Mathematical modeling of the native Mexican turkey’s growth

Abstract

Little is known about the productive performance of Mexican turkey, so the objective of the present study was to characterize growth performance curves of backyard turkey under a confined system. Forty fertile eggs were artificially incubated and turkey weight was recorded at hatch. During growth performance weekly weight was measured until 385 days of age. Turkey commercial feed and water were offered ad libitum. To characterize growth curves, a fourth degree polynomial model regression and a Richards biological model were used, which were compared by determination coefficient (r2), to reach the best fit model. The best fit model was the fourth degree polynomial regression model from a mathematical standpoint of view. It was found that maximum tom growth was reached at 15.7 weeks with a weight gain of 259.3 g/week and in hens at 12.4 weeks with a weight gain of 112.0 g/week. Body weight reached by toms at 40 weeks was 6 kg and hens at 35 weeks with 3.6 kg.

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Pérez-Lara, E. , Camacho-Escobar, M. , García-López, J. , Machorro-Samano, S. , Ávila-Serrano, N. and Arroyo-Ledezma, J. (2013) Mathematical modeling of the native Mexican turkey’s growth. Open Journal of Animal Sciences, 3, 305-310. doi: 10.4236/ojas.2013.34045.

Conflicts of Interest

The authors declare no conflicts of interest.

References

[1] Valencia, N.F., Munoz, L.L.J.E. and Ramírez, L.M. (2003) Caracterización de la curva de crecimiento en cuatro tipos de gallina criolla. Acta Agronómica, 52, 85-92.
[2] Ahmad, H. and Mottaghitalab, M. (2007) Hyperbolastic models as a new poweful tool to describe broiler growth kinetics. Poultry Science, 86, 2461-2465.
http://dx.doi.org/10.3382/ps.2007-00086
[3] Keskin, I., Dag, B., Sariye, V. and Gokmen, V. (2009) Estimation of growth curve parameters. In: Konya Merino sheep. South African Journal of Animal Science, 39, 163-168. http://dx.doi.org/10.4314/sajas.v39i2.44390
[4] Malhado, C.H.M., Ramos, A.A., Carneiro, P.L.S., Souza, J.C., Wechsler, F.S., Eler, J.P, Azevêdo, D.M.M.R. and Sereno, J.R.B. (2008) Modelo no lienales para describir el crecimiento de bufalinos de la raza Murrah. Archivos de Zootecnia, 57, 497-503.
[5] Knízetová, H., Hyánek, J., Hyánková, L. and Belícek, P. (1995) Comparative study of growth curves in poultry. Genetics Selection Evolution, 27, 365-375.
http://dx.doi.org/10.1186/1297-9686-27-4-365
[6] Canas, á.J., Ramírez, T.J., Arboleda, A.O., Ochoa, S.J., Vergara, G.O., and Cerón, M.M. (2007) Estimación de parámetros genéticos para peso al destete en ganado blanco orejinegro (BON) en el noroccidente colombiano. Revista MVZ Córdoba, 13, 1138-1145.
[7] Chambers, J.R. (1993) Poultry Breeding and Genetics: Genetics of growth and meat production in chickens. In: Crawford, R.D. Ed., Poultry Breeding and Genetics, Elsevier, The Netherlands, 599-643.
[8] Ersoy, E.I., Mendes, M. and Aktan, S. (2006) Growth curve establishment for American Bronze turkeys. Archiv Tierzucht, 49, 293-299.
[9] Takma, C., Ozkan, S. and Akbas, Y. (2004) Describing growth curve of turkey toms using Gompertz model. Proceedings of XXII World’s Poultry Congress, Istanbul.
[10] Herrera-Martínez, M., Machorro-Samano S., Arcos-García, J.L. and Mendoza-Martínez, G.M. (2008) Regresión polinomial de la longitud total en la iguana negra (Ctenosaura pectinata) en relación con el tiempo. Memorias del XI Reunión Nacional de Iguanas. Puebla, 21-23.
[11] Nunez, G.F.A. (2009) Fundamentos de crecimiento y evaluación animal, Barcelona, Espana, Ed. Trafford Publishing, pp. 21-30.
[12] Brisbin, L. Jr., Collins, C.T., White, C.G. and Mccallum, C.A. (2009) A New Paradigm for the Analysis and Interpretation of Growth Data: The Shape of Things to Come. The Auk, 104, 552-554.
http://dx.doi.org/10.2307/4087567
[13] Camacho-Escobar, M.A., Pérez-Lara, E., García-López, J.C., ávila-Serrano, N.Y., Rodríguez-Delatorre, M. and Arroyo-Ledezma, J. (2011) Rendimiento de canal en guajolotes bronceados nativos de lento crecimiento alimentados con diferentes dietas tradicionales. In: Universidad Autónoma del Estado de Morelos (ed), 1era. Reunión de la Investigación Agropecuaria 2011 Libro de resúmenes en extenso. [In CD]. Cuernavaca, 12-21.
[14] Camacho-Escobar, M.A., Hernandez-Sanchez, V., Ramirez-Cancino, L., Sánchez-Bernal, E.I., and Arroyo-Ledezma, J. (2008) Characterization of backyard guajolotes (Meleagris gallopavo gallopavo) in tropical zones of Mexico. Livestock Research for Rural Development, 20, April 7, 2008.
http://www.cipav.org.co/lrrd/lrrd20/4/cama20050.htm
[15] Morales-Salud, T. (2001) Sistema de marcaje, problema de identidad o simple requisito. Memorias del Cuarto Taller Nacional sobre Manejo de Iguanas en Cautiverio (Puerto ángel, Oaxaca). Consultado el 28 de marzo de 2010.
http://www.subcomitedeiguanas.org/PDF%B4s/taller4.pdf
[16] Camacho-Escobar, M.A., Arroyo-Ledezma, J., Pérez-Lara, E., Sánchez-Bernal, E.I. and García-López, J.C. (2009-2010) Enfermedades y parasitosis asociadas a una explotación intensiva de guajolotes nativos. Revista Ciencias Agrícolas Informa, 19, 56-61.
[17] Sánchez-Ramírez, E. (1999) Comportamiento en crecimiento de avestruces alimentadas con diferentes dietas. Ms. Sci. Thesis. Universidad de Colima, Mexico.
[18] Agudelo-Gómez, D.A., Cerón-Munoz, M.F. and Restrepo-Betancur, L.F. (2008) Modelación de las funciones de crecimiento aplicadas a la producción animal. Revista Colombiana de Ciencias Pecuarias, 21, 39-51.
[19] SAS/STAT (1999) User’s Guide. 4th Edition, SAS Institute. Inc., Cary.
[20] Graph. (2009) Licensed Company. Version 4.7, USA.
http://www.padowan.dk/
[21] Aggrey, S.E. (2002) Comparison of three nonlinear and spline regression models for describing chicken growth curves. Poultry Science, 81, 1782-1788.
[22] Brisbin, I.L. Jr., White, G.C. and Bush, P.B. (1986) PCB intake and the growth of waterfowl: Multivariate analyses based on a reparameterized Richards sigmoid model. Growth, 50, 1-11.
[23] Delgado, C., Valera, M., Molina, A., Jiménez, J.M. and Rodero, A. (2000) Circunferencia escrotal como predictor de la capacidad reproductiva en razas de vacuno de carne autóctono: curvas de crecimiento en el vacuno retinto. Archivos de Zootecnia, 49, 229-240.
[24] Juárez, A. and Fraga, M. (2002) Nota preliminar de indicadores productivos de pavos mexicanos en condiciones de confinamiento. Revista Cubana de Ciencia Agrícola, 36, 65-68.
[25] Schopflocher, R. (1994) Avicultura lucrativa, Argentina, Ed., Albatros, 402.
[26] López-Zavala, R., Monterrubio-Rico, T., Cano-Camacho, H., Chassin-Noria, O., Aguilera-Reyes, U. and ZavalaPáramo, M.G. (2008) Native turkey (Meleagris gallopavo gallopavo) backyard production sistems’ characterization in the physiographic regions of the State of Michoacan, Mexico. Técnica Pecuaria México, 46, 303-316.
[27] Losada, H., Rivera, J., Cortés, J., Castillo, A., González, R.O. and Herrera, J. (2006) Un análisis de sistemas de producción de guajolotes (Meleagridis gallipavo) en el espacio suburbano de la delegación de Xochimilco al sur de la Ciudad de México. Livestock Research for Rural Development, 18, June 8, 2006.
http://www.cipav.org.co/lrrd/lrrd18/4/losa18052.htm
[28] Mallia G. (1998) Indigenous domestic turkeys of Oaxaca and Quintana Roo, Mexico. Animal Genetic Resources Information, 23, 69-78.
http://dx.doi.org/10.1017/S1014233900001085
[29] National Research Council (1991) Microlivestock: Little known small animals with a promising economic future. The National Academic Press, Washington DC, October 11, 2006.
http://nap/edu/openbook/030904295X/html/157.html
[30] Hernández J.S., Oviedo, M.R., Martínez, A.S., Carreón, L.L., Reséndiz, M.R., Romero, B.J., Ríos, M.J., Zamitiz, G.J. and Vargas, S. (2005) Situación del guajolote común en la comunidad de Santa úrsula (Puebla, México). In: Universidad Autónoma de Chiapas, Eds., VI Simposio Iberoamericano sobre conservación y utilización de recursos zoogenéticos. San Cristóbal de las Casas, Chiapas, México, 277-281.

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