Chemistry Reference
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Proceeding of the ASA, CSSA, and SSSA International Annual Metting. Cincinatti,
Ohio, EEUU; 2012.
[73] Uhart SA., Echeverrría HE. Diagnóstico de la fertilización. In: Andrade, FH., Sadras,
VO. (eds.) Bases para el manejo del maíz, el girasol y la soja. INTA-National University
of Mar del Plata, Balcarce; 2000. p235-268.
[74] Dudley JW., Lambert RJ., Alexander DE. In: Dudley JW. (ed.) Seventy generations of
selection for oil and protein concentration in the maize kernel. Crop Science Society of
America; 1974. p181-212.
[75] Kamprath EJ., Moll RH., Rodriguez N. Effects of nitrogen fertilization and recurrent
selection on performance of hybrid populations of corn. Agronomy Journal 1982; 74
955-958.
[76] Duvick DN., Cassman KG. Post-green revolution trends in yield potential of temperate
maize in the north-central United States. Crop Science 1999; 39 1622-1630.
[77] Borrás L., Curá JA., Otegui ME. Maize kernel composition and post flowering source-
sink ratio. Crop Science 2002; 42 781-790.
[78] Slafer G., Andrade FH., Feingold S. Genetic improvement of bread wheat (Triticum
aestivum L.) in Argentina: relationships between nitrogen and dry matter. Euphytica
1990; 50 63-71.
[79] Calderini DF, Torres-León S., Slafer G. Consequences of wheat breeding on nitrogen
and phosphorus yield, grain nitrogen and phosphorus concentration and associated
traits. Annals of Botany 1995; 76 315-322.
[80] Vyn TJ., Tollenaar M. Changes in chemical and physical quality parameters of maize
grain during three decades of yield improvement. Field Crops Research 1998; 59 135-
140.
[81] Streeter JG., Barta AL. Nitrogen and minerals. In: Tesar MB.(ed . ) Physiological basis of
crop growth and development. ASA, CSSA Madison, Wisconsin; 1984. p175-200.
[82] Uhart SA. Deficiencias de nitrógeno en maíz: efectos sobre el crecimiento, desarrollo y
determinación del rendimiento. PhD Thesis. National University of Mar del Plata,
Balcarce, Buenos Aires, Argentina; 1995.
[83] Ingle J., Beitz D., Hageman RH. Changes in Composition during Development and
Maturation of Maize Seeds. Plant Physiology 1965; 40 835-839.
[84] Perry TW. Corn as a livestock feed. In: Sprague GF., Dudley JW.(eds). Corn and Corn
mprovement. American Society of Agronomy, Madison, WI; 1988. p941-963
[85] Lambert RJ., Alexander DE., Mollring EL., Wiggens B. Selection for increased oil
concentration in maize kernels and associated changes in several kernel traits. Maydica
1997; 42 39-43.
[86] Gardner BR., Pearce RB., Mitchel RL. In: Gardner BR., Pearce RB., Mitchel RL. (eds.)
Physiology of crop plants. Iowa State University Press; 1985. pp327.
[87] Turner N. Further progress in crop water relations. Advances in Agronomy 1997; 58
293-338.
[88] Tollenaar M., Aguilera A. Radiation use efficiency of an old and a new maize hybrid.
Agronomy Journal 1994; 84 536-541.
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