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September 20, 2025Frontiers in MicrobiologyOpen Access

Harnessing beneficial bacteria to remediate antibiotic-polluted agricultural soils: integrating source diversity, bioavailability modulators, and ecological impacts

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Authors

OOOluwaseyi Samuel OlanrewajuCBCornelius Carlos Bezuidenhout

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Overview

This review evaluates antibiotic contamination’s ecological impacts and highlights beneficial bacteria's bioremediation potential.

Key Points

  • Antibiotic contamination threatens food security and public safety through the proliferation of resistant genes.
  • Bioavailability of antibiotics in soil is influenced by factors like pH and organic matter, impacting their degradation.
  • The review emphasizes beneficial bacteria's mechanisms for bioremediation, such as enzymatic biodegradation and biofilm formation.
  • Challenges remain in deploying effective microbial bioremediation strategies amid regulatory and technological constraints.

Cite This Study

Olanrewaju et al. (2025) studied this question.

synapsesocial.com/papers/68d46aae31b076d99fa677d0https://doi.org/10.3389/fmicb.2025.1635233
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Emerging Microbial and Enzymatic Approaches for Sustainable Antibiotic Biodegradation in Livestock Manure to Mitigate Water Pollution Risks2025
  2. 2Antibiotics-heavy metals combined pollution in agricultural soils: Sources, fate, risks, and countermeasures2024 · 65 citations
  3. 3Green Solutions to a Growing Problem: Harnessing Plants for Antibiotic Removal from the Environment2025
  4. 4The bidirectional ecological effects of earthworms on antibiotics and resistance genes in soil ecosystems: Health risks under one health framework2026 · 1 citations
  5. 5Antibiotics in the Environment: Occurrence, Enhanced Removal Strategies and Future Prospects2026