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John M. Ward
John M. Ward
Department of Plant and Microbial Biology, University of Minnesota
Bestätigte E-Mail-Adresse bei umn.edu - Startseite
Titel
Zitiert von
Zitiert von
Jahr
Phylogenetic relationships within cation transporter families of Arabidopsis
P Mäser, S Thomine, JI Schroeder, JM Ward, K Hirschi, H Sze, IN Talke, ...
Plant physiology 126 (4), 1646-1667, 2001
14212001
Cadmium and iron transport by members of a plant metal transporter family in Arabidopsis with homology to Nramp genes
S Thomine, R Wang, JM Ward, NM Crawford, JI Schroeder
Proceedings of the National Academy of Sciences 97 (9), 4991-4996, 2000
11072000
Insights into land plant evolution garnered from the Marchantia polymorpha genome
JL Bowman, T Kohchi, KT Yamato, J Jenkins, S Shu, K Ishizaki, ...
Cell 171 (2), 287-304. e15, 2017
9922017
The dual function of sugar carriers: transport and sugar sensing
S Lalonde, E Boles, H Hellmann, L Barker, JW Patrick, WB Frommer, ...
The Plant Cell 11 (4), 707-726, 1999
5831999
Differential abscisic acid regulation of guard cell slow anion channels in Arabidopsis wild-type and abi1 and abi2 mutants.
ZM Pei, K Kuchitsu, JM Ward, M Schwarz, JI Schroeder
The Plant Cell 9 (3), 409-423, 1997
5261997
Genomic scale profiling of nutrient and trace elements in Arabidopsis thaliana
B Lahner, J Gong, M Mahmoudian, EL Smith, KB Abid, EE Rogers, ...
Nature biotechnology 21 (10), 1215-1221, 2003
5082003
Calcium-Activated K+ Channels and Calcium-Induced Calcium Release by Slow Vacuolar Ion Channels in Guard Cell Vacuoles Implicated in the Control of …
JM Ward, JI Schroeder
The Plant Cell 6 (5), 669-683, 1994
4931994
Perspectives on the physiology and structure of inward rectifying K+ channels in higher plants: Biophysical implications for K+ uptake
JI Schroeder, JM Ward, W Gassmann
Annu Rev Biophys Biomol Struct 23, 441-471, 1994
463*1994
SUT2, a putative sucrose sensor in sieve elements
L Barker, C Kühn, A Weise, A Schulz, C Gebhardt, B Hirner, H Hellmann, ...
The Plant Cell 12 (7), 1153-1164, 2000
4492000
Roles of ion channels in initiation of signal transduction in higher plants
JM Ward, JI Schroeder
Signal Transduction in Plants, 1-22, 1997
4131997
Plant ion channels: gene families, physiology, and functional genomics analyses
JM Ward, P Mäser, JI Schroeder
Annual review of physiology 71, 59-82, 2009
4112009
A new subfamily of sucrose transporters, SUT4, with low affinity/high capacity localized in enucleate sieve elements of plants
A Weise, L Barker, C Kühn, S Lalonde, H Buschmann, WB Frommer, ...
The Plant Cell 12 (8), 1345-1355, 2000
3982000
The plant cDNA LCT1 mediates the uptake of calcium and cadmium in yeast
S Clemens, DM Antosiewicz, JM Ward, DP Schachtman, JI Schroeder
Proceedings of the National Academy of Sciences 95 (20), 12043-12048, 1998
3931998
Vacuolar H+-translocating ATPases from plants: Structure, function, and isoforms
H Sze, JM Ward, S Lai
Journal of bioenergetics and biomembranes 24, 371-381, 1992
2351992
Evidence for an extracellular reception site for abscisic acid in Commelina guard cells
BE Anderson, JM Ward, JI Schroeder
Plant Physiology 104 (4), 1177-1183, 1994
2301994
Impaired Function of the Tonoplast-Localized Sucrose Transporter in Rice, OsSUT2, Limits the Transport of Vacuolar Reserve Sucrose and Affects Plant Growth
JS Eom, JI Cho, A Reinders, SW Lee, Y Yoo, PQ Tuan, SB Choi, G Bang, ...
Plant Physiology 157 (1), 109-119, 2011
2242011
A novel chloride channel in Vicia faba guard cell vacuoles activated by the serine/threonine kinase, CDPK.
ZM Pei, JM Ward, JF Harper, JI Schroeder
The EMBO journal 15 (23), 6564-6574, 1996
2121996
Protein–protein interactions between sucrose transporters of different affinities colocalized in the same enucleate sieve element
A Reinders, W Schulze, C Kühn, L Barker, A Schulz, JM Ward, ...
The Plant Cell 14 (7), 1567-1577, 2002
2112002
Integrating membrane transport with male gametophyte development and function through transcriptomics
KW Bock, D Honys, JM Ward, S Padmanaban, EP Nawrocki, KD Hirschi, ...
Plant Physiology 140 (4), 1151-1168, 2006
2012006
Arabidopsis sucrose transporter AtSUC1 is important for pollen germination and sucrose-induced anthocyanin accumulation
AB Sivitz, A Reinders, JM Ward
Plant Physiology 147 (1), 92-100, 2008
2002008
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