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◆ Environmental research2026-08-19

Long-term PFOA and Cadmium Co-contamination Alters Soil Carbon, Nitrogen, and Phosphorus Cycling: Insights from Metagenomics and Metabolomics.

Yanping Cai, Beihai Zhou, Shuming Liu, Chuyu Shang, Baoguo Yang, Yunqing Liu, Shengguang Zhang, Ruixue Fan, Waseem Hassan, Rongfang Yuan, Huilun Chen

原始摘要(英文原文)· Original abstract
The co-existence of perfluorooctanoic acid (PFOA) and cadmium (Cd) in soil poses a combined threat to microbial communities. However, the ecological effects and underlying mechanisms of their long-term combined exposure remain poorly understood. This study conducted a 90-day soil microcosm experiment to systematically investigate the effects of individual and combined effects of PFOA and Cd on microbial communities. Our results demonstrated that combined pollution of PFOA and Cd significantly affected four soil enzyme activities associated with carbon, nitrogen, and phosphorus cycling. It also influenced microbial thermal activity with an IC50 of PFOA at 0.94 mg/kg. The toxic interaction between PFOA and Cd varied with both toxicity indicators and exposure time. At the community level, PFOA and Cd synergistically reduced bacterial diversity and richness, while exerting more complex interactive effects on fungal communities. Metagenomic analysis revealed that PFOA and Cd significantly affected carbon, nitrogen, and phosphorus cycling by inhibiting inorganic phosphorus solubilization genes (gcd, pqqC) and altering key genes in carbon fixation and nitrogen transformation. Metabolomic profiling further demonstrated that PFOA disrupted membrane lipid homeostasis and amino acid metabolism. Meanwhile, the co-existence of Cd exacerbated disturbances in sugar and carbon metabolism. Our findings provide genetic-level insights into microbial responses to long-term PFOA and Cd co-contamination. These results are essential for risk assessment at such co-contamination sites.
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Long-term PFOA and Cadmium Co-contamination Alters Soil Carbon, Nitrogen, and Phosphorus Cycling: Insights from Metagenomics and Metabolomics. — 科研速览 Science Skim