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February 22, 2026Water Environment Research0 citations

Effect Mechanisms of Bisphenol A (BPA) on Aerobic Denitrification: Hierarchical Gene Suppression and Oxidative Stress

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MGMengyao GuiHYHongwei YangKLKun Li

Key Points

  • The study aims to understand how Bisphenol A (BPA) affects aerobic denitrification and microbial processes.
  • Evaluated the effects of BPA on Pseudomonas stutzeri HD4‐1
  • Measured nitrate reduction rates and nitrite accumulation
  • Assessed oxidative stress and cytomembrane damage
  • Analyzed transcriptional repression of key genes
  • Investigated declines in electron transport system activity
  • Nitrate reduction rates decreased by 33%–95% at BPA concentrations ≥ 1 mg L −1
  • Nitrite accumulation ranged from 54.7–78.3 mg L −1
  • Exponential N 2 O emission increased by 147-fold
  • Oxidative stress markers increased by 152.6%–225.6%
  • Gene expression changes indicated a hierarchy of suppression affecting nitrogen cycling.

Abstract

ABSTRACT Bisphenol A (BPA), a pervasive endocrine‐disrupting compound (EDC), threatens microbial nitrogen cycling, yet its mechanisms in disrupting aerobic denitrification remain poorly defined. This study elucidates the inhibitory effects of BPA on Pseudomonas stutzeri HD4‐1. Dose‐dependent suppression was evident: nitrate reduction rates decreased by 33%–95% at ≥ 1 mg L −1 BPA, accompanied by nitrite accumulation (54.7–78.3 mg L −1 ) and exponential N 2 O emission (76.7 mg L −1 , 147‐fold increase). Mechanistically, BPA induced oxidative stress (ROS: 152.6%–225.6% of control), cytomembrane damage (LDH release: 125.6%–232.1%), and metalloenzyme inactivation (N 2 OR activity inhibition: 94.5%–96.4%). Concurrent transcriptional repression—notably of nosZ (2.8–9.3‐fold suppression)—impaired N 2 O reduction, compounded by 33%–77% declines in electron transport system activity (ETSA), exacerbating metabolic bottlenecks. Gene inhibition hierarchy ( nosZ > cnorB > nirS > napA ) mirrored preferential failure of terminal denitrification steps. The insight into effect mechanism of BPA on aerobic denitrification is of particular significance to provide its ecological risk assessment in aquatic ecosystems and upgrade nitrogen removal process in EDC‐containing wastewater treatment plant.

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Cite This Study

Gui et al. (2026) studied this question.

synapsesocial.com/papers/699a9d65482488d673cd33a6https://doi.org/10.1002/wer.70316
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