Root cortical aerenchyma improves the drought tolerance of maize (Zea mays L.) J Zhu, KM Brown, JP Lynch Plant, cell & environment 33 (5), 740-749, 2010 | 416 | 2010 |
From lab to field, new approaches to phenotyping root system architecture J Zhu, PA Ingram, PN Benfey, T Elich Current opinion in plant biology 14 (3), 310-317, 2011 | 333 | 2011 |
Mapping of QTL controlling root hair length in maize (Zea mays L.) under phosphorus deficiency J Zhu, SM Kaeppler, JP Lynch Plant and Soil 270, 299-310, 2005 | 307 | 2005 |
The contribution of lateral rooting to phosphorus acquisition efficiency in maize (Zea mays) seedlings J Zhu, JP Lynch Functional Plant Biology 31 (10), 949-958, 2004 | 292 | 2004 |
Mapping of QTLs for lateral root branching and length in maize (Zea mays L.) under differential phosphorus supply J Zhu, SM Kaeppler, JP Lynch Theoretical and Applied Genetics 111, 688-695, 2005 | 288 | 2005 |
Physiological roles for aerenchyma in phosphorus-stressed roots M Fan, J Zhu, C Richards, KM Brown, JP Lynch Functional Plant Biology 30 (5), 493-506, 2003 | 280 | 2003 |
Topsoil foraging and phosphorus acquisition efficiency in maize (Zea mays) J Zhu, SM Kaeppler, JP Lynch Functional Plant Biology 32 (8), 749-762, 2005 | 268 | 2005 |
Cell wall proteome in the maize primary root elongation zone. II. Region-specific changes in water soluble and lightly ionically bound proteins under water deficit J Zhu, S Alvarez, EL Marsh, ME LeNoble, IJ Cho, M Sivaguru, S Chen, ... Plant physiology 145 (4), 1533-1548, 2007 | 254 | 2007 |
Detection of quantitative trait loci for seminal root traits in maize (Zea mays L.) seedlings grown under differential phosphorus levels J Zhu, SM Mickelson, SM Kaeppler, JP Lynch Theoretical and Applied Genetics 113, 1-10, 2006 | 220 | 2006 |
Cell wall proteome in the maize primary root elongation zone. I. Extraction and identification of water-soluble and lightly ionically bound proteins J Zhu, S Chen, S Alvarez, VS Asirvatham, DP Schachtman, Y Wu, ... Plant physiology 140 (1), 311-325, 2006 | 176 | 2006 |
The utility of phenotypic plasticity of root hair length for phosphorus acquisition J Zhu, C Zhang, JP Lynch Functional Plant Biology 37 (4), 313-322, 2010 | 167 | 2010 |
A critical test of the two prevailing theories of plant response to nutrient availability G Rubio, J Zhu, JP Lynch American Journal of Botany 90 (1), 143-152, 2003 | 142 | 2003 |
Spatial distribution of transcript changes in the maize primary root elongation zone at low water potential WG Spollen, W Tao, B Valliyodan, K Chen, LG Hejlek, JJ Kim, ... BMC Plant Biology 8, 1-15, 2008 | 120 | 2008 |
Characterization of tissue tolerance to iron by molecular markers in different lines of rice P Wu, B Hu, CY Liao, JM Zhu, YR Wu, D Senadhira, AH Paterson Plant and Soil 203, 217-226, 1998 | 84 | 1998 |
High-throughput imaging and analysis of root system architecture in Brachypodium distachyon under differential nutrient availability PA Ingram, J Zhu, A Shariff, IW Davis, PN Benfey, T Elich Philosophical Transactions of the Royal Society B: Biological Sciences 367 …, 2012 | 81 | 2012 |
Molecular markers linked to genes underlying seedling tolerance for ferrous iron toxicity P Wu, A Luo, J Zhu, J Yang, N Huang, D Senadhira Plant and soil 196, 317-320, 1997 | 71 | 1997 |
Apoplastic hydrogen peroxide in the growth zone of the maize primary root. Increased levels differentially modulate root elongation under well-watered and water-stressed conditions P Voothuluru, P Mäkelä, J Zhu, M Yamaguchi, IJ Cho, MJ Oliver, ... Frontiers in Plant Science 11, 392, 2020 | 33 | 2020 |
Optimizing root system architecture in biofuel crops for sustainable energy production and soil carbon sequestration JPC To, J Zhu, PN Benfey, T Elich F1000 biology reports 2, 2010 | 15 | 2010 |
Composite interval mapping and physiological function of root traits conferring phosphorus efficiency in maize (Zea mays L.) J Zhu the Pennsylvania State University, 2003 | 9 | 2003 |
Priya Voothuluru1, 2*†, Pirjo Mäkelä3, Jinming Zhu1, 2†, Mineo Yamaguchi1, 2, In-Jeong Cho2, 4, Melvin J. Oliver2, 4, John Simmonds5 and Robert E. Sharp1, 2 N Suzuki, IZ Jazo, R Angelini, P Voothuluru, J Zhu, PA Stress Root Adaptations to Multiple Stress Factors, 2021 | | 2021 |