Can Aquatic Plants Keep Pace with Climate Change

作者: Duarte S. Viana

DOI: 10.3389/FPLS.2017.01906

关键词:

摘要: The persistence of species may depend upon their capacity to keep pace with climate change. However, dispersal has been ignored in the vast majority studies that aimed at estimating and predicting range shifts as a response Long distance (LDD) particular might promote rapid allow track suitable habitat. Many aquatic plant are dispersed by birds have potential be over hundreds kilometers during bird migration seasons. I argue such critical change happening unprecedented high rates. As case study, used data from three migratory model projections. By comparing four scenarios - (1) no dispersal, (2) unlimited (3) LDD < 100 km, (4) mediated movements -, it was shown that, for bird-mediated rate colonization is sufficient counterbalance habitat loss. estimated rates (3.2-31.5 km⋅year-1) higher than, example, global warming (previously 0.42 km⋅year-1). Although further needed, results suggest these can adjust ranges under severe scenario. Therefore, investigating species, namely potential, contribute estimate likelihood

参考文章(40)
Pedro Jordano, What is long‐distance dispersal? And a taxonomy of dispersal events Journal of Ecology. ,vol. 105, pp. 75- 84 ,(2017) , 10.1111/1365-2745.12690
Erik Kleyheeg, Jelle Treep, Monique de Jager, Bart A. Nolet, Merel B. Soons, Seed dispersal distributions resulting from landscape‐dependent daily movement behaviour of a key vector species, Anas platyrhynchos Journal of Ecology. ,vol. 105, pp. 1279- 1289 ,(2017) , 10.1111/1365-2745.12738
Morgane Gillard, Gabrielle Thiébaut, Carole Deleu, Boris Leroy, Present and future distribution of three aquatic plants taxa across the world: decrease in native and increase in invasive ranges Biological Invasions. ,vol. 19, pp. 2159- 2170 ,(2017) , 10.1007/S10530-017-1428-Y
Camille Parmesan, Ecological and Evolutionary Responses to Recent Climate Change Annual Review of Ecology, Evolution, and Systematics. ,vol. 37, pp. 637- 669 ,(2006) , 10.1146/ANNUREV.ECOLSYS.37.091305.110100
SARIAN KOSTEN, AMY KAMARAINEN, ERIK JEPPESEN, EGBERT H. VAN NES, EDWIN T. H. M. PEETERS, NÉSTOR MAZZEO, LAURA SASS, JENNIFER HAUXWELL, NICOLE HANSEL-WELCH, TORBEN L. LAURIDSEN, MARTIN SØNDERGAARD, ROGER W. BACHMANN, GISSELL LACEROT, MARTEN SCHEFFER, Climate‐related differences in the dominance of submerged macrophytes in shallow lakes Global Change Biology. ,vol. 15, pp. 2503- 2517 ,(2009) , 10.1111/J.1365-2486.2009.01969.X
Wilfried Thuiller, Cécile Albert, Miguel B. Araújo, Pam M. Berry, Mar Cabeza, Antoine Guisan, Thomas Hickler, Guy F. Midgley, James Paterson, Frank M. Schurr, Martin T. Sykes, Niklaus E. Zimmermann, Predicting global change impacts on plant species' distributions: Future challenges Perspectives in Plant Ecology Evolution and Systematics. ,vol. 9, pp. 137- 152 ,(2008) , 10.1016/J.PPEES.2007.09.004
A. J. Green, T. De Boer, R. A. King, R. J. Gornall, L. SantamarÍa, J. Figuerola, J. J. Pilon, M. Mjelde, PLANT PERFORMANCE ACROSS LATITUDE: THE ROLE OF PLASTICITY AND LOCAL ADAPTATION IN AN AQUATIC PLANT Ecology. ,vol. 84, pp. 2454- 2461 ,(2003) , 10.1890/02-0431
Damaris Zurell, Wilfried Thuiller, Jörn Pagel, Juliano S. Cabral, Tamara Münkemüller, Dominique Gravel, Stefan Dullinger, Signe Normand, Katja H. Schiffers, Kara A. Moore, Niklaus E. Zimmermann, Benchmarking novel approaches for modelling species range dynamics Global Change Biology. ,vol. 22, pp. 2651- 2664 ,(2016) , 10.1111/GCB.13251
Janne Alahuhta, Frauke Ecke, Lucinda B. Johnson, Laura Sass, Jani Heino, A comparative analysis reveals little evidence for niche conservatism in aquatic macrophytes among four areas on two continents Oikos. ,vol. 126, pp. 136- 148 ,(2017) , 10.1111/OIK.03154