Aug 2026· Environmental Science and Technology· Vol 60 34, pp.
24427-24438
· 0 citations· 48 references
Medicine
Abstract
Protoporphyrinogen oxidase (PPO) inhibitors have long been considered environmentally friendly herbicides due to their high efficacy and low toxicity. However, we found that a widely used PPO inhibitor butafenacil (BFA) and its transformation products (TPs) possessed exceptionally high toxicity to some marine phytoplankton (96-h EC50 of BFA were 0.71 ± 0.08 μg/L and 1.3 ± 0.06 μg/L for Skeletonema costatum and Chlorella sp., respectively). Bialgal culture experiments revealed that BFA exposure enhanced the competitive advantage of Chlorella sp., triggering a shift in dominance from other microalgae to Chlorella sp., which could alter the community structure and potentially destabilize ecological imbalances in marine environments. The degradation process of BFA in seawater could be accelerated by Phaeodactylum tricornutum, as its half-life decreased from 7.5 to 3.3 days, and 16 (13 new) TPs were identified by solid-phase extraction-liquid chromatography-high-resolution tandem mass spectrometry. Using computational toxicology, TPs with predicted toxicity comparable to parent BFA were isolated by preparative liquid chromatography and subjected to algal toxicity tests. The semiquantitative estimates indicated that the persistent high toxicity to microalgae after BFA degradation was attributable to these toxic TPs on a BFA-equivalent basis, underscoring the necessity to consider the potential environmental risks posed by TPs.
Photolysis plays a critical role in the elimination of herbicides in the environment. Butafenacil (BFA) is a protoporphyrinogen oxidase-inhibiting herbicide regarded as eco-friendly, but the toxicity of BFA photolysis products remains unclear. Natural light was found to enhance the degradation of BFA across differe...
The findings identify M. marinus G96 as a promising candidate for the biological removal and detoxification of insecticides and highlight the biotechnological potential of extremotolerant actinobacteria for the sustainable remediation of pesticide-contaminated soils, particularly in arid and dryland ecosystems.
Tasnim Hajri, R. Marasco, Ilhem Saadoouli et al.· Frontiers in Microbiology· 2 citations
Emergent macrophytes are key components in the phytoremediation of per- and polyfluoroalkyl substances (PFAS)-contaminated wastewaters, yet comparative evidence on species-specific bioaccumulation and metabolic strategies remains scarce. Here, four typical emergent plants (Juncus effusus (Je), Cyperus alternifolius (Ca...
Chang Gao, Zu-lin Hua, Li Gu· Bioresource Technology· 0 citations
Triadimefon (TF) is a pervasive triazole fungicide characterized by its high structural stability and environmental persistence, posing enduring ecological risks to soil systems. Microorganisms were the main drivers for TF removal in the environment; however, TF-degrading strains and their bioaugmentation applications...
Guo-Wei Yang, Yu-Jing Wang, Jia-Cheng Wei et al.· Journal of Hazardous Materia...· 0 citations
Ultraviolet filters (UVFs) as benzophenone-3 (BP-3; oxybenzone) and 4-methyl-benzylidene camphor (4-MBC; enzacamene) have recently been included among the Contaminants of Emerging Concern in marine ecosystems. The aim of this study was to investigate the tolerance and the remediation potential, in presence of BP-3 and...
S. Caronni, C. Rizzi, S. Groppelli et al.· Chemosphere· 0 citations
This study investigated the influence of phytohormones on enhancing the growth, physiology, and bioremediation efficiency of Chlorella sorokiniana in response to ciprofloxacin exposure and highlighted the potential of phytohormones in enhancing microalgal bioremediation efficiency and biomass production under CIP expos...