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Christopher Straub
Christopher Straub
在 ncsu.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Extremely thermophilic microorganisms as metabolic engineering platforms for production of fuels and industrial chemicals
BM Zeldes, MW Keller, AJ Loder, CT Straub, MWW Adams, RM Kelly
Frontiers in microbiology 6, 1209, 2015
2112015
Biotechnology of extremely thermophilic archaea
CT Straub, JA Counts, DMN Nguyen, CH Wu, BM Zeldes, JR Crosby, ...
FEMS Microbiology Reviews 42 (5), 543-578, 2018
872018
Physiological, metabolic and biotechnological features of extremely thermophilic microorganisms
JA Counts, BM Zeldes, LL Lee, CT Straub, MWW Adams, RM Kelly
Wiley Interdisciplinary Reviews: Systems Biology and Medicine 9 (3), e1377, 2017
542017
Extreme thermophiles as emerging metabolic engineering platforms
JR Crosby, T Laemthong, AM Lewis, CT Straub, MWW Adams, RM Kelly
Current opinion in biotechnology 59, 55-64, 2019
432019
The biology and biotechnology of the genus Caldicellulosiruptor: recent developments in ‘Caldi World’
LL Lee, JR Crosby, GM Rubinstein, T Laemthong, RG Bing, CT Straub, ...
Extremophiles 24, 1-15, 2020
352020
Extremely thermophilic energy metabolisms: biotechnological prospects
CT Straub, BM Zeldes, GJ Schut, MWW Adams, RM Kelly
Current opinion in biotechnology 45, 104-112, 2017
292017
Quantitative fermentation of unpretreated transgenic poplar by Caldicellulosiruptor bescii
CT Straub, PA Khatibi, JP Wang, JM Conway, AM Williams-Rhaesa, ...
Nature communications 10 (1), 3548, 2019
282019
Metabolically engineered Caldicellulosiruptor bescii as a platform for producing acetone and hydrogen from lignocellulose
CT Straub, RG Bing, JK Otten, LM Keller, BM Zeldes, MWW Adams, ...
Biotechnology and Bioengineering 117 (12), 3799-3808, 2020
212020
Bioavailability of carbohydrate content in natural and transgenic switchgrasses for the extreme thermophile Caldicellulosiruptor bescii
JV Zurawski, PA Khatibi, HO Akinosho, CT Straub, SH Compton, ...
Applied and Environmental Microbiology 83 (17), e00969-17, 2017
192017
Lignocellulose solubilization and conversion by extremely thermophilic Caldicellulosiruptor bescii improves by maintaining metabolic activity
CT Straub, PA Khatibi, JK Otten, MWW Adams, RM Kelly
Biotechnology and Bioengineering 116 (8), 1901-1908, 2019
182019
Use of the lignocellulose-degrading bacterium Caldicellulosiruptor bescii to assess recalcitrance and conversion of wild-type and transgenic poplar
CT Straub, RG Bing, JP Wang, VL Chiang, MWW Adams, RM Kelly
Biotechnology for biofuels 13, 1-10, 2020
142020
Plant biomass fermentation by the extreme thermophile Caldicellulosiruptor bescii for co-production of green hydrogen and acetone: Technoeconomic analysis
RG Bing, CT Straub, DB Sulis, JP Wang, MWW Adams, RM Kelly
Bioresource technology 348, 126780, 2022
122022
Modification of the glycolytic pathway in Pyrococcus furiosus and the implications for metabolic engineering
CT Straub, G Schut, JK Otten, LM Keller, MWW Adams, RM Kelly
Extremophiles 24, 511-518, 2020
102020
A synthetic enzymatic pathway for extremely thermophilic acetone production based on the unexpectedly thermostable acetoacetate decarboxylase from Clostridium acetobutylicum
BM Zeldes, CT Straub, JK Otten, MWW Adams, RM Kelly
Biotechnology and bioengineering 115 (12), 2951-2961, 2018
102018
Extreme thermophiles as metabolic engineering platforms: strategies and current perspective
AJ Loder, BM Zeldes, JM Conway, JA Counts, CT Straub, PA Khatibi, ...
Industrial Biotechnology: Microorganisms 2, 505-580, 2017
92017
Exploring in Vitro and in Vivo Contributions to Lignocellulose Degradation By Multi-Domain Enzymes from Extremely Thermophilic Caldicellulosiruptor Species …
JM Conway, JR Crosby, CT Straub, MWW Adams, RM Kelly
2020 Virtual AIChE Annual Meeting, 2020
2020
Metabolic Engineering of Extreme Thermophiles for Conversion of Renewable Feedstocks to Industrial Chemicals
CT Straub
North Carolina State University, 2019
2019
Extreme thermophiles as metabolic engineering platforms: Tailoring the process to the product
C Straub, B Zeldes, J Conway, J Crosby, J Otten, R Kelly
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 255, 2018
2018
Metabolic analysis of the extremely thermoacidophilic sulfolobales offers improved understanding of lithoautotrophy and identifies potential routes to production of biobased …
B Zeldes, A Loder, C Straub, R Kelly
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 253, 2017
2017
Extreme thermophile metabolic engineering platforms: Production of biofuels and bio-based chemicals at elevated temperatures
A Loder, B Zeldes, A Hawkins, C Straub, M Keller, G Lipscomb, G Schut, ...
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 251, 2016
2016
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