Published July 20, 2022 | Version v1
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Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.

  • 1. Àrea d'Herpetologia, Museu de Granollers-Ciències Naturals, C/ Palaudàries, 102 08402 Granollers, Catalonia, Spain.
  • 2. GRECO, Institut de Ecologia Aquàtica, Facultat de Ciències, Campus Montillivi s/n, 17071, Girona, Spain.

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Amat, Fèlix, Escoriza, Daniel (2022): Figs. 23-34 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species. Zoological Studies 61 (28): 1-11, DOI: 10.6620/ZS.2022.61-28, URL: http://dx.doi.org/10.5281/zenodo.12827146

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References

  • Aiello-Lammens ME, Boria RA, Radosavljevic A, Vilela B, Anderson RP. 2015. spThin: an R package for spatial thinning of species occurrence records for use in ecological niche models. Ecography 38:541-545. doi:10.1111/ecog.01132.
  • Alford RA, Bradfield KS, Richards SJ. 2007. Global warming and amphibian losses. Nature 447:E3-4. doi:10.1038/nature05940.
  • Andreone F, Luiselli L. 2009. Are there shared general patterns of specific diversity, abundance, and guild structure in snake communities of tropical forests of Madagascar and Continental Africa? Terre Vie-Rev Ecol A 55:215-239.
  • Bouckaert R, Heled J, Kuhnert D, Vaughan T, Wu C-H, Xie D, Suchard MA, Rambaut A, Drummond AJ. 2014. BEAST 2: A Software Platform for Bayesian Evolutionary Analysis. PLoS Comp Biol 10:e1003537. doi:10.1371/journal.pcbi.1003537.
  • Brown JL, Hill DJ, Dolan AM, Carnaval AC, Haywood AM. 2018. PaleoClim, high spatial resolution paleoclimate surfaces for global land areas. Sci Data 5:180254. doi:10.1038/sdata.2018. 254.
  • Cabrielli AL, Stow AJ, Hughes L. 2014. A framework for assessing the vulnerability of species to climate change: a case study of the Australian elapid snakes. Biodiver Conserv 23:3019-3034. doi:10.1007/s10531-014-0760-0.
  • Chappell J, Shackleton NJ. 1986. Oxygen isotopes and sea level. Nature 324:137-140. doi:10.1038/324137a0.
  • Charlton T. 2018. King cobra. Natural history and captive management. Natural History Publications (Borneo). Kota Kinabalu, Malaysia.
  • Chauhan PR. 2008. Large mammal fossil occurrences and associated archaeological evidence in Pleistocene contexts of peninsular India and Sri Lanka. Quat Internat 192:20-42. doi:10.1016/ j.quaint.2007.06.034.
  • Devitt TJ, Devitt SEC, Hollingsworth BD, McGuire JA, Moritz C. 2013. Montane refugia predict population genetic structure in the large-blotched Ensatina salamander. Mol Ecol 22:1650-1665. doi:10.1111/mec.12196.
  • Dolan AM, Haywood AM, Hunter SJ, Tindall JC, Dowsett HJ, Hill DJ, Pickering SJ. 2015. Modelling the enigmatic late Pliocene glacial event-Marine Isotope Stage M2. Glob Planet Change 128:47-60. doi:10.1016/j.gloplacha.2015.02.001.
  • Dolia J. 2018. Notes on the distribution and natural history of the King Cobra (Ophiophagus hannah) (Cantor, 1836) from the Kumaon Hills of Uttarakhand, India. Herp Not 11:217-222.
  • Elith J, Graham CH, Anderson RP, Dudik M, Ferrier S, Guisan A et al. 2006. Novel methods improve prediction of species' distributions from occurrence data. Ecography 29:129-151. doi:10.1111/ j.2006.0906-7590.04596.x.
  • Fick SE, Hijmans RJ. 2017. WorldClim 2: new 1-km spatial resolution climate surfaces for global land areas. Int J Climatol 37:4302-4315. doi:10.1002/joc.5086.
  • Gent PR, Danabasoglu G, Donner LJ, Holland MM, Hunke EC, Jayne SR, Lawrence DM, Neale RB, Rasch PJ, Vertenstein M, Worley PH. 2011. The community climate system model version 4. J Climate 24:4973-4991. doi:10.1175/2011JCLI4083.1.
  • Glor RE, Warren D. 2011. Testing ecological explanations for biogeographic boundaries. Evolution 65:673-683. doi:10.1111/ j.1558-5646.2010.01177.x.
  • Guedes TB. 2021. A Matryoshka of scales: a single specimen reveals multiple new aspects of diet and distribution of snakes. Herpetol Notes 14:385-390.
  • Guisan A, Tingley R, Baumgartner JB, Naujokaitis-Lewis I, Sutcliffe PR, Tulloch AIT. 2013. Predicting species distributions for conservation decisions. Ecol Lett 16:1424-1435. doi:10.1111/ele. 12189.
  • Hall TA. 1999. BioEdit: A User-Friendly Biological Sequence Alignment Editor and Analysis Program for Windows 95/98/NT. Nuc Acid Symp Ser 41:95-98.
  • Head JJ, Holroyd PA, Hutchison JH, Ciochon RL. 2005. First report of snakes (Serpentes) from the late middle Eocene Pondaung Formation, Myanmar. J Vertebr Paleontol 25:246-250. doi:10.1671/0272-4634(2005)025[0246:FROSSF]2.0.CO;2.
  • Healey RM, Atutubo JR, Kusrini M, Howard L, Page F, Hallisey N, Karraker NE. 2020. Road mortality threatens endemic species in a national park in Sulawesi, Indonesia. Global Ecol Cons 2020:e01281. doi:10.1016/j.gecco.2020.e01281.
  • Heaney LR, Walsh Jr JS, Townsend Peterson A. 2005. The roles of geological history and colonization abilities in genetic differentiation between mammalian populations in the Philippine archipelago. J Biogeogr 32:229-247. doi:10.1111/j.1365-2699. 2004.01120.x.
  • Hellinger E. 1909. Neue begrundung der theorie quadratischer formen von unendlichvielen veranderlichen. J Reine Angew Math 1909:210-271. doi:10.1515/crll.1909.136.210.
  • Hernandez PA, Graham CH, Master LL, Albert DL. 2006. The effect of sample size and species characteristics on performance of different species distribution modeling methods. Ecography 29:773-785. doi:10.1111/j.0906-7590.2006.04700.x.
  • Hijmans RJ, Cameron SE, Parra JL, Jones PG, Jarvis A. 2005. Very high resolution interpolated climate surfaces for global land areas. Int J Climatol 25:1965-1978. doi:10.1002/joc.1276.
  • Hijmans RJ, Phillips S, Leathwick J, Elith J. 2021. dismo: Species Distribution Modeling. R package version 1.3-5. Available at: https://CRAN.R-project.org/package=dismo.
  • IUCN (International Union for Conservation of Nature). 2022. The IUCN Red List of Threatened Species. Available at: http://www. iucnredlist.org. Accessed March 2022.
  • Kazemi E, Nazarizadeh M, Fatemizadeh F, Khani A, Kaboli M. 2020. The phylogeny, phylogeography, and diversification history of the westernmost Asian cobra (Serpentes: Elapidae: Naja oxiana) in the Trans-Caspian region. Ecol Evol 11:2024-2039. doi:10.1002/ece3.7144.
  • Kriticos DJ, Webber BL, Leriche A, Ota N, Macadam I, Bathols J, Scott JK. 2012. CliMond: global high-resolution historical and future scenario climate surfaces for bioclimatic modelling. Methods Ecol Evol 3:53-64. doi:10.1111/j.2041-210X.2011. 00134.x.
  • Kundu S, Lalremsanga HT, Tyagi K, Biakzuala L, Kumar V, Chandra K. 2020. Mitochondrial DNA discriminates distinct populations of two deadly snakes (Reptilia: Elapidae) in Northeast India. Mitochondr DNA Part B 5:1530-1534. doi:10.1080/23802359.2 020.1742210.
  • Kuhn M. 2021. caret: Classification and Regression Training. R package version 6.0-90. Available at: https://CRAN.R-project. org/package=caret.
  • Lin L-H, Hua L, Qu Y-F, Gao J-F, Ji X. 2014. The phylogeographical pattern and conservation of the Chinese Cobra (Naja atra) across its range based on mitochondrial control region sequences. PLoS ONE 9:e106944. doi:10.1371/journal.pone.0106944.
  • Lim KK, Leong TM, Lim FL. 2011. The king cobra, Ophiophagus hannah (Cantor) in Singapore (Reptilia: Squamata: Elapidae). Nat Sing 4:143-156.
  • Lourenco-de-Moraes R, Lansac-Toha FM, Schwind LTF et al. 2019. Climate change will decrease the range size of snake species under negligible protection in the Brazilian Atlantic Forest hotspot. Sci Rep 9:1-14. doi:10.1038/s41598-019-44732-z.
  • Marshall BM, Strine CT, Jones MD, Theodoru A, Amber E, Waengsothorn S, Suwanwaree P, Goode M. 2018. Hits close to home: repeated persecution of King Cobras (Ophiophagus hannah) in Northeastern Thailand. Trop Conserv Sci 11:1-14. doi:10.1177/1940082918818401.
  • McCartney JA, Stevens NJ, O'Connor PM. 2014. The earliest colubroid-dominated snake Fauna from Africa: Perspectives from the Late Oligocene Nsungwe formation of Southwestern Tanzania. PLoS ONE 9:e90415. doi:10.1371/journal.pone. 0090415.
  • Miszei E, Szabolcs M, Szabo L, Boros Z, Mersini K, Roussos SA, Dimaki M, Ioannidis Y, Vegvari Z, Lengyel S. 2021. Determining priority areas for an endangered cold-adapted snake on warming mountaintops. Oryx 55:334-343. doi:10.1017/S0030605319000 322.
  • Muscarella R, Galante PJ, Soley-Guardia M, Boria RA, Kass JM, Uriarte M, Anderson RP. 2014. ENMeval: An R package for conducting spatially independent evaluations and estimating optimal model complexity for Maxent ecological niche models. Method Ecol Evol 5:1198-205. doi:10.1111/2041-210X.12261.
  • O'Shea M. 2018. The Book of Snakes. University of Chicago Press, Chicago, USA.
  • Otto-Bliesner BL, Marshall SJ, Overpeck JT, Miller GH, Hu A. 2006. Simulating Arctic climate warmth and icefield retreat in the last interglaciation. Science 311:1751-1753. doi:10.1126/science. 1120808.
  • Pearce J, Ferrier S. 2000. An evaluation of alternative algorithms for fitting species distribution models using logistic regression. J Ecol Mod 128:147-127. doi:10.1016/S0304-3800(99)00227-6.
  • Peterson AT, Nakazawa Y. 2008. Environmental data sets matter in ecological niche modelling: an example with Solenopsis invicta and Solenopsis richteri. Glob Ecol Biogeogr 17:135-144. doi:10.1111/j.1466-8238.2007.00347.x.
  • Phillips SJ, Anderson RP, Schapired RE. 2006. Maximum entropy modeling of species geographic distributions. Ecol Modell 190:231-259. doi:10.1016/j.ecolmodel.2005.03.026.
  • Phillips SJ, Elith J. 2013. On estimating probability of presence from use-availability or presence-background data. Ecology 94:1409-1419. doi:10.1890/12-1520.1.
  • Phillips SJ, Anderson RP, Dudik M, Schapire RE, Blair ME. 2017. Opening the black box: an open-source release of Maxent. Ecography 40:887-893. doi:10.1111/ecog.03049.
  • Prentice ML, Denton GH. 1988. Depp-sea oxygen isotope record, the global ice sheet system, and hominid evolution. In: Grine F (ed) The Evolutionary History of the Robust Australopithecines, pp. 383-403.
  • Pyron RA, Dushantha Kandambi HK, Hendry CR, Pushpamal V, Burbrink FT, Somaweera R. 2013. Genus-level phylogeny of snakes reveals the origins of species richness in Sri Lanka. Mol Phyl Evol 66:969-978. doi:10.1016/j.ympev.2012.12.004.
  • Quantum GIS Development Team. 2021. QGIS (Version 3.18-Zurich). Open Source Geospatial Foundation Project.
  • Raes N, Roos MC, Slik JF, Van Loon EE, Steege HT. 2009. Botanical richness and endemicity patterns of Borneo derived from species distribution models. Ecography 32:180-192. doi:10.1111/j.1600- 0587.2009.05800.x.
  • Rage JC. 1988. The oldest known colubrid snakes. The state of the art. Acta Zool Cracov 31:457-474.
  • Rambaut A, Drummond AJ, Xie D, Suchard MA. 2018. Posterior summarization in Bayesian phylogenetics using Tracer 1.7. Syst Biol 67:901-904. doi:10.1093/sysbio/syy032.
  • Reading CJ, Luiselli LM, Akani GC, Bonnet X, Amori G, Ballouard JM, Filippi E, Naulleau G, Pearson D, Rugiero L. 2010. Are snake populations in widespread decline? Biol Lett 6:777-780. doi:10.1098/rsbl.2010.0373.
  • Salmeron-Gomez R, Garcia Perez J, Lopez Martin MDM, Garcia CG. 2016. Collinearity diagnostic applied in ridge estimation through the variance inflation factor. J Appli Stat 43:1831-1849. doi:10.1 080/02664763.2015.1120712.
  • Sampaio ILR, Santos CP, Franca RC, Pedrosa IMMC, Sole M, Franca FRG. 2018. Ecological diversity of a snake assemblage from the Atlantic Forest at the south coast of Paraiba, northeast Brazil. ZooKeys 787:107-125. doi:10.3897/zookeys.787.26946.
  • Scanlon JD, Archer M, Lee MSY. 2003. Mid-Tertiary elapid snakes from northern Australia: early steps in a continent-wide adaptive radiation. Geobios 36:573-601. doi:10.1016/S0016- 6995(03)00056-1.
  • Schoener TW. 1968. The Anolis lizards of Bimini: resource partitioning in a complex fauna. Ecology 49:704-726. doi:10.2307/1935534.
  • Shankar PG, Ganesh SR, Whitaker RE, Prashanth P. 2013. King cobra Ophiophagus hannah encounters in human-modified rainforest of the Western Ghats, India. Hamadryad 36:62-68.
  • Shankar PG, Swamy P, Williams RC, Ganesh SR, Mosse M, Hoglund J, Das I, Sahooh G, Vijayakumar SP, Shanker K, Wuster W, Duttaa SK. 2021. King or royal family? Testing for species boundaries in the King Cobra, Ophiophagus hannah (Cantor, 1836), using morphology and multilocus DNA analyses. Mol Phyl Evol 165:107300. doi:10.1016/j.ympev.2021.107300.
  • Sharma R, Goossens B, Heller R, Rasteiro R, Othman N, Bruford MW, Chikhi L. 2018. Genetic analyses favour an ancient and natural origin of elephants on Borneo. Sci Rep 8:1-11. doi:10.1038/s41598-017-17042-5.
  • Stine RA. 1995. Graphical interpretation of variance inflation factors. Amer Stat 49:53-56.
  • Stuart B, Wogan G, Grismer L, Auliya M, Inger RF, Lilley R, Chan- Ard T, Thy N, Nguyen TQ, Srinivasulu C, Jelic D. 2012. Ophiophagus hannah. The IUCN Red List of Threatened Species 2012: e.T177540A1491874.
  • Svenning JC, Normand S, Kageyama M. 2008. Glacial refugia of temperate trees in Europe: insights from species distribution modelling. J Ecol 96:1117-1127. doi:10.1111/j.1365-2745.2008. 01422.x.
  • Szyndlar Z, Rage JC. 1990. West Paleartic cobras of the genus Naja (Sepentes: Elapidae): interrelationships among extinct and extant species. Amphib-Reptil 11:385-400. doi:10.1163/156853890X00078.
  • Terribile LC, Olalla-Tarraga MA, Morales-Castilla I, Rueda M, Vidanes RM, Rodriguez MA, Felizola Diniz-Filho JA. 2009. Global richness patterns of venomous snakes reveal contrasting influences of ecology and history in two different clades. Oecologia 159:617-626. doi:10.1007/s00442-008-1244-2.
  • Travouillon KJ, Archer M, Hand SJ, Godthelp H. 2006. Multivariate analyses of Cenozoic mammalian faunas from Riversleigh, north-western Queensland. Alcheringa Spec Issue 1:323-349. doi:10.1080/03115510609506871.
  • Uetz P, Hosek J. 2020-2015. The Reptile Database. Available at: http://www.reptile-database.org. Accessed 5 April 2020.
  • Voris HK. 2000. Maps of Pleistocene sea levels in Southeast Asia: shorelines, river system and time durations. J Biogeogr 27:1153-1167. doi:10.1046/j.1365-2699.2000.00489.x.
  • Warren D, Dinnage R. 2021. ENMTools: Analysis of Niche Evolution using Niche and Distribution Models. R package version 1.0.4. Available at: https://cran.r-project.org/web/packages/ENMTools. Accessed 1 October 2021.
  • Warren DL, Cardillo M, Rosauer DF, Bolnick DI. 2014. Mistaking geography for biology: inferring processes from species distributions. Trends Ecol Evol 29:572-580. doi:10.1016/j.tree. 2014.08.003.
  • Whytock RC, Swiezewski J, Zwerts JA, Bara-Slupski T, Koumba Pambo AF, Rogala M, Bahaa-el-din L, Boekee K, Brittain S, Cardoso AW, Henschel P. 2021. Robust ecological analysis of camera trap data labelled by a machine learning model. Methods Ecol Evol 12:1080-1092. doi:10.1111/2041-210X.13576.
  • Wisz MS, Hijmans RJ, Li J, Peterson AT, Graham CH, Guisan A, NCEAS Predicting Species Distributions Working Group. 2008. Effects of sample size on the performance of species distribution models. Divers Distrib 14:763-773. doi:10.1111/j.1472-4642. 2008.00482.x.
  • Wurster CM, Bird MI, Bull ID, Creed F, Bryant C, Dungait JA, Paz V. 2010. Forest contraction in north equatorial Southeast Asia during the last glacial period. PNAS USA 107:15508-15511. doi:10.1073/pnas.1005507107.
  • Zhou Z, Jaing Z. 2004. International trade status and crisis for snake species in China. Conserv Biol 18:1386-1394.