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Research Articles

Conservation and historical distribution of two bumblebee species from the Atlantic Forest

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References

  • Alvares, C. A., Stape, J. L., Sentelhas, P. C., de Moraes, G., Leonardo, J., & Sparovek, G. (2013). Köppen’s climate classification map for Brazil. Meteorologische Zeitschrift, 22, 711–728. doi:10.1127/0941-2948/2013/0507
  • Anderson, C. N. K., Ramakrishnan, U., Chan, Y. L., & Hadly, E. A. (2005). Serial SimCoal: A population genetics model for data from multiple populations and points in time. Bioinformatics, 21, 1733–1734. doi:10.1093/bioinformatics/bti154
  • Andrade-Lima, D. (1966). Vegetação. In IBGE, Atlas Nacional do Brasil. Rio de Janeiro: Conselho Nacional de Geografia.
  • Araujo, M. B., & Rahbek, C. (2006). Ecology. How does climate change affect biodiversity? Science (New York, N.Y.), 313, 1396–1397. doi:10.1126/science.1131758
  • Araújo, V. A., Antonini, Y., & Araújo, A. (2006). Diversity of bees and their floral resources at altitudinal areas in the Southern Espinhaço Range, Minas Gerais, Brazil. Neotropical Entomology, 35, 30–40. doi:10.1590/S1519-566X2006000100005
  • Avise, J. C., Arnold, J., Ball, R. M., Bermingham, E., Lamb, T., Neigel, J. E., … Saunders, N. C. (1987). Intraspecific phylogeography: the mitochondrial DNA bridge between population genetics and systematics. Annual Review of Ecology and Systematics, 18, 489–522. doi:10.1146/annurev.es.18.110187.002421
  • Batalha-Filho, H., Cabanne, G. S., & Miyaki, C. Y. (2012). Phylogeography of an Atlantic forest passerine reveals demographic stability through the last glacial maximum. Molecular Phylogenetics and Evolution, 65, 892–902. doi:10.1016/j.ympev.2012.08.010
  • Beerli, P., & Felsenstein, J. (2001). Maximum likelihood estimation of a migration matrix and effective population sizes in n subpopulations by using a coalescent approach. Proceedings of the National Academy of Sciences, 98, 4563–4568. doi:10.1073/pnas.081068098
  • Beerli, P. (2006). Comparison of Bayesian and maximum-likelihood inference of population genetic parameters. Bioinformatics (Oxford, England), 22, 341–345. doi:10.1093/bioinformatics/bti803
  • Booth, T. H., Nix, H. A., Busby, J. R., & Hutchinson, M. F. (2014). bioclim : the first species distribution modelling package, its early applications and relevance to most current MaxEnt studies. Diversity and Distributions, 20, 1–9. doi:10.1111/ddi.12144
  • Boucher, Y., Cordero, O. X., Takemura, A., Hunt, D. E., Schliep, K., Bapteste, E., … Polz, M. F. (2011). Local mobile gene pools rapidly cross species boundaries to create endemicity within global Vibrio cholerae populations. mBio, 2, e00335-10.
  • Bouckaert, R., Heled, J., Kühnert, D., Vaughan, T., Wu, C.-H., Xie, D., … Drummond, A. J. (2014). BEAST 2: a software platform for bayesian evolutionary analysis. Public Library of Science Computational Biology, 10, e1003537. doi:10.1371/journal.pcbi.1003537
  • Brooks, D. R., & McLennan, D. A. (2002). The Nature of Diversity: An Evolutionary Voyage of Discovery. Chicago, Illinois: The University of Chicago Press.
  • Cabanne, G. S., Santos, F. R., & Miyaki, C. Y. (2007). Phylogeography of Xiphorhynchus fuscus (Passeriformes, Dendrocolaptidae): vicariance and recent demographic expansion in southern Atlantic forest. Biological Journal of the Linnean Society, 91, 73–84. doi:10.1111/j.1095-8312.2007.00775.x
  • Carnaval, A. C., & Moritz, C. (2008). Historical climate modelling predicts patterns of current biodiversity in the Brazilian Atlantic forest. Journal of Biogeography, 35, 1187–1201. doi:10.1111/j.1365-2699.2007.01870.x
  • Carnaval, A. C., Hickerson, M. J., Haddad, C. F. B., Rodrigues, M. T., & Moritz, C. (2009). Stability Predicts Genetic Diversity in the Brazilian Atlantic Forest Hotspot. Science, 323, 785–789. doi:10.1126/science.1166955
  • Carnaval, A. C., Waltari, E., Rodrigues, M. T., Rosauer, D., VanDerWal, J., Damasceno, R., … Moritz, C. (2014). Prediction of phylogeographic endemism in an environmentally complex biome. Proceedings of the Royal Society B: Biological Sciences, 281, 20141461. doi:10.1098/rspb.2014.1461
  • Castellanos-Morales, G., Gámez, N., Castillo-Gámez, R. A., & Eguiarte, L. E. (2016). Peripatric speciation of an endemic species driven by Pleistocene climate change: The case of the Mexican prairie dog (Cynomys mexicanus). Molecular Phylogenetics and Evolution, 94, 171–181. doi:10.1016/j.ympev.2015.08.027
  • Comunicação Social Polícia Federal na Bahia. (2017). Retrieved from: http://www.pf.gov.br/agencia/noticias/2017/05/pf-combate-crimes-ambientais-no-parque-nacional-do-monte-pascoal (accessed 2 January 2019).
  • Corrêa, B. S., Louzada, J. N. C., & de Moura, A. S. (2011). Descrição de critérios utilizados atualmente para compor as listas de espécies ameaçadas e endêmicas. Revista Agrogeoambiental, 3, 105–117.
  • Crandall, K. A., Bininda-Emonds, O. R., Mace, G. M., & Wayne, R. K. (2000). Considering evolutionary processes in conservation biology. Trends in Ecology & Evolution, 15, 290–295. doi:10.1016/S0169-5347(00)01876-0
  • Danielsson, P.-E. (1980). Euclidean distance mapping. Computer Graphics and Image Processing, 14, 227–248.
  • de Oliveira, M. O., Cavalcante, M. C., & Freitas, B. M. (2015). Nesting behavior and colony description of the neotropical Bombus (Thoracobombus) brevivillus in Northeastern Brazil. Journal of Insect Behavior, 28, 297–302. doi:10.1007/s10905-015-9502-8
  • De Queiroz, K. (2007). Species concepts and species Delimitation. Systematic Biology, 56, 879–886. doi:10.1080/10635150701701083
  • Edwards, S., & Beerli, P. (2000). Perspective: gene divergence, population divergence, and the variance in coalescence time in phylogeographic studies. Evolution; International Journal of Organic Evolution, 54, 1839–1854.
  • Elith, J., & Leathwick, J. R. (2009). Species distribution models: ecological explanation and prediction across space and time. Annual Review of Ecology, Evolution, and Systematics, 40, 677–697. doi:10.1146/annurev.ecolsys.110308.120159
  • Bush, G. L., & Endler, J. A. (1978). Geographic variations, speciation, and clines. Systematic Zoology, 27, 482–483. doi:10.2307/2412933
  • Excoffier, L., & Lischer, H. E. L. (2010). Arlequin suite ver 3.5: a new series of programs to perform population genetics analyses under Linux and Windows. Molecular Ecology Resources, 10, 564–567. doi:10.1111/j.1755-0998.2010.02847.x
  • Excoffier, L., Novembre, J., & Schneider, S. (2000). Computer note. SIMCOAL: a general coalescent program for the simulation of molecular data in interconnected populations with arbitrary demography. Journal of Heredity, 91, 506–509. doi:10.1093/jhered/91.6.506
  • Excoffier, L., Smouse, P. E., & Quattro, J. M. (1992). Analysis of molecular variance inferred from metric distances among DNA haplotypes: application to human mitochondrial DNA restriction data. Genetics, 131, 479–491.
  • Faria, L. R. R., & Melo, G. A. R. (2012). Species of Euglossa of the analis group in the Atlantic forest (Hymenoptera, Apidae). Zoologia (Curitiba), 29, 349–374. doi:10.1590/S1984-46702012000400008
  • Flegr, J. (2010). Elastic, not plastic species: frozen plasticity theory and the origin of adaptive evolution in sexually reproducing organisms. Biology Direct, 5, 2–14. doi:10.1186/1745-6150-5-2
  • Francisco, F. O., Santiago, L. R., Mizusawa, Y. M., Oldroyd, B. P., & Arias, M. C. (2016). Genetic structure of island and mainland populations of a Neotropical bumble bee species. Journal of Insect Conservation, 20, 383–394.
  • Frankham, R. (2005). Genetics and extinction. Biological Conservation, 126, 131–140. doi:10.1016/j.biocon.2005.05.002
  • Frankham, R., Ballou, J. D., & Briscoe, D. A. (2010). Introduction to conservation genetics. Cambridge, UK: Cambridge University Press.
  • Gentry, A. H. (1992). Tropical forest biodiversity: distributional patterns and their conservational significance. Oikos, 63, 19–28. doi:10.2307/3545512
  • Globo - G1. (2016a). Retrieved from: http://g1.globo.com/espirito-santo/noticia/2016/03/incendio-destroi-area-da-reserva-biologica-de-sooretama-no-es.html (accessed 19 September 2018).
  • Globo - G1. (2016b). Retrieved from: http://g1.globo.com/espirito-santo/noticia/2016/03/incendio-na-reserva-biologica-de-sooretama-e-controlado-no-es.html (accessed 19 September 2018).
  • Globo - G1. (2016c). Retrieved from: http://g1.globo.com/espirito-santo/estv-2edicao/videos/v/cacadores-sao-presos-na-reserva-biologica-de-sooretama-es/4788756/ (accessed 19 September 2018).
  • Gonzalez, V. H., Mejia, A., & Rasmussen, C. (2004). Ecology and nesting behavior of Bombus atratus Franklin in Andean highlands (Hymenoptera: Apidae). Journal of Hymenoptera Research, 13, 28–36.
  • Goulson, D. (2010). Bumblebees: behaviour, ecology, and conservation. Oxford, UK: Oxford University Press.
  • Graf, V., & Urban, D. (2008). A new species of Oxaea Klug (Hymenoptera, Apidae, Andreninae) from Espírito Santo, Brazil and complementary notes. Revista Brasileira de Entomologia, 52, 407–410. doi:10.1590/S0085-56262008000300013
  • Grossenbacher, D. L., Veloz, S. D., & Sexton, J. P. (2014). Niche and range size patterns suggest that speciation begins in small, ecologically diverged populations in North American monkeyflowers (Mimulus spp.): niche and range size patterns. Evolution, 68, 1270–1280. doi:10.1111/evo.12355
  • Haffer, J. (2008). Hypotheses to explain the origin of species in Amazonia. Brazilian Journal of Biology = Revista Brasleira de Biologia, 68, 917–947.
  • Hakim, J. R. C., & Laroca, S. (2010). A comunidade de abelhas silvestres (Anthophila) do Parque da Cidade (Curitiba, Brasil): diversidade, abundância relativa, fenologia e recursos tróficos. Acta Biológica Paranaense, 39, 111–181.
  • Hanson, C. A., Fuhrman, J. A., Horner-Devine, M. C., & Martiny, J. B. H. (2012). Beyond biogeographic patterns: processes shaping the microbial landscape. Nature Reviews Microbiology, 10, 497–506. doi:10.1038/nrmicro2795
  • Hendry, A. P., Nosil, P., & Rieseberg, L. H. (2007). The speed of ecological speciation. Functional Ecology, 21, 455–464. doi:10.1111/j.1365-2435.2006.01240.x
  • Hewitt, G. (2000). The genetic legacy of the Quaternary ice ages. Nature, 405, 907–913. doi:10.1038/35016000
  • Hewitt, G. M. (1996). Some genetic consequences of ice ages, and their role in divergence and speciation. Biological Journal of the Linnean Society, 58, 247–276. doi:10.1111/j.1095-8312.1996.tb01434.x
  • Hinojosa-Díaz, I., Nemésio, A., & Engel, M. (2012). Two new species of Euglossa from South America, with notes on their taxonomic affinities (Hymenoptera, Apidae). ZooKeys, 221, 63–79.
  • IBGE. (2012). Manual técnico da vegetação brasileira. Rio de Janeiro: Instituto Brasileiro de Geografia e Estatística-IBGE.
  • ICMBio. (2013). Retrieved from: http://www.icmbio.gov.br/portal/ultimas-noticias/20-geral/4434-operacao-flagra-uso-ilegal-de-madeira-da-mata-atlantica (accessed 19 September 2018).
  • ICMBio. (2015). Retrieved from: http://www.icmbio.gov.br/portal/ultimas-noticias/4-destaques/7449-fogo-atinge-a-reserva-biologica-de-sooretama (accessed 19 September 2018).
  • Joachims, T., ed. (1999). Making large-Scale SVM Learning Practical. Retrieved from: http://www.cs.cornell.edu/People/tj/publications/joachims_99a.pdf (accessed 19 September 2018).
  • Johnson, S. D. (2010). The pollination niche and its role in the diversification and maintenance of the southern African flora. Philosophical Transactions of the Royal Society B: Biological Sciences, 365, 499–516. doi:10.1098/rstb.2009.0243
  • Kembel, S. W., Cowan, P. D., Helmus, M. R., Cornwell, W. K., Morlon, H., Ackerly, D. D., … Webb, C. O. (2010). Picante: R tools for integrating phylogenies and ecology. Bioinformatics, 26, 1463–1464. doi:10.1093/bioinformatics/btq166
  • Kerr, J. (1997). Species richness, endemism, and the choice of areas for conservation. Conservation Biology, 11, 1094–1100. doi:10.1046/j.1523-1739.1997.96089.x
  • Kozak, K. H., & Wiens, J. J. (2006). Does niche conservatism promote speciation? A case study in North American salamanders. Evolution, 60, 2604–2621. doi:10.1554/06-334.1
  • Kress, W. J., Erickson, D. L., Jones, F. A., Swenson, N. G., Perez, R., Sanjur, O., & Bermingham, E. (2009). Plant DNA barcodes and a community phylogeny of a tropical forest dynamics plot in Panama. Proceedings of the National Academy of Sciences, 106, 18621–18626. doi:10.1073/pnas.0909820106
  • Kumar, S., Stecher, G., & Tamura, K. (2016). MEGA7: molecular evolutionary genetics analysis version 7.0 for bigger datasets. Molecular Biology and Evolution, 33, 1870–1874. doi:10.1093/molbev/msw054
  • Laroca, S. (1972). Sobre a bionomia de Bombus brasiliensis (Hymenoptera, Apoidea). Acta Biológica Paranaense, 1, 7–28.
  • Laroca, S. (1976). Sobre a bionomia de Bombus morio (Hymenoptera, Apoidea). Acta Biológica Paranaense, 5, 107–127.
  • Lawson, L. P., Bates, J. M., Menegon, M., & Loader, S. P. (2015). Divergence at the edges: peripatric isolation in the montane spiny throated reed frog complex. BioMedCentral Evolutionary Biology, 15, 1–15.
  • Liu, S., Lorenzen, E. D., Fumagalli, M., Li, B., Harris, K., Xiong, Z., … Wang, J. (2014). Population genomics reveal recent speciation and rapid evolutionary adaptation in polar bears. Cell, 157, 785–794. doi:10.1016/j.cell.2014.03.054
  • Luz, D. R., Barroso, G. V., & Althoff, S. L. (2010). Insecta, Hymenoptera, Apidae, Serra do Itajaí National Park, state of Santa Catarina, Brazil. Check List, 6, 519–524. doi:10.15560/6.4.519
  • Maddison, W. P., & Maddison, D. R. (2017). Mesquite: A modular system for evolutionary analysis. Ver. 3.51. Retrieved from http://mesquiteproject.org (accessed 19 September 2018).
  • Malay, M. C., (Machel) D., & Paulay, G. (2010). Peripatric speciation drives diversification and distributional pattern of reef hermit crabs (Decapoda: Diogenidae: Calcinus). Evolution, 64, 634–662. doi:10.1111/j.1558-5646.2009.00848.x
  • Manni, F., Guerard, E., & Heyer, E. (2004). Geographic patterns of (genetic, morphologic, linguistic) variation: how barriers can be detected by using Monmonier’s algorithm. Human Biology, 76, 173–190. doi:10.1353/hub.2004.0034
  • Martinelli, G., Vieira, C. M., Gonzalez, M., Leitman, P., Piratininga, A., Costa, A. F., & Forzza, R. C. (2008). Lista de espécies, distribuição e conservação/Bromeliaceae of the brazilian Atlantic Forest: checklist, distribution and conservation. Rodriguésia, 59, 209–258. doi:10.1590/2175-7860200859114
  • Martins, A. C., & Melo, G. A. R. (2010). Has the bumblebee Bombus bellicosus gone extinct in the northern portion of its distribution range in Brazil?. Journal of Insect Conservation, 14, 207–210. doi:10.1007/s10841-009-9237-y
  • Martins, A. C., Gonçalves, R. B., & Melo, G. A. R. (2013). Changes in wild bee fauna of a grassland in Brazil reveal negative effects associated with growing urbanization during the last 40 years. Zoologia (Curitiba), 30, 157–176. doi:10.1590/S1984-46702013000200006
  • Martins, A. C., Silva, D. P., De Marco, P., & Melo, G. A. R. (2015). Species conservation under future climate change: the case of Bombus bellicosus, a potentially threatened South American bumblebee species. Journal of Insect Conservation, 19, 33–43. doi:10.1007/s10841-014-9740-7
  • Mayr, E. (1940). Speciation Phenomena in Birds. The American Naturalist, 74, 249–278. doi:10.1086/280892
  • Menezes, L., Canedo, C., Batalha-Filho, H., Garda, A. A., Gehara, M., & Napoli, M. F. (2016). Multilocus phylogeography of the treefrog scinax eurydice (Anura, Hylidae) reveals a Plio-Pleistocene diversification in the Atlantic Forest. Public Library of Science One, 11, e0154626. doi:10.1371/journal.pone.0154626
  • Meyer, C. P., Geller, J. B., & Paulay, G. (2005). Fine scale endemism on coral reefs: archipelagic differentiation in Turbinid gastropods. Evolution, 59, 113. doi:10.1554/04-194
  • Moen, D. S., Irschick, D. J., & Wiens, J. J. (2013). Evolutionary conservatism and convergence both lead to striking similarity in ecology, morphology and performance across continents in frogs. Proceedings of the Royal Society B: Biological Sciences, 280, 20132156 doi:10.1098/rspb.2013.2156.
  • Moritz, C. (1994). Defining ‘evolutionarily significant units’ for conservation. Trends in Ecology &Amp; Evolution, 9, 373–375. doi:10.1016/0169-5347(94)90057-4
  • Moure, J. S., & Sakagami, S. (1962). As mamamgabas sociais do Brasil (Bombus Latreille) (Hymenoptera, Apoidea). Studies Entomology, 51, 65–194.
  • Myers, N., Mittermeier, R. A., Mittermeier, C. G., Da Fonseca, G. A., & Kent, J. (2000). Biodiversity hotspots for conservation priorities. Nature, 403, 853–858. doi:10.1038/35002501
  • Nemésio, A., & Engel, M. (2012). Three new cryptic species of Euglossa from Brazil (Hymenoptera, Apidae). ZooKeys, 222, 47–68.
  • Nieto Feliner, G. (2014). Patterns and processes in plant phylogeography in the Mediterranean Basin. A review. Perspectives in Plant Ecology, Evolution and Systematics, 16, 265–278. doi:10.1016/j.ppees.2014.07.002
  • Olesen, J. M. (1989). Behaviour and nest structure of the Amazonian Bombus transversalis in Ecuador. Journal of Tropical Ecology, 5, 243–246. doi:10.1017/S0266467400003540
  • Oksanen, F. J., Blanchet, G., Friendly, M., Kindt, R., Legendre, P., McGlinn, D., … Wagner, H. (2018). VEGAN: community ecology package. R package version 2.5-2. Retrieved from: https://CRAN.R-project.org/package=vegan (accessed 19 September 2018).
  • Paradis, E., Claude, J., & Strimmer, K. (2004). APE: analyses of phylogenetics and evolution in R language. Bioinformatics (Oxford, England), 20, 289–290.
  • Passos, P. L. B., Hirota, M. M., Mantovani, M. C., Garrido, O., Balazina, A., Herrera, A. G., … Ponzoni, F. J. (2017). Atlas dos remanescentes florestais da Mata Atlântica: Período 2015–2016. Brasil: SOS Mata Atlântica Foundation and the National Institute for Space Research (INPE).
  • Pedro, S. R., & Camargo, J. M. (2003). Meliponini neotropicais: o gênero Partamona Schwarz, 1939 (Hymenoptera, Apidae). Revista Brasileira de Entomologia, 47, 1–117. doi:10.1590/S0085-56262003000500001
  • Peixoto, A. L., & Silva, I. M. (1997). Tabuleiro forests of Northern Espírito Santo, South-eastern Brazil. In S. D. Davis, V. H. Heywood, O. Herrera-Macbryde, J. Villa-Lobos, & A. C. Hamilton (Eds.), Centres of plant diversity: a guide and strategy for their conservation. Cambridge: IUCN Publications Unit.
  • Peixoto, A. L., Silva, I. M., Pereira, O. J., Simonelli, M., Jesus, R. D., & Rolim, S. G. (2008). Tabuleiro forests north of the rio Doce: their representation in the Vale do Rio Doce Natural Reserve, Espírito Santo, Brazil. Memoirs of the New York Botanical Garden, 100, 319–350.
  • Perez, M. F., Bonatelli, I. A. S., Moraes, E. M., & Carstens, B. C. (2016). Model-based analysis supports interglacial refugia over long-dispersal events in the diversification of two South American cactus species. Heredity, 116, 550–557. doi:10.1038/hdy.2016.17
  • Phillips, S. J., Anderson, R. P., & Schapire, R. E. (2006). Maximum entropy modeling of species geographic distributions. Ecological Modelling, 190, 231–259. doi:10.1016/j.ecolmodel.2005.03.026
  • Rambaut, A., Suchard, M. A., & Drummond, A. J. (2013). Retrieved from http://beast.bio.ed.ac.uk/Tracer (accessed 2 January 2019).
  • Rangel, T. F., Diniz-Filho, J. A. F., & Bini, L. M. (2010). SAM: a comprehensive application for Spatial Analysis in Macroecology. Ecography, 33, 46–50. doi:10.1111/j.1600-0587.2009.06299.x
  • Revell, L. J. (2012). phytools: an R package for phylogenetic comparative biology (and other things): phytools: R package. Methods in Ecology and Evolution, 3, 217–223. doi:10.1111/j.2041-210X.2011.00169.x
  • Ribeiro, M. C., Metzger, J. P., Martensen, A. C., Ponzoni, F. J., & Hirota, M. M. (2009). The Brazilian Atlantic Forest: how much is left, and how is the remaining forest distributed? Implications for conservation. Biological Conservation, 142, 1141–1153. doi:10.1016/j.biocon.2009.02.021
  • Rolim, S. G., de Menezes, L. F. T., & Srbek-Araujo, A. C. (2016). Floresta Atlântica de Tabuleiro: diversidade e endemismos. Brasil: Linhares, Espírito Santo.
  • Rull, V. (2008). Speciation timing and neotropical biodiversity: the Tertiary-Quaternary debate in the light of molecular phylogenetic evidence: speciation timing and Neotropical biodiversity. Molecular Ecology, 17, 2722–2729. doi:10.1111/j.1365-294X.2008.03789.x
  • Rull, V. (2011). Neotropical biodiversity: timing and potential drivers. Trends in Ecology & Evolution, 26, 508–513. doi:10.1016/j.tree.2011.05.011
  • Santos Júnior, J. E., Santos, F. R., & Silveira, F. A. (2015). Hitting an unintended target: phylogeography of Bombus brasiliensis Lepeletier, 1836 and the first new Brazilian bumblebee species in a century (Hymenoptera: Apidae). Public Library of Science One, 10, e0125847. doi:10.1371/journal.pone.0125847
  • Santos, F. M. D., Carvalho, C. A. L. D., & Silva, R. F. (2004). Diversidade de abelhas (Hymenoptera: Apoidea) em uma área de transição Cerrado-Amazônia.
  • Seddon, N., & Tobias, J. A. (2007). Song divergence at the edge of Amazonia: an empirical test of the peripatric speciation model. Biological Journal of the Linnean Society, 90, 173–188. doi:10.1111/j.1095-8312.2007.00753.x
  • Silva, D. P., Vilela, B., De Marco, P., & Nemésio, A. (2014). Using ecological niche models and niche analyses to understand speciation patterns: the case of sister Neotropical orchid bees. Public Library of Science One, 9, e113246. doi:10.1371/journal.pone.0113246
  • Silva-Pereira, V. D., & Santos, G. M. (2006). Diversity in bee (Hymenoptera: Apoidea) and social wasp (Hymenoptera: Vespidae, Polistinae) community in ‘campos rupestres’, Bahia, Brazil. Neotropical Entomology, 35, 165–174. doi:10.1590/S1519-566X2006000200003
  • Soberón, J. (2007). Grinnellian and Eltonian niches and geographic distributions of species. Ecology Letters, 10, 1115–1123. doi:10.1111/j.1461-0248.2007.01107.x
  • Stockwell, C. A., Hendry, A. P., & Kinnison, M. T. (2003). Contemporary evolution meets conservation biology. Trends in Ecology & Evolution, 18, 94–101. doi:10.1016/S0169-5347(02)00044-7
  • Stockwell, D. (1999). The GARP modelling system: problems and solutions to automated spatial prediction. International Journal of Geographical Information Science, 13, 143–158. doi:10.1080/136588199241391
  • Tanentzap, A. J., & Lee, W. G. (2017). Evolutionary conservatism explains increasing relatedness of plant communities along a flooding gradient. New Phytologist, 213, 634–644. doi:10.1111/nph.14167
  • Taylor, O., & Cameron, S. (2003). Nest construction and architecture of the Amazonian bumble bee (Hymenoptera: Apidae). Apidologie, 34, 321–331. doi:10.1051/apido:2003035
  • Telleria, M. C. (1998). Palynological analysis of food reserves found in a nest of Bombus atratus (Hym. Apidae). Grana, 37, 125–127. doi:10.1080/00173139809362655
  • Templeton, A. R. (1980). The theory of speciation via the founder principle. Genetics, 94, 1011–1038.
  • Thomas, W. W., Carvalho, A. M. V., Amorim, A. M. A., Garrison, J., & Arbeláez, A. L. (1998). Plant endemism in two forests in southern Bahia, Brazil. Biodiversity and Conservation, 7, 311–322.
  • Valdez, L., & D’Elía, G. (2013). Differentiation in the Atlantic Forest: phylogeography of Akodon montensis (Rodentia, Sigmodontinae) and the Carnaval–Moritz model of Pleistocene refugia. Journal of Mammalogy, 94, 911–922. doi:10.1644/12-MAMM-A-227.1
  • Varela, G. (1992a). Nota preliminar sobre los componentes de un nido de Bombus bellicosus Smith, 1879 (Hymenoptera, Apoidea). Boletín de la Sociedad Zoológica Del Uruguay, 7, 55–56.
  • Varela, G. (1992b). Nota preliminar sobre la fenologia del nido de Bombus bellicosus Smith, 1879 (Hymenoptera, Apoidea). Boletín de la Sociedad Zoológica Del Uruguay, 7, 53–54.
  • Walter, C. (2016). Instituto Chico Mendes guarantees that a fire in the Sooretama reserve was criminal. Retrieved from: http://www.vitorianews.com.br/geral/noticia/2016/03/instituto-chico-mendes-garante-que-incendio-na-reserva-de-sooretama-foi-criminoso-77100.html (accessed 19 September 2018).
  • Warren, D. L., & Seifert, S. N. (2011). Ecological niche modeling in Maxent: the importance of model complexity and the performance of model selection criteria. Ecological Applications, 21, 335–342. doi:10.1890/10-1171.1
  • Warren, D. L., Glor, R. E., & Turelli, M. (2008). Environmental niche equivalency versus conservatism: quantitative approaches to niche evolution. Evolution, 62, 2868–2883. doi:10.1111/j.1558-5646.2008.00482.x
  • Whitaker, R. J. (2003). Geographic barriers isolate endemic populations of hyperthermophilic archaea. Science, 301, 976–978. doi:10.1126/science.1086909
  • Mayr, E., & White, M. J. D. (1978). Modes of speciation. Systematic Zoology, 27, 478–482. doi:10.2307/2412932
  • Wiens, J. J., & Graham, C. H. (2005). Niche Conservatism: Integrating Evolution, Ecology, and Conservation Biology. Annual Review of Ecology, Evolution, and Systematics, 36, 519–539. doi:10.1146/annurev.ecolsys.36.102803.095431
  • Williams, P. H., Lobo, J. M., & Meseguer, A. S. (2018). Bumblebees take the high road: climatically integrative biogeography shows that escape from Tibet, not Tibetan uplift, is associated with divergences of present-day Mendacibombus. Ecography, 41, 461–477. doi:10.1111/ecog.03074
  • Williams, S. E., & Pearson, R. G. (1997). Historical rainforest contractions, localized extinctions and patterns of vertebrate endemism in the rainforests of Australia’s wet tropics. Proceedings of the Royal Society of London B: Biological Sciences, 264, 709–716. doi:10.1098/rspb.1997.0101

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