Effect of leaf damage and environmental conditions on corn production

Main Article Content

Santiago Pedro Papucci
A González
M Cruciani

Abstract

The aims of this study were to: (i) evaluate the effects of simulated foliar damage (FD) caused by hail at different corn growth stages on yield, weight of 1000 grains and test weight , (ii)relate them to the values used by some insurance companies. The trials were carried out in Zavalla (60° 53` W; 33º 01` S), Argentina in 2008, 2010, 2011, 2012, 2014 and 2015. FD consisted in tearing all leaves at three different times: R1-15 days, R1, and R1+15 days , and with varying intensity (breaking or not breaking the midrib: BM and NBM). Number of spikes (S), yield (Y), weight of 1000 grains (WG1000) and test weight (TW) were evaluated. Data were analyzed using ANOVA and Tukey-Kramer´s test. Treatments in which the midrib was broken at R1-15 and R1 showed the greatest yield decreases. Although different yields were observed when foliar damage was done at different growth stages (R1-15, R1 or R1 + 15), the differences between these moments were not statistically significant for either of the two intensities. According to these results, the treatment BMat R1 + 15 is the one that is more involved with WG1000 decrease. Significant TW differences were found only in the 2007/08 and 2009 /10 growing seasons, with BM at R1 differing significant (P≤0.01) from the control.Yieldwas not influenced by environment-treatment interactions. BM R1 treatments resulted in the highest yield decreases. WG1000 waslower when the blade was damaged and the midribbroken at R1 + 15. The 15% yield decrease may be compared with the 35% defoliation value used by security companies.

Downloads

Download data is not yet available.

Article Details

How to Cite
Papucci, S. P., González, A., & Cruciani, M. (2022). Effect of leaf damage and environmental conditions on corn production. Ciencias Agronómicas, (34), e001. https://doi.org/10.35305/agro34.225
Section
Artículos originales

References

ANDRADE F.; CIRILO A.; UHART S. y OTEGUI M. (1996) Ecofisiología del cultivo de maíz. Balcarce: Facultad de Ciencias Agrarias (UNMar del Plata) y Estación Experimental INTA Balcarce. 292 p.

ABADA S. y AHUMADA M. (2016) Incidencia del daño foliar sobre el rendimiento del cultivo de maíz (Zea mays). Serie Extensión INTA Paraná Nº 79:13-17

CIRILO A. y ANDRADE F. (1996) Sowing date and kernel weight in maize. Crop Science, 36:325-331.

CIRILO A.; PAGANI A.; ECHEVERRIA H.; ANDRADE F. A. y SAINZ ROZAS H. (2012) Effects of nitrogen and sulfur application on grain yield, nutrient accumulation and harvest indexes in maize. Journal of Plant Nutrition 35:1080-1097.

DWYER L. M.; STEWART D. W.; EVENSON L. Y MA B. L. (1994) Maize Growth and Yield Following Late Summer Hail. Crop Science, 34:1400-1403. https://doi.org/10.2135/cropsci1994.0011183X003400050047x

KLEIN R. N. Y SHAPIRO C. A. (2011) Evaluating Hail Damage to Corn. Disponible en: http://extension.unl.edu/publications.

MANGEN T. F.; THOMISON P. R. Y STRACHAN S. D. (2005) Early-Season Defoliation Effects on TopCross High-Oil Corn Production Salaries and research support provided in part by State and Federal funds appropriated to The Ohio State Univ. Ohio Agric. Res. and Dev. Cent. Ohio State Univ. Manuscript no.HCS05-04. Agronomy Journal 97:823-831 https://doi.org/10.2134/agronj2004.0237

OTEGUI M. A. y BONHOMME, R. (1998) Grain yield components in maize I. Ear growth and kernel set. Field Crops Research. 56: 247-256.

PICOLI JUNIOR, G.J. 2011. Adubacao nitrogenada como estrategia para minimizar estresses ocasionados pela desfolha e fitotoxicidade foliar em milho. Dissertacao (Mestrado em Producao Vegetal)- Universidade do Estado de Santa Catarina, Florianópolis. 88 f.

RITCHIE S.W.; HANWAY J.J. y BENSON G.O. (1989) How a corn plant develops. Iowa State University of Science and Technology Cooperative. Extensión Service. Ames. Special Report N°48. 21 p.

SANGOI L.; VIEIRA J.; SCHENATTO D. E.; GIORDANI W.; MAJOLO BONIATTI C.; DALL'IGNA L.; ARRUDA SOUZA C. y ZANELLA E. J.(2014) Tolerância à Desfolha de Genótipos de Milho em Diferentes Estádios Fenológicos. Revista Brasileira de Milho e Sorgo, v13, n3:300-311p.

SATORRE E.; BENECH A.; SLAFER G.; de la FUENTE E.; MIRALLES D.; OTEGUI M. y SAVIN R. (2003) Producción de Granos. Bases funcionales para su manejo. Buenos Aires: Facultad Agronomía UBA. 783 p.

SHAPIRO C. A.; PETERSON T. A. Y FLOWERDAY A. D. (1986) Yield Loss Due to Simulated Hail Damage on Corn: A Comparison of Actual and Predicted Values1. Agronomy Journal, 78:585-589. https://doi.org/10.2134/agronj1986.00021962007800040006x

THOMISON P. y GEYER A. (2006) Impact of Defoliation on Grain and Stalk Quality in Corn. In Annual Meetings ASA, CSSA, SSSA.

VEGA C.; VALENTINUZ O.; UHART S. y ANDRADE F. (1997) “Número de granos por planta en soja, girasol y maíz en función de la tasa de crecimiento por planta durante el período crítico de determinación del rendimiento”, VI Congreso Nacional de Maíz. Noviembre199,Pergamino. Buenos Aires, Tomo II: 27-34.

VORST J.V. (2002). Assessing Hail Damage to Corn. Disponible en: http://corn.agronomy.wisc.edu/Management/pdfs/NCH01.pdf [Acceso: 16 de octubre de 2018]

Similar Articles

<< < 1 2 

You may also start an advanced similarity search for this article.