy crops as feedstocks for biofuel production
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Dien, B.S., Jung, H.G., Vogel, K.P., Casler, M.D., Lamb, J.F., Iten, L.B., Mitchell, R., Sarath, G. 2007. Developing herbaceous energy crops as feedstocks for biofuel production. In: Proceedings of the UJNR Food and Agricultural Panel, October 21-25, 2007, Tsukuba, Japan. p. 137-140. |
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Beta-D-Xylosidase from Selenomonas Ruminantium: Catalyzed Reactions with Natural and Artificial Substrates
- (Peer Reviewed Journal)
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Jordan, D.B. 2008. Beta-D-xylosidase from Selenomonas ruminantium: catalyzed reactions with natural and artificial substrates. Applied Biochemistry and Biotechnology. 146:137-149. |
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Enzyme characterization for hydrolysis of AFEX and liquid hot-water pretreated distillers' grains and their conversion to ethanol
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Dien, B.S., Ximenes, E.A., O'Bryan, P.J., Moniruzzaman, M., Li, X., Balan, V., Dale, B., Cotta, M.A. 2008. Enzyme characterization for hydrolysis of AFEX and liquid hot-water pretreated distillers' grains and their conversion to ethanol. Bioresource Technology. 99(12):5216-5225. |
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Composition of corn dry-grind ethanol by-products: DDGS, wet cake, and thin stillage
- (Peer Reviewed Journal)
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Kim, Y., Mosier, N.S., Hendrickson, R., Ezeji, T., Blaschek, H., Dien, B.S., Cotta, M.A., Dale, B., Ladisch, M.R. 2008. Composition of corn dry-grind ethanol by-products: DDGS, wet cake, and thin stillage. Bioresource Technology. 99(12):5165-5176. |
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Structure-Function Relationships of a Catalytically-Efficient Beta-D-Xylosidase
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(03-Aug-07) |
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The Cesa (Ce3b) Carboxy-Terminal Domain of Ruminococcus Flavefaciens 17 Has Glucuronoyl Esterase Activity
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(03-Aug-07) |
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Identification of genes encoding microbial glucuronoyl esterases
- (Peer Reviewed Journal)
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(16-Jul-07) |
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Variation in Relative Substrate Specificty of Bifunctional Beta-D-Xylosidase/alpha-L-Arabinofuranosidase by Single-Site Mutations: Roles of Substrate Distortion and Recognition
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Jordan, D.B., Li, X. 2007. Variation in relative substrate specificity of bifunctional beta-D-xylosidase/alpha-L-arabinofuranosidase by single-site mutations: roles of substrate distortion and recognition. Biochimica et Biophysica Acta. 1774(9):1192-1198. |
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Fiber Separated from Distillers Dried Grains with Solubles As a Feedstock for Ethanol Production to Increase Output from Dry Grind Corn Plants
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Srinivasan, R., Dien, B.S., Rausch, K.D., Tumbleson, M.E., Singh, V. 2007. Fiber Separated from Distillers Dried Grains with Solubles as a Feedstock for Ethanol Production. Cereal Chemistry. 84(6):563-566. |
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A Primer for Lignocellulose Biochemical Conversion to Fuel Ethanol
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Dien, B.S. 2007. A primer for lignocellulose biochemical conversion to fuel ethanol. Proceedings of the Fifth International Starch Technology Conference. p. 5.1-5.9. |
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Inhibition of the Two-Subsite Beta-D-Xylosidase from Selenomonas Ruminantium by Sugars: Competitive, Noncompetitive, Double Binding, and Slow Binding Modes
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Jordan, D.B., Braker, J.D. 2007. Inhibition of the two-subsite beta-d-xylosidase from Selenomonas ruminantium by sugars: competitive, noncompetitive, double binding, and slow binding modes. Archives of Biochemistry and Biophysics. 465(1):231-246. |
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Removal of Inhibitors from Biomass Sugars Using a Biological Process
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(02-May-07) |
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Evaluating Herbaceous Perennials As Energy Crops for Production of Fuel Ethanol
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(02-May-07) |
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A Novel Pretreatment (Diethyl Oxalate) Releasing Fermentable Sugars and Useful Fibers from Lignocellulose
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(02-May-07) |
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Beta-D-Xylosidase from Selenomonas Ruminantium: Thermodynamics of Enzyme-Catalyzed and Noncatalyzed Reactions
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Jordan, D.B. 2007. Beta-D-xylosidase from Selenomonas ruminantium: thermodynamics of enzyme-catalyzed and noncatalyzed reactions [abstract]. Biotechnology for Fuels and Chemicals. p. 105. |
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Beta-D-Xylosidase from Selenomonas Ruminantium: Catalyzed Reactions with Natural and Artificial Substrates
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Jordan, D.B. 2007. Beta-D-xylosidase from Selenomonas ruminantium: catalyzed reactions with natural and artificial substrates [abstract]. Biotechnology for Fuels and Chemicals. p. 106. |
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Developing Herbaceous Energy Crops As Feedstocks for Bioethanol Production
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Dien, B.S., Cotta, M.A., Jung, H.G., Vogel, K.P. 2007. Developing herbaceous energy crops as feedstocks for bioethanol production [abstract]. American Chemical Society. Paper No. Agro-148. |
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Biological Abatement for Removal of Inhibitors from Biomass Sugars
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(29-Mar-07) |
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Structure-Function Relationships of a Catalytically Efficient Beta-D-Xylosidase
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Jordan, D.B. 2007. Structure-function relationships of a catalytically efficient beta-D-xylosidase [abstract]. American Chemical Society. Paper No. 175. |
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Isolation and Characterization of Two Genes That Encode Active Glucoamylase Without a Starch Binding Domain from a Type II Rhizopus Oryzae
- (Peer Reviewed Journal)
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Mertens, J.A., Skory, C.D. 2007. Isolation and characterization of two genes that encode active glucoamylase without a starch binding domain from Rhizopus oryzae. Current Microbiology. 54:462-466. |
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Production of Highly Active Lignocellulose-Degrading Enzymes of Anaerobic Fungi by Industrially Relevant Fungi
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Li, X., Skory, C.D., Ximenes, E.A., Jordan, D.B., Dien, B.S., Hughes, S.R., Cotta, M.A. 2007. Production of highly active lignocellulose-degrading enzymes of anaerobic fungi by industrially relevant fungi [abstract]. |
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A Primer for Lignocellulose Biochemical Conversion to Fuel Ethanol
- (Book/Chapter)
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(20-Jan-07) |
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Protein Expression and Secretion by Trichoderma Reesei under Low Endogenous Protein Background
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(12-Jan-07) |
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Forage Energy Crops As Feedstocks for Production of Fuel Ethanol
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Cotta, M.A., Dien, B.S., Iten, L.B., Jung, H.G., Lamb, J.F., Vogel, K.P., Mitchell, R., Sarath, G., Casler, M.D., Weimer, P.J. 2006. Forage energy crops as feedstocks for production of fuel ethanol [abstract]. Biocatalysis and Bioenergy. p. 21. |
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Expression of An at-Rich Xylanase Gene from the Anaerobic Fungus Orpinomyces Sp. Strain Pc-2 in and Secretion of the Heterologous Enzyme by Hypocrea Jecorina
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Li, X., Skory, C.D., Ximenes, E.A., Jordan, D.B., Dien, B.S., Hughes, S.R., Cotta, M.A. 2007. Expression of an AT-rich xylanase gene from the anaerobic fungus Orpinomyces sp. strain PC-2 in and secretion of the heterologous enzyme by Hypocrea jecorina. Applied Microbiology and Biotechnology. 74:1264-1275. |
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Fungicidal Carboxamides
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Basarab, G.S., Jordan, D.B., Lessen, T.A., Hansen, S.L. 2006. Fungicidal carboxamides. U.S. Patent 7,135,585. |
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Beta-D-Xylosidase from Selenomonas Ruminantium of Glycoside Hydrolase Family 43
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Jordan, D.B., Li, X., Dunlap, C.A., Whitehead, T.R., Cotta, M.A. 2007. Beta-D-xylosidase from Selenomonas ruminantium of glycoside hydrolase family 43. Applied Biochemistry and Biotechnology. 136-140:93-104. |
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Hemicellulases for Mediating Biomass Saccharification
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(13-Oct-06) |
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Hemicellulases for Mediating Biomass Saccharification
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Jordan, D.B., Dien, B.S., Li, X., Cotta, M.A. 2006. Hemicellulases for mediating biomass saccharification. In: Proceedings of Renewable Energy 2006, October 9-13, 2006, Makuhari Messe, Chiba, Japan. p. 1036-1041. |
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Review of Current Research Directions for Producing Biological Ethanol at the National Center for Agricultural Utilization Research
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Dien, B.S., Saha, B.C. 2006. Review of current research directions for producing biological ethanol at the National Center for Agricultural Utilization Research [abstract]. Advancing Renewable Energy. p. 27. |
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Beta-D-Xylosidase from Selenomonas Ruminantium of Glycoside Hydrolase Family 43
- (Abstract)
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Jordan, D.B., Li, X., Dunlap, C.A., Whitehead, T.R., Cotta, M.A. 2006. Beta-D-xylosidase from Selenomonas ruminantium of glycoside hydrolase family 43 [abstract]. Gordon Research Conference. p. 3. |
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Isolation and Characterization of a Second Glucoamylase Without a Starch Binding Domain from Rhizopus Oryzae
- (Peer Reviewed Journal)
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Mertens, J.A., Skory, C.D. 2007. Isolation and characterization of a second glucoamylase gene without a starch binding domain from Rhizopus oryzae. Enzyme and Microbial Technology. 40:874-880. |
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Culture Containing Biomass Acid Hydrolysate and Coniochaeta Ligniaria Fungus
- (Patent Application)
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Nichols, N.N., Lopez, M.J., Dien, B.S., Bothast, R.J. 2006. Culture containing biomass acid hydrolysate and Coniochaeta ligniaria fungus. U.S. Patent 7,067,303. |
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Lignocellulose-Degrading Enzymes Produced by the Ascomycete Coniochaeta Ligniaria and Related Species: Application for a Lignocellulosic Substrate Treatment
- (Peer Reviewed Journal)
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Lopez, M.J., Vargas-Garcia, M., Suarez-Estrella, F., Nichols, N.N., Dien, B.S., Moreno, J. 2007. Lignocellulose-degrading enzymes produced by the ascomycete Coniochaeta ligniaria and related species: application for a lignocellulosic substrate treatment. Enzyme and Microbial Technology. 40:794-800. |
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Pretreatment and Hydrolysis of Distiller's Grains to Fermentable Sugars: An Integrated Approach by the Midwest Consortium for Sustainable Biobased Products and Energy
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Cotta, M.A., Dien, B.S., Li, X., Ladisch, M., Mosier, N., Tyner, W., Woodson, R., Blaschek, H., Dale, B., Shanks, B., Verkade, J. 2006. Pretreatment and hydrolysis of distiller's grains to fermentable sugars: an integrated approach by the Midwest Consortium for sustainable biobased products and energy [abstract]. Corn Utilization. Paper No. 24. |
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Isolation of Extremely at-Rich Genomic DNA and Analysis of Genes Encoding Carbohydrate-Degrading Enzymes from Orpinomyces Sp. Strain Pc-2
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Chen, H., Hopper, S.L., Li, X., Ljungdahl, L.G., Cerniglia, C.E. 2006. Isolation of extremely AT-rich genomic DNA and analysis of genes encoding carbohydrate-degrading enzymes from Orpinomyces sp. strain PC-2. Current Microbiology. 53:396-400. |
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High Level Expression and Characterization of the Cyclophilin B Gene from the Anaerobic Fungus Orpinomyces Sp. Strain Pc-2
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Chen, H., Li, X., Xu, H., Ljungdahl, L.G., Cerniglia, C.E. 2006. High level expression and characterization of the cyclophilin B gene from the anaerobic fungus Orpinomyces sp. strain PC-2. Protein and Peptide Letters. 13:727-732. |
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Identification and Transcriptional Profiling of Furoic Acid Metabolism Genes in Pseudomonas Putida
- (Abstract)
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Nichols, N.N., Mertens, J.A., Dien, B.S. 2006. Identification and transcriptional profiling of furoic acid metabolism genes in Pseudomonas putida [abstract]. American Society for Microbiology. Paper No. Q-449. |
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An Overview of Recent Advancements in Lignocellulose to Ethanol Conversion Technology
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Dien, B.S., Nichols, N.N., Li, X., Cotta, M.A. 2006. An overview of recent advancements in lignocellulose to ethanol conversion technology [abstract]. International Conference on Bioenergy. p. 8. |
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Beta-D-Xylosidase from Selenomonas Ruminantium of Glycoside Hydrolase Family 43
- (Abstract)
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Jordan, D.B., Li, X., Dunlap, C.A., Whitehead, T.R., Cotta, M.A. 2006. Beta-D-xylosidase from Selenomonas ruminantium of glycoside hydrolase family 43 [abstract]. Biotechnology for Fuels and Chemicals. p.93 |
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Research Challenges and Opportunities for Cellulose Conversion Technology in a Dry Mill Pathway
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Ladisch, M., Tyner, W., Mosier, N., Cotta, M.A., Dien, B.S., Blaschek, H., Dale, B., Shanks, B., Petersen, G. 2006. Research challenges and opportunities for cellulose conversion technology in a dry mill pathway [abstract]. Biotechnology for Fuels and Chemicals. p. 48. |
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Plasmids for Expression of Heterologous Proteins in Rhizopus Oryzae
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Mertens, J.A., Skory, C.D., Ibrahim, A.S. 2006. Plasmids for expression of heterologous proteins in Rhizopus oryzae. Archives of Microbiology. 186:41-50. |
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Codon Optimization of An A+t Rich Xylanase Gene from the Anaerobic Fungus Orpinomyces Pc-2 for Expression by Trichoderma Reesei
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Li, X., Jordan, D.B., Ximenes, E.A., Cotta, M.A., Dien, B.S., Hughes, S.R. 2006. Codon optimization of an A+T rich xylanase gene from the anaerobic fungus Orpinomyces PC-2 for expression by Trichoderma reesei [abstract]. In: Proceedings of the 9th International Workshop on Trichoderma and Gliocladium, April 6-8, 2006, Vienna, Austria. Paper No. T3. |
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Development of Forage Crops As Feedstocks for Production of Fuel Ethanol
- (Abstract)
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Cotta, M.A., Dien, B.S., Jung, H.G., Vogel, K.P., Casler, M.D., Lamb, J.F., Weimer, P.J., Iten, L.B., Mitchell, R., Sarath, G. 2006. Development of forage crops as feedstocks for production of fuel ethanol [abstract]. International Conference on Bioenergy. p. I-5. |
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Chemical Composition and Response to Dilute-Acid Pretreatment and Enzymatic Saccharification of Alfalfa, Reed Canarygrass, and Switchgrass
- (Peer Reviewed Journal)
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Dien, B.S., Jung, H.G., Vogel, K.P., Casler, M.D., Lamb, J.F., Iten, L.B., Mitchell, R., Sarath, G. 2006. Chemical composition and response to dilute-acid pretreatment and enzymatic saccharification of alfalfa, reed canarygrass, and switchgrass. Biomass and Bioenergy. 30:880-891. |
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Enzymatic Saccharification of Hot-Water Pretreated Corn Fiber for Production of Monosaccharides
- (Peer Reviewed Journal)
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Dien, B.S., Li, X., Iten, L.B., Jordan, D.B., Nichols, N.N., O Bryan, P.J., Cotta, M.A. 2006. Enzymatic saccharification of hot-water pretreated corn fiber for production of monosaccharides. Enzyme and Microbial Technology. 39:1137-1144. |
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Heterologous Production by Trichoderma Reesei of a Xylanase of the Anaerobic Fungus Orpinomyces Pc-2
- (Abstract)
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(09-Nov-05) |
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Active-Site Models of Riboflavin Synthase
- (Proceedings/Symposium)
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Jordan, D.B., Calabrese, J.C., Liao, D., Wawrzak, Z., Zheng, Y. 2005. Active-site models of riboflavin synthase. In: Nishino, T., Miura, R., Tanokura, M., Fukui, K., editors. Flavins and Flavoproteins 2005. Tokyo: ARchiTect, Inc. p. 737-742. |
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Development of Plasmids for Expression of Heterologous Proteins in Rhizopus Oryzae
- (Abstract)
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Mertens, J.A., Skory, C.D. 2005. Development of plasmids for expression of heterologous proteins in Rhizopus oryzae [abstract]. Society of Industrial Microbiology. p. 100. |
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Ethanol Fermentation of Sugars in Corn Stover Dilute Acid Hydrolysates
- (Abstract)
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Nichols, N.N., Dien, B.S., Cotta, M.A. 2005. Ethanol fermentation of sugars in corn stover dilute acid hydrolysates [abstract]. Society of Industrial Microbiology. p. 85. |
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Use of Field Pea Starch As a Feedstock for Ethanol Fermentation
- (Abstract)
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Nichols, N.N., Dien, B.S., Wu, V., Cotta, M.A. 2005. Use of field pea starch as a feedstock for ethanol fermentation [abstract]. International Starch Technology. p. 96. |
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Enzymatic Saccharification of Pretreated Corn Fiber for Production of Sugars
- (Abstract)
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Dien, B.S., Li, X., Jordan, D.B., Nichols, N.N., Iten, L.B., Cotta, M.A. 2005. Enzymatic saccharification of pretreated corn fiber for production of sugars [abstract]. International Starch Technology. p. 90. |
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The Corn Ethanol Industry
- (Book/Chapter)
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Nichols, N.N., Dien, B.S., Bothast, R.J., Cotta, M.A. 2006. The corn ethanol industry. In: Minteer, S., editor. Alcoholic Fuels. Boca Raton, FL: CRS Press. p. 59-78. |
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Hydrolysis and Fermentation of Pericarp and Endosperm Fiber Recovered from Enzymatic Corn Dry Grind Process
- (Peer Reviewed Journal)
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Dien, B.S., Johnston, D., Hicks, K.B., Cotta, M.A., Singh, V. 2005. Hydrolysis and fermentation of pericarp and endosperm fibers recovered from enzymatic corn dry-grind process. Cereal Chemistry. 82(5):616-620. |
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Ethanol Fermentation of Starch from Field Peas
- (Peer Reviewed Journal)
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Nichols, N.N., Dien, B.S., Wu, Y., Cotta, M.A. 2005. Ethanol fermentation of starch from field peas. Cereal Chemistry. 82(5):554-558. |
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Enzymatic Saccharification of Pretreated Corn Fiber for Production of Sugars
- (Abstract)
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Dien, B.S., Li, X., Cotta, M.A. 2005. Enzymatic saccharification of pretreated corn fiber for production of sugars [abstract]. Biotechnology for Fuels and Chemicals. Paper No. B-36. |
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Active-Site Models of Riboflavin Synthase
- (Abstract)
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Jordan, D.B., Calabrese, J.C. 2005. Active-site models of riboflavin synthase [abstract]. International Symposium on Flavins and Flavoproteins. p. 104. |
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Butanol Production from Agricultural Residues: Impact of Degradation Products on Clostridium Beijerinckii Growth and Butanol Fermentation
- (Abstract)
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Ezeji, T., Qureshi, N., Blaschek, H.P. 2005. Butanol production from agricultural residues: impact of degradation products on Clostridium beijerinckii growth and butanol fermentation [abstract]. World Congress on Industrial Biotechnology and Bioprocessing. p. 163. |
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Substrate Specificities of Two Glycoside Hydrolase Family 11 Xylanases
- (Abstract)
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Li, X., Jordan, D.B., Cotta, M.A. 2005. Substrate specificities of two glycoside hydrolase family 11 xylanases [abstract]. American Chemical Society. Paper No. 066. |
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Review of Process for Producing Corn Fiber Oil and Ethanol from "quick Fiber"
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Dien, B.S., Nagle, N., Singh, V., Moreau, R.A., Tucker, M.P., Nichols, N.N., Johnston, D., Cotta, M.A., Hicks, K.B., Nguyen, Q., Bothast, R.J. 2005. Review of process for producing corn fiber oil and ethanol from "Quick Fiber." International Sugar Journal. 107(1275):187-191. |
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