Effect of Xenia on popping characteristics in popcorn

Authors

  • Amalio Santacruz-Varela Campus Montecillo-Colegio de Postgraduados. Carretera México-Texcoco km 36.5, Montecillo, Texcoco, Estado de México, México. CP. 56230. Tel. 595 9520200, ext. 1570
  • Micaela de la O Olán Campo Experimental Valle de México-INIFAP. Carretera Los Reyes-Texcoco km 13.5, Coatlinchán, Texcoco, Estado de México. CP. 56250. Tel. 800 0882222, ext. 85307
  • Faustino Hugo Alegría-Hernández Universidad Autónoma Chapingo. Carretera México-Texcoco km 38.5, Chapingo, Texcoco, Estado de México. CP. 56230
  • Rafael Ortega-Paczka Universidad Autónoma Chapingo. Carretera México-Texcoco km 38.5, Chapingo, Texcoco, Estado de México. CP. 56230
  • Higinio López-Sánchez Campus Montecillo-Colegio de Postgraduados. Carretera México-Texcoco km 36.5, Montecillo, Texcoco, Estado de México, México. CP. 56230. Tel. 595 9520200, ext. 1570
  • Dora Ma. Sangerman-Jarquín Campo Experimental Valle de México-INIFAP. Carretera Los Reyes-Texcoco km 13.5, Coatlinchán, Texcoco, Estado de México. CP. 56250. Tel. 800 0882222, ext. 85307

DOI:

https://doi.org/10.29312/remexca.v13i8.3350

Keywords:

Zea mays, endosperm, pollination, popcorn, varieties, Xenia

Abstract

In the process of genetic fertilization of corn (Zea mays L.), pollen exerts a direct and immediate effect on the properties of the resulting caryopsis known as Xenia. This situation is of great importance in popcorn, since the popping capacity depends directly on the characteristics of the endosperm, so it is necessary to study the magnitude of Xenia in popcorns to give appropriate recommendations for the production and conservation of this genetic resource. The present study was carried out in 2018, the effect of Xenia of corn varieties of different endosperm constitution was evaluated on physical and popping characteristics of the caryopsis of two genotypes of popcorn. The experiment was conducted in two localities, Montecillo, State of Mexico and Santa María Zacatepec, municipality of Juan C. Bonilla, Puebla, using a randomized complete block experimental design. The varieties of popcorn Compuesto Amarillo and North American Yellow Pearl Popcorn were used as female parents, while the same materials, CML-349 of semicrystalline endosperm and a population of the Cacahuacintle race of mealy endosperm were used as male parents. The results showed that Compuesto Amarillo had a decrease in the dimensions of the caryopsis from 0.17 to 13%, while in NAYPP, the effect resulted in an increase, from 2.27 to 18%. The popping volume showed the greatest effect of Xenia, since in Compuesto Amarillo, it decreased from 25 to 49% when pollinated with non-popcorns, while in NAYPP the decrease was 59%. According to the results, there was an effect of Xenia on the popcorn evaluated, which was greater on the volume of expansion, while in the physical characteristics of the caryopsis, this effect was less pronounced.

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References

Alexander, D. E. and Creech, R. G. 1977. Popcorn. In: Sprague, G. F. (Org). Corn and corn improvement. American Society of Agronomy, Madison, WI. 385-390 pp.

Bautista, R. E.; Salinas, M. Y.; Santacruz, V. A.; Córdova, T. L. y López, S. H. 2019. Características físicas y químicas de la raza de maíz Palomero Toluqueño. Rev. Mex. Cienc. Agric. 10(2):441-446.

Bozinovic, S.; Vancetovic, J.; Prodanovic, S.; Camdzija, Z.; Stevanovic, M.; Grčić, N. and Crevar, M. 2012. Different xenia effect on sterile and fertile versions of hybrids in maize. Proceedings of the Third International Scientific Symposium ‘Agrosym Jahorina 2012’. Lukavica, Bosnia-Herzegovina. 285-289 pp.

Bulant, C.; Gallais, A.; Matthys, R. E. and Prioul, J. L. 2000. Xenia effects in maize with normal endosperm: II. Kernel growth and enzyme activities during grain filling. Crop Sci. 40(1):182-189.

Daros, M.; Texeira, A. A. J. and Gonzaga, P. P. M. 2002. Genetic gain for grain yield and popping expansion in full-sib recurrent selection in popcorn. Crop Breed, Appl. Biotecnol. 2(3):339-344.

De la O, O. M.; Santacruz, V. A.; Sangerman, J. D. M.; Gámez, V. A. J.; Arellano, V. J. L., Valadez B. M. G. y Ávila, P. M. A. 2018. Estandarización del método de reventado para la evaluación experimental del maíz palomero. Rev. Mex. Cienc. Agric. 9(7):1471-1483.

Dofing, S. M.; D’Croz, M. N. and Thomas, C. M. A. 1991. Inheritance of expansion volume and yield in two popcorn × dent corn crosses. Crop Sci. 31(3):715-718.

Estrada, G. J. A.; Hernández, L. A.; Hernández, O. F.; Carballo, C. A. y González, C. F. V. 1999. Tipos de endospermo en maíz y su relación con la calidad de semilla. Rev. Fitotec. Mex. 22(1):99-109.

Figueroa, C. J. D.; Narváez, G. D.E.; Mauricio S. A.; Taba, S.; Gaytán, M. M.; Véles, M. J. J.; Rincón, S. F. y Aragón, C. F. 2013. Propiedades físicas del grano y calidad de los grupos raciales de maíces nativos criollos de México. Rev. Fitotec. Mex. 36(3-A):305-314.

García, E. 1988. Modificaciones al sistema de clasificación climática de Köppen. Para adaptarlo a las condiciones de la República Mexicana. Instituto de Geografía- Universidad Nacional Autónoma de México (UNAM). México, DF. 246 pp.

Gökmen, S2004. Effects of moisture content and popping method on popping characteristics of popcorn. J. Food Eng. 65(3):357-362.

González, R. J.; Torres, R.; De Greef, D.; Bonaldo, A.; Robutti, J. y Borrás, F. 2005. Efecto de la dureza del endospermo del maíz sobre las propiedades de hidratación y cocción. Arch. Lat. Nutr. 55(4):354-360.

Guzmán, H. M.; San Vicente, G. F. y Díaz, M. D. 2008. Flujo de polen entre híbridos tropicales de maíz de diferente color de endospermo. Bioagro. 20(3):159-166.

INEGI. 2009. Instituto Nacional de Estadística, Geografía e Informática. Prontuario de información geográfica municipal de los Estados Unidos Mexicanos. Huejotzingo, Puebla. Clave geoestadística 21074. Aguascalientes.

Lyerly, P. J. 1942. Some genetic and morphologic characters affecting the popping expansion of popcorn. J. Am. Soc. Agron. 34(11):986-999.

Robbins, W. A. and Ashman, R. B. 1984. Parent-offspring popping expansion correlations in progeny of dent corn popcorn and flint corn popcorn crosses. Crop Sci. 24(1):119-121.

SAS, Institute. 2002. SAS/STAT User’s Guide, Software Release 9.0. Statistical Analysis System Institute Inc. Cary, NC, USA. 4424 pp.

SCCA. 2004. Secretariado de la Comisión para la Cooperación Ambiental. Maíz y biodiversidad efectos del maíz transgénico en México. Conclusiones y recomendaciones. Comisión para la Cooperación Ambiental de América del Norte. Quebec, Canadá. 38 p.

Villarreal, A.; Rodríguez, H. R.; Reyes, V. M. H.; Espinosa, V. J. y Castillo, R. F. 2010. Xenia y su relación con la poliembronía en maíz. Acta Química Mexicana. 2(3):1-7.

Ziegler, K. E. 2001. Popcorn. In: speciality corns. A. R. Hallauer. 2nd (Ed.). CRC Press. Boca Raton, FL. 199-234 pp.

Published

2022-12-13

How to Cite

Santacruz-Varela, Amalio, Micaela de la O Olán, Faustino Hugo Alegría-Hernández, Rafael Ortega-Paczka, Higinio López-Sánchez, and Dora Ma. Sangerman-Jarquín. 2022. “Effect of Xenia on Popping Characteristics in Popcorn”. Revista Mexicana De Ciencias Agrícolas 13 (8). México, ME:1411-21. https://doi.org/10.29312/remexca.v13i8.3350.

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