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Applied and Environmental Microbiology|September 28, 2022
Engineering Caldicellulosiruptor bescii with Surface Layer Homology Domain-Linked Glycoside Hydrolases Improves Plant Biomass SolubilizationTunyaboon Laemthong, Ryan G Bing, James R Crosby, et al.
Frontiers in Microbiology|August 21, 2023
Whither the genus Caldicellulosiruptor and the order Thermoanaerobacterales: phylogeny, taxonomy, ecology, and phenotypeRyan G Bing, Daniel J Willard, James R Crosby, et al.
Current Opinion in Biotechnology|March 16, 2019
Extreme thermophiles as emerging metabolic engineering platformsJames R Crosby, Tunyaboon Laemthong, April M Lewis, et al.
Extremophiles : Life Under Extreme Conditions|February 21, 2023
Role of cell-substrate association during plant biomass solubilization by the extreme thermophile Caldicellulosiruptor besciiTunyaboon Laemthong, Ryan G Bing, James R Crosby, et al.
Extremophiles : Life Under Extreme Conditions|July 31, 2019
The biology and biotechnology of the genus Caldicellulosiruptor: recent developments in 'Caldi World'Laura L Lee, James R Crosby, Gabriel M Rubinstein, et al.
Bioresource Technology|November 8, 2022
Fermentative conversion of unpretreated plant biomass: A thermophilic threshold for indigenous microbial growthRyan G Bing, Morgan J Carey, Tunyaboon Laemthong, et al.
Applied and Environmental Microbiology|October 11, 2022
Biochemical and Regulatory Analyses of Xylanolytic Regulons in Caldicellulosiruptor bescii Reveal Genus-Wide Features of Hemicellulose UtilizationJames R Crosby, Tunyaboon Laemthong, Ryan G Bing, et al.
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