Mites associated with raspberry in Zamora and Los Reyes, Michoacán

Authors

  • Ricardo Villalvazo-Valdovinos Facultad de Agrobiología ‘Presidente Juárez’-Universidad Michoacana de San Nicolás de Hidalgo. Paseo Lázaro Cárdenas esquina con Berlín, Uruapan, Michoacán, México. CP. 60040
  • María Mayra Pamatz-Ángel Facultad de Agrobiología ‘Presidente Juárez’-Universidad Michoacana de San Nicolás de Hidalgo. Paseo Lázaro Cárdenas esquina con Berlín, Uruapan, Michoacán, México. CP. 60040
  • Ma Blanca Nieves Lara-Chávez Facultad de Agrobiología ‘Presidente Juárez’-Universidad Michoacana de San Nicolás de Hidalgo. Paseo Lázaro Cárdenas esquina con Berlín, Uruapan, Michoacán, México. CP. 60040
  • Teresita del Carmen Ávila-Val Facultad de Agrobiología ‘Presidente Juárez’-Universidad Michoacana de San Nicolás de Hidalgo. Paseo Lázaro Cárdenas esquina con Berlín, Uruapan, Michoacán, México. CP. 60040.
  • Margarita Vargas-Sandoval Facultad de Biología-Universidad Michoacana de San Nicolás de Hidalgo. Avenida Francisco J. Múgica s/n, Ciudad Universitaria, Edificio B-1, Morelia, Michoacán, México. CP. 58060

DOI:

https://doi.org/10.29312/remexca.v15i3.3660

Keywords:

Acaridae, Phytoseiidae, Tarsonemidae, Tetranychidae

Abstract

Mexico ranks second in raspberry production and very little knowledge has been generated about the mites associated with this crop. In the present work, mites collected in the aerial part of raspberries produced in the municipalities of Zamora and Los Reyes de Salgado, Michoacán, Mexico from February 2018 to March 2019, were identified. In Los Reyes, 8 748 mites belonging to four families and nine species were recorded. The species found were Amblydromalus ca. congeae, Neoseiulus californicus, Phytoseiulus persimilis, Typhlodromips sp., Euseius mesembrinus, Euseius sp. (Phytoseiidae), Tetranychus ludeni (Tetranychidae), Tarsonemus sp. (Tarsonemidae), and Tyrophagus putrescentiae (Acaridae). A total of 4 253 adult specimens of two species were collected in Zamora, Neoseiulus fallacis with 235 (Phytoseiidae) and Tetranychus ludeni with 4 018 (Tetranychidae).

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References

Alston, D. G. 2014. Berries: spider mite management & raspberry horntail update. Extension UTAH State University. Disponible: https://diverseag.org/files-ou/All-Presentations.pdf.

Amin, M. M.; Mizell, R. F. and Flowers, R. W. 2009. Response of the predatory mite Phytoseiulus macropilis (Acari: Phytoseiidae) to pesticides and kairomones of three spider mite species (Acari: Tetranychidae), and non-prey food. Florida Entomologist. 92(4):554-562. Doi.org/10.1653/024.092.0404.

Argüelles, A. R.; Plazas, N. B.; Bustos, A. R.; Cantor, F. R.; Rodríguez, D. P. y Hilarion, A. M. 2013. Interacción entre dos ácaros depredadores de Tetranychus urticae KOCH (Acariformes: Tetranychidae) en laboratorio. Acta Biológica Colombiana. 18(1):137-144.

Ayala-Ortega, J. J.; Martínez-Castillo, A. M.; Pineda-Guillermo, S.; Figueroa-De la Rosa, J. I.; Acuña-Soto, J.; Ramos-Lima, M. and Vargas-Sandoval, M. 2019. Mites associated with blackberry (Rubus sp. cv. Tupy) in two areas of Michoacán, México. Revista Colombiana de Entomología. 45(2):45e8480-1-10. Doi.org/10.25100/socolen. v45i2.848.

Bounfour, M. M. and Tanigoshi, L. K. 2002. Predatory role of Neoseiulus fallacis (Acari: Phytoseiidae): spatial and temporal dynamics in Washington red raspberry fields. J. Econ. Entomol. 95(6):1142-50. https://doi.org/10.1603/0022-0493-95.6.1142.

Chwil, M. and Kostryco, M. 2020. Histochemical assays of secretory trichomes and the structure and content of mineral nutrients in Rubus idaeus L. leaves. Protoplasma. 257(1):119-139.

Demite, P. R.; Moraes, G. J.; McMurtry, J. A.; Denmark, H. A. and Castilho, R. C. 2020. Phytoseiidae Database. www.lea.esalq.usp.br/ phytoseiidae.

Denmark, H. A. and Evans, G. A. 2011. Phytoseiidae of North America and Hawaii. Michigan, USA, Indira Publishing House. 1-451 pp.

Dhooria, M. S. 2016. Fundamentals of applied acarology. Ed. Springer: Singapore. 470 p.

Dos Santos, M. R.; Da Silva, L. G. and Juárez, N. F. 2014. A new species of Neoseiulus (Acari: Mesostigmata: Phytoseiidae) with a key for the Brazilian species of the genus. Zoologia. 31(3):271-274. Doi.org/10.1590/S1984-46702014000300009.

Escobar, E. N. 2015. Ecuaciones de la forma ax= b. https://es.slideshare.net/ EDEyANSC/ecuaciones-de-la-forma-ax-b.

Escudero, L. A. and Ferragut, F. F. 2005. Life-history of predatory mites Neoseiulus californicus and Phytoseiulus persimilis (Acari: Phytoseiidae) on four spider mite species as prey, with special reference to Tetranychus evansi (Acari: Tetranychidae). Biological Control. 32(3):378-384. https://doi.org/10.1016/j. biocontrol.2004.12.010.

Gillott, C. A. 2005. Entomology. Third edition. Springer. Canada.

González, V. M. 2012. Distribución por edades y por sexos en una población. https://biologia.laguia2000.com/tecnicas-en-biologia/distribucion-por-edades-y-por-sexos-en-una-poblacion.

INTAGRI. 2017. Manejo de la araña de dos puntos en la producción de Berries. Artículos Técnicos de INTAGRI. México. Serie Fitosanidad núm. 88. 4 p. https://www.intagri.com/articulos/fitosanidad/manejo-de-la-arania-de-dos-puntosen-la-produccion-de-berries.

Jovicich, E. E.; Cantliffe, D. J.; Osborne, L. S.; Stoffella, P. J. and Simonne, E. H. 2008. Release of Neoseiulus californicus on pepper transplants to protect greenhouse-grown crops from early broad mite (Polyphagotarsonemus latus) infestations. In: Mason, P. G. Gillespie, D. R. and Vincent, C. Ed. Proceedings of the Third International Symposium on Biological Control of Arthropods, Christchurch, New Zealand. Christchurch, New Zealand. USDA, Forest Health Technology Enterprise Team. 347-353 pp.

Karley, A. J.; Mitchell, C.; Brookes, C.; McNicol, J.; O'neill, T.; Roberts, H. and Johnson, S. N. 2016. Exploiting physical defense traits for crop protection: leaf trichomes of Rubus idaeus have deterrent effects on spider mites but not aphids. Annals of Applied Biology. 168(1):159-172. Doi.org/10.1111/aab.12252.

Karmakar, K. H. 2016. The mites of the family Tarsonemidae (Acari: Heterostigmata) in West Bengal, India. Journal of Acarological Society of Japan. 25(Supplement 1):77-81. Doi.org/10.2300/acari.25.Suppl-77.

Marchetti, M. M. y Juárez, F. N. 2011. Diversidade e flutuação populacional de ácaros (Acari) em amora-preta (Rubus fruticosus, Rosaceae) no estado do Rio Grande do Sul, Brasil. Iheringia Serie Zoologia. 101(1-2):43-48. Doi.org/10.1590/S0073-47212011000100005.

Marić, I.; Marčić, D. and Auger, P. P. 2018. Biodiversity of spider mites (Acari: Tetranychidae) in Serbia: a review, new records and key to all known species. Acarologia. 58(1):3-14. Doi.org/10.24349/acarologia/20184223.

McMurtry, J. A. and Croft, B. A. 1997. Lifestyles of phytoseiid mites and their roles in biological control. Annual Review of Entomology. 42(1):291-321. Doi.org/10.1146/annurev.ento.42.1.291.

McMurtry, J. A.; De Moraes, G. J. and Sourassou, N. F. 2013. Revision of the lifestyles of phytoseiid mites (Acari: Phytoseiidae) and implications for biological control strategies. Systematic and Applied Acarology. 18(4):297-320. Doi.org/10.11158/saa.18.4.1.

Migeon, A. and Dorkeld, F. 2019. Spider mites web: a comprehensive database for the Tetranychidae. In: trends in acarology: Proceedings of the 12th international congress. 557-560 pp. Springer Netherlands. http://www.montpellier.inra.fr/ CBGP/spmweb.

Migeon, A.; Nouguier, E. and Dorkeld, F. 2010. Spider mites web: a comprehensive database for the Tetranychidae.

Moraes, G. J.; McMurtry, J. A.; Denmark, H. A. and Campos, C. B. 2004. A revised catalog of the mite family Phytoseiidae. Zootaxa. 434(1):1-494. https://doi.org/10.11646/ ZOOTAXA.434.1.1

Müller, C. B. and Brodeur, J. J. 2002. Intraguild predation in biological control and conservation biology. Biological Control. 25(3):216-223. Doi.org/10.1016/S1049-9644(02)00102-0.

Oliveira, C. M.; Návia, D. and Frizzas, M. R. 2007. First record of Tyrophagus putrescentiae (Schrank) (Acari: Acaridae) in soybean plants under no tillage in Minas Gerais, Brazil. Ciência Rural. 37(3):876-877. Doi.org/10.1590/S0103-84782007000300043.

Parra-Quezada, R. A.; Ávila-Marioni, M. R. y Ríos-Sánchez, R. 2002. Avances en el desarrollo de la frambuesa roja en el estado de Chihuahua. Folleto técnico núm. 14. SAGARPA, Chihuahua, México. 35 p.

Pratt, P. D.; Rosetta, R. and Croft, B. A. 2002. Plant-related factors influence the effectiveness of Neoseiulus fallacis (Acari: Phytoseiidae), a biological control agent of spider mites on landscape ornamental plants. Journal of Econo. Entomol. 95(6):1135-1141. Doi.org/10.1603/0022-0493-95.6.1135.

Rahmani, H.; Fathipour, Y. and Kamali, K. 2009. Life history and population growth parameters of Neoseiulus californicus (Acari: Phytoseiidae) fed on Thrips tabaci (Thysanoptera: Thripidae) in laboratory conditions. Systematic and Applied Acarology. 14(2):91-100. Doi.org/10.11158/saa.14.2.2.

Raja, Z. R.; Vardervoort, C. C; Gut, L. J. and Whalon, M. E. 2016. Lethal time of insecticides on the predator mite Neoseiulus fallacis (Acari: Phytoseiidae) following topical exposure. Canadian Entomologist. 148(3):353-360. Doi.org/10.4039/tce. 2015.67.

Ree, H. I.; Jeon, S. H.; Lee, I. Y.; Hong, C. S. and Lee, D. K. 1997. Fauna and geographical distribution of house dust mites in Korea. Korean Journal of Parasitology. 35(1):9-17. https://www.parahostdis.org/upload/pdf/kjp-35-9.pdf

Sánchez-Ramos, I. I. 1987. Biología y control de Tyrophagus putrescentiae (Schrank,1781) (Astigmata: Acaridae), plaga de productos almacenados. Tesis Doctoral. Universidad Complutense de Madrid. Madrid, España. 64-72 pp.

Schausberger, P. T. and Croft, B. A. 2000. Cannibalism and intraguild predation among Phytoseiid Mites: are aggressiveness and prey preference related to diet Specialization? Experimental and Applied Acarology. 24(1):709-725. https://doi.org/10.1023/A:1010747208519.

SIAP. 2022. Servicio de Información Agroalimentaria y Pesquera. Avance de siembras y cosechas. http://infosiap.siap.gob.mx:8080/agricola-siap-gobmx/AvanceNacional.

Skrovankova, S.; Sumczynski, D.; Mlcek, J.; Jurikova, T. and Sochor, J. 2015. Bioactive compounds and antioxidant activity in different types of berries. Internacional Journal of Molecular Science. 16(10):24673-24706. Doi.org/10.3390/ijms 161024673.

Walter, D. E. and Krantz, G. W. 2009. Collecting, rearing, and preparing of specimens. In: Krantz, G. W. and Walter, D. E. Ed. a manual of acarology. Texas, USA: Texas Tech University Press. 83-96 pp.

Walter, D. E. and Proctor, H. C. 2013. Mites: ecology, evolution & behaviour. New York, USA. Springer. 281-339 pp.

Zhang, Z. Q. 2002. Taxonomy of Tetranychus ludeni (Acari: Tetranychidae) in New Zealand and its ecology on Sechium edule. New Zealand Entomologist. 25(1):27-34. Doi.org/10.1080/00779962.2002.9722091.

Zou, Z.; Min, Q.; Xiao, S.; Xin, T. and Xia, B. 2016. Effect of photoperiod on development and demographic parameters of Neoseiulus barkeri (Acari: Phytoseiidae) fed on Tyrophagus putrescentiae (Acari: Acaridae). Experimental and Applied Acarology. 70(1):45-56. Doi.org/10.1007/s10493-016-0065-y.

Published

2024-04-23

How to Cite

Villalvazo-Valdovinos, Ricardo, María Mayra Pamatz-Ángel, Ma Blanca Nieves Lara-Chávez, Teresita del Carmen Ávila-Val, and Margarita Vargas-Sandoval. 2024. “Mites Associated With Raspberry in Zamora and Los Reyes, Michoacán”. Revista Mexicana De Ciencias Agrícolas 15 (3). México, ME:e3660. https://doi.org/10.29312/remexca.v15i3.3660.

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