Published July 21, 2021 | Version v1
Journal article Restricted

Ecological niche divergence between the brown recluse spiders Loxosceles laeta and L. surca (Sicariidae) in Chile

Description

Taucare-Ríos, Andrés, Piel, William H. (2021): Ecological niche divergence between the brown recluse spiders Loxosceles laeta and L. surca (Sicariidae) in Chile. Journal of Natural History 55 (17-18): 1177-1193, DOI: 10.1080/00222933.2021.1937744, URL: http://dx.doi.org/10.1080/00222933.2021.1937744

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Linked records

Additional details

Identifiers

LSID
urn:lsid:plazi.org:pub:FF93FF85FFD97E46FC075A1EFFCB6958

References

  • Aguirre-Gutierrez J, Serna-Chavez HM, Villalobos-Arambula AR, Rosa JAP, Raes N. 2015. Similar but not equivalent: ecological niche comparison across closely-related Mexican white pines. Divers Distrib. 21(3):245-257. doi:10.1111/ddi.12268.
  • Alfaro C, Veloso C, Torres-Contreras H, Solis R, Canals M. 2013. Thermal niche overlap of the brown recluse spider Loxosceles laeta (Araneae; Sicariidae) and its possible predator, the spitting spider Scytodes globula (Scytodidae). J Therm Biol. 38:502-507. doi:10.1016/j.jtherbio.2013.08.003.
  • Aran-Sekul T, Percic-Sarmiento I, Valencia V, Olivero N, Rojas JM, Araya JE, Taucare-Rios A, Catalan A. 2020. Toxicological Characterization and Phospholipase D Activity of the Venom of the Spider Sicarius thomisoides. Toxins. 12:702. doi:10.3390/toxins12110702.
  • Barraclough TG, Vogler AP, Harvey PH. 1998. Revealing the factors that promote speciation. Proc R Soc B: Biol Sci. 353:241-249.
  • Binford GJ, Callahan MS, Bodner MR, Rynerson MR, Nunez PB, Ellison CE, Duncan RP. 2008. Phylogenetic relationships of Loxosceles and Sicarius spiders are consistent with Western Gondwanan vicariance. Mol Phylogenet Evol. 49(2):538-553. doi:10.1016/j.ympev.2008.08.003.
  • Brescovit AD, Taucare-Rios A, Magalhaes ILF, Santos AJ. 2017. On Chilean Loxosceles (Araneae: Sicariidae): first description of the males of L. surca and L. coquimbo, new records of L. laeta and three remarkable new species from coastal deserts. Eur J Taxon. 388:1-20.
  • Canals M, Alfaro C, Veloso C, Torres-Contreras H, Solis R. 2013. Tolerancia a la desecacion y sobreposicion del nicho termico entre la arana del rincon Loxosceles laeta y un posible control biologico, la arana tigre Scytodes globula. Rev Parasitologia Latinoam. 72:52-60.
  • Canals M, Taucare-Rios A, Brescovit AD, Pena-Gomez F, Bizama G, Canals A, Moreno L, Bustamante RO. 2016. Niche modelling of the Chilean recluse spider Loxosceles laeta and araneophagic spitting spider Scytodes globula and risk for loxoscelism in Chile. Med Vet Entomol. 30(4):383-391. doi:10.1111/mve.12184.
  • Carvajal MA, Faundez EI. 2017. Sobre la presencia de la arana de rincon Loxosceles laeta (Nicolet, 1849) (Araneae: Sicariidae) en Magallanes (Chile). Arquivos Entomoloxicos. 18:355-359.
  • Duncan RP, Rynerson MR, Ribera C, Binford GJ. 2010. Diversity of Loxosceles spiders in Northwestern Africa and molecular support for cryptic species in the Loxosceles rufescens lineage. Mol Phylogenet Evol. 55(1):234-248. doi:10.1016/j.ympev.2009.11.026.
  • Duran-Barron CG, Francke OF, Perez-Ortiz TM. 2009. Diversidad de aranas (Arachnida: Araneae) asociadas a viviendas de la ciudad de Mexico (Area metropolitana). Rev Mex Biodivers. 80:55-69.
  • Elith J, Leathwick JR. 2009. Species distribution models: ecological explanation and prediction across space and time. Annu Rev Ecol Syst. 40:677-697. doi:10.1146/annurev.ecolsys.110308.120159.
  • Gertsch WJ. 1967. The spider genus Loxosceles in South America (Araneae, Scytodidae). Bull Am Mus Nat Hist. 136:117-174.
  • Graham CH, Ron SR, Santos JC, Schneider CJ, Moritz M. 2004. Integrating phylogenies and environmental niche models to explore speciation mechanisms in dendrobatid frogs. Evolution. 58:1781-1793. doi:10.1111/j.0014-3820.2004.tb00461.x.
  • Gregor F, Povolny D. 1958. Versuch einer Klassifikation der synanthropen Fliegen. J Hyg Epidemiol Microbiol Immunol. 2:205-216.
  • Hedin MC, Maddison WP. 2001. A combined molecular approach to phylogeny of the jumping spider subfamily Dendryphantinae (Araneae, Salticidae). Mol Phylogenet Evol. 18:386-403. doi:10.1006/mpev.2000.0883.
  • Hijmans RJ, Graham CH. 2006. The ability of climate envelope models to predict the effect of climate change on species distributions. Global Change Biol. 12:1-10.
  • Hijmans RJ, Guarino L, Jarvis A, O'Brien R, Mathur P, Bussink C, Cruz M, Barrantes I, Rojas E. 2005. DIVA-GIS. Version 5.4.0.1. [accessed 2021 Jan 7]. http://www.diva-gis.org/
  • Johnson M, Zaretskaya I, Raytselis Y, Merezhuk Y, McGinnis S, Madden TL. 2008. NCBI BLAST: a better web interface. Nucleic Acids Res. 36:W5-W9. doi:10.1093/nar/gkn201.
  • Kurnaz M, Yousefkhani SSH. 2020. Ecological niche divergence between Darevskia rudis and D. bithynica (Lacertidae) in Turkey. Biologia. 75(9):1307-1312. doi:10.2478/s11756-019-00374-0.
  • Levins R. 1968. Evolution in changing environments: some theoretical explorations. Princeton Univ. Press.
  • Maddison WP, Maddison DR. 2019. Mesquite: a modular system for evolutionary analysis. Version 3.61. [accessed 2021 Jan 15]. http://www.mesquiteproject.org .
  • Magalhaes ILF, Brescovit AD, Santos AJ. 2017. Phylogeny of Sicariidae spiders (Araneae: Haplogynae), with a monograph on Neotropical Sicarius. Zool J Linn Soc. 179(4):767-864.
  • Magalhaes ILF, Neves DM, Santos FR, Vidigal THDA, Brescovit AD, Santos AJ. 2019. Phylogeny of Neotropical Sicarius sand spiders suggests frequent transitions from deserts to dry forests despite antique, broad-scale niche conservatism. Mol Phylogenet Evol. 140:106569. doi:10.1016/j. ympev.2019.106569.
  • Mandle L, Warren DL, Hoffmann MH, Peterson AT, Schmitt J, von Wettberg EJ. 2010. Conclusions about niche expansion in introduced impatiens walleriana populations depend on method of analysis. Plos One. 5:e15297. doi:10.1371/journal.pone.0015297.
  • Manriquez JJ, Silva S. 2009. Loxoscelismo cutaneo y cutaneo-visceral: revision sistematica. Rev Chil Infectologia. 26(5):420-432. doi:10.4067/S0716-10182009000600004.
  • Navarro-Rodriguez CI, Valdez-Mondragon A. 2020. Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1+ ITS2). Eur J Taxon. 704:1-30.
  • Nuorteva P. 1963. Synanthropy of Blowflies (Diptera: Calliphoridae) in Finlandia. Ann Entomologicae Fennicae. 29:1-49.
  • Pearson RG, Raxworthy CJ, Nakamura M, Peterson AT. 2007. Predicting species distributions from small numbers of occurrence records: a test case using cryptic geckos in Madagascar. J Biogeogr. 34:102-117. doi:10.1111/j.1365-2699.2006.01594.x.
  • Petersen I, Agnarsson I, Coddington JA, Binford GJ. 2021. Biogeography of recluse spiders (Loxosceles) from Caribbean caves to continents. In prep.
  • Peterson AT, Soberon J, Sanchez-Cordero V. 1999. Conservatism of ecological niches in evolutionary time. Science. 285:1265-1267. doi:10.1126/science.285.5431.1265.
  • Phillips SJ, Anderson RP, Schapire RE. 2006. Maximum entropy modeling of species geographic distributions. Ecol Model. 190:231-259.
  • Phillips SJ, Dudik M, Schapire RE. 2009. Maxent software for modeling species niches and distributions. [accessed 2021 Feb 15]. http://biodiversityinformatics.amnh.org/open_source/maxent/
  • Planas E, Ribera C. 2014. Uncovering overlooked island diversity: colonization and diversification of the medically important spider genus Loxosceles (Arachnida: Sicariidae) on the Canary Islands. J Biogeogr. 41(7):1255-1266. doi:10.1111/jbi.12321.
  • Raxworthy CJ, Ingram C, Rabibisoa N, Pearson R. 2007. Species delimitation applications for ecological niche modeling: a review and empirical evaluation using Phelsuma day Gecko Groups from Madagascar. Syst Biol. 56:907-923. doi:10.1080/10635150701775111.
  • Raxworthy CJ, Martinez-Meyer E, Horning N, Nussbaum RA, Schneider GE, Ortega-Huerta MA, Peterson AT. 2003. Predicting distributions of known and unknown reptile species in Madagascar. Nature. 426:837-841. doi:10.1038/nature02205.
  • Reiskind J. 1969. Stereo typed burying behavior in Sicarius. Am Zool. 9(1):195-200. doi:10.1093/icb/ 9.1.195.
  • Schenone H. 2003. Cuadros toxicos producidos por mordeduras de arana en Chile: latrodectismo y loxoscelismo. Rev Medica Chile. 131:437-444. doi:10.4067/S0034-98872003000400013.
  • Schenone H, Rojas A, Villarroel F, Suarez G. 1970. Prevalence of Loxosceles laeta in houses in central Chile. Am J Trop Med Hyg. 16:564-567. doi:10.4269/ajtmh.1970.19.564.
  • Schoener TW, Gorman GC. 1968. Some niche differences in three lesser Antillean lizards of the genus Anolis. Ecology. 49:819-830. doi:10.2307/1936533.
  • Shea K, Chesson P. 2002. Community ecology theory as a framework for biological invasions. Trends Ecol Evol. 17:170-176. doi:10.1016/S0169-5347(02)02495-3.
  • Stamatakis A. 2014. RAxML version 8: a tool for phylogenetic analysis and post- analysis of large phylogenies. Bioinformatics. 30(9):1312-1313. doi:10.1093/bioinformatics/btu033.
  • Swanson DL, Vetter RS. 2009. Loxoscelism. Clin Dermatol. 24:213-221. doi:10.1016/j. clindermatol.2005.11.006.
  • Tahami MS, Zamani A, Sadeghi S, Ribera C. 2017. A new species of Loxosceles Heineken & Lowe, 1832 (Araneae: Sicariidae) from Iranian caves. Zootaxa. 4318(2):377-387. doi:10.11646/ zootaxa.4318.2.10.
  • Taucare-Rios A. 2011. Loxosceles surca (Gertsch, 1967) (Araneae: Sicariidae) en el norte de Chile. Bol Biodivers Chile. 5:45-49.
  • Taucare-Rios A, Brescovit A, Canals M. 2013. Synanthropic spiders (Arachnida: Araneae) from Chile. Rev Iberica Aracnologia. 23:49-56.
  • Taucare-Rios A, Piel WH. 2020. Predation on the gecko Phyllodactylus gerrhopygus (Wiegmann) (Squamata: Gekkonidae) by the six-eyed sand spider Sicarius thomisoides (Walckenaer) (Araneae: Sicariidae). Rev Soc Entomol Argent. 79(2):48-51. doi:10.25085/rsea.790207.
  • Taucare-Rios A, Sielfeld W. 2013. Aranas (Arachnida: Araneae) del extremo norte de Chile. Bol Museo Nacional Hist Nat. 62:7-27.
  • Uribe-M N, Wolff M, de Carvalho CJ. 2010. Synanthropy and ecological aspects of Muscidae (Diptera) in a tropical dry forest ecosystem in Colombia. Revista Bras Entomol. 54(3):462-470. doi:10.1590/ S0085-56262010000300018.
  • Valdez-Mondragon A, Navarro-Rodriguez CI, Solis-Catalan KP, Cortez-Roldan MR, Juarez-Sanchez AR. 2019. Under an integrative taxonomic approach: the description of a new species of the genus Loxosceles (Araneae, Sicariidae) from Mexico City. Zookeys. 892:93-133. doi:10.3897/ zookeys.892.39558.
  • Vetter RS. 2015. The brown recluse spider. Ithaca (NY): Cornell University Press.
  • Vidergar N, Toplak N, Kuntner M. 2014. Streamlining DNA barcoding protocols: automated DNA extraction and a new cox1 primer in arachnid systematics. PLoS One. 9(11):e113030. doi:10.1371/ journal.pone.0113030.
  • Vink CJ, Duperre N, McQuillan BN. 2011. The black-headed jumping spider, Trite planiceps Simon, 1899 (Araneae: Salticidae): redescription including cytochrome c oxidase subunit 1 and paralogous 28S sequences. NZ J Zool. 38(4):317-331. doi:10.1080/03014223.2011.613939.
  • Warren D, Glor R, Turelli M. 2010. ENMTools: a toolbox for comparative studies of environmental niche models. Ecography. 33:607-611.
  • Warren DL, Glor RE, 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.
  • Wiens JJ, Graham CH. 2005. Niche conservatism: integrating evolution, ecology, and conservation biology. Annu Rev Ecol Evol Syst. 36:519-539. doi:10.1146/annurev.ecolsys.36.102803.095431.
  • World Spider Catalog. 2021. World Spider Catalog. Version 22.0. Natural History Museum Bern. [accessed 2021 Feb 15]. http://wsc.nmbe.ch.