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Updated: Jan 7, 2026

Protocol for Microplastics Sampling on the Sea Surface and Sample Analysis
Published on: December 16, 2016
Direct and indirect ecological impacts of microplastic fibers on host-parasite and host-microbiota interactions
Katarzyna Affek1, Nicholas Buss2, Gavin Dehnert3
1Department of Forest and Wildlife Ecology, University of Wisconsin, 1630 Linden Dr., Madison, WI 53706, USA; Faculty of Environmental Engineering, Warsaw University of Technology, Nowowiejska 20, Warsaw 00-653, Poland.
Abstract:
Microplastic (MP) pollution poses a growing threat to freshwater ecosystems, yet its effects on ecological interactions, such as host-parasite or host-microbiota dynamics, are poorly understood. Using leopard frog (Lithobates pipiens) tadpoles and their interactions with a common trematode parasite as a model, this study experimentally manipulated MP fiber size (short: ∼0.24 mm; long: ∼1.5 mm) and concentration (10 or 40 μg L⁻¹) to assess effects on tadpole survival, growth, development, behavior, gut microbiota, and parasite susceptibility. High MP concentrations significantly reduced tadpole survival, with long fibers causing greater mortality. Sublethal exposures inhibited development at both concentrations, while 40 μg L⁻¹ also reduced mass and length. Shorter fibers were more frequently ingested, coinciding with altered host behavior and elevated infection intensities, suggesting impaired parasite avoidance. MP exposure caused modest shifts in gut microbiota. In contrast, tadpole gut microbiota was minimally altered by the parasite and MP-parasite treatments. Our findings revealed that MP fiber morphology and concentration interact to shape amphibian health and susceptibility to parasitic infection. These results underscore the importance of incorporating ecological interactions into risk assessments of MP and highlight how environmentally-relevant fiber sizes can disrupt key ecological interactions in freshwater systems.
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