Gamma radiation in roselle seeds to induce morphological variation and selection of mutants

Authors

  • Luis Antonio Gálvez-Marroquín Experimental Field Central Valleys of Oaxaca-INIFAP. Melchor Ocampo no. 7, Santo Domingo Barrio Bajo, Villa de Etla, Oaxaca. CP. 68200
  • Carlos Hugo Avendaño-Arrazate Campo Experimental Rosario Izapa-INIFAP. Tuxtla Chico, Chiapas. CP. 30780.
  • Rafael Ariza-Flores Experimental Field Central Valleys of Oaxaca-INIFAP. Melchor Ocampo no. 7, Santo Domingo Barrio Bajo, Villa de Etla, Oaxaca. CP. 68200
  • Yeudiel Gomez-Simuta Subdirección de producción-Programa Moscamed-Moscafrut. Metapa de Domínguez, Chiapas. CP. 20860.
  • Misael Martínez-Bolaños Campo Experimental Rosario Izapa-INIFAP. Tuxtla Chico, Chiapas. CP. 30780.
  • Jesús Alberto Cruz-López Campo Experimental Valles Centrales de Oaxaca-INIFAP. Melchor Ocampo núm. 7, Santo Domingo Barrio Bajo, Villa de Etla, Oaxaca. CP. 68200.

DOI:

https://doi.org/10.29312/remexca.v14i5.3010

Keywords:

gamma radiation, mutagenesis, radiosensitivity

Abstract

The objective was to determine the LD50 and RC50 and induce morphological variation in the roselle variety UAN-8 by gamma rays to select mutant plants of agronomic interest in the M2 generation. The radiation doses used were: 0, 100, 200, 300, 400, 500, 600, 700, 800, 900 and 1 000 Gy. The experiments were conducted under greenhouse and field conditions in Río Grande, Villa de Tututepec, Oaxaca, in 2018. The experimental design used was randomized blocks with four repetitions. In M1, seedling emergence, survival, height and percentage of plants were evaluated. In M2, morphological variation was recorded, and mutant plants were selected. Plant survival and height data were analyzed using nonlinear regression to determine the median lethal and reductive doses (LD50 and RC50). The LD50 and RC50 were found at 395.48 and 453.2 Gy, respectively. The M2 seeds of this variety produced plants with morphological variability in doses from 100 to 300 Gy. From these plants, it was possible to identify six promising mutant genotypes. The genotype identified as S7 L13 presented desirable morphological characteristics such as a higher number of red calyces per plant and absent or very weak pubescence, compared to the plants of the parental genotype.

Downloads

Download data is not yet available.

References

Díaz-López, E.; Morales-Ruíz, A.; Olivar-Hernández, A.; Hernández-Herrera, P.; Marín-Beltrán, M. E.; León de la-Rocha, J. F.; Ramos-Hernández, G.; Juárez-Cortes, J. A.; Santiago-Santiago, H.; Loeza-Corte, J. M.; Cruz-Torres, E. and García-Andrade, J. M. 2016. Radiosensitivity with ray’s gamma of 60Co at seeds of jamaica (Hibiscus sabdariffa L.) to determine LD50. Scholar’s J. Agric. Vet. Sci. 3(2):93-95.

Frank, T.; Netzel, G.; Kammerer, D. R.; Carle, R.; Kler, A.; Kriesl, E.; Bitsch, I.; Bitsch, R. and Netzel, M. 2012. Consumption of Hibiscus sabdariffa L. aqueous extract and its impact on systemic antioxidant potential in healthy subjects. J. Sci. Food Agric. 92(10):2207-2218. https://doi.org/10.1002/jsfa.5615. DOI: https://doi.org/10.1002/jsfa.5615

Gurrola-Díaz, C. M.; García-López, P. M.; Sánchez-Enríquez, S.; Troyo-Sanromán, R.; Andrade-González, I. and Gómez-Leyvaj, F. 2010. Effects of Hibiscus sabdariffa extract powder and preventive treatment (diet) on the lipid profiles of patients with metabolic syndrome (MeSy). Phytomedicine. 17(7):500-505. https://doi.org/10.1016/j.phymed.2009.10.014. DOI: https://doi.org/10.1016/j.phymed.2009.10.014

Hanafiah, D. S.; Mahmud-Siregar, L. A. and Mutia-Dinulia, P. 2017. Effect of gamma ray’s irradiation on M1 generation of roselle (Hibiscus sabdariffa L.). Inter. J. Agric. Res. 12(1):28-35. http://dx.doi.org/10.3923/ijar.2017.28.35. DOI: https://doi.org/10.3923/ijar.2017.28.35

Harding, S. S. and Mohamad, O. 2009. Radiosensitivity test on two varieties of Terengganu and Arab used in mutation breeding of roselle (Hibiscus sabdariffa L.). Afr. J. Plant Sci. 3(8):181-183.

Herrera-Arellano, A.; Flores-Romero, S.; Chavez-Soto, M. A. and Tortoriello, J. 2004. Effectiveness and tolerability of a standardized extract from Hibiscus sabdariffa in patients with mild to moderate hypertension: a controlled and randomized clinical trial. Phytomedicine. 11(5):375-382. https://doi.org/10.1016/j.phymed.2004.04.001. DOI: https://doi.org/10.1016/j.phymed.2004.04.001

Kodym, A.; Afza, R.; Forster, B. P.; Ukai, Y.; Nakagawa, H. and Mba, C. 2012. Methodology for physical and chemical mutagenic treatments. In: plant mutation breeding and biotechnology. Ed. Joint FAO/IAEA division of nuclear techniques in food and agriculture international atomic energy agency. Vienna. 169-180. pp. DOI: https://doi.org/10.1079/9781780640853.0169

Lagoda, P. J. L. 2012. Effects of radiation on living cells and plants. In: plant mutation breeding and biotechnology. Ed. Joint FAO/IAEA division of nuclear techniques in food and agriculture international atomic energy agency. Vienna. 123-134. pp. DOI: https://doi.org/10.1079/9781780640853.0123

Momiyama, M.; Koshiba, T.; Furukawa, K.; Kamiya, Y. and Sato, M. 1999. Effects of y-irradiation on elongation and índole-3-acetic acid level of maize (Zea mays) coleoptiles. Environ. Exp. Bot. 41(2):131-143. DOI: https://doi.org/10.1016/S0098-8472(99)00005-2

Muhammad, T. B. and Shakib, A. B. 1995. Jus hibiscus: bukan sekadar minuman biasa. Dewan Ekonomi. 2(1):12-14.

Munsell, C. S. 2012. Munsell plant tissue color book. University of Wisconsin. USA. 21 p.

Murugan, S.; Bharathi, T.; Ariraman, M. and Dhanavel, D. 2015. Effect of gamma rays on mitotic chromosome behavior of root tip cells in Catharanthus roseus (L) G. Don. Indo-Asian J. Mult. Res. 1(3):22-227.

Mussi, C.; Nakayama, H. y Oviedo, C. R. 2016. Variabilidad fenotípica en poblaciones de sésamo (Sesamum indicum L.) irradiado con rayos gamma. Cultivos Tropicales. 37(1):74-80. http://dx.doi.org/10.13140/RG.2.1.3749.3362.

Oladosu, Y. A.; Rafii, M. Y.; Abdullah, N.; Hussin, G.; Ramli, A.; Rahim, H. A.; Miah, G. and Usman, M. 2016. Principle and application of plant mutagenesis in crop improvement: a review. Biotechnol. Biotechnol. Equip. 30(1):1-16. https://doi.org/10.1080/13102818.2015.1087333. DOI: https://doi.org/10.1080/13102818.2015.1087333

Olasupo, F. O.; Ilori, C. O.; Forster, B. P. and Bado, S. 2016. Mutagenic effects of gamma radiation on eight accessions of cowpea (Vigna unguiculata [L.] Walp.). Am. J. Plant Sci. 7:339-351. http://dx.doi.org/10.4236/ajps.2016.72034. DOI: https://doi.org/10.4236/ajps.2016.72034

Ovando-Cruz, M. E.; Salinas-Moreno, Y.; Gálvez-Marroquín, L. A.; Ortiz-Curiel, S. y Martínez-Bolaños, M. 2018. Evaluación y selección de genotipos de jamaica (Hibiscus sabdariffa L.) bajo condiciones de temporal en Tututepec, Oaxaca, México. Agroproductividad. 11(12):79-84. https://doi.org/10.32854/agrop.v11i12.1311.

Pacheco-Oviedo, F.; Ramírez-Azuaje, D.; Pinto-Catari, I.; Peraza-Marrero, M. y Orosco-Vargas, C. 2019. Propiedades de la flor de jamaica (Hibiscus sabdariffa L.), rica fuente de polifenoles. Saber. 31(1):44-55.

Raut, Y.; Vaidya, E. R. and Sasane, P. 2021 Effect of gamma rays on germination and plant survival in sesame (Sesamum indicum L.). The Pharma Innv. J. 10(12):392-394.

SAGARPA-SNICS. 2014. Guía técnica para la descripción varietal de Jamaica [Hibiscus sabdariffa (L.) Torr.]. Secretaría de Agricultura, Ganadería, Desarrollo Rural, Pesca y Alimentación (SAGARPA)-Servicio Nacional de Inspección y Certificación de Semillas (SNICS). Tlalnepantla, Estado de México. 29 p.

SIAP. 2019. Servicio de Información Agroalimentaria y Pesquera. Anuario estadístico de la producción agrícola. Secretaría de Agricultura y Desarrollo Rural. Ciudad de México. www.gob.mx/siap.

Published

2023-07-22

How to Cite

Gálvez-Marroquín, Luis Antonio, Carlos Hugo Avendaño-Arrazate, Rafael Ariza-Flores, Yeudiel Gomez-Simuta, Misael Martínez-Bolaños, and Jesús Alberto Cruz-López. 2023. “Gamma Radiation in Roselle Seeds to Induce Morphological Variation and Selection of Mutants”. Revista Mexicana De Ciencias Agrícolas 14 (5). México, ME:27-37. https://doi.org/10.29312/remexca.v14i5.3010.

Issue

Section

Articles

Most read articles by the same author(s)