Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/90631

TítuloNon-interactive effects drive multiple stressor impacts on the taxonomic and functional diversity of atlantic stream macroinvertebrates
Autor(es)Lourenço, J.
Gutiérrez-Cánovas, C.
Carvalho, F.
Cássio, Fernanda
Pascoal, Cláudia
Pace, Giorgio
Palavras-chaveAdditive effects
Flow reduction
Nutrient enrichment
Oxygen depletion
Riparian vegetation degradation
Thermal stress
DataJul-2023
EditoraElsevier 1
RevistaEnvironmental Research
CitaçãoJ. Lourenço, C. Gutiérrez-Cánovas, F. Carvalho, F. Cássio, C. Pascoal, G. Pace, Non-interactive effects drive multiple stressor impacts on the taxonomic and functional diversity of atlantic stream macroinvertebrates, Environmental Research, Volume 229, 2023, 115965, ISSN 0013-9351, https://doi.org/10.1016/j.envres.2023.115965.
Resumo(s)Freshwaters are considered among the most endangered ecosystems globally due to multiple stressors, which coincide in time and space. These local stressors typically result from land-use intensification or hydroclimatic alterations, among others. Despite recent advances on multiple stressor effects, current knowledge is still limited to manipulative approaches minimizing biological and abiotic variability. Thus, the assessment of multiple stressor effects in real-world ecosystems is required. Using an extensive survey of 50 stream reaches across North Portugal, we evaluated taxonomic and functional macroinvertebrate responses to multiple stressors, including marked gradients of nutrient enrichment, flow reduction, riparian vegetation structure, thermal stress and dissolved oxygen depletion. We analyzed multiple stressor effects on two taxonomic (taxon richness, Shannon-diversity) and two trait-based diversity indices (functional richness, functional dispersion), as well as changes in trait composition. We found that multiple stressors had additive effects on all diversity metrics, with nutrient enrichment identified as the most important stressor in three out of four metrics, followed by dissolved oxygen depletion and thermal stress. Taxon richness, Shannon-diversity and functional richness responded similarly, whereas functional dispersion was driven by changes in flow velocity and thermal stress. Functional trait composition changed along a major stress gradient determined by nutrient enrichment and oxygen depletion, which was positively correlated with organisms possessing fast-living strategies, aerial respiration, adult phases, and gathering-collector feeding habits. Overall, our results reinforce the need to consider complementary facets of biodiversity to better identify assembly processes in response to multiple stressors. Our data suggest that stressor interactions may be less frequent in real-word streams than predicted by manipulative experiments, which can facilitate mitigation strategies. By combining an extensive field survey with an integrative consideration of multiple biodiversity facets, our study provides new insights that can help to better assess and manage rivers in a global change context.
TipoArtigo
URIhttps://hdl.handle.net/1822/90631
DOI10.1016/j.envres.2023.115965
ISSN0013-9351
Versão da editorahttps://www.sciencedirect.com/science/article/pii/S0013935123007570?via%3Dihub
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:CBMA - Artigos/Papers

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