Author:
Li Yi,Chen Xinqi,Wang Xinzi,Shang Jiahui,Niu Lihua,Wang Longfei,Zhang Huanjun,Zhang Wenlong
Abstract
Paroxetine is a common pharmaceutical to treat depression and has been found to pose threats to aquatic organisms. However, little is known about the effects of paroxetine on the nutrient cycle in aquatic environments. Therefore, DNA metabarcoding is used in this study to analyze the effects of paroxetine on multi-trophic microorganisms and nitrogen transformation in river sediments. Although paroxetine has no significant effect on the diversity of microbenthos, changes in benthic nitrogen-converting bacteria are consistent with the change in the various forms of nitrogen in the sediment, indicating that paroxetine affects the nitrogen conversion process by affecting nitrogen-converting bacteria. In addition, it is found that paroxetine has the ability to influence nitrogen transformation in an indirect way by affecting the trophic transfer efficiency of higher trophic levels (meiofauna and protozoa, protozoa and protozoa), subsequently affecting the growth of nitrogen-converting bacteria through a top-down mechanism (i.e., predation).The results show that paroxetine affects nitrogen transformation directly by affecting nitrogen-converting bacteria and indirectly through top-down effects, emphasizing that the assessment of paroxetine’s ecological risks should consider species within different trophic levels.
Funder
the National Key R&D Program of China
the Special fund for Carbon Peak and Carbon Neutrality science and technology innovation of Jiangsu Province in 2022
Nanjing Environmental Protection Research Project of 2021 ‘Water Quality Parameters Inversion of Chuhe Sancha Estuary Based on Automatic Water Quality Monitoring and Hyperspectral Technology’
Subject
Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health
Cited by
1 articles.
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