Respuesta anticipada o retrasada a la lluvia: efecto de la precipitación en un ensamblaje de artrópodos en un enclave de bosque siempre verde

Autores/as

DOI:

https://doi.org/10.33448/rsd-v9i12.10923

Palabras clave:

Bosque siempre verde; Vegetación de caatinga; Correlación; Artrópodos del suelo; Estacionalidad.

Resumen

En el noreste de Brasil, la mayor parte de la vegetación es un bosque tropical caducifolio estacionalmente seco llamado “Caatinga”. A pesar de que las áreas semiáridas corresponden a la mayor parte de la vegetación de caatinga, existen algunas áreas a 500 m sobre el nivel del mar con una precipitación anual de hasta 1200 mm que forman enclaves de bosque siempre verde. La abundancia de macroartrópodos y las diferencias en la composición de la fauna en Caatinga están relacionadas con los efectos de las lluvias estacionales, pero esta diferencia no es clara en los enclaves de bosques siempreverdes. Por lo tanto, el objetivo de este estudio fue medir los efectos de la lluvia sobre conjuntos de insectos, arácnidos y ciempiés en un enclave de bosque siempre verde dentro de la vegetación de Caatinga. Probamos las siguientes hipótesis: 1) la lluvia cambia la abundancia de artrópodos y la riqueza de especies; 2) la abundancia de depredadores se correlaciona con la presa, y 3) la abundancia de artrópodos y la riqueza de especies exhiben una respuesta retrasada o anticipada a la lluvia. No se observaron efectos de la lluvia sobre insectos y abudancia de arácnidos. Hubo una correlación significativa entre la abundancia de presas y depredadores con cambios en las especies dominantes entre las estaciones lluviosa y seca. Los insectos y arácnidos pueden mostrar algunas respuestas anticipadas a la lluvia. La abundancia y riqueza de ciempiés se vio influenciada por las lluvias con una respuesta tardía. Nuestros hallazgos indican que, en enclaves de bosques siempreverdes dentro de la vegetación de Caatinga, los artrópodos del suelo muestran diferentes respuestas en comparación con las lluvias que las áreas más comunes del dominio Caatinga y un aumento en la detección de insectos y arácnidos justo antes del comienzo de la temporada de lluvias.

Biografía del autor/a

Raul Azevedo, Universidade Federal do Cariri

Biólogo pela Universidade Federal do Cariri – UFCA, Centro de Ciências Agrárias e da Biodiversidade, Laboratório de Entomologia, Campus Crato-CE, Brazil.

Raimundo Nonato Costa Ferreira, Universidade Federal do Cariri

Professor Associado III pela Universidade Federal do Cariri – UFCA. Campus Crato-CE.

Francisco Roberto de Azevedo, Universidade Federal do Cariri

Professor Associado III pela Universidade Federal do Cariri – UFCA. Campus Crato-CE.

Larissa da Silva Nascimento, Universidade Federal do Cariri

Graduação em Agronomia pela Universidade Federal do Cariri – UFCA. Campus Crato-CE.

João Roberto Pereira dos Santos, Universidade Federal do Cariri

Graduação em Agronomia pela Universidade Federal do Cariri – UFCA. Campus Crato-CE.

Rita de Cássia Alves de Brito Ferreira, Universidade Federal do Cariri

Graduação em Agronomia pela Universidade Federal do Cariri – UFCA. Campus Crato-CE.

Francisco de Oliveira Mesquita, Instituto Nacional do Semiárido

Pesquisador do Instituto Nacional do Semiárido - INSA.

Citas

Addo-Bediako, A., Chown, S. L., & Gaston, K. J. (2001). Revisiting water loss in insects: a large scale view. Journal of Insect Physiology, 47(12), 1377–1388. https://doi.org/10.1016/S0022-1910(01)00128-7

Andrade-Lima, D. (1981). The caatinga dominium. Revista Brasileira Botânica, 4(2), 149-163.

Andrade-Lima, D. (1982). Present-day forest refuges in Northeastern Brazil. In G. T Prance (Eds.), Biological diversification in the tropics (pp.245–251). New York: Columbia University Press.

Araújo, A., & Rodrigues, Z. (2006). Foraging behavior of the queenless ant Dinoponera quadriceps Santschi (Hymenoptera: Formicidae). Neotropical Entomology, 35(2), 159–164. https://doi.org/10.1590/S1519-566X2006000200002

Araújo, H. F. P., & Silva, J. M. C. da. (2017). The Avifauna of the Caatinga: Biogeography, Ecology, and Conservation. In Caatinga (pp. 181–210). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-319-68339-3_7

Araújo, V., Bandeira, A., & Vasconcellos, A. (2010). Abundance and stratification of soil macroarthropods in a Caatinga Forest in Northeast Brazil. Brazilian Journal of Biology, 70(3 suppl), 737–746. https://doi.org/10.1590/S1519-69842010000400006

Austragésilo Filho, P. T ., Da Silva, J. A. A., Meunier, I. M. J. & Ferreira, R. L. C. (2001). Fisionomias da cobertura vegetal da Floresta Nacional do Araripe, Estado do Ceará. Brasil Florestal, 20 (71), 13–21.

Azevedo, F. R. de, Moura, M. A. R. de, Arrais, M. S. B., & Nere, D. R. (2011). Composição da entomofauna da Floresta Nacional do Araripe em diferentes vegetações e estações do ano. Revista Ceres, 58(6), 740–748. https://doi.org/10.1590/S0034-737X2011000600010

Azevedo, R., Azevedo, F. R. de, Maciel, G. C., Sucupira, A. C., & Oliveira e Silva, G. B. (2018). Scolopendromorpha associados a termitários de Constrictotermes cyphergaster Silvestri (Isoptera: Termitidae) na Chapada do Araripe, Ceará, Brasil. EntomoBrasilis, 11(1), 60–62. https://doi.org/10.12741/ebrasilis.v11i1.735

Bravo, F. & Calor, A. R. (2014). Artrópodes do Semiárido: Biodiversidade e Conservação. Feira de Santana: Printmidia

Both, C., van Asch, M., Bijlsma, R. G., van den Burg, A. B., & Visser, M. E. (2009). Climate change and unequal phenological changes across four trophic levels: constraints or adaptations? Journal of Animal Ecology, 78(1), 73–83. https://doi.org/10.1111/j.1365-2656.2008.01458.x

Carmignotto, A. P., & Astúa, D. (2017). Mammals of the Caatinga: Diversity, Ecology, Biogeography, and Conservation. In Caatinga (pp. 211–254). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-319-68339-3_8

Carvalho, L. S. (2015). Aracnídeos: quem são, por que estudá-los e como coletá-los? In: Lima, M.S.C.S., Carvalho, L.S. and Prezoto, F. (Ed.) Métodos em Ecologia e Comportamento Animal (pp. 103–140). EDUFPI: Teresina

Carvalho, L. S., Sebastian, N., Araujo, H. F. P., Dias, S. C., Venticinque, E., Brescovit, A. D., & Vasconcellos, A. (2015). Climatic Variables Do Not Directly Predict Spider Richness and Abundance in Semiarid Caatinga Vegetation, Brazil. Environmental Entomology, 44(1), 54–63. https://doi.org/10.1093/ee/nvu003

Correia, R. A., Ruete, A., Stropp, J., Malhado, A. C. M., dos Santos, J. W., Lessa, T., et al. (2019). Using ignorance scores to explore biodiversity recording effort for multiple taxa in the Caatinga. Ecological Indicators, 106, 105539. https://doi.org/10.1016/j.ecolind.2019.105539

Creão-Duarte, A., Hernández, M., Rothéa, R., & Santos, W. (2016). Temporal Variation of Membracidae (Hemiptera: Auchenorrhyncha) Composition in Areas of Caatinga with Different Vegetation Structures. Sociobiology, 63(2), 826. https://doi.org/10.13102/sociobiology.v63i2.1071

Danks, H. . (2000). Dehydration in dormant insects. Journal of Insect Physiology, 46(6), 837–852. https://doi.org/10.1016/S0022-1910(99)00204-8

Druce, D., Hamer, M., & Slotow, R. (2004). Sampling strategies for millipedes (Diplopoda), centipedes (Chilopoda) and scorpions (Scorpionida) in savanna habitats. African Zoology, 39(2), 293–304. https://doi.org/10.1080/15627020.2004.11657225

Foelix, R. F. (1996). Biology of Spiders. Oxford University Press: New York.

FUNCEME. (2019). Fundação Cearense de Metereologia e Recursos Hídricos. Historical rainfall data of Ceará state. http://www.funceme.br/app/calendario/produto/municipios/maxima/diario?data=hoje. Accessed 26 September 2019.

Garda, A. A., Stein, M. G., Machado, R. B., Lion, M. B., Juncá, F. A., & Napoli, M. F. (2017). Ecology, Biogeography, and Conservation of Amphibians of the Caatinga. In Caatinga (pp. 133–149). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-319-68339-3_5

Jocqué, R. (1984). Considérations concernant l’ abondance relative des araignées errantes et desaraignées à toile vivanta uni veaudu sol. Revue Arachonologique, 5(4),193-204.

Kempf, W. W. (1971). A preliminary review of the ponerine ant genus Dinoponera Roger (Hymenoptera: Formicidae). Studia Entomologica,14, 369-394.

Lewis, J. G. E. (1981). The Biology of Centipedes. Cambridge University Press. https://doi.org/10.1017/CBO9780511565649

Liberal, C. N., Farias, Â. M. I. de, Meiado, M. V., Filgueiras, B. K. C., & Iannuzzi, L. (2011). How Habitat Change and Rainfall Affect Dung Beetle Diversity in Caatinga, a Brazilian Semi-Arid Ecosystem. Journal of Insect Science, 11(114), 1–11. https://doi.org/10.1673/031.011.11401

Lima, S. M. Q., Ramos, T. P. A., da Silva, M. J., & de Souza Rosa, R. (2017). Diversity, Distribution, and Conservation of the Caatinga Fishes: Advances and Challenges. In Caatinga (pp. 97–131). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-319-68339-3_4

Lira, A. F. A., DeSouza, A. M., & Albuquerque, C. M. R. (2018). Environmental variation and seasonal changes as determinants of the spatial distribution of scorpions (Arachnida: Scorpiones) in Neotropical forests. Canadian Journal of Zoology, 96(9), 963–972. https://doi.org/10.1139/cjz-2017-0251

Medeiros, J., Araújo, A., Araújo, H. F. P., Queiroz, J. P. C., & Vasconcellos, A. (2012). Seasonal activity of Dinoponera quadriceps Santschi (Formicidae, Ponerinae) in the semi-arid Caatinga of northeastern Brazil. Revista Brasileira de Entomologia, 56(1), 81–85. https://doi.org/10.1590/S0085-56262012000100013

Minelli, A. (2011). The Myriapoda: Treatise on Zoology – Anatomy, Taxonomy, Biology. Brill: Leiden.

Molleman, F., Remmel, T., & Sam, K. (2016). Phenology of Predation on Insects in a Tropical Forest: Temporal Variation in Attack Rate on Dummy Caterpillars. Biotropica, 48(2), 229–236. https://doi.org/10.1111/btp.12268

Nimer, E. (1972). Climatologia da região Nordeste do Brasil: Introdução à climatologia dinâmica. Revista Brasileira de Geografia, 34, 3–51.

Paiva, R. V. S., & Brandão, C. R. F. (1995). Nests, worker population, and reproductive status of workers, in the giant queenless ponerine ant Dinoponera Roger (Hymenoptera Formicidae). Ethology Ecology & Evolution, 7(4), 297–312. https://doi.org/10.1080/08927014.1995.9522938

Parisi, V., Menta, C., Gardi, C., Jacomini, C., & Mozzanica, E. (2005). Microarthropod communities as a tool to assess soil quality and biodiversity: a new approach in Italy. Agriculture, Ecosystems & Environment, 105(1–2), 323–333. https://doi.org/10.1016/j.agee.2004.02.002

Pekár, S. (2004). Predatory behavior of two european ant-eating spiders (Araneae, Zodariidae). Journal of Arachnology, 32(1), 31–41. https://doi.org/10.1636/S02-15

Pellegrino, A. C., Peñaflor, M. F. G. V., Nardi, C., Bezner-Kerr, W., Guglielmo, C. G., Bento, J. M. S., & McNeil, J. N. (2013). Weather Forecasting by Insects: Modified Sexual Behaviour in Response to Atmospheric Pressure Changes. PLoS ONE, 8(10), e75004. https://doi.org/10.1371/journal.pone.0075004

Pennington, R. T., Prado, D. E., & Pendry, C. A. (2000). Neotropical seasonally dry forests and Quaternary vegetation changes. Journal of Biogeography, 27(2), 261–273. https://doi.org/10.1046/j.1365-2699.2000.00397.x

Polis, G. A. (1990). Ecology. In G. A. Polis (Ed.), The biology of scorpions (pp. 247–293). Stanford: Stanford University Press.

Prado, D. E. (2003). As caatingas da América do Sul. In I. R. Leal, M. Tabarelli, & J. M. C. Silva (Eds.), Ecologia e Conservaçãoda Caatinga (pp. 3–75). Recife: Editora UFPE.

Queiroz, L. P., Cardoso, D., Fernandes, M. F., & Moro, M. F. (2017). Diversity and Evolution of Flowering Plants of the Caatinga Domain. In Caatinga (pp. 23–63). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-319-68339-3_2

Crawley, M. J. (2007). The R Book. https://doi.org/10.1002/9780470515075

Richards, L. A., & Coley, P. D. (2007). Seasonal and habitat differences affect the impact of food and predation on herbivores: a comparison between gaps and understory of a tropical forest. Oikos, 116(1), 31–40. https://doi.org/10.1111/j.2006.0030-1299.15043.x

Rosenberg, J. (2009). Die Hundertfüßer. Die NeueBrehm-Bücherei.

Silva, J. M. C. da, Barbosa, L. C. F., Leal, I. R., & Tabarelli, M. (2017). The Caatinga: Understanding the Challenges. In Caatinga (pp. 3–19). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-319-68339-3_1

Tabarelli, M. & Santos, A. M. M. (2004). Uma breve descrição sobre a história natural dos Brejos Nordestinos. In Brejos de Altitude em Pernambuco e Paraíba, História Natural, Ecologia e Conservação (pp. 17–24). Ministério do Meio Ambiente: série Biodiversidade.

Tanner, E. V. J., Kapos, V., & Healey, J. R. (1991). Hurricane Effects on Forest Ecosystems in the Caribbean. Biotropica, 23(4), 513. https://doi.org/10.2307/2388274

Sissom, W. D., Polis, G. A. & Watt, D. D. (1990). Field and laboratory methods. In G. A Polis (ed.), The Biology of Scorpions (pp.445–461). Stanford: Stanford University Press.

Trucchi, E., Pitzalis, M., Zapparoli, M., & Bologna, M. (2009). Short-term effects of canopy and surface fire on centipede (Chilopoda) communities in a semi natural Mediterranean forest. Entomologica Fennica, 20(3). https://doi.org/10.33338/ef.84471

Tuf, I. H. & Tufova, J. (2008). Proposal of ecological classification of centipede, millipede and terrestrial isopods faunas for evaluation of habitat quality in Czech Republic. Časopis Slezského zemského muzea. 57, 37-44.

Vasconcellos, A., Andreazze, R., Almeida, A. M., Araujo, H. F. P., Oliveira, E. S., & Oliveira, U. (2010). Seasonality of insects in the semi-arid Caatinga of northeastern Brazil. Revista Brasileira de Entomologia, 54(3), 471–476. https://doi.org/10.1590/S0085-56262010000300019

Veloso, H. P., Rangel-filho, A. L. R. & Lima, J. C. A. (1991). Classificação da vegetação Brasileira, adaptada a um sistema universal. Rio de Janeiro: IBGE,

Walker, G. P., Nault, L. R., & Simonet, D. E. (1984). Natural Mortality Factors Acting on Potato Aphid (Macrosiphum euphorbiae) Populations in Processing-Tomato Fields in Ohio. Environmental Entomology, 13(3), 724–732. https://doi.org/10.1093/ee/13.3.724

Wellingt, W. G. O. (1946). The effects of variations in atmospheric pressure upon insects. Canadian Journal of Research, 24d(2), 51–70. https://doi.org/10.1139/cjr46d-006

Werneck, F. P. (2011). The diversification of eastern South American open vegetation biomes: Historical biogeography and perspectives. Quaternary Science Reviews, 30(13–14), 1630–1648. https://doi.org/10.1016/j.quascirev.2011.03.009

Willmer, P. G. (1982). Microclimate and the Environmental Physiology of Insects (pp. 1–57). https://doi.org/10.1016/S0065-2806(08)60151-4

Wolda, H. (1978). Seasonal Fluctuations in Rainfall, Food and Abundance of Tropical Insects. Journal of Animal Ecology, 47(2), 369–381. https://doi.org/10.2307/3789

Wolda, H. (1980). Seasonality of tropical insects: I Leafhoppers (Homoptera) in Las Cumbres, Panama. Journal of Animal Ecology, 49(1), 277–290. https://doi.org/10.2307/4289

Wolda, H. (1988). Insect Seasonality: Why? Annual Review of Ecology and Systematics, 19(1), 1–18. https://doi.org/10.1146/annurev.es.19.110188.000245

Wolda, H., & Broadhead, E. (1985). Seasonality of Psocoptera in Two Tropical Forests in Panama. The Journal of Animal Ecology, 54(2), 519. https://doi.org/10.2307/4496

Wolda, H., & Fisk, F. W. (1981). Seasonality of Tropical Insects. II. Blattaria in Panama. The Journal of Animal Ecology, 50(3), 827. https://doi.org/10.2307/4140

Young A. M. (1982). Population Biology of Tropical Insects. NewYork: Plenum Press

Zalucki, M. P., Clarke, A. R., & Malcolm, S. B. (2002). Ecology and Behavior of First Instar Larval Lepidoptera. Annual Review of Entomology, 47(1), 361–393. https://doi.org/10.1146/annurev.ento.47.091201.145220

Descargas

Publicado

30/12/2020

Cómo citar

AZEVEDO, R. .; FERREIRA, R. N. C. .; AZEVEDO, F. R. de .; NASCIMENTO, L. da S. .; SANTOS, J. R. P. dos .; FERREIRA, R. de C. A. de B. .; MESQUITA, F. de O. Respuesta anticipada o retrasada a la lluvia: efecto de la precipitación en un ensamblaje de artrópodos en un enclave de bosque siempre verde. Research, Society and Development, [S. l.], v. 9, n. 12, p. e47291210923, 2020. DOI: 10.33448/rsd-v9i12.10923. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/10923. Acesso em: 30 jun. 2024.

Número

Sección

Ciencias Agrarias y Biológicas