Crop yields and global food security RA Fischer, D Byerlee, G Edmeades ACIAR: Canberra, ACT, 8-11, 2014 | 1155 | 2014 |
The importance of the anthesis-silking interval in breeding for drought tolerance in tropical maize J Bolaños, GO Edmeades Field crops research 48 (1), 65-80, 1996 | 1020 | 1996 |
Molecular and physiological approaches to maize improvement for drought tolerance WB Bruce, GO Edmeades, TC Barker Journal of experimental botany 53 (366), 13-25, 2002 | 877 | 2002 |
Improving drought tolerance in maize: a view from industry H Campos, M Cooper, JE Habben, GO Edmeades, JR Schussler Field crops research 90 (1), 19-34, 2004 | 870 | 2004 |
Breeding for drought and nitrogen stress tolerance in maize: from theory to practice M Bänzinger Cimmyt, 2000 | 850 | 2000 |
Breeding and cereal yield progress RA Fischer, GO Edmeades Crop science 50, S-85-S-98, 2010 | 849 | 2010 |
Identification of quantitative trait loci under drought conditions in tropical maize. 2. yield components and marker-assisted selection strategies: 2. yield components and … JM Ribaut, C Jiang, D Gonzalez-de-Leon, GO Edmeades, DA Hoisington Theoretical and Applied Genetics 94, 887-896, 1997 | 543 | 1997 |
Genetic analysis of inbred and hybrid grain yield under stress and nonstress environments in tropical maize FJ Betran, D Beck, M Bänziger, GO Edmeades Crop science 43 (3), 807-817, 2003 | 527 | 2003 |
Eight cycles of selection for drought tolerance in lowland tropical maize. I. Responses in grain yield, biomass, and radiation utilization J Bolaños, GO Edmeades Field Crops Research 31 (3-4), 233-252, 1993 | 514 | 1993 |
Selection improves drought tolerance in tropical maize populations: I. Gains in biomass, grain yield, and harvest index GO Edmeades, J Bolaños, SC Chapman, HR Lafitte, M Bänziger Crop science 39 (5), 1306-1315, 1999 | 470 | 1999 |
Eight cycles of selection for drought tolerance in lowland tropical maize. II. Responses in reproductive behavior J Bolaños, GO Edmeades Field Crops Research 31 (3-4), 253-268, 1993 | 433 | 1993 |
Causes for silk delay in a lowland tropical maize population GO Edmeades, J Bolaños, M Hernandez, S Bello Crop Science 33 (5), 1029-1035, 1993 | 421 | 1993 |
Can technology deliver on the yield challenge to 2050? RA Fischer, DR Byerlee, GO Edmeades | 404 | 2009 |
Selection for drought tolerance increases maize yields across a range of nitrogen levels M Bänziger, GO Edmeades, HR Lafitte Crop science 39 (4), 1035-1040, 1999 | 390 | 1999 |
Drought tolerance improvement in tropical maize source populations: evidence of progress P Monneveux, C Sanchez, D Beck, GO Edmeades Crop science 46 (1), 180-191, 2006 | 361 | 2006 |
Selection improves drought tolerance in tropical maize populations: II. Direct and correlated responses among secondary traits SC Chapman, GO Edmeades Crop Science 39 (5), 1315-1324, 1999 | 337 | 1999 |
The role and regulation of the anthesis‐silking interval in maize GO Edmeades, J Bolanos, A Elings, JM Ribaut, M Bänziger, ME Westgate Physiology and modeling kernel set in maize 29, 43-73, 2000 | 326 | 2000 |
Eight cycles of selection for drought tolerance in lowland tropical maize. III. Responses in drought-adaptive physiological and morphological traits J Bolaños, GO Edmeades, L Martinez Field Crops Research 31 (3-4), 269-286, 1993 | 319 | 1993 |
Phenotyping maize for adaptation to drought JL Araus, MD Serret, GO Edmeades Frontiers in physiology 3, 305, 2012 | 312 | 2012 |
Improvement for tolerance to low soil nitrogen in tropical maize I. Selection criteria HR Lafitte, GO Edmeades Field Crops Research 39 (1), 1-14, 1994 | 262 | 1994 |