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Craig Schenck
Craig Schenck
University of Missouri
Verified email at umsystem.edu - Homepage
Title
Cited by
Cited by
Year
Tyrosine biosynthesis, metabolism, and catabolism in plants
CA Schenck, HA Maeda
Phytochemistry 149, 82-102, 2018
1922018
Robust predictions of specialized metabolism genes through machine learning
BM Moore, P Wang, P Fan, B Leong, CA Schenck, JP Lloyd, ...
Proceedings of the National Academy of Sciences 116 (6), 2344-2353, 2019
972019
Homeostasis of branched-chain amino acids is critical for the activity of TOR signaling in Arabidopsis
P Cao, SJ Kim, A Xing, CA Schenck, L Liu, N Jiang, J Wang, RL Last, ...
Elife 8, e50747, 2019
872019
Evolution of a plant gene cluster in Solanaceae and emergence of metabolic diversity
P Fan, P Wang, YR Lou, BJ Leong, BM Moore, CA Schenck, R Combs, ...
Elife 9, e56717, 2020
642020
Non-plastidic, tyrosine-insensitive prephenate dehydrogenases from legumes
CA Schenck, S Chen, DL Siehl, HA Maeda
Nature Chemical Biology 11 (1), 52-57, 2015
592015
Molecular basis of the evolution of alternative tyrosine biosynthetic routes in plants
CA Schenck, CK Holland, MR Schneider, Y Men, SG Lee, JM Jez, ...
Nature Chemical Biology 13 (9), 1029-1035, 2017
442017
A proteomics approach identifies novel proteins involved in gravitropic signal transduction
CA Schenck, V Nadella, SL Clay, J Lindner, Z Abrams, SE Wyatt
American journal of botany 100 (1), 194-202, 2013
342013
Location, location! cellular relocalization primes specialized metabolic diversification
CA Schenck, RL Last
The FEBS Journal 287 (7), 1359-1368, 2020
272020
Within-and cross-species predictions of plant specialized metabolism genes using transfer learning
BM Moore, P Wang, P Fan, A Lee, B Leong, YR Lou, CA Schenck, ...
in silico Plants 2 (1), diaa005, 2020
162020
Using interdisciplinary, phylogeny-guided approaches to understand the evolution of plant metabolism
CA Schenck, L Busta
Plant molecular biology 109 (4), 355-367, 2022
142022
Conserved molecular mechanism of TyrA dehydrogenase substrate specificity underlying alternative tyrosine biosynthetic pathways in plants and microbes
CA Schenck, Y Men, HA Maeda
Frontiers in Molecular Biosciences 4, 73, 2017
132017
GPS4 is allelic to ARL2: implications for gravitropic signal transduction
DR Luesse, CA Schenck, BK Berner, B Justus, SE Wyatt
Gravitational and Space Research 23 (2), 2010
92010
Role of cytosolic, tyrosine‐insensitive prephenate dehydrogenase in Medicago truncatula
CA Schenck, J Westphal, D Jayaraman, K Garcia, J Wen, KS Mysore, ...
Plant Direct 4 (5), e00218, 2020
72020
Natural variation meets synthetic biology: Promiscuous trichome-expressed acyltransferases from Nicotiana
CA Schenck, TM Anthony, MK Jacobs, AD Jones, RL Last
Plant Physiology 190 (1), 146-164, 2022
62022
Prephenate dehydrogenases and arogenate dehydrogenases that are insensitive to effector feedback inhibition and methods of using the same
HA Maeda, CA Schenck
US Patent 9,701,977, 2017
42017
Woolly mutation with the Get02 locus overcomes the polygenic nature of trichome-based pest resistance in tomato
E Vendemiatti, IO Hernández-De Lira, R Snijders, T Torne-Srivastava, ...
Plant Physiology 195 (2), 911-923, 2024
22024
Inclusive collaboration across plant physiology and genomics: Now is the time!
IPS Consortium
Plant Direct 7 (5), e493, 2023
2*2023
Diversification of Tyrosine Biosynthetic Pathways in Plants: Non‐Plastidic, Tyrosine‐Insensitive Prephenate Dehydrogenases in Legumes
H Maeda, C Schenck, S Chen
The FASEB Journal 29, 887.15, 2015
22015
Halophytes and heavy metals: A multi‐omics approach to understand the role of gene and genome duplication in the abiotic stress tolerance of Cakile maritima
SK Thomas, KV Hoek, T Ogoti, H Duong, R Angelovici, JC Pires, ...
American Journal of Botany, e16310, 2024
12024
Natural Variation Meets Synthetic Biology: Promiscuous Trichome Expressed Acyltransferases from Nicotiana acuminata
CA Schenck, TM Anthony, MK Jacobs, AD Jones, RL Last
BioRxiv, 2022.02. 25.482030, 2022
12022
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