Plant Diversity ›› 2016, Vol. 38 ›› Issue (06): 264-270.DOI: 10.1016/j.pld.2016.12.001
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Douglas E. Soltisa,b,c, Pamela S. Soltisa,b
Received:
2016-10-24
Revised:
2016-11-30
Online:
2016-12-25
Published:
2021-11-05
Contact:
Douglas E. Soltis
Supported by:
Douglas E. Soltis, Pamela S. Soltis. Mobilizing and integrating big data in studies of spatial and phylogenetic patterns of biodiversity[J]. Plant Diversity, 2016, 38(06): 264-270.
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Allen, J., Germain-Aubrey, C., Barve, N., Neubig, K.M., Majure, L., Whitten, W.M., Abbott, J.R., Laffan, S.W., Mishler, B., Owens, H., Guralnick, R., Soltis, D.E., Soltis P.S. Spatial phylogenetics of the vascular plants of Florida: the effects of tree uncertainty and ultrametricity. Glob. Ecol. Biogeogr., in prep. Cavner, J.A., Stewart, A.M., Grady, C.J., Beach, J.H., 2012. An innovative web processing services based GIS architecture for global biogeographic analyses of species distributions. OSGeo J. 10, 15-25. Collins, T., Kearney, M., Maddison, D., 2013 Mar 7. The ideas lab concept, assembling the tree of life, and AVAToL. PLOS Curr. Tree Life. Edition 1. Darwin, C., 1859. The Origin of Species by Means of Natural Selection, or the Preservation of Favoured Races in the Struggle for Life. Cambridge Univ. Press, Cambridge, UK. Dobzhansky, T., 1973. Nothing in biology makes sense except in the light of evolution. Amer. Biol. Teach. 35, 125-129. Elith, J., Leathwick, J.R., 2009. Species distribution models: ecological explanation and prediction across space and time. Annu. Rev. Ecol. Evol. Syst. 40, 677-697. Faith, D.P., 1992. Conservation evaluation and phylogenetic diversity. Biol. Cons. 61, 1-10. Faith, D.P., 2007. Phylogeny and conservation. Syst. Biol. 56, 690-694. Faith, D.P., 2008. Phylogenetic diversity and conservation. In: Carroll, S.P., Fox, C.W.(Eds.), Conservation Biology: Evolution in Action. Oxford University Press, Oxford, UK, pp. 99-115. Faith, D.P., Magallón, S., Hendry, A.P., Conti, E., Yahara, T., Donoghue, M.J., 2010. Ecosystem services: an evolutionary perspective on the links between biodiversity and human well-being. Curr. Op. Env. Sust. 2, 66-74. Gonzalez-Orozco, C.E., Ebach, M.C., Laffan, S., Thornhill, A.H., Knerr, N.J., SchmidtLebuhn, A.N., Cargill, C.C., Clements, M., Nagalingum, N.S., Mishler, B.D., Miller, J.T., 2014. Quantifying phytogeographical regions of Australia using geospatial turnover in species composition. Plos One 9 e92558. Gonzalez-Orozco, C.E., Pollock, L.J., Thornhill, A.H., Mishler, B.D., Knerr, N., Laan, S.W., Miller, J.T., Rosauer, D.F., Faith, D.P., Nipperess, D.A., Kujala, H., Linke, S., Butt, N., Külheim, C., Crisp, M.D., Gruber, B., 2016. Phylogenetic approaches reveal biodiversity threats under climate change. Nat. Clim. Change 6, 1110-1114. Harmon, L.J., Baumes, J., Hughes, C., Soberon, J., Specht, C.D., Turner, W., Thacker, R.W., 2013. Arbor: comparative analysis workflows for the tree of life.Plos Curr. 5 ecurrents.tol.099161de5eabdee073fd3d21a44518dc. Hijmans, R.J., Cameron, S.E., Parra, J.L., Jones, P.G., Jarvis, A., 2005. Very high resolution interpolated climate surfaces for global land areas. Int. J. Climatol. 25, 1965-1978. Hinchliff, C.E., Smith, S.A., Allman, J.F., Burleigh, J.G., Chaudhary, R., Coghill, L.M., Crandall, K.A., Deng, J., Drew, B.T., Gazis, R., Gude, K., Hibbett, D.S., Katz, L.A., Laughinghouse, H.D., McTavish, E.J., Midford, P.E., Owen, C.L., Reed, R.H., Rees, J.A., Soltis, D.E., Williams, T., Cranston, K.A., 2015. Synthesis of phylogeny and taxonomy into a comprehensive tree of life. Proc. Natl. Acad. Sci. U.S.A. 112, 12764-12769. Laffan, S.W., Lubarsky, E., Rosauer, D.F., 2010. Biodiverse, a tool for the spatial analysis of biological and related diversity. Ecography 33, 643-647. Matsunaga, A., Thompson, A., Figueiredo, R.J., Germain-Aubrey, C.C., Collins, M., Beaman, R.S., MacFadden, B.J., Riccardi, G., Soltis, P.S., Page, L.M., Fortes, J.A.B., 2013. A Computational- and Storage-Cloud for Integration of Biodiversity Collections. In: Proceedings of the 2013 IEEE 9th International Conference on eScience, Beijing, China, pp. 78-87. http://dx.doi.org/10.1109/eScience.2013.48. Mishler, B.D., Knerr, N., González-Orozco, C.E., Thornhill, A.H., Laffan, S.W., Miller, J.T., 2014. Phylogenetic measures of biodiversity and neo- and paleoendemism in Australian Acacia. Nat. Comm. 5, 5473. Muñoz, M.E.S., Giovanni, R., Siqueira, M.F., Sutton, T., Brewer, P., Pereira, R.S., Canhos, D.A.L., Canhos, V.P., 2009. openModeller: a generic approach to species' potential distribution modelling. GeoInformatica. http://dx.doi.org/10.1007/s10707-009-0090-7. Noss, R.F., Platt, W.J., Sorrie, B.A., Weakley, A.S., Means, D.B., Costanza, J., Peet, R.K., 2015. How global biodiversity hotspots may go unrecognized: lessons from the North American Coastal plain. Divers. Distrib. 21, 236-244. Page, L.M., MacFadden, B.J., Fortes, J.A., Soltis, P.S., Riccardi, G., 2015. Digitization of biodiversity collections reveals biggest data on biodiversity. BioScience 65, 841-842. Peterson, A.T., 2003. Predicting the geography of species' invasions via ecological niche modeling. Quart. Rev. Biol. 78, 419-433. Phillips, S.J., Anderson, R.P., Schapire, R.E., 2006. Maximum entropy modeling of species geographic distributions. Ecol. Model. 190, 231-259. Stebbins, G.L., 1950. Variation and Evolution in Plants. Columbia University Press. |
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