AimsEcological theories predict that assembly processes are driven by two deterministic forces: environmental filtering and limiting similarity. Their relative importance under different environmental conditions is still not completely obvious. Therefore, in this paper the predictions of the stress-dominance hypothesis (SDH) are tested in several sites.LocationKiskuns & aacute;g in Hungary, and Deliblato Sands in Serbia, Central Europe.MethodsWe studied a productivity gradient from open sand grasslands to meadows. The cover of species was estimated visually in plots with a size of 2 m x 2 m, resulting in 344 vegetation plots. Four trait values (height, seed mass, specific leaf area, and leaf size) were collected from field measurements and databases. The weighted median of interspecies distances in traits (a robust alternative to Rao's quadratic entropy) was used to determine functional diversity. The convergence and divergence of each trait in communities were evaluated by randomization tests, and effect sizes were calculated for each plot. We used hierarchical general additive models (HGAM) to determine whether the trend of effect sizes along the productivity gradient is the same in different sites.ResultsThe HGAM approach indicated that trait variations follow global trends but are influenced by site-specific effects. The exception is seed mass, whose variation did not have any trend. Both environmental filtering and limiting similarity exist in the communities, and mainly a shift from trait convergence to a divergence pattern along the productivity gradient was observed.ConclusionThe results are mainly congruent with theoretical expectations, but the results from the different sites did not lead to the same conclusion. Although traits follow a global trend, the site effect is not negligible. Critical evaluation of SDH using trait convergence/divergence patterns for exploring rules of community assembly points out the weaknesses of this hypothesis. Therefore, alternative ways of studying trait patterns should be found to better understand community organization. The stress-dominance hypothesis predicts that the relative importance of environmental filtering in assembly processes increases with decreasing productivity. We tested this hypothesis in four sites studying the same productivity gradient. The importance of filtering was measured by trait convergence. Trait variations followed global trends but were influenced by site-specific effects. This result points out the weaknesses of the hypothesis.image
机构:
Danube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Natl Univ Publ Serv, Fac Water Sci, Bajcsy Zsilinszky Utca 12-14, H-6500 Baja, HungaryDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Acs, Eva
Foldi, Angela
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Danube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Eotvos Lorand Univ, Doctoral Sch Environm Sci, Budapest, HungaryDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Foldi, Angela
Vad, Csaba Ferenc
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Wasser Cluster Lunz, Dr Carl Kupelwieser Promenade 5, A-3293 Lunz Am See, AustriaDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Vad, Csaba Ferenc
Trabert, Zsuzsa
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Danube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Eotvos Lorand Univ, Doctoral Sch Environm Sci, Budapest, HungaryDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Trabert, Zsuzsa
Kiss, Keve Tihamer
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Danube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, HungaryDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Kiss, Keve Tihamer
Duleba, Monika
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Danube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
MTA Ctr Ecol Res, Sustainable Ecosyst Grp, Klebelsberg Kuno U 3, H-8237 Tihany, HungaryDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Duleba, Monika
Borics, Gabor
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Danube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, HungaryDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Borics, Gabor
Grigorszky, Istvan
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Univ Debrecen, Dept Hydrobiol, Egyet Ter 1, H-4032 Debrecen, HungaryDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
Grigorszky, Istvan
Botta-Dukat, Zoltan
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MTA Ctr Ecol Res, Sustainable Ecosyst Grp, Klebelsberg Kuno U 3, H-8237 Tihany, Hungary
Inst Ecol & Bot, MTA Ctr Ecol Res, Alkotmany U 2-4, H-2163 Vacratot, HungaryDanube Res Inst, MTA Ctr Ecol Res, Karolina Ut 29, H-1113 Budapest, Hungary
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Florida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USAFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Valverde-Barrantes, Oscar J.
Lugli, Laynara F.
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, Brazil
Tech Univ Munich, Sch Life Sci, Freising Weihenstephan, GermanyFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Lugli, Laynara F.
Fuchslueger, Lucia
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, Brazil
Univ Vienna, Ctr Microbiol & Environm Syst Sci, Vienna, AustriaFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Fuchslueger, Lucia
Hofhansl, Florian
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Int Inst Appl Syst Anal, Laxenburg, AustriaFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Hofhansl, Florian
Martins, Nathielly
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, BrazilFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Martins, Nathielly
Cordeiro, Amanda L.
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, Brazil
Colorado State Univ, Warner Coll Nat Resources, Dept Ecosyst Sci & Sustainabil, Ft Collins, CO 80523 USAFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Cordeiro, Amanda L.
Schapp, Karst
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, Brazil
Wageningen Univ, Soil Chem & Chem Soil Qual Grp, Wageningen, NetherlandsFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Schapp, Karst
Anderson, Kelly
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Colorado State Univ, Nat Resource Ecol Lab, Ft Collins, CO USAFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Anderson, Kelly
Garcia, Sabrina
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, BrazilFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Garcia, Sabrina
Grandis, Adriana
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Univ Sao Paulo, Inst Biosci, Dept Bot, Lab Plant Physiol Ecol, Sao Paulo, BrazilFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Grandis, Adriana
Miron, Carol A.
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, Brazil
Univ Hamburg, Dept Biol, Hamburg, GermanyFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Miron, Carol A.
Fleisher, Katrin
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Max Planck Inst Biogeochem, Dept Biogeochem Signals, Jena, GermanyFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Fleisher, Katrin
Hoosbeek, Marcel R.
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Wageningen Univ, Soil Chem & Chem Soil Qual Grp, Wageningen, NetherlandsFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Hoosbeek, Marcel R.
Hartley, Ian P.
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Univ Exeter, Coll Life & Environm Sci, Geog, Exeter, EnglandFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Hartley, Ian P.
Oblitas Mendoza, Erick
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, BrazilFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Oblitas Mendoza, Erick
Lapola, David
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Univ Estadual Campinas Unicamp, Sao Paulo, BrazilFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA
Lapola, David
Quesada, Carlos A.
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Natl Inst Amazonian Res, Coordinat Environm Dynam, Manaus, BrazilFlorida Int Univ, Inst Environm, Int Ctr Trop Bot, Dept Biol Sci, Miami, FL 33199 USA