This structured critical narrative review evaluates the bacterial transformation of six selected organophosphate pesticides—chlorpyrifos, methyl parathion, parathion, diazinon, malathion, and phosalone—in relation to chemical, mechanistic, and environmental evidence. Peer-reviewed literature was searched in Scopus and PubMed for the period from 1 January 2020 to 26 August 2026 and was supplemented by backward-reference screening and forward citation tracking of foundational studies. Evidence was assessed across eight domains spanning association, tolerance, controlled dissipation, product-resolved transformation, mechanistic attribution, non-sterile-soil validation, detoxification or ecological recovery, and field readiness. The selected compounds reveal substantial differences in pathway resolution: chlorpyrifos has the most developed parent–product evidence base, methyl parathion and parathion are comparatively well characterized at the hydrolytic and enzyme levels, diazinon and malathion retain important downstream uncertainties, and phosalone remains an unresolved evidence-gap comparator. The synthesis shows that credible soil bioremediation requires convergence among parent–product kinetics, catalytic attribution, transformation-product turnover, performance beyond natural attenuation, toxicity reduction, and recovery of relevant soil or plant functions.
Co-contaminated soils bearing simultaneous heavy metal and organophosphate pesticide loads present a toxicological complexity that single-contaminant bioremediation frameworks cannot adequately address. This study applies a two-block evidence framework to Planomicrobium sp. A9, an indigenous isolate from industrially c...
Anjali Phogat· Natural Resources for Human...· 0 citations
Modified mycotoxins represent a significant yet underappreciated challenge in food safety assessment. Unlike their parent compounds, modified mycotoxins arise from plant, fungal, animal, microbial, or processing-induced transformations. Their toxicological relevance depends on factors such as bioavailability, reconvers...
Su Been Park, Soyoung Gwon, Hyun-Gyun Yuk et al.· Comprehensive Reviews in Foo...· 0 citations
Neonicotinoid insecticides (NEOs) are continuously released into soil–plant systems due to the extensive application, posing risks to ecosystems and food safety. This review critically synthesizes the uptake, metabolic transformation, and bioremediation of NEOs, moving beyond general descriptions to identify key me...
Wen-Wen Guo, Jia-Yue Liu, Yi-Chen Yang et al.· New Plant Protection· 0 citations
Selenium (Se) biotransformation by microorganisms determines how inorganic selenium is redistributed into organic selenium, selenium nanoparticles (SeNPs), methylated species, and other intracellular or extracellular pools. Although microbial selenium metabolism has been extensively studied, evidence supporting individ...
Chlorpyrifos (CPF) is the most commonly used organophosphorus insecticide in agriculture globally. This has raised concerns due to its persistence, bioaccumulation, neurotoxicity, and environmental and human health effects. Until 2020, CPF was the most commonly used pesticide in European Union (EU) food production. CPF...
Aminur Rahman, P. Shinu, J. S. Senthil Kumar et al.· Fermentation· 0 citations
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