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PFAS exposure suppresses leaf litter decomposition in a stream ecosystems

August 2, 2026

Decomposition of organic matter is critical to the biogeochemical cycling of carbon and nutrients in all ecosystems. In streams, decomposition can be influenced by anthropogenic impacts, including contaminants. Per- and polyfluoroalkyl substances (PFAS) are resistant to degradation and widespread in freshwater ecosystems, yet little is known about their influence on organic matter processing in streams. We paired an observational field study of a PFAS-impacted stream via food processing wastewater with a 28-day laboratory experiment to investigate PFAS effects on leaf litter processing using multiple lines of evidence. Leaf litter decomposition rates and microbial respiration were significantly lower downstream of the PFAS point-source compared to the paired upstream site. We hypothesized that PFAS suppressed microbial activity thereby resulting in slower decomposition rates. To investigate further and better isolate PFAS, we dosed aquatic mesocosms containing leaf packs with differing concentrations of perfluorooctane sulfonate (PFOS). Over the 28-day incubation, decomposition rates did not differ, but we observed lower respiration rates on day 28 and higher dissolved organic carbon (DOC) in PFOS-dosed mesocosms, suggesting that PFAS may suppress microbial activity and inhibit carbon processing. These results underscore that concerns regarding PFAS contamination extend beyond organismal toxicity to ecosystem-level effects. Further research is needed to understand the scale, implications, and mechanisms responsible for these changes.

Publication Year 2026
Title PFAS exposure suppresses leaf litter decomposition in a stream ecosystems
DOI 10.1016/j.aquatox.2026.107966
Authors Alison M. Zachritz, Abagael N. Pruitt, Therese M. Reisch, Daniele A. Miranda, Brittany G. Perrotta, Laura E. Hubbard, Christopher James Kotalik, Dana W. Kolpin, David M. Walters, Jennifer L. Tank, Gary A. Lamberti
Publication Type Article
Publication Subtype Journal Article
Series Title Aquatic Toxicology
Index ID 70278430
Record Source USGS Publications Warehouse
USGS Organization Upper Midwest Water Science Center
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