ANÁLISIS COMPARATIVO DE LA DETERMINACIÓN DEL NÚMERO DE GRANOS Y RENDIMIENTO EN LA POBLACIÓN ARGENTINA DE ALPISTE Y UN CULTIVAR SEMIENANO DE TRIGO
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Abbate, P. E.; F. H. Andrade; L. Lázaro; H. Bariffi; H. G. Berardocco; V. H. Inza y F. Marturano. 1998. Grain yield in recent Argentine wheat cultivars. Crop Sci. 38, 1203-1209.
Acreche, M.; G. Briceño-Felix; J. A. Martín Sánchez y G. A. Slafer. 2008. Physiological bases of genetic gains in Mediterranean bread wheat yield in Spain. European Journal of Agronomy.28,162-170.
Andrade, F. H. y V. O. Sadras. 2000., Bases para el manejo del maíz, el girasol y la soja. Editorial Médica Panamericana. Buenos Aires. 443. pp.
Arne, M. R.; U. L. F. Böttcher y H. Kage. 2012. Improved modeling of grain number in Winter wheat. Field Crops Res. 133,167-175.
Austin, R. B. 1980. Physiological limitations to cereals yields and ways of reducing them by breeding. In: Hurd, R. G., Biscoe, P. V and Dennis, D. (Eds). Opportunities for increasing Crop Yields. London:Association of Applied Biology. Pitman, 3-9.
Austin, R. B.; M. A. Ford and C. L. Morgan. 1989. Genetic improvement in the yield of winter wheat: A further evaluation. J. Agric. Sci. 112:295-301.
Bancal, P. 2008. Positive contribution of stem growth to grain number per spike in wheat. Field Crops Res. 105,27-39.
Bassu, S.; R. Giunta and R. Motzo. 2010. Effects of sowing date and cultivar on spike weight and kernel number in durum wheat. Crop Pasture Sci. 61, 287–295
Brancourt-Hulmel, M.; G. Doussinault; C. Lecomte; P. Berard; B. Le Buanec and M. Trottet. 2003. Genetic improvement of agronomic traits of winter wheat cultivars released in France from 1946 to 1992. Crop Sci. 43, 37–45
Bodega, J. L. and F. H. Andrade. 1996. The effect of genetic improvement and hybridization on grain and biomasa yield of bread wheat. Cereal Res. Comm. 24 :171-177
Bodega, J. L.; M. A. de Dios; R. Rodriguez y M. M. Pereyra Iraola. 1995. Caracterización agronómica de poblaciones de Alpiste (Phalaris canariensis L.). Revista Facultad de Agronomía Buenos Aires. 15 (2-3): 161-17.
Bodega, J. L.; M. A. de Dios y M. M. Pereyra Iraola. 2003a. Análisis comparativo del rendimiento de semillas y otras características de interés agronómico en poblaciones locales y cultivares introducidos de alpiste. Revista Facultad de Agronomía Buenos Aires. 23(2-3) 147-154.
Bodega, J. L.; M. A. de Dios and M. M. Pereyra Iraola. 2003b. Sowing date affects yield components of canarygrass seed. Can. J. Plant Sci. 83: 357-362
Bodega, G. I. 2005. Efecto de la época y densidad de siembra sobre el crecimiento, rendimiento y sus componentes en CDC Maria y una población local de alpiste (Phalaris canariensis L.). Tesis Ingeniero Agrónomo. U.N.M.d.P. Facultad de Ciencias Agrarias. Balcarce, Argentina.46 pp
Bodega, J. L.; M. A. de Dios y M. M. Pereyra Iraola. 2010. Alpiste: efectos de sombreos antes y después de antesis sobre el rendimiento de granos y sus componentes. Revista Facultad de Agronomía Buenos Aires. 30 (3): 137-149.
Brooking, I. R. and E. J. M. Kirby. 1981., Interrelationships between stem and ear development in winter wheat: effects of a Norin 10 dwarfing gene, Gai/Rht2. J. Agric Sci. Camb. 97: 373-381.
Calderini, D. F.; M. P. Reynolds and G. A. Slafer. 1999. Genetic gains in wheat yield and main physiological changes associated with them during the 20th century. In:Satorre EH, Slafer GA, eds. Wheat ecology and physiology of yield
determination. New York: Food Product Press, 351-377.
Calderini, D. F.; R. Savin; L. G. Abeledo; M. P. Reynolds and G. A. Slafer. 2001. The importance of the period immediately
preceding anthesis for grain weight determination in wheat. Euphytica. 119,199-204.
Cogliatti, M.; F. Bongiorno; H. Dalla Valle and W. J. Rogers. 2011. Canaryseed (Phalaris canariensis L.) accessions from nineteen countries show useful genetic variation for agronomic traits. Can. J. Plant. Sci. 91(1):37-48.
Campolietto, L.2006. Efectos de la epoca de siembra sobre los estados fenologicos del cultivo de alpiste (Phalaris canariensis L). Tesis de Graduacion. Facultad de Ciencias Agrarias. Universidad Nacional de Mar del Plata.
Di Rienzo, J. A.; F. Casanoves; M. G. Balzarini; L. Gonzalez; M. Tablada y C. W. Robledo. (2008). InfoStat, versión 2008, Grupo InfoStat, FCA, Universidad Nacional de Córdoba, Argentina.
Donmez, E.; R. G. Sears; J. P. Shroyer and G. M. Paulsen.2001. Genetic gain in yield attributes of winter wheat in the Great Plains. Crop Science 41, 1412-1419.
Duggan, B. L.; D. R. Domitruk and D. B. Fowler. 2000. Yield component variation in winter wheat grown under drought stress. Can. J. Plant Sci. 80, 739–745.
Evans, L. T. and R. A. Fischer.1999. Yield potentials definition measurement, and significance. Crop Science 30, 1544-1551.
FAOSTAT.2015. Food and Agriculture Organization of the United Nations. [en línea] < http://faostat.fao.org> [consulta 01 junio 2015 ].
Fischer, R. A. (1984). Wheat. In Symposium on potential productivity of field crops under different environments (eds WH Smith and Banta. Los Baños, Philippines: IRRI. Pp 129-153.
Fischer, R. A. (1985). Number of kernels in wheat crops and the influence of solar radiation and temperature. J. Agric. Sci. Camb 105, 447-461.
Fischer, R. A. (2007). Undestanding the physiological basis of yield potential in wheat. J. Agric. Sci. 145,99-113.
Fischer, R. A. 2008. The importance of grain or kernel number in wheat: a reply to Sinclair and Jamieson. Field Crops Res. 105, 15–21.
Fischer, R. A. and G. O. Edmeades. 2010. Breeding and cereal yield progress. Crop Science. 50, 85-98.
Foulkes, M. J.; M. P. Reynolds and R. Sylvester-Bradley. 2009. Genetic Improvement of grain crops: yield Potential. In Sadras, V. O; D. Calderini. (eds). Crop Physiology, Aplications for genetic improvement and agronomy. The Netherlands: Elsevier 235-256.
Foulkes, M. J.; G. A. Slafer; W. J. Davies; P. M. Berry; R, Sylvester-Bradley; M. Pierre; D. F. Calderini; S. Griffiths and M. P. Reynolds. 2011. Raising yield potential of wheat. III. Optimizing partitioning to grain while maintaning lodging resistance. Field Crops Res., 62,469-486.
Gaju, O.; M. P. Reynolds; D. L. Sparkes and M. J. Foulkes.2009. Relationships between large-spike phenotype, grain number, and yield potential in spring wheat. Crop Science. 49,961-973.
Gallo, K. P.; C. S. T. Daugerthy. 1966. Techniques of measuring intercepted and absorbed photosynthetically active radiation in corn canopies. Agron. J. 78:752-756.
Garcia, F. O.; A. Berardo. A.2005. Trigo. In Echeverría, H. E., García, F. O. (eds). Fertilidad de suelos y fertilizaciòn de cultivos. INTA. INPOFOS: 233-249..
Gomez, K. A.; A. A. Gomez.1984. Statistical procedures for agricultural research. Second Edition. John Wiley and Sons. New York. pp 679.
Gonzalez, F. G.; G. A. Slafer and D. J. Miralles. 2003a. Grain and floret number in response to photoperiod during stem elongation in fully and slightly vernalized wheats. Field Crops Res. 81, 17–27.
Gonzalez, F. G.; G. A. Slafer and D. J. Miralles..2003b. Floret development and spike growth as affected by photoperiod during stem elongation in wheat. Field Crops Res. 81, 29–38.
Gonzalez, F. G.; G. A. Slafer and D. J. Miralles.2005a. Photoperiod during stem elongation in wheat: Is its impacto on fertile floret and grain number determination similar to that of radiation. Plant Biol. 32,181-188.
Gonzalez, F. G.; G. A. Slafer and D. J. Miralles. 2005b. Pre-anthesis development and number of fertile florets in wheat as affected by photoperiod sensitivity genes Ppd-D1 and Ppd-B1. Euphytica.146,253-269.
Gonzalez, F. G.; I. I. Terrile and M. O. Falcon.2011. Spike fertility and duration of stem elongation as promising traits to improve potential grain number (and yield):variation in modern argentinean wheats. Crop Sci.51:1693-1702.
Harbison, J.; B. D. Hall; R.H.H. Neilson and W, M. Strong. (1986). Comparison of winter cereals, oilseed and grain legume crops on the Darling Downs, Queensland. Australian Journal of Experimental Agriculture, 26, 339.
Holt, N. W.1988. Effect of nitrogen fertilizer on the agronomic perfomance and seed quality of anual canarygrass. Can. J. Plant. Sci. 68:41-45.
INASE, 2015. Instituto Nacional de Semillas. Catálogo de cultivares. [en línea] < http://inase.gov.ar/index.php > [consulta 15 noviembre 2015].
Little, T. M.; F. J. Hills. 1976. Métodos Estadísticos para la investigación en la Agricultura. Editorial Trillas, México. pp. 270.
Matus, M, C. and P. Hucl, 1999. Isozyme variation within and among 143 accessions of annual Phalaris L. Species in North American germplasm collections. Crop. Sci. 39: 1222-1228.
Matus, M. C. and P. Hucl. 2011. Morphological variation within and among five annual Phalaris species. Can. J. Plant. Sci. : 85-88.
May, E.; C. B. Holzapfel; G. P. Lafond and J. J. Schoenau.2013. Does the presence of the gene for glabrous hull in annual canarygrass affect the response to chloride fertilizer?. Canadian Journal of Plant Science, 93(1): 109-118.
Midmore, D. J.; P. M. Cartwright and R. A. Fischer.1984. Wheat in tropical environments: Crop growth and grain yield. Field Crops Res. 8, 207–227
Miralles, D. J.; R. A., Richards and G. A. Slafer. 2000. Duration of stem elongation period influences the number of fertile florets in wheat and barley. Australian Journal of Plant Physiology. 27, 931-940.
Miralles, D. J. and G. A. Slafer. 1995. Yield, biomass and yield components in dwarf, semidwarf and tall isogenic lines of spring wheat under recomended and late sowings dates. Plant Breedin. 114,392-396.
Miralles, D. J. and G. A. Slafer. 1997. Radiation interception and radiation use efficiency of near isogenic wheat lines with different height. Euphytica.97, 201-208.
Miralles, M. T.; L. M. Gallez and F. E. Möckel. 2002. Alpiste: Revisión de la situación del cultivo. Revista Facultad de Agronomía Buenos Aires . 22:7-17.
Pascale, A. J. y Giordano, H. J. (1962). Características bioclimáticas que determinan la época de siembra del alpiste. Revista Facultad de Agronomía y Veterinaria (2): 30-52.
Reynolds, M. P.; A. Pellegrineschi amd B. Skovmand. 2005. Sink-limitation to yield and biomass: a summary of some investigations in spring wheat. Ann. Appl. Biol. 146, 39–49.
Reynolds, M. P.; F. Dreccer and R. Trethowan.2006. Drought-adaptive traits derived from wheat wild relatives and landraces. J. Exp. Botany. 58:177-186.
Reynolds, M. P.; M. J. Foulkes; G. A. Slafer; P. M. Berry; M. A. J. Parry; J. W. Snape and W. J. Angus.2009. Raising yield potential in wheat. J. Exp. Botany. 60, 1899-1918.
Reynolds, M. P.; D. Bonnett; S. Chapman; R. Furbank; R., Manes and M. Mather, D., Parry. 2011. Raising yield potential of wheat:(I)overview of a consortium approach and breeding strategies. . J. Exp. Botany. 62, 439-452.
Sadras, V. O. and D. Calderini. 2009. Crop Physiology, Aplications for genetic improvement and agronomy. The Netherlands: Elsevier 1st edition. 818pp.
Sadras, V. O. and C. Lawson. 2011. Genetic gain in yield and associated changes in phenotype, trait plasticity and competitive ability of South Australian wheat varieties released between 1958 and 2007. Crop and Pasture Science 62:533-549.
Saskatchewan Ministry of Agriculture 2013. Varieties of grain. [en línea] [ consulta 01 junio 2014 ]
Savin, R. and G. A. Slafer. 1991. Shading effects on the yield of an Argentinian wheat cultivar. J. Agric. Sci. 116, 1–7
Serrano, H. y Madaloni, J. 1964. Cereales menores, Alpiste. En: Parodi, L. R. eds. Enciclopedia Argentina de Agricultura y Jardineria vol. II. Buenos Aires. Argentina. pp. 609-614
Shearman, V. J.; R. Sylvester-Bradley and M. J. Foulkes. 2005. Physiological processes associated with wheat yield progress in the UK. Crop Science 45, 175-185.
SIIA. 2015. Sistema Integrado de Información Agricola.[en línea].
Siddique, K. H. M.; E. J. Kirby and M. W. Perry.1989. Ear:stem ratio in old and modern wheat varieties relationship with improvement in number of grains per ear and yield. Field Crops Res. 21, 59-78.
Slafer, G. A.; F. H. Andrade and E. H. Satorre, E. H. 1990. Genetic improvement effects on preanthesis physiological attibutes related to wheat grain yield. Field Crops Res. 23,255-263..
Slafer, G. A. and F. H. Andrade.1993. Physiologcal attributes related to the generation of grain yield in bread wheat cultivars released at different eras. Field Crops Res. 31: 351-357.
Slafer, G. A.; D. F. Calderini; D. J. Miralles and M. F. Dreccer.1994. Preanthesis shading effects on the number of grains of three bread wheat cultivars of different potential number of grains. Field Crops Res. 36: 31-39.
Slafer, G. A.; L. G. Abeledo; D. J. Miralles; F. G. Gonzalez and E. M. Whiterchurch.2001. Photoperiod sensitivity during stem elongation as an avenue to raise potential yield in wheat. Euphytica. 119,191-197.
Slafer, G, A.; D. J. Miralles; R. Savin; E. M. Whitechurch y F. G. Gonzalez. 2003. Ciclo ontogénico, dinámica del desarrollo y generación del rendimiento y la calidad en trigo. In: Satorre, E. H, A. Benech; G. A. Slafer; E. B. De La Fuente; D. J. Miralles; M. E. Otegui and R. Savin. 2003. Producción de Granos. Bases funcionales para su manejo.101-163 pp. Ed. FAUBA.
Slafer, G, A.; J. L. Araus; C. Royo and L. F. Garcia del Moral. 2005. Promising ecophysiological traits for genetic improvement of cereal yields in Mediterranean environments. Ann. Appl. Biol. 146, 61-70.
Slafer, G. A. and D. Calderini. 2005. Importance of breeding for further improving durum wheat yeld. in Royo C, Nachit MM, di Fonzo N, Araus J. L. Pfeiffer WH, Slafer GA, eds. Durum wheat breeding: current approaches and future strategies. New York: Food Product Press, 22-41.
Way, E. E.; G. P. Lafond; G. P., Gan; Y. T., Hucl; P., Holzapfel; A. M. Johnston and C. Stevenson.2012. Yield variability on Phalaris canariensis L. due to seeding date, seeding rate and nitrogen fertilizer. Can. J. Plant. Sci. 92:651-669.
Zadoks, J. C.; T. T. Chang and C. F. Konzak. 1974. A decimal code for the growth stages of cereals. Weed Res. 14: 415-421.
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