Human pressures have been intensely modifying freshwater ecosystems worldwide. We assessed the effects of human pressure on habitat diversity and primary productivity to understand the consequences on fish fauna in 25 tropical and subtropical streams of two globally important ecoregions: Iguassu and Upper Paraná. We hypothesized that the increased human pressure (urbanization and agriculture) on stream environments, both at the local and catchment scales, directly decreases habitat diversity. We also hypothesized that increased human pressure triggers changes in primary productivity and fish fauna composition and structure. We evaluated the human pressure intensity using the Integrated Disturbance Index and the Rapid Habitat Diversity Assessment protocol, which combines information about land use, land cover and environmental characteristics of the stream catchment and sampling sites. Streams with increased human disturbance had lower habitat diversity, higher primary productivity, and high non-native species abundance. Fish compositional turnover was associated with increased human disturbance. Native and degradation-sensitive fish species, especially endemic ones, were associated with streams with higher habitat diversity and forested cover. Degradation-resistant fishes, mostly non-native species, were associated with streams with higher human disturbance and urban land use. Although human pressure did not affect species richness, Shannon diversity, and Simpson dominance, there were significant effects on numerical abundance and fish species equitability. In this study, human pressure directly affected habitat structure, with indirect consequences for fish fauna, increasing the potential for local extirpation of rare species.
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Jayhawk Athletic Performance Laboratory, Wu Tsai Human Performance Alliance, University of Kansas, Lawrence, Kansas.
Eserhaut, DA, DeLeo, JM, and Fry, AC. Blood flow restricted resistance exercise in well-trained men: Salivary biomarker responses and oxygen saturation kinetics. J Strength Cond Res 38(12): e716-e726, 2024-Resistance exercise with continuous lower-limb blood flow restriction (BFR) may provide supplementary benefit to highly resistance-trained men.
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January 2025
Author Affiliations: Department of Community Medicine, Information and Health Decision Sciences, University of Porto, Porto, Portugal (Dr Mota); Health School, Polytechnic Institute of Viseu, Viseu, Portugal (Drs Mota, Santos, and Cunha); Health Sciences Research Unit: Nursing (UICISA: E), Coimbra, Portugal (Drs Mota and Cunha); CINTESIS@RISE - Center for Health Technology and Services Research, University of Porto, Porto, Portugal (Drs Mota and Santos); Academic Clinical Centre of Beiras, Covilhã, Portugal (Drs Mota and Cunha); Abel Salazar Institute of Biomedical Sciences, University of Porto, Porto, Portugal (Drs Melo and Santos); Portugal Centre for Evidence-Based Practice: A Joanna Briggs Institute Centre of Excellence, Coimbra, Portugal (Dr Santos); Hospital São Teotónio, Tondela Viseu Hospital Centre, Viseu, Portugal (Dr Abrantes); Santa Casa da Misericórdia de Seia, Seia, Portugal (Dr Monteiro); and Nursing School of Porto, Porto, Portugal (Dr Santos).
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PLoS One
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Department of Ophthalmology, University of Washington, Seattle, WA, United States of America.
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View Article and Find Full Text PDFPLoS One
January 2025
Centre for Agri-Environmental Research, School of Agriculture, Policy and Development, University of Reading, Reading, England, United Kingdom.
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