1. Almeida GD, Makumbi D, Magorokosho C, Nair S, Borem A, Ribaut JM, Banziger M, Prasanna BM, Crossa J, Babu R (2013) QTL mapping in three tropical maize landraces reveals a set of constitutive and adaptive genomic regions for drought tolerance. Theor Appl Genet 126(3):583–600. doi:10.1007/s00122-012-2003-7
2. Amigues JP, Debaeke P, Itier B, Lemaire G, Seguin B, Tardieu F, Thomas A (2006) Sécheresse et agriculture. Réduire la vulnérabilité de l’agriculture à un risque accru de manque d’eau. Expertise scientifique collective. INRA, France
3. Andrade FH, Echarte L, Rizzalli R, Della Maggiora A, Casanovas M (2002) Kernel number prediction in maize under nitrogen or water stress. Crop Sci 42:1173–1179
4. Araus JL, Sanchez C, Edmeades GO (2011) Phenotyping maize for adaptation to drought. In: Monneveux P, Ribaut JM (eds.) Drought phenotyping in crops: from theory to practice. CGIAR Generation Challenge Programme Texcoco, Mexico, pp 263–283
5. Bänziger M, Edmeades GO, Beck D, Bellon M (2000) Breeding for drought and nitrogen stress tolerance in maize. From theory to practice. http://repository.cimmyt.org/xmlui/bitstream/handle/10883/765/68579.pdf