Subtropical species of Sinningia (Gesneriaceae): Distribution patterns and limiting environmental factors
Tài liệu tham khảo
Araújo, 2015
Bachman, 2011, Supporting Red List threat assessments with GeoCAT: geospatial conservation assessment tool, ZooKeys, 150, 117, 10.3897/zookeys.150.2109
Behling, 2001, Tropical rain forest and climate dynamics of the Atlantic lowland southern Brazil, during late Quaternary, Quat. Res., 56, 383, 10.1006/qres.2001.2264
Behling, 2004, Late Quaternary Araucaria forest, grassland (Campos), fire and climate dynamics, studied by high-resolution pollen, charcoal and multivariate analysis of the Cambará do Sul core in southern Brazil, Palaeogeogr. Palaeoclimatol. Palaeoecol., 203, 277, 10.1016/S0031-0182(03)00687-4
Bilenca, 2004
Brown, 1987, Biogeography and evolution of neotropical butterflies, 66
Cabrera, 1980
Carnaval, 2008, Historical climate modeling predicts patterns of current biodiversity in the Brazilian Atlantic forest, J. Biogeogr., 35, 1187, 10.1111/j.1365-2699.2007.01870.x
Carnaval, 2009, Stability predicts genetic diversity in the Brazilian Atlantic Forest hotspot, Science, 323, 785, 10.1126/science.1166955
Chautems, 2010, Taxonomic revision of Sinningia Nees (Gesneriaceae) IV: six new species from Brazil and a long overlooked taxon, Candollea, 65, 241, 10.15553/c2010v652a6
Chautems, A., 2008. Gesneriaceae. In: Zuloaga, F.O., Morrone, O., Belgrano, M. (Eds.), Catálogo de las Plantas Vasculares del Cono Sur. Monogr. Syst. Bot. Mo. Bot. Gard. 107(3), pp. 2338–2345.
Ferreira, 2014, Sinningia ramboi (Gesneriaceae) a new species from South Brazil, Syst. Bot., 39, 975, 10.1600/036364414X682229
Fontoura, 2012, Floristics and environmental factors determining the geographic distribution of epiphytic bromeliads in the Brazilian Atlantic Rain Forest, Flora, 207, 662, 10.1016/j.flora.2012.05.003
Gonçalves, 2014, Floristic variation in ecotonal areas: patterns, determinants and biogeographic origins of subtropical forests in South America, Aust. Ecol., 39, 122, 10.1111/aec.12051
Hijmans, 2005, Very high resolution interpolated climate surfaces for global land areas, Int. J. Climatol., 25, 1965, 10.1002/joc.1276
Hoorn, 2013, Biodiversity from mountain building, Nat. Geosci., 6, 154, 10.1038/ngeo1742
Huggett, 2004
Jeske-Pieruschka, 2011, New insights into vegetation, climate and fire history of southern Brazil revealed by a 40,000 years-old environmental record from the State Park Serra do Tabuleiro, Veg. Hist. Archaeobotany, 22, 299, 10.1007/s00334-012-0382-y
Longhi-Wagner, 2012, Floristic affinities in montane grasslands in eastern Brazil, Syst. Biodivers., 10, 537, 10.1080/14772000.2012.753487
Martinelli, 2008, Bromeliaceae da Mata Atlântica Brasileira: lista de espécies, distribuição e conservação, Rodriguésia, 59, 209, 10.1590/2175-7860200859114
Moreno, J.A., 1961. Clima do Rio Grande do Sul. Porto Alegre.
Morrone, 2001
Nery, 2005, Dinâmica climática da Região Sul do Brasil, Rev. Bras. Clim., 1, 61
Nimer, 1990, Clima, 151
Oliveira-Filho, 2000, Patterns of floristic differentiation among Atlantic forests in Southeastern Brazil and the influence of climate, Biotropica, 32, 793, 10.1111/j.1744-7429.2000.tb00619.x
Overbeck, 2007, Brazil's neglected biome: the South Brazilian Campos, Perspect. Plant Ecol. Evol. Syst., 9, 101, 10.1016/j.ppees.2007.07.005
Peres-Neto, 2001, How well do multivariate data sets match?: the advantages of a Procrustean superimposition approach over the Mantel test, Oecologia, 129, 169, 10.1007/s004420100720
Perret, 2003, Systematics and evolution of tribe Sinningieae (Gesneriaceae): evidence from phylogenetic analyses of six plastid DNA regions and nuclear ncpGS, Am. J. Bot., 90, 445, 10.3732/ajb.90.3.445
Perret, 2006, Dispersal-vicariance analyses in the tribe Sinningieae (Gesneriaceae): a clue to understanding biogeographical history of the Brazilian Atlantic forest, Ann. Missouri Bot. Gard., 93, 340, 10.3417/0026-6493(2006)93[340:DAITTS]2.0.CO;2
Perret, 2013, Temporal and spatial origin of Gesneriaceae in the New World inferred from plastid DNA sequences, Bot. J. Linn. Soc., 171, 61, 10.1111/j.1095-8339.2012.01303.x
Peel, 2007, Updated world map of the Köppen-Geiger climate classification, Hydrol. Earth Syst. Sci., 11, 1633, 10.5194/hess-11-1633-2007
Pillar, 1996, On randomization testing in vegetation science: multifactor comparisons of relevé groups, J. Veg. Sci., 7, 585, 10.2307/3236308
Pillar, 1997, Multivariate exploratory analysis and randomization testing with MULTIV, Coenoses, 12, 145
Pillar, 1998, Sampling sufficiency in ecological surveys, Abstr. Bot., 22, 37
Pillar, 1999, The bootstrapped ordination re-examined, J. Veg Sci., 10, 895, 10.2307/3237314
Pillar, 1999, How sharp are classifications?, Ecology, 80, 2508, 10.1890/0012-9658(1999)080[2508:HSAC]2.0.CO;2
Prado, 2000, Seasonally dry forests of tropical South America: from forgotten ecosystems to a new phytogeographic unit, Edinb. J. Bot., 57, 437, 10.1017/S096042860000041X
QGis DT, 2013
R Development Core Team, 2013
Rabosky, 2012, Clade age and species richness are decoupled across the eukaryotic tree of life, PLoS Biol., 10, e1001381, 10.1371/journal.pbio.1001381
Rambo, 1951, O elemento andino no pinhal riograndense, An. Bot. Herb. Barb. Rodr., 3, 3
Rambo, 1954
Rambo, 1961, Migration routes of the South Brazilian rain forest, Pesquisas, 12, 5
Soriano, 1989
Spichiger, 2004, Geographical zonation in the Neotropics of tree species characteristic of the Paraguay-Paraná Basin, J. Biogeogr., 31, 1489, 10.1111/j.1365-2699.2004.01071.x
Waechter, 2002, Padrões geográficos na flora atual do Rio Grande do Sul, Ciênc. Ambient, 24, 93
Weber, 2013, A new formal classification of Gesneriaceae, Selbyana, 31, 68
Wiehler, 1983, A synopsis of the neotropical Gesneriaceae, Selbyana, 6, 1
Wiens, 2004, Historical biogeography, ecology and species richness, Trends Ecol. Evol., 19, 639, 10.1016/j.tree.2004.09.011
