Abundance and diversity of predatory insects in cotton agroecosystems under malathion ULV application

Christian Silva-Martínez, Urbano Nava-Camberos, Gerardo Zapata-Sifuentes, Alejandra Cabrera-Rodríguez, Jorge Maltos-Buendía, Jared Ceniceros-García, Jose L. García-Hernández

Abstract


Background: Cotton is one of the main industrial crops worldwide and a key raw material for the textile industry, generating thousands of jobs along its value chain. In Mexico, the main producing states are Chihuahua, Coahuila, Durango, and Tamaulipas. The cotton boll weevil is the most important pest of the crop, and its control relies on aerial applications of malathion ULV, a widely used organophosphate insecticide. However, its use may cause adverse effects on predatory insects within the agroecosystem, which play a key role in the natural regulation of secondary pests. Objective: To identify the diversity and abundance of predatory insects associated with cotton agroecosystems in relation to the number of malathion ULV applications. Methodology: Three fields were selected in the states of Chihuahua, Coahuila, Durango, and Tamaulipas, with a range of 0 to 30 aerial applications of malathion ULV. Sampling consisted of 20 net sweeps strokes at five sites per field, for a total of 100 sweeps per field. Predatory insects collected were identified and counted in the laboratory. The evaluated variable was the number of insects per 100 net sweeps for each species or taxonomic group. Abundance data were transformed using the natural logarithm (x + 1). Statistical analysis was performed using LSD tests at a 5% significance level for mean comparisons. Results: Thirteen species of predatory insects were identified. In 2023, Chrysoperla sp. and Hippodamia convergens showed higher abundance in Coahuila and Durango. In Tamaulipas, Coleomegilla maculata and Geocoris punctipes were predominant, whereas arachnids were dominant in Chihuahua. In 2024, H. convergens and Orius tristicolor were mainly abundant in Durango, while Zelus sp., G. punctipes, and arachnids were more representative in Chihuahua. Implications: These results highlight the importance of implementing selective pest management strategies that minimize negative effects on beneficial fauna within cotton agroecosystems. Conclusion: Orius tristicolor was the most abundant predatory species across the evaluated cotton agroecosystems in Mexico. The observed variation among densities and taxonomic groups of predatory insects may be associated with differences in exposure and application conditions of malathion ULV, rather than with a uniform direct toxic effect on the entire beneficial fauna.

Keywords


Ecosystem services; Insecticide pressure; Population dynamics; Functional biodiversity; Biological regulation

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References


Arias-Estévez, M., López-Periago, E., Martínez-Carballo, E., Simal-Gándara, J. Mejuto J-C. and García-Río, L., 2008. The mobility and degradation of pesticides in soils and the pollution of groundwater resources, Agriculture, Ecosystems and Environment, 123, pp. 247-260. https://doi.org/10.1016/j.agee.2007.07.011

Ávila-Rodríguez, V., Nava-Camberos, U., García-Hernández, J.L., Martínez-Carrillo, J. L. and Blanco ,C.A., 2019. Insect diversity in conventional and Bt cottons in the Comarca Lagunera, Mexico. Southwestern Entomologists, 44, pp. 383-392. https://doi.org/10.3958/059.044.0203

Ávila-Rodríguez, V., Nava-Camberos, U., Czaja, A., Estrada-Rodríguez, J.L., García-de la Peña, M.C., Hernández-Arreola, A.L., Rivera-Zamarripa, A.D., Ramírez-Aguillón D. and Reyes-Muñoz, J.L., 2023. Diversidad de Insectos en Maíz en la Comarca Lagunera, México. Southwestern Entomologists, 48(1), pp. 203-212. https://doi.org/10.3958/059.048.0120

Barbieri, E. and Alves-Ferreira, L., 2011. Effects of the organophosphate pesticide Folidol 600 on the freshwater fish, Nile Tilapia (Oreochromis niloticus). Pesticide Biochemistry and Physiology, 99(3), pp. 209-214. https://doi.org/10.1016/j.pestbp.2010.09.002

Bonilla, O., Hernández, E., Verastegui, J., Maltos, J., Bautista, E., Hernández, A. and Requejo, I., 2020. Productividad y calidad de fibra de variedades convencionales de algodón en la Comarca Lagunera, México. Revista Fitotecnia Mexicana, 43(1), pp. 3-9. https://doi.org/10.35196/rfm.2020.1.3

Cotton Research and Development Corporation (CRDC) & CottonInfo., 2025. Cotton pest management guide 2025–26. CRDC. Disponible en: https://crdc.com.au/sites/default/files/pdf/CPMG%202025.pdf (Consultado el 3 de noviembre del 2025)

Ceniceros-García, J., Nava-Camberos, U., García-Hernández, J. L., Montes-Orona, P. Y., Ávila-Rodríguez, V. and Rivera-Zamarripa, A. D., 2025. Densities of pecan aphids and their natural enemies under different insecticide management. Southwestern Entomologist, 50(3), pp. 592–610. https://doi.org/10.3958/059.050.0224

Devine, G.J., Eza, D., Ogusuku, E. and Furlong, M.J., 2008. Uso de insecticidas: contexto y consecuencias ecológicas. Revista Peruana de Medicina Experimental y Salud Pública, 25, pp. 74-100. https://www.scielo.org.pe/pdf/rins/v25n1/a11v25n1.pdf

Magurran, A.E., 2004. Measuring biological diversity. Blackwell Publishing, Oxford, UK. 256 p.

Maltos-Buendía, J., González-Hernández, H., Nava-Camberos, U., Hernández-Leal, E., Franco-Gaytán, I., Rodríguez-Leyva, E., Lomelí-Flores, J.R., Rivera-Zamarripa, A.D. and Ávila-Rodríguez, V., 2025a. Impact of insecticides on and its natural enemies on cotton in Mexico. Southwestern Entomologist, 50(3), pp. 854–878. https://doi.org/10.3958/059.050.0314

Maltos-Buendía, J., Nava-Camberos, U., González-Hernández, H., Silva-Martínez, C., Hernández-Leal, E. and Lomeli-Flores, J.R., 2025b. Impacto de aplicaciones de malatión sobre insectos benéficos y efectos en Bemisia tabaci en algodonero. Ecosistemas y Recursos Agropecuarios 12(3): e4576 https://doi.org/10.19136/era.a12n3.4576

Margalef, R., 1958. Information theory in ecology. General Systems 3: 36–71.

Morales-Olais, E., González-Hernández, H., Nava-Camberos, U., Equihua-Martínez, A., Carrillo-Sánchez, J.L., Arreola-Ávila, J.G. and Ávila-Rodríguez, V., 2021. Diversidad de insectos entomófagos en nogal pecanero con uso de insecticidas biorracionales y convencionales. Southwestern Entomologists, 46, pp. 223-233. https://doi.org/10.3958/059.046.0121

Nájera-Rincon, M.B. and Souza, B., 2010. Insectos benéficos, guía para su identificación. INIFAP, Campo Experimental Uruapan. Uruapan, Michoacán, México. Disponible en: https://www.ciaorganico.net/documypublic/551_INSECTOS_BENEFICOS_Guia_(2).pdf (Consultado el 3 de enero de 2025)

Naranjo, S.E. and Ellsworth, P.C., 2009. The contribution of conservation biological control to integrated control of Bemisia tabaci in cotton. Biological Control, 51, pp. 458-470. https://doi.org/10.1016/j.biocontrol.2009.08.006

Nava-Camberos, U., Ávila-Rodríguez, V., Maltos-Buendía, J., García-Hernández J.L. and Martínez-Carrillo, J.L., 2018. Densidades y daños de insectos plaga en algodonero convencional y Bt en la Comarca Lagunera, México. Southwestern Entomologists, 43, pp. 985-993, https://doi.org/10.3958/059.043.0415

Nava-Camberos, U., Maltos-Buendía, J., Ávila-Rodríguez, V., Hernández-Leal, E., Franco-Gaytán, I., Rivera-Zamarripa, A.D., Valenzuela-García, A.A., Estrada-Rodríguez, J.L. and Sánchez-Galván, H., 2021. Densidades de Mosca Blanca, Bemisia tabaci, e Insectos Depredadores Asociados en Algodonero. Southwestern Entomologists, 46(2), pp. 463-478. https://doi.org/10.3958/059.046.0216

Nicholls-Estrada, C.I., 2008. Control biológico de insectos: un enfoque agroecológico. Editorial Universidad de Antioquia, Colombia, Disponible en. https://doi.org/10.1201/9781482277937 (Consultado el 28 de abril de 2025)

Ott, R. L. (1988). An Introduction to Statistical Methods and Data Analysis (3rd ed.). PWS-Kent Publishing Company.

Pérez, M., Segura, A., García, R., Colinas, T., Pérez, M., Vázquez, A. and Navarro, H., 2009. Residuos de plaguicidas organofosforados en cabezuela de brócoli (Brassica oleracea) determinados por cromatografía de gases. Revista Internacional de Contaminación Ambiental. 25(2), pp. 103-110. Disponible en: https://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0188-49992009000200005

SAGARPA-FAO., 2014. Análisis de la cadena de valor en la producción de algodón en México: SAGARPA-FAO, México. Disponible en: https://www.agricultura.gob.mx/sites/default/files/sagarpa/document/2019/01/28/1608/01022019-4-analisis-de-la-cadena-de-valor-en-la-produccion-de-algodon-en-mexico.pdf (Consultado el 2 de febrero de 2025)

SAGARPA., 2023. Protocolo del Programa Binacional de Supresio?n/Erradicacio?n del gusano rosado y picudo del algodonero (Me?xico-Estados Unidos) Secretari?a de Agricultura, Desarrollo Rural, Pesca y Alimentacio?n (SAGARPA). https://www.gob.mx/cms/uploads/attachment/file/108256/Protocolo_Programa_Binacional.pdf. (Consultado el 2 de enero 2025).

Santana-Espinoza, S., Ávila-Rodríguez, V., Castañeda-Gaytán, G., De la Cruz-Lázaro, E., García-De la Peña, C., Romero-Méndez, U., and Márquez-Hernández, C., 2015. Entomofauna presente en algodonero (Gossypium hirsutum L.) genéticamente modificado en zonas productoras de México. Southwestern Entomologist, 40(1), 151–160. https://doi.org/10.3958/059.040.0113

Santos, C.G.D., Wanderley, T.V., Vargas, de O.J., Aguiar, C.T.A., Correia, A.A., de Souza, A.T.J., Magliano, da C.F. and Oliveira, B.M., 2015 Histological and histochemical changes by clove essential oil upon thegonads of Spodoptera frugiperda (JE Smith) (Lepidoptera:Noctuidae). International Journal of Morphology, 33(4), pp. 1393-1400. https://dx.doi.org/10.4067/S0717-95022015000400034

SAS Institute Inc., 2002. SAS/STAT User’s Guide, Version 9.0. SAS Institute Inc., Cary, NC, USA.

SIAP., 2025. Servicio de Información Agroalimentaria y Pesquera. (SIAP). http://www.siap.gob.mx/ (Consultado el 11 de abril de 2025).

Silva-Martínez, C., Cano-Ríos, P., Nava-Camberos, U., García-Hernández, J.L., Reyes-Carrillo, J.L., Sánchez-Ramos, F.J. and Mendoza-Retana, S.S., 2022a. Evaluation of the susceptibility of the Boll weevil (Anthonomus grandis, Boheman) to malathion in the Laguna Region. Tropical and Subtropical Agroecosystems, 25, pp. 1-6. https://dx.doi.org/10.56369/tsaes.3469

Silva-Martínez, C., Nava-Camberos, U., Cano-Ríos, P., García-Hernández, J.L., Reyes-Carrillo, J.L., Sánchez-Ramos, F.J., and Salcedo-Serrano, D.A., 2022b. Efecto de las aplicaciones aéreas de malatión UBV en la fauna insectil benéfica asociada al cultivo del algodonero en la Comarca Lagunera, México. Nova Scientia, 14(29), pp. 1-12. https://doi.org/10.21640/ns.v14i29.3108

Zalazar, L. and Salvo, A., 2007. Entomofauna asociada a cultivos hortícolas orgánicos y convencionales en Córdoba, Argentina. Neotropical Entomology, 36, pp. 765-773. https://doi.org/10.1590/S1519-566X2007000500019




URN: http://www.revista.ccba.uady.mx/urn:ISSN:1870-0462-tsaes.v29i2.66588

DOI: http://dx.doi.org/10.56369/tsaes.6658



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