Shi-You Ding
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Biomass recalcitrance: engineering plants and enzymes for biofuels production
ME Himmel, SY Ding, DK Johnson, WS Adney, MR Nimlos, JW Brady, ...
science 315 (5813), 804-807, 2007
How does plant cell wall nanoscale architecture correlate with enzymatic digestibility?
SY Ding, YS Liu, Y Zeng, ME Himmel, JO Baker, EA Bayer
Science 338 (6110), 1055-1060, 2012
Fractionating recalcitrant lignocellulose at modest reaction conditions
YHP Zhang, SY Ding, JR Mielenz, JB Cui, RT Elander, M Laser, ...
Biotechnology and bioengineering 97 (2), 214-223, 2007
Enzymatic hydrolysis of cellulosic biomass
B Yang, Z Dai, SY Ding, CE Wyman
Biofuels 2 (4), 421-449, 2011
The maize primary cell wall microfibril: a new model derived from direct visualization
SY Ding, ME Himmel
Journal of agricultural and food chemistry 54 (3), 597-606, 2006
Lignin plays a negative role in the biochemical process for producing lignocellulosic biofuels
Y Zeng, S Zhao, S Yang, SY Ding
Current opinion in biotechnology 27, 38-45, 2014
Cellulosomal Scaffoldin-Like Proteins fromRuminococcus flavefaciens
SY Ding, MT Rincon, R Lamed, JC Martin, SI McCrae, V Aurilia, ...
Journal of Bacteriology 183 (6), 1945-1953, 2001
Microbial enzyme systems for biomass conversion: emerging paradigms
ME Himmel, Q Xu, Y Luo, S Ding, R Lamed, EA Bayer
Biofuels 1 (2), 323-341, 2010
Cellobiohydrolase hydrolyzes crystalline cellulose on hydrophobic faces
YS Liu, JO Baker, Y Zeng, ME Himmel, T Haas, SY Ding
Journal of Biological Chemistry 286 (13), 11195-11201, 2011
Natural paradigms of plant cell wall degradation
H Wei, Q Xu, LE Taylor II, JO Baker, MP Tucker, SY Ding
Current Opinion in Biotechnology 20 (3), 330-338, 2009
Visualizing chemical functionality in plant cell walls
Y Zeng, ME Himmel, SY Ding
Biotechnology for biofuels 10, 1-16, 2017
Heterologous expression of glycosyl hydrolases in planta: a new departure for biofuels
LE Taylor, Z Dai, SR Decker, R Brunecky, WS Adney, SY Ding, ...
Trends in biotechnology 26 (8), 413-424, 2008
Size, shape, and arrangement of native cellulose fibrils in maize cell walls
SY Ding, S Zhao, Y Zeng
Cellulose 21, 863-871, 2014
Label‐free, real‐time monitoring of biomass processing with stimulated raman scattering microscopy
BG Saar, Y Zeng, CW Freudiger, YS Liu, ME Himmel, XS Xie, SY Ding
Angewandte Chemie 122 (32), 5608-5611, 2010
An NAC transcription factor orchestrates multiple features of cell wall development in Medicago truncatula
Q Zhao, L Gallego‐Giraldo, H Wang, Y Zeng, SY Ding, F Chen, RA Dixon
The Plant Journal 63 (1), 100-114, 2010
A biophysical perspective on the cellulosome: new opportunities for biomass conversion
SY Ding, Q Xu, M Crowley, Y Zeng, M Nimlos, R Lamed, EA Bayer, ...
Current Opinion in Biotechnology 19 (3), 218-227, 2008
The Cellulosome System of Acetivibrio cellulolyticus Includes a Novel Type of Adaptor Protein and a Cell Surface Anchoring Protein
Q Xu, W Gao, SY Ding, R Kenig, Y Shoham, EA Bayer, R Lamed
Journal of bacteriology 185 (15), 4548-4557, 2003
A Novel Cellulosomal Scaffoldin fromAcetivibrio cellulolyticus That Contains a Family 9 Glycosyl Hydrolase
SY Ding, EA Bayer, D Steiner, Y Shoham, R Lamed
Journal of bacteriology 181 (21), 6720-6729, 1999
Novel Organization and Divergent Dockerin Specificities in the Cellulosome System of Ruminococcus flavefaciens
MT Rincon, SY Ding, SI McCrae, JC Martin, V Aurilia, R Lamed, ...
Journal of Bacteriology 185 (3), 703-713, 2003
The metagenome of an anaerobic microbial community decomposing poplar wood chips
D van der Lelie, S Taghavi, SM McCorkle, LL Li, SA Malfatti, ...
PloS one 7 (5), e36740, 2012
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