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Research Article

Ants of Brazil: an overview based on 50 years of diversity studies

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References

  • Ab’Saber, A. N. (2003). Os domínios de natureza no Brasil: Potencialidades paisagísticas. Ateliê Editorial.
  • Adis, J., Harada, A. Y., Fonseca, C. R. V., Paarmann, W., & Rafael, J. A. (1998). Arthropods obtained from the Amazonian tree species “cupiuba” (Goupia glabra) by repeated canopy fogging with natural pyrethrum. Acta Amazonica, 28, 273–283. https://doi.org/10.1590/1809-43921998283283
  • de Albuquerque, E. Z., Prado, L. P. D., Andrade-Silva, J., DE Siqueira, E. L. S., DA Silva Sampaio, K. L., Alves, D., Brando, C. R. F., Andrade, P. L., Feitosa, R. M., DE Azevedo Koch, E. B., Delabie, J. H. C., Fernandes, I., Baccaro, F. B., Souza, J. L. P., Almeida, R. P. S., & Silva, R. R. (2021). Ants of the State of Par, Brazil: A historical and comprehensive dataset of a key biodiversity hotspot in the Amazon Basin. Zootaxa, 5001, 1–83. https://doi.org/10.11646/zootaxa.5001.1.1
  • Almeida, M. F. B., Santos, L. R., & Carneiro, M. A. A. (2014). Senescent stem-galls in trees of Eremanthus erythropappus as a resource for arboreal ants. Revista Brasileira de Entomologia, 58, 265–272. https://doi.org/10.1590/S0085-56262014000300007
  • Andersen, A. N. (1995). A classification of Australian ant communities based on functional groups which parallel plant life-forms in relation to stress and disturbance. Journal of Biogeography, 22, 15–29. https://doi.org/10.2307/2846070
  • Andersen, A. N. (1997). Functional groups and patterns of organization in North American ant communities: A comparison with Australia. Journal of Biogeography, 24, 433–460. https://doi.org/10.1111/j.1365-2699.1997.00137.x
  • Andrade, T., Marques, G. V., & Del‐Claro, K. (2007). Diversity of ground dwelling ants in cerrado: An analysis of temporal variations and distinctive physiognomies of vegetation (Hymenoptera: Formicidae). Sociobiology, 50, 121–134.
  • Assis, D. S., Santos, I. A., Ramos, F. N., Barrios-Rojas, K. E., Majer, J. D., & Vilela, E. F. (2018). Agricultural matrices affect ground ant assemblage composition inside forest fragments. Public Library of Science One, 13, e0197697. https://doi.org/10.1371/journal.pone.0197697
  • Baccaro, F. B., Feitosa, R. M., Fernández, F., Fernandes, I. O., Izzo, T. J., Souza, J. L. P., & Solar, R. (2015). Guia para os gêneros de formigas do Brasil. INPA.
  • Bihn, J. H., Verhaagh, M., & Brandl, R. (2008). Ecological stoichiometry along a gradient of forest succession: Bait preferences of litter ants. Biotropica, 40, 597–599. https://doi.org/10.1111/j.1744-7429.2008.00423.x
  • Blaimer, B. B., Brady, S. G., Schultz, T. R., Lloyd, M. W., Fisher, B. L., & Ward, P. S. (2015). Phylogenomic methods outperform traditional multi-locus approaches in resolving deep evolutionary history: A case study of formicine ants. BioMedCentral Evolutionary Biology, 15, 271. https://doi.org/10.1186/s12862-015-0552-5
  • Bolico, C. F., Oliveira, E. A., Gantes, M. L., Dumont, L. F. C., Carrasco, D. S., & D'Incao, F. (2012). Mirmecofauna (Hymenoptera, Formicidae) de Duas Marismas do Estuário da Lagoa dos Patos, RS: Diversidade, Flutuação de Abundância e Similaridade como Indicadores de Conservação. EntomoBrasilis, 5, 11–20. https://doi.org/10.12741/ebrasilis.v5i1.147
  • Bolton, B. (2022). An online catalog of the ants of the world. https://antcat.org
  • Borowiec, M. L. (2019). Convergent evolution of the army ant syndrome and congruence in big-data phylogenetics. Systematic Biology, 68, 642–656. https://doi.org/10.1093/sysbio/syy088
  • Bortolus, A. (2008). Error cascades in the biological sciences: The unwanted consequences of using bad taxonomy in ecology. Ambio, 37, 114–118. https://doi.org/10.1579/0044-7447
  • Boudinot, B. E. (2015). Contributions to the knowledge of Formicidae (Hymenoptera, Aculeata): A new diagnosis of the family, the first global male-based key to subfamilies, and a treatment of early branching lineages. European Journal of Taxonomy, 120, 1–62. https://doi.org/10.5852/ejt.2015.120
  • Bueno, O. C., Campos, A. E. C., & Morini, M. S. C. (2017). Formigas em ambientes urbanos no Brasil. Canal 6.
  • Camacho, G. P., Franco, W., Branstetter, M. G., Pie, M. R., Longino, J. T., Schultz, T. R., & Feitosa, R. M. (2022). UCE phylogenomics resolves major relationships among ectaheteromorph ants (Formicidae: Ectatomminae, Heteroponerinae): A new classification for the subfamilies and the description of a new genus. Insect Systematics and Diversity, 6, 5. https://doi.org/10.1093/isd/ixab026
  • Campos-Farinha, A. E. C., Bergmann, E. C., de Faria, A. M., & Lara, R. I. R. (1997). Mirmecofauna em cultura de seringueira (Hevea brasiliensis) no município de Ibitinga, São Paulo. Arquivos Do Instituto Biológico de São Paulo, 64, 103–109.
  • Carvalho, K. S., Nascimento, I. C., Delabie, J. H. C., Zina, J., Souza, A. L. B., Koch, E. B. A., Carneiro, M. A. F., & Santos, A. S. (2014). Litter as an important resource determining the diversity of epigeic ants in the south-central part of Bahia state, Brazil. Sociobiology, 59, 1375–1387. https://doi.org/10.13102/sociobiology.v59i4.512
  • Casadei-Ferreira, A., Friedman, N. R., Economo, E. P., Pie, M. R., & Feitosa, R. M. (2021). Head and mandible shapes are highly integrated yet represent two distinct modules within and among worker subcastes of the ant genus Pheidole. Ecology and Evolution, 11, 6104–6118. https://doi.org/10.1002/ece3.7422
  • Casadei-Ferreira, A., Economo, E. P., & Feitosa, R. M. (2020). Additions to the taxonomy of Pheidole (Hymenoptera: Formicidae) from the southern grasslands of Brazil. Revista Brasileira de Entomologia, 64, e20200068. https://doi.org/10.1590/1806-9665-rbent-2020-0068
  • CBD – Convention on Biological Diversity. (2021). Brazil – Main details. https://www.cbd.int/countries/profile/?country=br
  • Chinarelli, H. D., Pupe, A. E., & Leal, L. C. (2021). Peace, sweet peace: Ants become less aggressive when carbohydrates abound. Ecological Entomology, 46, 273–282. https://doi.org/10.1111/een.12959
  • Costa, F. V., Mello, R., Lana, T. C., & Neves, F. S. (2015). Ant fauna in megadiverse mountains: A checklist for the rocky grasslands. Sociobiology, 62, 228–245. https://doi.org/10.13102/sociobiology.v62i2.228-245
  • Delabie, J. H. C., Fernandez, F., & Majer, J. D. (2012). Advances in neotropical myrmecology. Psyche: A Journal of Entomology, 2012, 1–3. https://doi.org/10.1155/2012/286273
  • Derraik, J. G., Early, J. W., Closs, G. P., & Dickinson, K. J. (2010). Morphospecies and taxonomic species comparison for Hymenoptera. Journal of Insect Science (Online), 10, 108. https://doi.org/10.1673/031.010.10801
  • Divieso, R., Rorato, A., Feitosa, R. M., Meyer, A. L. S., & Pie, M. R. (2020). How to prioritize areas for new ant surveys? Integrating historical data on species occurrence records and habitat loss. Journal of Insect Conservation, 24, 901–911. https://doi.org/10.1007/s10841-020-00262-y
  • Dröse, W., Podgaiski, L. R., Cavalleri, A., Feitosa, R. M., & Mendonça Jr., M. (2017). Ground-dwelling and vegetation ant fauna in southern Brazilian Grasslands. Sociobiology, 64, 381–392. https://doi.org/10.13102/sociobiology.v64i4.1795
  • Dunn, R. R., Sanders, N. J., Fitzpatrick, M. C., Laurent, E., Lessard, J. P., Agosti, D., Andersen, A. N., Brühl, C., Cerdá, X., Ellison, A., Fisher, B., Gibb, H., Gotelli, N., Gove, A., Guénard, B., Janda, M., Kaspari, M., Longino, J. T., Majer, J., … Vasconcelos, H. (2007). Global ant (Hymenoptera : Formicidae) biodiversity and biogeography – a new database and its possibilities. Myrmecological News, 10, 77–83.
  • Elizalde, L., Arbetman, M., Arnan, X., Eggleton, P., Leal, I. R., Lescano, M. N., Saez, A., Werenkraut, V., & Pirk, G. I. (2020). The ecosystem services provided by social insects: Traits, management tools and knowledge gaps. Biological Reviews of the Cambridge Philosophical Society, 95, 1418–1441. https://doi.org/10.1111/brv.12616
  • Emery, C. (1888). Formiche della provincia di Rio Grande do Sûl nel Brasile, raccolte dal dott. Hermann von Ihering. Bollettino Della Società Entomologica Italiana, 19, 352–366.
  • Fernandes, I. O., & Oliveira, M. L. (2020). A mirmecologia brasileira no século XXI: A coleção do Instituto Nacional de Pesquisas da Amazônia. Boletim Do Museu Paraense Emílio Goeldi - Ciências Naturais, 15, 257–264. https://doi.org/10.46357/bcnaturais.v15i1.292
  • Fernandes, I. O., & Souza, J. L. (2018). Dataset of long-term monitoring of ground-dwelling ants (Hymenoptera: Formicidae) in the influence areas of a hydroelectric power plant on the Madeira River in the Amazon Basin. Biodiversity Data Journal, 6, e24375. https://doi.org/10.3897/BDJ.6.e24375
  • Fernández, F., Guerrero, R. J., & Sánchez-Restrepo, A. F. (2021). Systematics and diversity of Neotropical ants. Revista Colombiana de Entomología, 47, 1–420. https://doi.org/10.25100/socolen.v47i1.11082
  • Folgarait, P. J. (1998). Ant biodiversity and its relationship to ecosystem functioning: A review. Biodiversity and Conservation, 7, 1221–1244. https://doi.org/10.1023/A:1008891901953
  • Fonseca, C., & Ganade, G. (1996). Asymmetries, compartments and null interactions in an Amazonian ant-plant community. The Journal of Animal Ecology, 65, 339–347. https://doi.org/10.2307/5880
  • Formigas do Brasil. (2021). Mirmecólogos pelo Brasil. https://formigasdobrasil.com/mirmecologia/mirmecologos-pelo-brasil/
  • Franco, W., Ladino, N. M., Delabie, J. C. H., Dejean, A., Orivel, J., Fichaux, M., Groc, S., Leponce, M., & Feitosa, R. M. (2019). First checklist of the ants (Hymenoptera: Formicidae) of French Guiana. Zootaxa, 4674, zootaxa.4674.5.2–543. https://doi.org/10.11646/zootaxa.4674.5.2
  • Franco, W., Vasconcelos, H. L., & Feitosa, R. M. (2021). Patterns of ant diversity in the natural grasslands of Southern Brazil. Neotropical Entomology, 50, 725–735. https://doi.org/10.1007/s13744-021-00886-y
  • Giam, X. (2017). Global biodiversity loss from tropical deforestation. Proceedings of the National Academy of Sciences of the United States of America, 114, 5775–5777. https://doi.org/10.1073/pnas.1706264114
  • Guénard, B., Weiser, M. D., & Dunn, R. R. (2012). Global models of ant diversity suggest regions where new discoveries are most likely are under disproportionate deforestation threat. Proceedings of the National Academy of Sciences of the United States of America, 109, 7368–7373.
  • Haddad, G. Q., Cividanes, F. J., & Martins, I. C. F. (2011). Species diversity of myrmecofauna and araneofauna associated with agroecosystem and forest fragments and their interaction with Carabidae and Staphylinidae (Coleoptera). Florida Entomologist, 94, 500–509. https://doi.org/10.1653/024.094.0314
  • Heberling, J. M., Miller, J. T., Noesgaard, D., Weingart, S. B., & Schigel, D. (2021). Data integration enables global biodiversity synthesis. Proceedings of the National Academy of Sciences, 118, e2018093118. https://doi.org/10.1073/pnas.2018093118
  • IBGE – Instituto Brasileiro de Geografia e Estatística. (2012). Manual técnico da vegetação brasileira (2nd ed.). IBGE-Série Manuais técnicos em Geociências.
  • ICMBio – Instituto Chico Mendes de Conservação da Biodiversidade. (2018). Livro Vermelho da Fauna Brasileira Ameaçada de Extinção, ICMBio/MMA. (Vol. VII).
  • Jory, T. T., & Feitosa, R. M. (2020). First survey of the ants (Hymenoptera, Formicidae) of Piauí: Filling a major knowledge gap about ant diversity in Brazil. Papéis Avulsos de Zoologia, 60, e20206014. https://doi.org/10.11606/1807-0205/2020.60.14
  • Kalif, K. A. B., Azevedo-Ramos, C., Moutinho, P., & Malcher, S. A. O. (2001). The effect of logging on the ground-foraging ant community in Eastern Amazonia. Studies on Neotropical Fauna and Environment, 36, 215–219. https://doi.org/10.1076/snfe.36.3.215.2119
  • Kaspari, M. (2005). Global energy gradients and size in colonial organisms: Worker mass and worker number in ant colonies. Proceedings of the National Academy of Sciences of the United States of America, 102, 5079–5083. https://doi.org/10.1073/pnas.0407827102
  • Krapf, P. (2018). How many ant species are there on Earth? Myrmecological News Blog. https://blog.myrmecologicalnews.org/2018/06/15/how-many-ant-species-are-there-on-earth/
  • LaPolla, J. S., Cheng, C. H., & Fisher, B. L. (2010). Taxonomic revision of the ant (Hymenoptera: Formicidae) genus Paraparatrechina in the Afrotropical and Malagasy regions. Zootaxa, 2387, 1–27. https://doi.org/10.11646/zootaxa.2387.1.1
  • Leal, I., Ribeiro-Neto, J. D., Arnan, X., Oliveira, A. F. M., Arcoverde, G. B., Feitosa, R. M., & Andersen, A. N. (2018). Ants of the Caatinga: Diversity, biogeography, and functional responses to anthropogenic disturbance and climate change. In J. M. C. Silva, I. R. Leal, & M. Tabarelli (Eds.), Caatinga: The largest tropical dry forest region in South America (pp. 65–95). Springer.
  • Lewinsohn, T. M., & Prado, P. I. (2005). Biodiversidade brasileira: Síntese do estado atual do conhecimento. In T. M. Lewinsohn & P. I. Prado (Eds.), Síntese do conhecimento atual da biodiversidade brasileira (pp. 21–112). Contexto.
  • López-Muñoz, R. A., Villarreal, E., & Lattke, J. E. (2018). Two new species of Leptogenys from southern Brazil (Hymenoptera: Formicidae). Zootaxa, 4410, 559–566. https://doi.org/10.11646/Zootaxa.4410.3.9
  • Lortie, C. J., & Svenning, J. C. (2015). The diversity of diversity studies: Retrospectives and future directions. Ecography, 38, 330–334. https://doi.org/10.1111/ecog.01646
  • Lucky, A., Atchison, R. A., Ohyama, L., Zhang, Y. M., Williams, J. L., Pinkney IV, J. L., Clancy, K. L., Nielsen, A. N., & Lippi, C. A. (2020). Myrmecology, gender, and geography: Changing demographics of a research community over thirty years. Myrmecological News, 30, 187–199. https://doi.org/10.25849/myrmecol.news_030:187
  • Lutinski, J., Guarda, C., Lutinski, C., & Garcia, F. (2018). Fauna de formigas em áreas de preservação permanente de usina hidroelétrica. Ciência Florestal, 28, 1741–1754. https://doi.org/10.5902/1980509835334
  • Marini-Filho, O. J. (1999). Distribution, composition, and dispersal of ant gardens and tending ants in three kinds of central Amazonian habitats. Tropical Zoology, 12, 289–296. https://doi.org/10.1080/03946975.1999.10539395
  • Martins, M. F. O., Nickele, M. A., Feitosa, R. M., Pie, M. R., & Reis-Filho, W. (2021). Species list of ground-dwelling ants (Hymenoptera: Formicidae) in the Nhecolândia, Pantanal, Mato Grosso do Sul, Brazil. Papéis Avulsos de Zoologia, 61, e202161. https://doi.org/10.11606/1807-0205/2021.61.81
  • Mayr, G. (1878). Formiciden. Gesammelt in Brasilien von Professor Trail. Verhandlungen Der k.k. – Zoologisch-Botanischen Gesellschaft in Wien, 27, 867–878.
  • Mertl, A. L., Sorenson, M. D., & Traniello, J. F. A. (2010). Community-level interactions and functional ecology of major workers in hyperdiverse ground-foraging Pheidole (Hymenoptera, Formicidae) of Amazonian Ecuador. Insectes Sociaux, 57, 441–452. https://doi.org/10.1007/s00040-010-0102-5
  • MMA – Ministério do Meio Ambiente. (2021). Biomas. https://antigo.mma.gov.br/biomas.html
  • Moura, M. R., & Jetz, W. (2021). Shortfalls and opportunities in terrestrial vertebrate species discovery. Nature Ecology & Evolution, 5, 631–639. https://doi.org/10.1038/s41559-021-01411-5
  • Munhae, C. B., Bueno, Z. A. F. N., Morini, M. S. C., & Silva, R. R. (2009). Composition of the ant fauna (Hymenoptera: Formicidae) in public squares in southern Brazil. Sociobiology, 53, 455–472.
  • Murray, B. R., Martin, L. J., Phillips, M. L., & Pyšek, P. (2017). Taxonomic perils and pitfalls of dataset assembly in ecology: A case study of the naturalized Asteraceae in Australia. NeoBiota, 34, 1–20. https://doi.org/10.3897/neobiota.34.11139
  • Nogueira, A., Baccaro, F. B., Leal, L. C., Rey, P. J., Lohmann, L. G., & Bronstein, J. L. (2020). Variation in the production of plant tissues bearing extrafloral nectaries explains temporal patterns of ant attendance in Amazonian understory plants. Journal of Ecology, 108, 1578–1591. https://doi.org/10.1111/1365-2745.13340
  • Oliveira, F., Ribeiro-Neto, J., Andersen, A., & Leal, I. (2017). Chronic anthropogenic disturbance as a secondary driver of ant community structure: Interactions with soil type in Brazilian Caatinga. Environmental Conservation, 44, 115–123. https://doi.org/10.1017/S0376892916000291
  • Pacheco, J. A., & Mackay, W. P. (2013). The systematics and biology of the New World thief ants of the genus Solenopsis (Hymenoptera: Formicidae). Edwin Mellen Press.
  • Pacheco, R., & Vasconcelos, H. L. (2007). Invertebrate conservation in urban areas: Ants in the Brazilian Cerrado. Landscape and Urban Planning, 81, 193–199. https://doi.org/10.1016/j.landurbplan.2006.11.004
  • Peixoto, T., Praxedes, C., Baccaro, F., Barbosa, R., & Júnior, M. (2010). Composição e riqueza de formigas (Hymenoptera: Formicidae) em savana e ambientes associados de Roraima. Revista Agro@Mbiente on-Line, 4, 1–10. https://doi.org/10.18227/1982-8470ragro.v4i1.345
  • Pitts, J. P., Camacho, G. P., Gotzek, D., Mchugh, J. V., & Ross, K. G. (2018). Revision of the fire ants of the Solenopsis saevissima species-group (Hymenoptera: Formicidae). Proceedings of the Entomological Society of Washington, 120, 308–411. https://doi.org/10.4289/0013-8797.120.2.308
  • Prado, L. P., Favacho, C. A. C., Silveira, O. T., & Silva, R. R. (2020). Uma jornada científica na Amazônia: Revisitando os 121 anos do acervo de Formicidae (Insecta: Hymenoptera) do Museu Paraense Emílio Goeldi. Boletim Do Museu Paraense Emílio Goeldi - Ciências Naturais, 15, 245–255. https://doi.org/10.46357/bcnaturais.v15i1.277
  • Prado, L. P., Feitosa, R. M., Triana, S. P., Gutierrez, J. A. M., Rousseau, G. X., Silva, R. A., Siqueira, G. M., Santos, C. L. C., Silva, F. V., Silva, T. S. R., Ferreira, A. C., Silva, R. R., & Andrade-Silva, J. (2019). An overview of the ant fauna (Hymenoptera: Formicidae) of the state of Maranhão. Papéis Avulsos de Zoologia, 59, e20195938. https://doi.org/10.11606/1807-0205/2019.59.38
  • R Core Team. (2020). R: A language and environment for statistical computing. R Foundation for Statistical Computing. https://www.R-project.org/
  • Rabeling, C., Brown, J. M., & Verhaagh, M. (2008). Newly discovered sister lineage sheds light on early ant evolution. Proceedings of the National Academy of Sciences of the United States of America, 105, 14913–14917. https://doi.org/10.1073/pnas.0806187105
  • Rabello, A. M., Parr, C. L., Queiroz, A. C. M., Braga, D. L., Santiago, G. S., & Ribas, C. R. (2021). Taxonomic and functional approaches reveal different responses of ant assemblages to land-use changes. Basic and Applied Ecology, 54, 39–49. https://doi.org/10.1016/j.baae.2021.04.001
  • Ribas, C. R., Sobrinho, T. G., Schoereder, J. H., Sperber, C. F., Lopes-Andrade, C., & Soares, S. D. (2005). How large is large enough for insects? Forest fragmentation effects at three spatial scales. Acta Oecologica, 27, 31–41. https://doi.org/10.1016/j.actao.2004.08.008
  • Ribeiro-Neto, J. D., Arnan, X., Tabarelli, M., & Leal, I. (2016). Chronic anthropogenic disturbance causes homogenization of plant and ant communities in the Brazilian Caatinga. Biodiversity and Conservation, 25, 943–956. https://doi.org/10.1007/s10531-016-1099-5
  • Rosa, I. M. D., Souza, C., & Ewers, R. M. (2012). Changes in size of deforested patches in the Brazilian Amazon. Conservation Biology: The Journal of the Society for Conservation Biology, 26, 932–937.
  • Schmidt, C. A., & Shattuck, S. O. (2014). The higher classification of the ant subfamily Ponerinae (Hymenoptera: Formicidae), with a review of ponerine ecology and behavior. Zootaxa, 3817, 1–242. https://doi.org/10.11646/zootaxa.3817.1.1
  • Schmidt, F. A., Ribas, C. R., Feitosa, R. M., Baccaro, F. B., de Queiroz, A. C. M., Sobrinho, T. G., Quinet, Y., Carvalho, K. S., Izzo, T., de Castro Morini, M. S., Nogueira, A., Torezan-Silingardi, H. M., Souza, J. L. P., Ulysséa, M. A., Vargas, A. B., Dáttilo, W., Del-Claro, K., Marques, T., Moraes, A. B., … Martello, F. (2022). Ant diversity studies in Brazil: An overview of the myrmecological research in a megadiverse country. Insectes Sociaux, 69, 105–121. https://doi.org/10.1007/s00040-022-00848-6
  • Schmidt, F. A., Costa, M. M. S., Martello, F., Oliveira, A. B., Menezes, A. S., Fontenele, L. K., Morato, E. F., & Oliveira, M. A. (2020). Ant diversity studies in Acre: What we know and what we could do to know more? Boletim Do Museu Paraense Emílio Goeldi - Ciências Naturais, 15, 113–134. https://doi.org/10.46357/bcnaturais.v15i1.235
  • Silva, R. R., & Brandão, C. R. F. (2014). Ecosystem-wide morphological structure of leaf-litter ant communities along a tropical latitudinal gradient. Public Library of Science One, 9, e93049. https://doi.org/10.1371/journal.pone.0093049
  • Silva, R. R., Martello, F., Feitosa, R. M., Silva, O. G. M., Prado, L. P., Brandão, C. R. F., Albuquerque, E. Z., Morini, M. S. C., Delabie, J. H. C., Santos Monteiro, E. C., Emanuel Oliveira Alves, A., Wild, A. L., Christianini, A. V., Arnhold, A., Casadei Ferreira, A., Oliveira, A. M., Santos, A. D., Galbán, A., Oliveira, A. A., … Ribeiro, M. C. (2022). ATLANTIC ANTS: A dataset of ants in Atlantic Forests of South America. Ecology, 103, e03580. https://doi.org/10.1002/ecy.3580
  • Soares, I. M., Santos, A. A., Delabie, J. H. C., & Castro, I. (2003). Comunidades de formigas (Hymenoptera: Formicidae) em uma "Ilha" de floresta ombrófila serrana em região de Caatinga (BA, Brasil). Acta Biologica Leopoldensia, 25, 197–204.
  • Sobrinho, T., Schoereder, J., Sperber, C., & Madureira, M. S. (2003). Does fragmentation alter species composition in ant communities (Hymenoptera: Formicidae)? Sociobiology, 42, 329–342.
  • Solomon, S. E., Rabeling, C., Sosa-Calvo, J., Lopes, C. T., Rodrigues, A., Vasconcelos, H. L., Bacci, M., Jr., Mueller, U. G., & Schultz, T. R. (2019). The molecular phylogenetics of Trachymyrmex Forel ants and their fungal cultivars provide insights into the origin and coevolutionary history of ‘higher-attine’ ant agriculture. Systematic Entomology, 44, 939–956. https://doi.org/10.1111/syen.12370
  • Sosa-Calvo, J., Ješovnik, A., Vasconcelos, H. L., Bacci, M., Jr., & Schultz, T. R. (2017). Rediscovery of the enigmatic fungus-farming ant "Mycetosoritis" asper Mayr (Hymenoptera: Formicidae): Implications for taxonomy, phylogeny, and the evolution of agriculture in ants. Public Library of Science One, 12, e0176498. https://doi.org/10.1371/journal.pone.0176498
  • Souza, J. L., Baccaro, F. B., Landeiro, V. L., Franklin, E., & Magnusson, W. E. (2012). Trade-offs between complementarity and redundancy in the use of different sampling techniques for ground-dwelling ant assemblages. Applied Soil Ecology, 56, 63–73. https://doi.org/10.1016/j.apsoil.2012.01.004
  • Souza, J. L., Baccaro, F. B., Landeiro, V. L., Franklin, E., Magnusson, W. E., Pequeno, P. A., & Fernandes, I. O. (2016). Taxonomic sufficiency and indicator taxa reduce sampling costs and increase monitoring effectiveness for ants. Diversity and Distributions, 22, 111–122. https://doi.org/10.1111/ddi.12371
  • Souza, J. L. P., Baccaro, F. B., Pequeno, P. A. C. L., Franklin, E., & Magnusson, W. E. (2018). Effectiveness of genera as a higher-taxon substitute for species in ant biodiversity analyses is not affected by sampling technique. Biodiversity and Conservation, 27, 3425–3445. https://doi.org/10.1007/s10531-018-1607-x
  • Trager, J. C. (1991). A revision of the fire ants, Solenopsis geminata group (Hymenoptera: Formicidae: Myrmicinae). Journal of the New York Entomological Society, 99, 141–198.
  • Vasconcelos, H. L., Frizzo, T. L., Pacheco, R., Maravalhas, J. B., Camacho, G. P., Carvalho, K. S., Koch, E. B., & Pujol-Luz, J. R. (2014). Evaluating sampling sufficiency and the use of surrogates for assessing ant diversity in a neotropical biodiversity hotspot. Ecological Indicators, 46, 286–292. https://doi.org/10.1016/j.ecolind.2014.06.036
  • Vasconcelos, H. L., Maravalhas, J. B., Feitosa, R. M., Pacheco, R., Neves, K. C., & Andersen, A. N. (2018). Neotropical savanna ants show a reversed latitudinal gradient of species richness, with climatic drivers reflecting the forest origin of the fauna. Journal of Biogeography, 45, 248–2258. https://doi.org/10.1111/jbi.13113
  • Vasconcelos, H. L., & Vilhena, J. M. S. (2006). Species turnover and vertical partitioning of ant assemblages in the Brazilian Amazon: A Comparison of Forests and Savannas. Biotropica, 38, 100–106.
  • Wilson, E. O. (2003). Pheidole in the New World: A dominant, hyperdiverse ant genus. Harvard University Press.
  • Wilson, E. O., & Hölldobler, B. (2005). Eusociality: Origin and consequences. Proceedings of the National Academy of Sciences of the United States of America, 102, 13367–13371. https://doi.org/10.1073/pnas.0505858102
  • Wong, M. K. L., Economo, E. P., & Guénard, B. (2021). The global spread and invasion capacities of alien ants. BioRxiv, 11, 19469299. https://doi.org/10.1101/2021.11.19.469299
  • UN – United Nations. (2021). UN Report: Nature’s dangerous decline ‘unprecedented’; species extinction rates ‘accelerating’. https://go.nature.com/37O15pf

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