The HIC signalling pathway links CO2 perception to stomatal development JE Gray, GH Holroyd, FM Van Der Lee, AR Bahrami, PC Sijmons, ... Nature 408 (6813), 713-716, 2000 | 489 | 2000 |
Self-incompatibility in Nicotiana alata involves degradation of pollen rRNA BA McClure, JE Gray, MA Anderson, AE Clarke Nature 347 (6295), 757-760, 1990 | 484 | 1990 |
Inheritance and effect on ripening of antisense polygalacturonase genes in transgenic tomatoes CJS Smith, CF Watson, PC Morris, CR Bird, GB Seymour, JE Gray, ... Plant molecular biology 14, 369-379, 1990 | 464 | 1990 |
Influence of environmental factors on stomatal development S Casson, JE Gray New phytologist 178 (1), 9-23, 2008 | 424 | 2008 |
Abscisic acid induces oscillations in guard-cell cytosolic free calcium that involve phosphoinositide-specific phospholipase C I Staxén, C Pical, LT Montgomery, JE Gray, AM Hetherington, ... Proceedings of the National Academy of Sciences 96 (4), 1779-1784, 1999 | 417 | 1999 |
The signaling peptide EPF2 controls asymmetric cell divisions during stomatal development L Hunt, JE Gray Current Biology 19 (10), 864-869, 2009 | 389 | 2009 |
Molecular biology of fruit ripening and its manipulation with antisense genes J Gray, S Picton, J Shabbeer, W Schuch, D Grierson 10 Years Plant Molecular Biology, 69-87, 1992 | 387 | 1992 |
Genetic manipulation of stomatal density influences stomatal size, plant growth and tolerance to restricted water supply across a growth carbon dioxide gradient T Doheny-Adams, L Hunt, PJ Franks, DJ Beerling, JE Gray Philosophical Transactions of the Royal Society B: Biological Sciences 367 …, 2012 | 328 | 2012 |
Impact of stomatal density and morphology on water-use efficiency in a changing world LT Bertolino, RS Caine, JE Gray Frontiers in plant science 10, 225, 2019 | 324 | 2019 |
Nitric oxide sensing in plants is mediated by proteolytic control of group VII ERF transcription factors DJ Gibbs, NM Isa, M Movahedi, J Lozano-Juste, GM Mendiondo, ... Molecular Cell 53 (3), 369-379, 2014 | 321 | 2014 |
Rice with reduced stomatal density conserves water and has improved drought tolerance under future climate conditions RS Caine, X Yin, J Sloan, EL Harrison, U Mohammed, T Fulton, AK Biswal, ... New Phytologist 221 (1), 371-384, 2019 | 298 | 2019 |
The Arabidopsis cyclophilin gene family PGN Romano, P Horton, JE Gray Plant physiology 134 (4), 1268-1282, 2004 | 280 | 2004 |
Increasing water‐use efficiency directly through genetic manipulation of stomatal density PJ Franks, T W. Doheny‐Adams, ZJ Britton‐Harper, JE Gray New Phytologist 207 (1), 188-195, 2015 | 273 | 2015 |
Reducing stomatal density in barley improves drought tolerance without impacting on yield J Hughes, C Hepworth, C Dutton, JA Dunn, L Hunt, J Stephens, R Waugh, ... Plant physiology 174 (2), 776-787, 2017 | 267 | 2017 |
Self-incompatibility: a self-recognition system in plants V Haring, JE Gray, BA McClure, MA Anderson, AE Clarke Science 250 (4983), 937-941, 1990 | 263 | 1990 |
Phytochrome B and PIF4 regulate stomatal development in response to light quantity SA Casson, KA Franklin, JE Gray, CS Grierson, GC Whitelam, ... Current Biology 19 (3), 229-234, 2009 | 208 | 2009 |
Elevated CO2-induced responses in stomata require ABA and ABA signaling C Chater, K Peng, M Movahedi, JA Dunn, HJ Walker, YK Liang, ... Current Biology 25 (20), 2709-2716, 2015 | 205 | 2015 |
Regulatory mechanism controlling stomatal behavior conserved across 400 million years of land plant evolution C Chater, Y Kamisugi, M Movahedi, A Fleming, AC Cuming, JE Gray, ... Current Biology 21 (12), 1025-1029, 2011 | 202 | 2011 |
The use of transgenic and naturally occurring mutants to understand and manipulate tomato fruit ripening JE Gray, S Picton, JJ Giovannoni, D Grierson Plant, Cell & Environment 17 (5), 557-571, 1994 | 196 | 1994 |
Systemic signalling of environmental cues in Arabidopsis leaves SA Coupe, BG Palmer, JA Lake, SA Overy, K Oxborough, FI Woodward, ... Journal of Experimental Botany 57 (2), 329-341, 2006 | 190 | 2006 |