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Combined inactivation of the Clostridium cellulolyticumlactate and malate dehydrogenase genes substantially increases ethanol yield from cellulose and switchgrass fermentations
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Combined inactivation of the Clostridium cellulolyticumlactate and malate dehydrogenase genes substantially increases ethanol yield from cellulose and switchgrass fermentations

Li Yongchao, Tschaplinski, Engle, Hamilton, Miguel Rodriguez, Liao, Schadt, Guss, Yang Yunfeng, Graham

Combined inactivation of the Clostridium cellulolyticumlactate and malate dehydrogenase genes substantially increases ethanol yield from cellulose and switchgrass fermentations Alternate Text
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Combined inactivation of the Clostridium cellulolyticumlactate and malate dehydrogenase genes substantially increases ethanol yield from cellulose and switchgrass fermentations

Li Yongchao, Tschaplinski, Engle, Hamilton, Miguel Rodriguez, Liao, Schadt, Guss, Yang Yunfeng, Graham

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13 pages

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Evaluation of the bioconversion of genetically modified switchgrass using simultaneous saccharification and fermentation and a consolidated bioprocessing approach
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Evaluation of the bioconversion of genetically modified switchgrass using simultaneous saccharification and fermentation and a consolidated bioprocessing approach

Yee, Rodriguez, Tschaplinski, Engle, Martin, Fu Chunxiang, Wang Zeng-Yu, Hamilton-Brehm, Mielenz

Evaluation of the bioconversion of genetically modified switchgrass using simultaneous saccharification and fermentation and a consolidated bioprocessing approach Alternate Text
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Documents

Savoirs

Evaluation of the bioconversion of genetically modified switchgrass using simultaneous saccharification and fermentation and a consolidated bioprocessing approach

Yee, Rodriguez, Tschaplinski, Engle, Martin, Fu Chunxiang, Wang Zeng-Yu, Hamilton-Brehm, Mielenz

Book

12 pages

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English

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Down-regulation of the caffeic acid O-methyltransferase gene in switchgrass reveals a novel monolignol analog
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Down-regulation of the caffeic acid O-methyltransferase gene in switchgrass reveals a novel monolignol analog

Tschaplinski, Standaert, Engle, Martin, Sangha, Parks, Smith, Samuel Reichel, Jiang Nan, Pu Yunqiao, Ragauskas, Hamilton, Fu Chunxiang, Wang Zeng-Yu, Davison, Dixon, Mielenz

Down-regulation of the caffeic acid O-methyltransferase gene in switchgrass reveals a novel monolignol analog Alternate Text
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Documents

Savoirs

Down-regulation of the caffeic acid O-methyltransferase gene in switchgrass reveals a novel monolignol analog

Tschaplinski, Standaert, Engle, Martin, Sangha, Parks, Smith, Samuel Reichel, Jiang Nan, Pu Yunqiao, Ragauskas, Hamilton, Fu Chunxiang, Wang Zeng-Yu, Davison, Dixon, Mielenz

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15 pages

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English

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