Παρακολούθηση
Stephen Moose
Stephen Moose
Professor of Crop Sciences, University of Illinois at Urbana-Champaign
Η διεύθυνση ηλεκτρονικού ταχυδρομείου έχει επαληθευτεί στον τομέα illinois.edu
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Παρατίθεται από
Παρατίθεται από
Έτος
Molecular plant breeding as the foundation for 21st century crop improvement
SP Moose, RH Mumm
Plant physiology 147 (3), 969-977, 2008
13662008
microRNA172 down-regulates glossy15 to promote vegetative phase change in maize
N Lauter, A Kampani, S Carlson, M Goebel, SP Moose
Proceedings of the National Academy of Sciences 102 (26), 9412-9417, 2005
5792005
A maize zinc-finger protein binds the prolamin box in zein gene promoters and interacts with the basic leucine zipper transcriptional activator Opaque2
J Vicente-Carbajosa, SP Moose, RL Parsons, RJ Schmidt
Proceedings of the National Academy of Sciences 94 (14), 7685-7690, 1997
4891997
Glossy15, an APETALA2-like gene from maize that regulates leaf epidermal cell identity.
SP Moose, PH Sisco
Genes & development 10 (23), 3018-3027, 1996
3321996
Cold Tolerance of C4 photosynthesis in Miscanthus × giganteus: Adaptation in Amounts and Sequence of C4 Photosynthetic Enzymes
SL Naidu, SP Moose, AK Al-Shoaibi, CA Raines, SP Long
Plant physiology 132 (3), 1688-1697, 2003
3042003
Characterization of an immunoglobulin binding protein homolog in the maize floury-2 endosperm mutant.
EB Fontes, BB Shank, RL Wrobel, SP Moose, GR OBrian, ET Wurtzel, ...
The Plant Cell 3 (5), 483-496, 1991
2901991
Maize selection passes the century mark: a unique resource for 21st century genomics
SP Moose, JW Dudley, TR Rocheford
Trends in plant science 9 (7), 358-364, 2004
2412004
Microcollinearity between autopolyploid sugarcane and diploid sorghum genomes
J Wang, B Roe, S Macmil, Q Yu, JE Murray, H Tang, C Chen, F Najar, ...
BMC genomics 11, 1-17, 2010
2022010
Glossy15 controls the epidermal juvenile-to-adult phase transition in maize.
SP Moose, PH Sisco
The Plant Cell 6 (10), 1343-1355, 1994
1991994
Cool C4 photosynthesis: pyruvate Pi dikinase expression and activity corresponds to the exceptional cold tolerance of carbon assimilation in Miscanthus× giganteus
D Wang, AR Portis Jr, SP Moose, SP Long
Plant physiology 148 (1), 557-567, 2008
1972008
Repeat associated small RNAs vary among parents and following hybridization in maize
WT Barber, W Zhang, H Win, KK Varala, JE Dorweiler, ME Hudson, ...
Proceedings of the National Academy of Sciences 109 (26), 10444-10449, 2012
1802012
Grain composition and productivity of maize hybrids derived from the Illinois protein strains in response to variable nitrogen supply
M Uribelarrea, FE Below, SP Moose
Crop science 44 (5), 1593-1600, 2004
1572004
Amino acid metabolism in maize earshoots. Implications for assimilate preconditioning and nitrogen signaling
JR Seebauer, SP Moose, BJ Fabbri, LD Crossland, FE Below
Plant Physiology 136 (4), 4326-4334, 2004
1552004
Divergent selection for grain protein affects nitrogen use in maize hybrids
M Uribelarrea, SP Moose, FE Below
Field Crops Research 100 (1), 82-90, 2007
1262007
Genomic and small RNA sequencing of Miscanthus × giganteusshows the utility of sorghum as a reference genome sequence for Andropogoneae grasses
K Swaminathan, MS Alabady, K Varala, E De Paoli, I Ho, DS Rokhsar, ...
Genome biology 11, 1-18, 2010
1162010
Conserved noncoding sequences among cultivated cereal genomes identify candidate regulatory sequence elements and patterns of promoter evolution
H Guo, SP Moose
The Plant Cell 15 (5), 1143-1158, 2003
1152003
Biotechnology approaches to improving maize nitrogen use efficiency
S Moose, FE Below
Molecular genetic approaches to maize improvement, 65-77, 2009
1122009
A framework genetic map for Miscanthus sinensis from RNAseq-based markers shows recent tetraploidy
K Swaminathan, WB Chae, T Mitros, K Varala, L Xie, A Barling, ...
BMC genomics 13, 1-17, 2012
1042012
Genome biology of the paleotetraploid perennial biomass crop Miscanthus
T Mitros, AM Session, BT James, GA Wu, MB Belaffif, LV Clark, S Shu, ...
Nature Communications 11 (1), 5442, 2020
902020
Can the cold tolerance of C4 photosynthesis in Miscanthus×giganteus relative to Zea mays be explained by differences in activities and thermal properties of …
D Wang, SL Naidu, AR Portis Jr, SP Moose, SP Long
Journal of Experimental Botany 59 (7), 1779-1787, 2008
842008
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