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We investigated trophic dynamics of Hg in the polluted Baltic Archipelago Sea using established trophic magnification (TMFs) and biomagnification factors (BMFs) on a comprehensive set of bird, fish, and invertebrate species. As different ecological and ecophysiological species traits may affect trophic dynamics, we explored the effect of food chain (benthic, pelagic, benthopelagic) and thermoregulatory strategy on trophic total Hg (THg) dynamics, using different approaches to accommodate benthopelagic species and normalize for trophic position (TP). We observed TMFs and most BMFs greater than 1, indicating overall THg biomagnification. We found significantly higher pelagic TMFs (3.58-4.02) compared to benthic ones (2.11-2.34) when the homeotherm bird species were excluded from models, but not when included. This difference between the benthic and pelagic TMFs remained regardless of how the TP of benthopelagic species was modeled, or whether TMFs were normalized for TP or not. TP-corrected BMFs showed a larger range (0.44-508) compared to BMFs representing predator-prey concentration ratios (0.05-82.2). Overall, the present study shows the importance of including and evaluating the effect of ecological and ecophysiological traits when investigating trophic contaminant dynamics.
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http://dx.doi.org/10.1021/acs.est.2c03846 | DOI Listing |
Ecotoxicol Environ Saf
September 2025
Key Laboratory of Karst Georesources and Environment (Guizhou University), Ministry of Education, College of Resources and Environmental Engineering, Guizhou University, Guiyang 550025, China.
Despite global phase-out initiatives, legacy polychlorinated biphenyls (PCBs) remobilize in marine ecosystems as secondary emission sources, posing ecotoxicological and human health risks emerge through cross-trophic dietary exposure pathways. This study aimed to systematically examined the distribution, trophic transfer properties, and health risks of PCBs in six fish and eight invertebrate species from the Beibu Gulf in southern China, by stable isotope analysis, hierarchical cluster analysis, and Monte Carlo simulation. The ΣPCBs concentrations ranged from 0.
View Article and Find Full Text PDFJ Anim Ecol
September 2025
Department of Forest Ecology, Faculty of Forestry and Wood Technology, Mendel University in Brno, Brno, Czech Republic.
Research Highlight: Chen, J., Wang, M. Q.
View Article and Find Full Text PDFChaos
September 2025
Department of Mathematics, Visva-Bharati, Santiniketan 731235, India.
Biological models are important in describing species interaction, disease spread, and environmental processes. One key aspect in improving the predictive capability of these models is deciding which parametrization is used to formulate the mathematical model. Considering two distinct functions with similar shapes and the same qualitative properties in a model can lead to markedly different model predictions.
View Article and Find Full Text PDFEcology
September 2025
Department of Ecology & Evolutionary Biology, Yale University, New Haven, Connecticut, USA.
Recent evidence suggests that parasite-mediated reductions in food intake (i.e., anorexia) in herbivores can trigger trophic cascades that increase producer biomass.
View Article and Find Full Text PDFBioresour Technol
September 2025
Université Paris-Saclay, CentraleSupélec, Laboratoire de Génie des Procédés et Matériaux, Centre Européen de Biotechnologie et de Bioéconomie (CEBB), 3 rue des Rouges Terres, 51110 Pomacle, France. Electronic address:
Trophic conversion - a sequential cultivation strategy combining heterotrophic and phototrophic growth - offers a promising route for large-scale microalgae production by coupling the high biomass yields of heterotrophy with the biochemical advantages of phototrophy. Despite its potential, the cellular mechanisms governing this transition remain poorly understood. Here is presented the first mechanistic dissection of trophic conversion in Chlorella vulgaris, using isoactinic light conditions (30-600 µmol photons/m/s) and inocula with varied physiological states.
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