Enhancing alfalfa conversion efficiencies for sugar recovery and ethanol production by altering lignin composition |
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Authors: | Dien Bruce S Miller David J Hector Ronald E Dixon Richard A Chen Fang McCaslin Mark Reisen Peter Sarath Gautam Cotta Michael A |
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Affiliation: | a Bioenergy Research Unit, United States Department of Agriculture, Agricultural Research Service, National Center for Agricultural Utilization Research, Peoria, IL 61604, United States b Pioneer Hi-Bred International, Inc., W8131 State Road 60, Arlington, WI 53911-9709, United States c Plant Biology Division, Samuel Roberts Noble Foundation, Ardmore, OK 73401, United States d Forage Genetics, International, 812 1st Street South, Nampa, ID 83651-3808, United States e Forage and Bioenergy Research Unit, United States Department of Agriculture, Agricultural Research Service, Biochemistry Hall, University of Nebraska, East Campus, Lincoln, NE 68583-0737, United States |
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Abstract: | Alfalfa (Medicago sativa L.) biomass was evaluated for biochemical conversion into ethanol using dilute-acid and ammonia pretreatments. The two alfalfa lines compared were a reduced S-lignin transgenic cultivar generated through down regulation of the caffeic acid O-methyltransferase gene and a wild-type control. Both were harvested at two maturities. All the samples had similar carbohydrate contents including a mean composition of 316 g glucan and 497 g total neutral carbohydrates per kg dry biomass, which corresponds to a theoretic ethanol yield of 382 l/ton. Ethanol yields for alfalfa stems pretreated with dilute-acid were significantly impacted by harvest maturity and lignin composition, whereas when pretreated with dilute-ammonia, yield was solely affected by lignin composition. Use of a recombinant xylose-fermenting Saccharomyces strain, for converting the ammonia pretreated alfalfa samples, further increased ethanol yields. Ethanol yields for the xylose-fermenting yeast were 232-278 l/ton and were significantly enhanced for the reduced S lignin cultivars. |
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Keywords: | Biomass Alfalfa Bioethanol Pretreatment Lignin-modified transgenics |
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