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Original Articles

Liana distribution in response to urbanization in temperate forests

, &
Pages 104-113 | Received 07 Apr 2014, Accepted 26 Sep 2014, Published online: 03 Dec 2015

Literature cited

  • Aronson, M. F. J., S. N. Handel & S. E. Clemants, 2007. Fruit type, life form and origin determine the success of woody plant invaders in an urban landscape. Biological Invasions, 9: 465–475.
  • Bergeron, A. & S. Pellerin, 2014. Pteridophytes as indicators of urban forest integrity. Ecological Indicators, 38: 40–49.
  • Bradley, B. A., D. S. Wilcove & M. Oppenheimer, 2010. Climate change increases risk of plant invasion in the Eastern United States. Biological Invasions, 12: 1855–1872.
  • Bräuniger, C., S. Knapp, I. Kühn & S. Klotz, 2010. Testing taxonomic and landscape surrogates for biodiversity in an urban setting. Landscape and Urban Planning, 97: 283–295.
  • Brouillet, L., F. Coursol, M. Favreau, M. Anions, P. Bélisle & P. Desmet, 2010. VASCAN, the Database of Vascular Plants of Canada. Online [URL] http://data.canadensys.net/vascan (Accessed on 9 December 2013).
  • Burnham, R. J., 2013. Censusing lianas in mesic biomes of eastern regions (CLIMBERS). Online [URL] http://climbers.lsa.umich.edu/ (Accessed on 6 May 2013).
  • Cadenasso, M. L. & S. T. A. Pickett, 2001. Effect of edge structure on the flux of species into forest interiors. Conservation Biology, 15: 91–97.
  • Canadian Digital Elevation Model, 2007. Online [URL] http://www.geobase.ca (Accessed on 11 November 2011).
  • Collinge, S. K., 1996. Ecological consequences of habitat fragmentation: Implications for landscape architecture and planning. Landscape and Urban Planning, 36: 59–77.
  • Czerniawska-Kusza, I., G. Kusza & M. Duzyński, 2004. Effect of deicing salts on urban soils and health status of roadside trees in the Opole region. Environmental Toxicology, 19: 296–301.
  • Dewalt, S. J., S. A. Schnitzer & J. S. Denslow, 2000. Density and diversity of lianas along a chronosequence in a central Panamanian lowland forest. Journal of Tropical Ecology, 16: 1–19.
  • Duguay, S., F. Eigenbrod & L. Fahrig, 2007. Effects of surrounding urbanization on non-native flora in small forest patches. Landscape Ecology, 22: 589–599.
  • Environment Canada, 2014. Climate Normals and Averages 1981–2010. Montréal/Pierre Elliott Trudeau Intl A. Online [URL] http://climate.weather.gc.ca/climate_normals/results_1981_2010_e.html?stnID=5415&lang=e&StationName=montreal&SearchType=Contains&stnNameSubmit=go&dCode=1 (Accessed on 11 January 2014).
  • Ewers, F. W., J. B. Fisher & K. Fichtner, 1991. Water flux and xylem structure in vines. Pages 127–160 in F. E. Putz & H. A. Mooney (eds). The Biology of Vines. Cambridge University Press, Cambridge.
  • Godefroid, S., 2001. Temporal analysis of the Brussels flora as indicator for changing environmental quality. Landscape and Urban Planning, 52: 203–224.
  • Godefroid, S. & N. Koedam, 2003. Distribution pattern of the flora in a peri-urban forest: An effect of the city-forest ecotone. Landscape and Urban Planning, 65: 169–185.
  • Godefroid, S. & N. Koedam, 2004. The impact of forest paths upon adjacent vegetation: Effects of the path surfacing material on the species composition and soil compaction. Biological Conservation, 119: 405–419.
  • Godefroid, S. & N. Koedam, 2007. Urban plant species patterns are highly driven by density and function of built-up areas. Landscape Ecology, 22: 1227–1239.
  • Godefroid, S., D. Monbaliu & N. Koedam, 2007. The role of soil and microclimatic variables in the distribution patterns of urban wasteland flora in Brussels, Belgium. Landscape and Urban Planning, 80: 45–55.
  • Grimm, N. B., S. H. Faeth, N. E. Golubiewski, C. L. Redman, J. Wu, X. Bai & J. M. Briggs, 2008. Global change and the ecology of cities. Science, 319: 756–760.
  • Guirado, M., J. Pino & F. Rodà, 2006. Understorey plant species richness and composition in metropolitan forest archipelagos: Effects of forest size, adjacent land use and distance to the edge. Global Ecology and Biogeography, 15: 50–62.
  • Haines, A., 2011. Flora Novae Angliae: A Manual for the Identification of Native and Naturalized Higher Vascular Plants of New England. New England Wild Flower Society, Yale University Press, Framingham.
  • Herron, P. M., C. T. Martine, A. M. Latimer & S. A. Leicht-Young, 2007. Invasive plants and their ecological strategies: Prediction and explanation of woody plant invasion in New England. Diversity and Distributions, 13: 633–644.
  • Ibarra-Manríquez, G. & M. Martínez-Ramos, 2002. Landscape variation of liana communities in a Neotropical rain forest. Plant Ecology, 160: 91–112.
  • Imhoff, M. L., C. J. Tucker, W. T. Lawrence & D. C. Stutzer, 2000. The use of multisource satellite and geospatial data to study the effect of urbanization on primary productivity in the United States. IEEE Transactions on Geoscience and Remote Sensing, 38: 2549–2556.
  • Jackson, P. C., J. Cavelier, G. Goldstein, F. C. Meinzer & N. M. Holbrook, 1995. Partitioning of water resources among plants of a lowland tropical forest. Oecologia, 101: 197–203.
  • Knapp, S., I. Kühn, R. Wittig, W. A. Ozinga, P. Poschlod & S. Klotz, 2008. Urbanization causes shifts in species' trait state frequencies. Preslia, 80: 375–388.
  • Ladwig, L. M. & S. J. Meiners, 2010a. Liana host preference and implications for deciduous forest regeneration. Journal of the Torrey Botanical Society, 137: 103–112.
  • Ladwig, L. M. & S. J. Meiners, 2010b. Spatiotemporal dynamics of lianas during 50 years of succession to temperate forest. Ecology, 91: 671–680.
  • LaPaix, R., K. Harper & B. Freedman, 2012. Patterns of exotic plants in relation to anthropogenic edges within urban forest remnants. Applied Vegetation Science, 15: 525–535.
  • Lavoie, C., A. Saint-Louis, G. Guay & E. Groeneveld, 2012. Les plantes vasculaires exotiques naturalisées: une nouvelle liste pour le Québec. Le Naturaliste canadien, 136: 6–32.
  • Legendre, P. & L. Legendre, 2012. Numerical Ecology. 3rd English Edition. Elsevier, Amsterdam.
  • Leicht-Young, S. A., N. B. Pavlovic, K. J. Frohnapple & R. Grundel, 2010. Liana habitat and host preferences in northern temperate forests. Forest Ecology and Management, 260: 1467–1477.
  • Londré, R. A. & S. A. Schnitzer, 2006. The distribution of lianas and their change in abundance in temperate forests over the past 45 years. Ecology, 87: 2973–2978.
  • Madeira, B. G., M. M. Espírito-Santo, S. D. Neto, Y. R. F. Nunes, G. A. Sánchez-Azofeifa, G. W. Fernandes & M. Quesada, 2009. Changes in tree and liana communities along a successional gradient in a tropical dry forest in south-eastern Brazil. Plant Ecology, 201: 291–304.
  • Marini, L., H. H. Bruun, R. K. Heikkinen, A. Helm, O. Honnay, J. Krauss, I. Kühn, R. Lindborg, M. Pärtel & R. Bommarco, 2012. Traits related to species persistence and dispersal explain changes in plant communities subjected to habitat loss. Diversity and Distributions, 18: 898–908.
  • Martin, P., 2008. Analyse diachronique du comportement thermique de Montréal en période estivale de 1984 à 2005. MSc thesis. Université du Québec à Montréal, Montréal, Quebec.
  • Moffatt, S. F. & S. M. McLachlan, 2004. Understorey indicators of disturbance for riparian forests along an urban-rural gradient in Manitoba. Ecological Indicators, 4: 1–16.
  • Moffatt, S. F., S. M. McLachlan & N. C. Kenkel, 2004. Impacts of land use on riparian forest along an urban-rural gradient in southern Manitoba. Plant Ecology, 174: 119–135.
  • Montoya, D., M. A. Zavala, M. A. Rodríguez & D. W. Purves, 2008. Animal versus wind dispersal and the robustness of tree species to deforestation. Science, 320: 1502–1504.
  • Murcia, C., 1995. Edge effects in fragmented forests: Implications for conservation. Trends in Ecology & Evolution, 10: 58–62.
  • Penone, C., N. Machon, R. Julliard & I. Le Viol, 2012. Do railway edges provide functional connectivity for plant communities in an urban context? Biological Conservation, 148: 126–133.
  • Rowe, N. & T. Speck, 2005. Plant growth forms: An ecological and evolutionary perspective. New Phytologist, 166: 61–72.
  • Sasek, T. H. & B. R. Strain, 1990. Implications of atmospheric CO2 enrichment and climatic change for the geographical distribution of two introduced vines in the U.S.A. Climatic Change, 16: 31–51.
  • Schnitzer, S. A., 2005. A mechanistic explanation for global patterns of liana abundance and distribution. American Naturalist, 166: 262–276.
  • Schnitzer, S. A. & F. Bongers, 2002. The ecology of lianas and their role in forests. Trends in Ecology & Evolution, 17: 223–230.
  • Schnitzer, S. A. & F. Bongers, 2011. Increasing liana abundance and biomass in tropical forests: Emerging patterns and putative mechanisms. Ecology Letters, 14: 397–406.
  • Schnitzer, S. A. & W. P. Carson, 2001. Treefall gaps and the maintenance of species diversity in a tropical forest. Ecology, 82: 913–919.
  • Selaya, N. G. & N. P. R. Anten, 2008. Differences in biomass allocation, light interception and mechanical stability between lianas and trees in early secondary tropical forest. Functional Ecology, 22: 30–39.
  • Simpson, E. H., 1949. Measurement of diversity. Nature, 163: 688.
  • Statistics Canada, 2014. Population and dwelling counts, for census metropolitan areas, 2006 and 2011 censuses—100% data. Online [URL] http://www12.statcan.gc.ca/census-recensement/2011/dp-pd/hlt-fst/pd-pl/Table-Tableau.cfm?T=201&S=3&O=D&RPP=150 (Accessed on 11 January 2014).
  • Stiles, E. W., 1982. Fruit flags: Two hypotheses. American Naturalist, 120: 500–509.
  • USDA & NRCS, 2013. The PLANTS Database. National Plant Data Team, Greensboro, North Carolina. Online [URL] http://plants.usda.gov (Accessed on 9 December 2013).
  • Vallet, J., H. Daniel, V. Beaujouan, F. Rozé & S. Pavoine, 2010a. Using biological traits to assess how urbanization filters plant species of small woodlands. Applied Vegetation Science, 13: 412–424.
  • Vallet, J., V. Beaujouan, J. Pithon, F. Rozé & H. Daniel, 2010b. The effects of urban or rural landscape context and distance from the edge on native woodland plant communities. Biodiversity and Conservation, 19: 3375–3392.
  • Van de Grift, J., 1996. The relative site moisture index: An expansion of the topographic relative moisture index. Honors thesis, University of Wisconsin-Madison, Madison, Wisconsin.
  • van der Sande, M. T., L. Poorter, S. E. Schnitzer & L. Markesteijn, 2013. Are lianas more drought-tolerant than trees? A test for the role of hydraulic architecture and other stem and leaf traits. Oecologia, 172: 961–972.
  • Voss, E. G., 1985. Michigan Flora. II. Dicots. Cranbrook Institute, Bloomfield Hills, Michigan.
  • Williams, N. S. G., M. W. Schwartz, P. A. Vesk, M. A. McCarthy, A. K. Hahs, S. E. Clemants, R. T. Corlett, R. P. Duncan, B. A. Norton, K. Thompson & M. J. McDonnell, 2008. A conceptual framework for predicting the effects of urban environments on floras. Journal of Ecology, 97: 4–9.
  • Wang, R. L., R. S. Zeng, S. L. Peng, B. M. Chen, X. T. Liang & X. W. Xin, 2011. Elevated temperature may accelerate invasive expansion of the liana plant Ipomoea cairica. Weed Research, 51: 574–580.
  • White, M. A., R. T. Nemani, P. E. Thornton & S. W. Running, 2002. Satellite evidence of phenological difference between urbanized and rural areas of the eastern United States decideous broadleaf forest. Ecosystems, 5: 260–273.
  • Zhang, X., M. A. Friedl, C. B. Schaaf, A. H. Strahler & A. Schneider, 2004. The footprint of urban climates on vegetation phenology. Geophysical Research Letters, 31: L12209, DOI: 10.1029/2004GL020137

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