Due to their well-known antifungal activity, the intentional use of silver nanoparticles (AgNPs) as sustainable nanofungicides is expected to increase in agriculture. However, the impacts of AgNPs on plants must be critically evaluated to guarantee their safe use in food production. In this study, 4-week-old cucumber ( Cucumis sativus) plants received a foliar application of AgNPs (4 or 40 mg/plant) or Ag+ (0.04 or 0.4 mg/plant) for 7 days. Gas chromatography-mass spectrometry (GC-MS)=based nontarget metabolomics enabled the identification and quantification of 268 metabolites in cucumber leaves. Multivariate analysis revealed that all the treatments significantly altered the metabolite profile. Exposure to AgNPs resulted in metabolic repro...
Excess copper may disturb plant photosynthesis and induce leaf senescence. The underlying toxicity m...
Engineered nanoparticles (NPs) with activities that mimic antioxidant enzymes have good prospects in...
Silver nanoparticles (AgNPs) are one of the most used engineered nanomaterials. Despite progress in ...
Due to their well-known antifungal activity, the intentional use of silver nanoparticles (AgNPs) as ...
Due to their well-known antifungal activity, the intentional use of silver nanoparticles (AgNPs) as ...
Copper-based nanoparticles have wide application in agriculture as fungicides and bactericides. Due ...
Due to their unique properties, copper-based nanopesticides are emerging in the market. Thus, unders...
Because copper nanoparticles are being increasingly used in agriculture as pesticides, it is importa...
Targeted metabolomics aims to provide a new approach to investigate metabolites and gather both qual...
Because copper nanoparticles are being increasingly used in agriculture as pesticides, it is importa...
While the use of nanopesticides in modern agriculture continues to increase, their effects on crop p...
There has been an increasing influx of nanopesticides into agriculture in recent years. Understandin...
Excess copper may disturb plant photosynthesis and induce leaf senescence. The underlying toxicity m...
There has been an increasing influx of nanopesticides into agriculture in recent years. Understandin...
It is imperative to study the interaction of nanoparticles residuals with crop plants in agricultura...
Excess copper may disturb plant photosynthesis and induce leaf senescence. The underlying toxicity m...
Engineered nanoparticles (NPs) with activities that mimic antioxidant enzymes have good prospects in...
Silver nanoparticles (AgNPs) are one of the most used engineered nanomaterials. Despite progress in ...
Due to their well-known antifungal activity, the intentional use of silver nanoparticles (AgNPs) as ...
Due to their well-known antifungal activity, the intentional use of silver nanoparticles (AgNPs) as ...
Copper-based nanoparticles have wide application in agriculture as fungicides and bactericides. Due ...
Due to their unique properties, copper-based nanopesticides are emerging in the market. Thus, unders...
Because copper nanoparticles are being increasingly used in agriculture as pesticides, it is importa...
Targeted metabolomics aims to provide a new approach to investigate metabolites and gather both qual...
Because copper nanoparticles are being increasingly used in agriculture as pesticides, it is importa...
While the use of nanopesticides in modern agriculture continues to increase, their effects on crop p...
There has been an increasing influx of nanopesticides into agriculture in recent years. Understandin...
Excess copper may disturb plant photosynthesis and induce leaf senescence. The underlying toxicity m...
There has been an increasing influx of nanopesticides into agriculture in recent years. Understandin...
It is imperative to study the interaction of nanoparticles residuals with crop plants in agricultura...
Excess copper may disturb plant photosynthesis and induce leaf senescence. The underlying toxicity m...
Engineered nanoparticles (NPs) with activities that mimic antioxidant enzymes have good prospects in...
Silver nanoparticles (AgNPs) are one of the most used engineered nanomaterials. Despite progress in ...