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Search: WFRF:(Urrutia Cordero Pablo) > (2022) > Uppsala University

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1.
  • Cunillera-Montcusí, David, et al. (author)
  • Freshwater salinisation : a research agenda for a saltier world
  • 2022
  • In: Trends in Ecology and Evolution. - : Elsevier BV. - 0169-5347 .- 1872-8383. ; 37:5, s. 440-453
  • Research review (peer-reviewed)abstract
    • The widespread salinisation of freshwater ecosystems poses a major threat to the biodiversity, functioning, and services that they provide. Human activities promote freshwater salinisation through multiple drivers (e.g., agriculture, resource extraction, urbanisation) that are amplified by climate change. Due to its complexity, we are still far from fully understanding the ecological and evolutionary consequences of freshwater salinisation. Here, we assess current research gaps and present a research agenda to guide future studies. We identified different gaps in taxonomic groups, levels of biological organisation, and geographic regions. We suggest focusing on global- and landscape-scale processes, functional approaches, genetic and molecular levels, and eco-evolutionary dynamics as key future avenues to predict the consequences of freshwater salinisation for ecosystems and human societies.
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2.
  • Hintz, William D., et al. (author)
  • Current water quality guidelines across North America and Europe do not protect lakes from salinization
  • 2022
  • In: Proceedings of the National Academy of Sciences of the United States of America. - : National Academy of Sciences. - 0027-8424 .- 1091-6490. ; 119:9
  • Journal article (peer-reviewed)abstract
    • Human-induced salinization caused by the use of road deicing salts, agricultural practices, mining operations, and climate change is a major threat to the biodiversity and functioning of freshwater ecosystems. Yet, it is unclear if freshwater ecosystems are protected from salinization by current water quality guidelines. Leveraging an experimental network of land-based and in-lake mesocosms across North America and Europe, we tested how salinization—indicated as elevated chloride (Cl−) concentration—will affect lake food webs and if two of the lowest Cl− thresholds found globally are sufficient to protect these food webs. Our results indicated that salinization will cause substantial zooplankton mortality at the lowest Cl− thresholds established in Canada (120 mg Cl−/L) and the United States (230 mg Cl−/L) and throughout Europe where Cl− thresholds are generally higher. For instance, at 73% of our study sites, Cl− concentrations that caused a ≥50% reduction in cladoceran abundance were at or below Cl− thresholds in Canada, in the United States, and throughout Europe. Similar trends occurred for copepod and rotifer zooplankton. The loss of zooplankton triggered a cascading effect causing an increase in phytoplankton biomass at 47% of study sites. Such changes in lake food webs could alter nutrient cycling and water clarity and trigger declines in fish production. Current Cl− thresholds across North America and Europe clearly do not adequately protect lake food webs. Water quality guidelines should be developed where they do not exist, and there is an urgent need to reassess existing guidelines to protect lake ecosystems from human-induced salinization.
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3.
  • Urrutia Cordero, Pablo, et al. (author)
  • Integrating multiple dimensions of ecological stability into a vulnerability framework
  • 2022
  • In: Journal of Ecology. - : John Wiley & Sons. - 0022-0477 .- 1365-2745. ; 110:2, s. 374-386
  • Journal article (peer-reviewed)abstract
    • Ecological stability encompasses multiple dimensions of functional and compositional responses to environmental change. Though no single stability dimension used in isolation can fully reflect the overall response to environmental change, a common vulnerability assessment that integrates simultaneously across multiple stability components is highly desirable for ecological risk assessment. We develop both functional and compositional counterparts of a novel, integrative metric of overall ecological vulnerability (OEV). We test the framework with data from a modularized experiment replicated in five lakes over two seasons, examining functional and compositional responses to both pulse and press disturbances across three trophic groups. OEV is measured as the area under the curve integrated over the entire observation period, with the curve delimiting the difference between the disturbance treatment and undisturbed parallel controls, expressed either as the log response ratio of biomass (functional OEV) or community dissimilarity index (compositional OEV). Both, functional and compositional OEV correlated negatively with functional and compositional 'resistance', 'temporal stability' and 'final/extent of recovery' following both pulse and press disturbances, though less so with 'resilience' following a pulse disturbance. We also found a positive correlation between functional and compositional OEV, which reveals the potential to also evaluate the intricate linkage between biodiversity and functional change. Our findings demonstrate that OEV comprises a robust framework to: (a) capture simultaneously multiple functional and compositional stability components, and (b) quantify the functional consequences of biodiversity change. Our results provide the basis for an overarching framework for quantifying the overall vulnerability of ecosystems to environmental change, opening new possibilities for ecological risk assessment and management. Synthesis. Ecological stability comprises multiple dimensions that together encapsulate how ecosystems respond to environmental change. Considering these multiple aspects of stability simultaneously often poses a problem in environmental assessments, which frequently require overarching indicators of risk or vulnerability. While an analysis of multiple dimensions allows for deeper exploration of mechanisms, here we develop and test a new univariate indicator that integrates stability aspects under a broad range of disturbance regimes. Using a modularized experiment in Swedish lakes, we show that this integrative measure captures multiple stability dimensions reflecting compositional and functional vulnerability and their relationships between them.
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  • Result 1-3 of 3
Type of publication
journal article (2)
research review (1)
Type of content
peer-reviewed (3)
Author/Editor
Striebel, Maren (3)
Langenheder, Silke (3)
Urrutia-Cordero, Pab ... (3)
Laudon, Hjalmar (2)
Lundgren, Maria (2)
Arnott, Shelley E. (2)
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Canedo-Arguelles, Mi ... (2)
Bertilsson, Stefan (1)
Rusak, James A. (1)
Weyhenmeyer, Gesa A. (1)
Angeler, David (1)
Hansson, Lars-Anders (1)
Hylander, Samuel (1)
Eklöv, Peter, Profes ... (1)
Parkefelt, Linda (1)
Symons, Celia C. (1)
Melles, Stephanie J. (1)
Beisner, Beatrix E. (1)
Hebert, Marie-Pier (1)
Brentrup, Jennifer A ... (1)
Lind, Lovisa (1)
Gray, Derek K. (1)
Hintz, William D. (1)
McClymont, Alexandra (1)
Relyea, Rick A. (1)
Searle, Catherine L. (1)
Astorg, Louis (1)
Baker, Henry K. (1)
Ersoy, Zeynep (1)
Espinosa, Carmen (1)
Giorgio, Angelina T. (1)
Hassal, Emily (1)
Huynh, Mercedes (1)
Jonasen, Kacie L. (1)
Langvall, Ola (1)
Proia, Lorenzo (1)
Schuler, Matthew S. (1)
Shurin, Jonathan B. (1)
Steiner, Christopher ... (1)
Thibodeau, Simon (1)
Vendrell-Puigmitja, ... (1)
Derry, Alison M. (1)
Reinikainen, Marko (1)
Hillebrand, Helmut (1)
Brucet, Sandra (1)
Berger, Stella A. (1)
Jeppesen, Erik (1)
Nejstgaard, Jens C. (1)
Cottingham, Kathryn ... (1)
Donohue, Ian (1)
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University
Lund University (3)
Linnaeus University (2)
Swedish University of Agricultural Sciences (2)
Karlstad University (1)
Language
English (3)
Research subject (UKÄ/SCB)
Natural sciences (3)
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