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2018 | 20 | 1 |

Tytuł artykułu

Ecological networks between tent-roosting bats (Phyllostomidae: Stenodermatinae) and the plants used in a Neotropical rainforest

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Roost ecology in bats is a complex interaction of behavioral, morphological and physiological adaptations, thus, there are many factors involved in roost selection by bat species. Approximately 22 species of bats are able to modify leaves to establish their roost, 17 of which are in the Neotropics. Although there are many studies of tent-roosting bats, this is the first describing the structure of the interaction between bats and the plants they are using as roosts. We describe a potential antagonistic network between these bats and the plants used for tent construction in La Selva Biological Station in Costa Rica. We calculated descriptors of the network such as the number of bats and plants interacting, as well as the number of pairwise interactions based on published records or direct observations. We also tested for connectance and nestedness in the network structure. We propose a name for this non-trophic antagonistic interaction, which is a structural antagonism, where bats damage the leaves, reducing their lifespan and the plant fitness. In La Selva the network is composed of eight bats and 45 plant species reported by 60 pairwise interactions. Only 2.16% of vascular plant species in La Selva are being modified as tents. The network had low connectance (0.167) and no significant nestedness or modularity. Considering the species richness of plants in La Selva, there are few links between tent-roosting bats and plants species, which shows the specialization of these interactions and the high dependence of most of these bats on a few plant species, even if they are very specific and temporary resources.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

1

Opis fizyczny

p.139-145,fig.,ref.

Twórcy

  • Escuela de Biologia, Universidad de Costa Rica, San Pedro de Montes de Oca 11501-2060, San Jose, Costa Rica
  • Escuela de Biologia, Universidad de Costa Rica, San Pedro de Montes de Oca 11501-2060, San Jose, Costa Rica
  • Escuela de Biologia, Universidad de Costa Rica, San Pedro de Montes de Oca 11501-2060, San Jose, Costa Rica

Bibliografia

  • 1. Almeida-Neto M., P. Guimarães, P. R. Guimarães, R. D. Loyola, and W. Ulrich. 2008. A consistent metric for nestedness analysis in ecological systems: reconciling concept and measurement. Oikos, 117: 1227–1239. Google Scholar
  • 2. Barber, M. J. 2007. Modularity and community detection in bipartite networks. Physical Review, 76E: 066102. Google Scholar
  • 3. Bascompte, J., and P. Jordano. 2014. Mutualistic networks. Monographs in population biology, 53. Princeton University Press, Princeton, 224 pp. Google Scholar
  • 4. Bascompte, J., P. Jordano, C. J. Melian, and J. M. Olesen. 2003. The nested assembly of plant animal mutualistic networks. Proceedings of the National Academy of Science of the USA, 100: 9383–9387. Google Scholar
  • 5. Brooke, A. P. 1987. Tent construction and social organization in Vampyressa nymphaea (Chiroptera: Phyllostomidae) in Costa Rica. Journal of Tropical Ecology, 3: 171–175. Google Scholar
  • 6. Brooke, A. P. 1990. Tent selection, roosting ecology and social organization of the tent-making bat, Ectophylla alba, in Costa Rica. Journal of Zoology, 221: 11–19. Google Scholar
  • 7. Chaverri, G., and T. H. Kunz. 2010. Ecological determinants of social systems: perspectives on the functional role of roosting ecology in the social behavior of tent-roosting bats. Pp. 275–318, in Advances in the study of behavior ( R. MacEdo, ed.). Academic Press, Burlington, 42: 275–318. Google Scholar
  • 8. Chaverri, G., M. Gamba-Ríos, and T. H. Kunz. 2007. Range overlap and association patterns in the tent-roosting bat Artibeus watsoni. Animal Behaviour, 73: 157–164. Google Scholar
  • 9. Choe, J. C., and R. M. Timm. 1985. Roosting site selection by Artibeus watsoni (Chiroptera: Phyllostomidae) on Anthurium ravenii (Araceae) in Costa Rica. Journal of Tropical Ecology, 1: 241–247. Google Scholar
  • 10. Cholewa, E., M. J. Vonhof, S. Bouchard, C. A. Peterson, and M. B. Fenton. 2001. The pathways of water movement in leaves modified into tents by bats. Biological Journal of the Linnean Society, 72: 179–191. Google Scholar
  • 11. Cirranello, A., N. B. Simmons, S. Solari, and R. J. Baker. 2016. Morphological diagnoses of higher-level phyllostomid taxa (Chiroptera: Phyllostomidae). Acta Chiropterologica, 18: 39–71. Google Scholar
  • 12. Cordero-Schmidt, E., M. Medeiros-Guimarães, J. C. Vargas-Mena, B. Carvalho, R. Lopes-Ferreira, B. Rodríguez-Herrera, and E. M. Venticinque. 2016. Are leaves a good option in Caatinga's menu? First record of folivory in Artibeus planirostris (Phyllostomidae) in the semiarid for est, Brazil. Acta Chiropterologica, 18: 489–497. Google Scholar
  • 13. Dormann, C. F., B. Gruber, and J. Fruend. 2008. Introducing the bipartite package: analyzing ecological networks. R News, 8(2): 8–11. Google Scholar
  • 14. Flores, R., K. Black, and A. Ibáñez. 2016. A new species of Heliconia (Heliconiaceae) with pendent inflorescence, from Chucantí Private Nature Reserve, eastern Panama. PhytoKeys, 77: 21–32. Google Scholar
  • 15. Fontaine, C., P. R. Guimarães, Jr , S. Kéfi, N. Loeuille, J. Memmott, W. H. van der Putten, F. J. F. van Veen, and E. Thébault. 2011. The ecological and evolutionary implications of merging different types of networks. Ecology Letters, 14: 1170–1181. Google Scholar
  • 16. Foster, M. S. 1992. Tent roosts of Macconnell's bat (Vampyressa macconnelli). Biotropica, 24: 447–454. Google Scholar
  • 17. Guimarães, P. R., and P. Guimarães. 2006. Improving the analyses of nestedness for large sets of matrices. Environmental Modelling and Software, 21: 1512–1513. Google Scholar
  • 18. Gutiérrez-Sanabria, D. R. 2015. Leaf-roost selection of Carlu dovica palmata by tent-roosting bat Dermanura watsoni in Piro Biological Station, Península de Osa, Costa Rica. Revista Biodiversidad Neotropical, 5: 23–28. Google Scholar
  • 19. Holm-Nielsen, L. B., I. C. Nielsen, and T. J. Balslev. 1989. Tropical forests: botanical, dynamics, speciation and diversity. T. J. Press, London, UK, 373 pp. Google Scholar
  • 20. Kress, J. 1990. The diversity and distribution of Heliconia (Heliconiaceae) in Brazil. Acta Botánica Brasilica, 4: 159–166. Google Scholar
  • 21. Kunz, T. H. 1982. Roosting ecology of bats, Pp. 1–56, in Ecology of bats ( T. H. Kunz, ed.), Plenum Press, New York, 425 pp. Google Scholar
  • 22. Kunz, T. H., and L. F. Lumsden. 2003. Ecology of cavity and foliage roosting bats. Pp. 3–89, in Bat ecology ( T. H. Kunz and M. B. Fenton, eds.). University of Chicago Press, Chicago, 779 pp. Google Scholar
  • 23. Kunz, T. H., M. S. Fujita, A. P. Brooke, and G. F. McCracken. 1994. Convergence in tent architecture and tent-making behavior among Neotropical and Paleotropical bats. Journal of Mammalian Evolution, 2: 57–78. Google Scholar
  • 24. López, J. E., and C. Vaughan. 2004. Observations on the role of frugivorous bats as seed dispersers in Costa Rican secondary humid forests. Acta Chiropterologica, 6: 111–119. Google Scholar
  • 25. Marquitti, F. M. D., P. R. Guimarães, Jr , M. M. Pires, and L. F. Bittencourt. 2014. MODULAR: software for the autonomous computation of modularity in large network sets. Ecography, 37: 222–225. Google Scholar
  • 26. Mello, M. A. R., F. M. D. Marquitti, P. R. Guimarães, Jr. , E. K. V. Kalko, P. Jordano, and M. A. M. de Aguiar. 2011a. The missing part of seed dispersal networks: structure and robustness of bat-fruit interactions. PloS ONE, 6: e17395. Google Scholar
  • 27. Mello, M. A. R., F. M. D. Marquitti, P. R. Guimarães Jr ., E. K. V. Kalko, P. Jordano, and M. A. M. de Aguiar. 2011b. The modularity of seed dispersal: differences in structure and robustness between bat- and bird-fruit networks. Oecologia, 167:131–140. Google Scholar
  • 28. Melo, F. P. L., B. Rodríguez-Herrera, R. L. Chazdon, R. A. Medellín, and G. G. Ceballos. 2009. Small tent-roosting bats promote dispersal of large seed plants in a neotropical forest. Biotropica, 41: 737–743. Google Scholar
  • 29. Nelson, S. L., T. H. Kunz, and S. R. Humphrey. 2005. Folivory in fruit bats: leaves provide a natural source of calcium. Journal of Chemical Ecology, 31: 1683–1691. Google Scholar
  • 30. Powers, J. S., J. P. Haggar, and R. F. Fisher. 1997. The effect of overstory composition on understory woody regeneration and species richness in 7-year-old plantations in Costa Rica. Forest Ecology and Management, 99: 43–54. Google Scholar
  • 31. Ripperger, S. P., M. Tschapka, E. K. V. Kalko, and B. Rodríguez-Herrera. 2013. Life in a mosaic landscape: anthropogenic habitat fragmentation affects genetic population structure in a frugivorous bat species. Conservation Genetics, 14: 925–934. Google Scholar
  • 32. Ripperger, S. P., E. K. V. Kalko, B. Rodríguez-Herrera, F. Meyer, and M. Tschapka. 2015. Frugivorous bats maintain functional habitat connectivity in agricultural landscapes but rely strongly on natural forest fragments. PLoS ONE, 10: e0120535. Google Scholar
  • 33. Rodríguez-Herrera, B., R. A. Medellín, and R. M. Timm. 2007. Neotropical tent-roosting bats. Instituto Nacional de Biodiversidad (INBio), Heredia, 168 pp. Google Scholar
  • 34. Rodríguez-Herrera, B., R. A. Medellín, and M. Gamba-Ríos. 2008. Roosting requirements of white tent-roosting bat Ectophylla alba (Chiroptera: Phyllostomidae). Acta Chiropterologica, 10: 89–95. Google Scholar
  • 35. Rodríguez-Herrera, B, G. Ceballos, and R. A. Medellín. 2011. Ecological aspects of the tent building process by Ectophylla alba (Chiroptera: Phyllostomidae). Acta Chiropterologica, 13: 365–372. Google Scholar
  • 36. Rodríguez-Herrera, B., L. Víquez-R., E. Cordero-Schmidt, J. M. Sandoval, and A. Rodríguez-Durán. 2016. Energetics of tent roosting in bats: the case of Ectophylla alba and Uroderma bilobatum (Chiroptera: Phyllostomidae). Journal of Mammalogy, 97: 246–252. Google Scholar
  • 37. Rojas, D., O. M. Warsi, and L. M. Dávalos. 2016. Bats (Chiro ptera: Noctilionoidea) challenge a recent origin of extant Neotropical diversity. Systematic Biology, 65: 432–448. Google Scholar
  • 38. Rossoni, D. M., A. P. A. Assis, N. P. Giannini, and G. Marroig. 2017. Intense natural selection preceded the invasion of new adaptive zones during the radiation of New World leafnosed bats. Scientific Reports, 7: 11076. Google Scholar
  • 39. Sagot, M., B. Rodríguez-Herrera, and R. D. Stevens. 2013. Macro and microhabitat associations of the Peter´s tentroosting bat (Uroderma bilobatum): human-induced selection and colonization. Biotropica, 45: 511–519. Google Scholar
  • 40. Stoner K. E. 2000. Leaf selection by tent-roosting bat Artibeus watsoni in Asterogyne martiana palms in southwestern Costa Rica. Journal of Tropical Ecology, 16: 151–157. Google Scholar
  • 41. Thébault, E., and C. Fontaine. 2010. Stability of ecological communities and the architecture of mutualistic and trophic networks. Science, 329: 853–856. Google Scholar
  • 42. Timm, R. M., and J. Mortimer. 1976. Selection of roost site by the Honduran white bats Ectophylla alba (Chiroptera: Phyllo stomidae). Ecology, 57: 385–389. Google Scholar
  • 43. Villalobos-Chaves, D., F. Bonaccorso, B. Rodríguez-Herrera, E. Cordero-Schmidt, A. Arias-Aguilar, and C. Todd. 2015. The influence of sex and reproductive status on foraging behaviour and seed dispersal by Uroderma convexum (Chiroptera: Phyllostomidae). Pp. 281–301, in So cial ity in bats ( J. Ortega, ed.). Springer-Verlag, Berlin, 301 pp. Google Scholar
  • 44. Villalobos-Chaves, D., J. Vargas Murillo, E. Rojas Valerio, B. W. Keeley, and B. Rodríguez-Herrera. 2016. Understory bat roost, availability and occupation patterns in a Neotropical rainforest of Costa Rica. Revista de Biología Tropical, 64: 1333–1343. Google Scholar
  • 45. Villalobos-Chaves, D., M. Spínola-Parrillada, K. Heer, E. K. V. Kalko, and B. Rodríguez-Herrera. 2017. Implications of a specialized diet for the foraging behavior of the Honduran white bat, Ectophylla alba (Chiroptera: Phyllostomidae). Journal of Mammalogy, 98: 1193–1201. Google Scholar
  • 46. Voigt, C. C., I. Borissov, and D. H. Kelm. 2015. Bats fertilize roost trees. Biotropica, 47: 403–406. Google Scholar
  • 47. Zortéa, M., and S. Lucena Mendes. 1993. Folivory in the big fruit-eating bat, Artibeus lituratus (Chiroptera: Phyllostomidae) in eastern Brazil. Journal of Tropical Ecology, 9: 117–120.

Typ dokumentu

Bibliografia

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