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RESEARCH PRODUCT
Characteristics, Main Impacts, and Stewardship of Natural and Artificial Freshwater Environments: Consequences for Biodiversity Conservation
Rossano BolpagniMartina ČTvrtlíkováAlex BorriniStefano SegadelliMarco CantonatiZlatko LevkovNúria CidLawrence E. StevensJani HeinoDiana M. P. GalassiPetr ZnachorEren TurakEren TurakMichal HájekCatherine M. PringleAbdullah A. SaberJohn S. RichardsonPaul B. HamiltonBarbara FiascaSandra PoikaneMattia Di CiccoJan KubečkaIan HawesLuigi Naselli-floressubject
0106 biological scienceslcsh:Hydraulic engineeringvaikutuksetGeography Planning and DevelopmentBiodiversityhabitatWetlandhabitaatti01 natural sciencesBiochemistryFreshwater ecosystemLeast-impaired habitat relictekosysteemitlcsh:Water supply for domestic and industrial purposeselinympäristöfreshwaterWater Science and Technologybiodiversitygeography.geographical_feature_categoryEcologyconservation6. Clean waterfoundation speciesOverexploitationHabitat[SDE]Environmental SciencesimpactluonnonsuojeluSettore BIO/07 - EcologiaBiodiversity; Conservation; Ecosystem; Foundation species; Freshwater; Habitat; Impact; Least-impaired habitat relicts; StewardshipAquatic Science010603 evolutionary biologyhoitostewardshiplcsh:TC1-97814. Life underwaterecosystemgeographylcsh:TD201-500Foundation specie010604 marine biology & hydrobiologyleast-impaired habitat relicts15. Life on landluonnon monimuotoisuusbiodiversiteettiHabitat destruction13. Climate actionThreatened speciesSettore BIO/03 - Botanica Ambientale E ApplicataFoundation speciesEnvironmental sciencemakea vesidescription
International audience; In this overview (introductory article to a special issue including 14 papers), we consider all main types of natural and artificial inland freshwater habitas (fwh). For each type, we identify the main biodiversity patterns and ecological features, human impacts on the system and environmental issues, and discuss ways to use this information to improve stewardship. Examples of selected key biodiversity/ecological features (habitat type): narrow endemics, sensitive (groundwater and GDEs); crenobionts, LIHRes (springs); unidirectional flow, nutrient spiraling (streams); naturally turbid, floodplains, large-bodied species (large rivers); depth-variation in benthic communities (lakes); endemism and diversity (ancient lakes); threatened, sensitive species (oxbow lakes, SWE); diverse, reduced littoral (reservoirs); cold-adapted species (Boreal and Arctic fwh); endemism, depauperate (Antarctic fwh); flood pulse, intermittent wetlands, biggest river basins (tropical fwh); variable hydrologic regime—periods of drying, flash floods (arid-climate fwh). Selected impacts: eutrophication and other pollution, hydrologic modifications, overexploitation, habitat destruction, invasive species, salinization. Climate change is a threat multiplier, and it is important to quantify resistance, resilience, and recovery to assess the strategic role of the different types of freshwater ecosystems and their value for biodiversity conservation. Effective conservation solutions are dependent on an understanding of connectivity between different freshwater ecosystems (including related terrestrial, coastal and marine systems).
year | journal | country | edition | language |
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2020-01-16 | Water |