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Dung beetle communities: a Neotropical-Nearctic comparison. (n.d.).
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Alves-Costa, C. P., & Gonzaga, M. O. (2001). Prey capture and spatial distribution of Philoponella vittata (Araneae: Uloboridae) in host webs. Ethology Ecology & Evolution, 13(3), 239–246.
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Andresen, E. (2002). Dung beetles in a Central Amazonian rainforest and their ecological role as secondary seed dispersers. Ecological Entomology, 27(3), 257–270.
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Andresen, E. (2003). Effect of forest fragmentation on dung beetle communities and functional consequences for plant regeneration. Ecography, 26(1), 87–97.
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Andresen, E., & Levey, D. J. (2004). Effects of dung and seed size on secundary dispersal, seed predation and seedling establishment of rainforest Trees. Oecologia, 139, 45–54.
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Becker, P. (1991). More about Euglossine bees in Amazonian forest fragments. Biotropica, 23(4b), 586–591.
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Brown, K. S. Jr., & Hutchings, R. (1997). Disturbance, fragmentation, and the dynamics of diversity in Amazonian forest butterflies. In Tropical Forest Remnants - Ecology, Management, and Conservation of Fragmented Communities (pp. 91–110). University of Chicago Press.
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Bruna, E. M., Darrigo, M. R., Furuya Pacheco, A. M., & Vasconcelos, H. L. (2008). Interspecific variation in the defensive responses of ant mutualists to plant volatiles. Biological Journal of the Linnean Society, 94(2), 241–249.
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Bruna, E. M., Izzo, T. J., Inouye, B. D., & Vasconcelos, H. L. (2014). Effect of mutualist partner identity on plant demography. Ecology, 95(12), 3237–3243.
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Bruna, E. M., Izzo, T., Inouye, B., Uriarte, M., & Vasconcelos, H. L. (2011). Assymetric dispersal capability of Amazonian plant-ant queens. PLoS ONE, 6(8), e22937.
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Bruna, E. M., Lapola, D. M., & Vasconcelos, H. (2004). Interspecific variation in the defensive reponses of obligate plant-ants: Experimental tests and consequences for herbivory. Oecologia, 138, 558–565.
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Bruna, E. M., Vasconcelos, H., & Heredia, S. (2005). The effect of habitat fragmentation on communities of mutualists: Amazonian ants and their host plants. Biological Conservation, 124(2), 209–216.
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Carvalho, K. S., & Vasconcelos, H. L. (1999). Forest fragmentation in central Amazonia and its effects on litter-dwelling ants. Biological Conservation, 91, 151–158.
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Cassiano, S. R., & DeSouza, O. (2011). Spiders, ants and an Amazonian Myrmecophyte: a tale of trophic cascades. Sociobiology, 58(2), 403–418.
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Dátillo, W., Izzo, T. J., Vasconcelos, H. L., & Rico-Gray, V. (2013). Strength of the modular pattern in Amazonian symbiotic ant-plant networks. Arthropod Plant Interactions, 7, 455–461.
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Dáttilo, W. F. C., Izzo, T. J., Inouye, B. D., Vasconcelos, H. L., & Bruna, E. M. (2009). Recognition of host plant volatiles by Pheidole minutula Mayr. (Myrmicinae), an Amazonian ant-plant specialist. Biotropica, 41(5), 642–646.
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De Luca, A. S., Vasconcelos, H. L., & Barrett, T. V. (2003). Distribution of Sandflies (Diptera: Phlebotominae) In Forest Remnants and Adjacent Matrix Habitats in Brazilian Amazonia. Brazilian Journal of Biology, 63(3), 401–410.
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De Marco, P. (1998). The Amazonian campina Dragonfly assemblage: Patterns in microhabitat use and behaviour in a foraging habitat. Odonatologica, 27(2), 239–248.
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Dick, C. (2001). Genetic rescue of remnant tropical trees by an alien pollinator. Proc. R. Soc. Lond. B, 268, 2391–2396.
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Dick, C. (2001). Habitat change, African honeybees, and fecundity in the Amazonian tree Dinizia excelsa (Fabaceae). In Lessons from Amazonia - The Ecology and Conservation of a Fragmented Forest (pp. 146–157). Yale University Press.
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