Ascending polarity extracts of Dodonaea viscosa leaves on instars of Spodoptera frugiperda

Authors

  • Sonia Pérez Mayorga Department of Botany and Zoology-University Center of Biological and Agricultural Sciences. Highway Guadalajara-Nogales km 15.5, Jalisco, Mexico. Tel. 33 37771150, ext. 32924
  • Lino de la Cruz Larios Department of Agricultural Production-University Center of Biological and Agricultural Sciences. Highway Guadalajara-Nogales km 15.5, Jalisco, Mexico. Tel. 33 37771150
  • Eduardo Salcedo Pérez Department of Botany and Zoology-University Center of Biological and Agricultural Sciences. Highway Guadalajara-Nogales km 15.5, Jalisco, Mexico. Tel. 33 37771150, ext. 32924
  • Jhony Navat Enríquez Vara Center for Research and Assistance in Technology and Design of the State of Jalisco AC. Zapopan, Jalisco, Mexico.
  • Cesar Bonifacio Ramírez López Department of Botany and Zoology-University Center of Biological and Agricultural Sciences. Highway Guadalajara-Nogales km 15.5, Jalisco, Mexico. Tel. 33 37771150, ext. 32924

DOI:

https://doi.org/10.29312/remexca.v13i3.2841

Keywords:

Spodoptera frugiperda, alternative pest control, botanical products, Lepidoptera: Noctuidae

Abstract

The search for environmentally friendly alternatives for the control of agricultural pests, which avoid damage to public health and the surrounding ecosystem, is a current demand that deserves responsible bioethical attention. In this sense, the objective of the present work was to evaluate the activity of the extracts of Dodonaea viscosa leaves with ascending polarity on the development of Spodoptera frugiperda. Foliar extracts of D. viscosa were obtained by cold maceration, using solvents in ascending polarity: hexane, dichloromethane and methanol, which were used in the antifeedant tests to know their individual effect. An experiment was conducted with two antifeedant bioassays, one with an artificial diet and the other with corn leaves; in both, the three extracts of D. viscosa obtained were applied at a concentration of 1% m/v. The experiment was carried out with L3 larvae of the third generation of S. frugiperda, from which the bioassays were carried out, during all stages of development. The data were subjected to a multifactorial Anova and to the comparison of means (Tukey p= 0.05). A principal component analysis (PCA) was performed to identify the variables influenced in each stage of the insect. The variables with significant differences were larval mortality, duration of the larval and pupal stage; as well as pupal weight and number of eggs laid. The extracts analyzed showed effects on the interaction with the type of diet, which was reflected in the variables evaluated during the development of S. frugiperda.

Downloads

Download data is not yet available.

References

Al-Snafi, A. E. 2017. A review on Dodonaea viscosa: a potential medicinal plant. IOSR. J. Pharm. 7(2):10-21. Doi:10.9790/3013-0702011021. DOI: https://doi.org/10.9790/3013-0702011021

Ángel-Ríos, M. D.; Pérez-Salgado, J. y Morales, J. F. 2015. Toxicidad de extractos vegetales y hongos entomopatógenos en el gusano cogollero Spodoptera frugiperda J.E. Smith (Lepidoptera: Noctuidae), del maíz en el Estado de Guerrero. Entomología Mexicana. 2:260-265. Arrese, E. L. and Soulages, J. L. 2010. Insect fat body: energy, metabolism, and regulation. Annu. Rev. Entomol. 55:207-225. Doi:10.1146/annurev-ento-112408-085356. Ayala, R. O.; Navarro, F. and Virla, E. G. 2013. Evaluation of the attack rates and level of damages by the fall armyworm, Spodoptera frugiperda (Lepidoptera: Noctuidae), affecting corn-crops in the northeast of Argentina. Rev. de la Facultad de Ciencias Agrarias. 45(2):1-12. Bernabé-Antonio, A.; Maldonado-Magaña, A.; Ramírez-López, C. B.; Salcedo-Pérez, E.; Meza-Contreras, J. C.; González-García, Y. and Cruz-Sosa, F. 2017. Establishment of callus and cell suspension cultures of Eysenhardtia polystachya (Ortega) and fungistatic activity of their extracts. South Afr. J. Bot. 112: 40-47.

Callado-Galindo, M. M.; Villa-Ayala, P.; Castrejón-Ayala, F. and Jiménez-Pérez, A. 2013. Effect of age, body weight and multiple mating on Copitarsia decolora (Lepidoptera: Noctuidae) reproductive potential and longevity. J. Insect Behavior. 26(6):860-872. Carvalho, F. P. 2017. Pesticides, environment, and food safety. Food Energy Security. 6(2):48-60. Doi:10.1002/fes3.108. DOI: https://doi.org/10.1007/s10905-013-9401-9

Castillo, L.; González-Coloma, A.; González, A.; Díaz, M.; Alonso-Paz, E.; Bassagoda, M. J. and Rossini, C. 2009. Screening of Uruguayan plants for deterrent activity against insects. Industrial Crops and Products. 29(1):235-240. Doi:10.1016/j.indcrop.2008.05.004. DOI: https://doi.org/10.1016/j.indcrop.2008.05.004

Cohen, A. C. 2015. Insect diets: science and technology. 2ª Ed. Prensa CRC press, Taylor y Francis Group. Nueva York. 49-53 pp. https://doi.org/10.1201/b18562. DOI: https://doi.org/10.1201/b18562

Del Puerto, A. M.; Suárez, S. y Palacio, D. 2014. Efectos de los plaguicidas sobre el ambiente y la salud. Rev. Cubana de Higiene y Epidemiología. 52(3):372-387. Díaz, M.; Díaz, C. E.; Guillermo, R.; González, A.; Castillo, L.; González-Coloma, A. and Rossini, C. 2015. Differential anti-insect activity of natural products isolated from D. viscosa Jacq. (Sapindaceae). J. Plant Protec. Res. 55(2):172-178. Doi: 10.1515/jppr-2015-0023. Díaz, M. and Rossini, C. 2015. Bioactive natural products from Sapindaceae deterrent and toxic metabolites against insects. Insecticides Pest Engineering. Perveen, F. (Ed.). In: Tech, Rijeka. Croatia. 287-308. El-Din, M. M. and El-Gengaihi, S. E. 2000. Joint action of some botanical extracts against the Egyptian cotton leaf worm Spodoptera littoralis (Boisd.) (Lepidoptera: Noctuidae). Egyptian Academic J. Biol. Sci. 10(1-2):51-56. Doi: 20043161521. El-Gengaihi, S.; Dimetry, N. Z. and Amer, S. A. 2011. Phytochemical, acaricidal and biological activity of Dodonaea viscosa L. against the two spotted spider mite Tetranychus urticae Koch. Arch. Phytopathol. Plant Protec. 44(5):419-425. Flores-Quinches, R. L.; Castillo-Carrillo, P. S. y Silva-Álvarez, J. C. 2021. Influencia de la alimentación con hoja de arroz (Oryza sativa L.) en la biología de Spodoptera frugiperda. Manglar. 18(2):103-109. García, G. C.; Nava, P. E.; Camacho, B. J. R. y Vázquez, M. E. L. 2012. Bioplaguicidas: una opción para el control biológico de plagas. Ra Ximhai. 8(3):17-29.

Giraudo, M.; Hilliou, F.; Fricaux, T.; Audant, P.; Feyereisen, R. and Le Goff, G. 2015. Cytochrome P450s from the fall armyworm (Spodoptera frugiperda): responses to plant allelochemicals and pesticides. Insect Molecular Biology. 24(1):115-128. DOI: https://doi.org/10.1111/imb.12140

González-Elizondo, M. S.; González-Elizondo, M.; Tena-Flores, J. A.; Ruacho-González, L. y López-Enríquez, I. L. 2012. Vegetación de la Sierra Madre Occidental, México: una síntesis. Acta Botánica Mexicana. 100:351-403. Doi.org/10.21829/abm100.2012.40. Guzmán, P. D. A.; Rodríguez, C. J. y Valencia C. S. J. 2016. Identificación de estadios larvales de lepidópteros: plaga de maíz. Centro Internacional de Agricultura Tropical (CIAT). Cali, Colombia. 2-16 pp. Kalleshwaraswamy, C. M.; Maruthi, M. S. and Pavithra, H. B. 2018. Biology of invasive fall army worm Spodoptera frugiperda (JE Smith) (Lepidoptera: Noctuidae) on maize. Indian J. Entomol. 80(3):540-543. Doi:10.5958/0974-8172.2018.00238.9.

Malarvannan, S.; Giridharan, R.; Sekar, S.; Prabavathy, V. R. and Nair, S. 2009. Ovicidal activity of crude extracts of few traditional plants against Helicoverpa armigera (Hubner) (Noctuidae: Lepidoptera). J. Biopesticides. 2(1):64-71. Doi: 20093224797. Mesa, V. A. M.; Marín, P.; Ocampo, O.; Calle, J. y Monsalve, Z. 2019. Fungicidas a partir de extractos vegetales: una alternativa en el manejo integrado de hongos fitopatógenos. RIA. Rev. de Investigaciones Agropecuarias. 45(1):23-30. Mora, C. A.; Chamorro, K. L.; Yupanqui, D. M. L.; Unzueta, R. J. S.; Mestanza, R. C. y Pérez, P. R. 2017. Efecto cicatrizante del ungüento de Dodonaea viscosa Jacq “Chamisa” en ratones Balb/C 53. Ágora Rev. Científica. 4(02):1-5. Doi: http://dx.doi.org/10.21679/arc.v4i2.84. Mostafa, A. E.; Atef, A.; Mohammad, A. E. I.; Jacob, M.; Cutler, S. J.; and Ross, S. A. 2014. New secondary metabolites from Dodonaea viscosa. Phytochemistry Letters. 8(1):10-15. Nawaz, H.; Shad, M. A.; Rehman, N.; Andaleeb, H. and Ullah, N. 2020. Effect of solvent polarity on extraction yield and antioxidant properties of phytochemicals from bean (P. vulgaris) seeds. Brazilian J. Pharm. Sci. 56:1-5. Doi.org/10.1590/s2175-97902019000417129.

Niu, H. M.; Zeng, D. Q.; Long, C. L.; Peng, Y. H.; Wang, Y. H.; Luo, J. F.; Wang, H. S.; Shi, Y. N.; Tang, G. H. and Zhao, F. W. 2010. Clerodano diterpenoides y flavonoides prenilados de Dodonaea viscosa. J. Asian Natural Products Res. 12(1):7-14. Doi: 10.1080/10286020903407379. DOI: https://doi.org/10.1080/10286020903407379

Poitout, B. R. 1974. Elevage de chenilles de vingt-huit espèces de Lépidoptères Noctuidae et de deux espèces d’Arctiidae sur milieu artificiel simple. Particularités de l’élevage selon les espèces. Annales de Zoologie Ecologie Animale. 6(3):341-411. Doi:hal.inrae.fr/hal-02732646.

Ramírez, Z.; Santillán, J.; Drouaillet, B.; Hernández, E.; Pecina, J.; Mendoza, M. and Reyes, C. 2018. Combinatorial aptitude and resistance to leaf damage of Spodoptera frugiperda (J. E. Smith) in maize germplasm native to Tamaulipas. Rev. Mex. Cienc. Agríc. 9(1):81-93. Reséndiz, R. Z.; López, S. J. A.; Osorio, H. E.; Estrada, D. B.; Pecina, M. J. A.; Mendoza, C. M. C. y Reyes, M. C. A. 2016. Importancia de la resistencia del maíz nativo al ataque de larvas de lepidópteros. Temas de Ciencia y Tecnología. 20(59):3-14. DOI: https://doi.org/10.29312/remexca.v9i1.849

Rodríguez-Soto, J. C.; Salazar, C. M. L. y Contreras, Q. M. 2018. Efecto de diferentes surfactantes sobre larvas III de Spodoptera frugiperda Smith bajo condiciones de laboratorio y de campo. Arnaldoa. 25(3):1041-1052. Doi.org/10.22497/arnaldoa.253.25315. Rosales-Juárez, A.; Aguilar-Medel, S.; Martínez-Carrillo, J. L.; Mejía-Carranza, J.; Mora-Herrera, M. E. y García-Velasco, R. 2015. Efecto letal y subletal de la proteína Cry2Ab de Bacillus thuringiensis berliner en gusano elotero Helicoverpa Zea boddie (Lepidoptera: Noctuidae). Entomología Mexicana. 2:733-738.

Rzedowski, J. 2006. La vegetación de México. 1ra. (Ed.). Comisión Nacional para el Conocimiento y Uso de la Biodiversidad (CONABIO). México, DF. 504 p.

Salama, H. S. and Sharaby, A. 1988. Feeding deterrence induced by some plants in Spodoptera littoralis and their potentiating effect on Bacillus thuringiensis. Berliner. Inter. J. Tropical Insect Sci. 9(5):573-577. DOI: https://doi.org/10.1017/S1742758400005026

Salas-Araiza, M. D.; Martínez-Jaime, O. A.; Guzmán-Mendoza, R.; González-Márquez, M. A. y Ávila-López, Á. 2018. Fluctuación poblacional de Spodoptera frugiperda (JE Smith) y Spodoptera exigua (Hubner) (Lepidoptera: Noctuidae) mediante el uso de feromonas en Iraputo. Gto. Entomología Mexicana. 5:368-374. Salazar-Blanco, J. D.; Cadet-Piedra, E. and González-Fuentes, F. 2020. Monitoreo de Spodoptera spp. en caña de azúcar: uso de trampas con feromonas sexuales. Agron. Mesoam. 31(2):445-459. Salinas-Sánchez, D. O.; Avilés-Montes, D.; Aldana-Llanos, L.; Gutiérrez-Ochoa, M.; Figueroa-Brito, R. and Sotelo-Leyva, C. 2020. Insecticide effect of Serjania schiedeana for the control of Spodoptera frugiperda under laboratory and greenhouse conditions. Southwestern entomologist. 45(2):521-529.

Scapinello, J.; Oliveira, J. V. D.; Chiaradia, L. A.; Tomazelli J. O.; Niero, R. and Dal Magro, J. 2014. Insecticidal and growth inhibiting action of the supercritical extracts of Melia azedarach on Spodoptera frugiperda. Rev. Brasileira de Engenharia Agrícola e Ambiental. 18(8):866-872. DOI: https://doi.org/10.1590/1807-1929/agriambi.v18n08p866-872

Schneider, L. C. L.; Silva, C. V. and Conte, H. 2017. Toxic effect of commercial formulations of neem oil, Azadirachta indica A. Juss., in pupae and adults of the sugarcane borer, Diatraea saccharalis F. (Lepidoptera: Crambidae). Arquivos do Instituto Biológico. 84:1-8. Doi.org/10.1590/1808-1657000432014. DOI: https://doi.org/10.1590/1808-1657000432014

Published

2022-05-07

How to Cite

Sonia, Lino de la Cruz Larios, Eduardo Salcedo Pérez, Jhony Navat Enríquez Vara, and Cesar Bonifacio Ramírez López. 2022. “Ascending Polarity Extracts of Dodonaea Viscosa Leaves on Instars of Spodoptera Frugiperda”. Revista Mexicana De Ciencias Agrícolas 13 (3). México, ME:455-67. https://doi.org/10.29312/remexca.v13i3.2841.

Issue

Section

Articles

Most read articles by the same author(s)