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1.
Environ Pollut ; 254(Pt A): 112977, 2019 Nov.
Article in English | MEDLINE | ID: mdl-31377326

ABSTRACT

Glyphosate, as a broad-spectrum herbicide, is frequently detected in water and several studies have investigated its effects on several freshwater aquatic organisms. Yet, only few investigations have been performed on marine macroalgae. Here, we studied both the metabolomics responses and the effect on primary production in the endemic brown algae Fucus virsoides exposed to different concentration (0, 0.5, 1.5 and 2.5 mg L-1) of a commercial glyphosate-based herbicide, namely Roundup®. Our results show that Roundup® significantly reduced quantum yield of photosynthesis (Fv/Fm) and caused alteration in the metabolomic profiles of exposed thalli compared to controls. Together with the decrease in the aromatic amino acids (phenylalanine and tyrosine), an increase in shikimate content was detected. The branched-amino acids differently varied according to levels of herbicide exposure, as well as observed for the content of choline, formate, glucose, malonate and fumarate. Our results suggest that marine primary producers could be largely affected by the agricultural land use, this asking for further studies addressing the ecosystem-level effects of glyphosate-based herbicides in coastal waters.


Subject(s)
Fucus/metabolism , Glycine/analogs & derivatives , Herbicides/toxicity , Water Pollutants, Chemical/toxicity , Agriculture , Animals , Ecosystem , Fresh Water/chemistry , Glycine/toxicity , Metabolomics , Phenylalanine/metabolism , Photosynthesis/drug effects , Shikimic Acid/metabolism , Tyrosine/metabolism , Glyphosate
2.
Mar Environ Res ; 96: 2-11, 2014 May.
Article in English | MEDLINE | ID: mdl-24582326

ABSTRACT

The green alga Caulerpa racemosa is a non-native, invasive species in the Mediterranean, and an important stressor for several native organisms. The algal capacity to produce secondary metabolites has been suggested to modulate success of the C. racemosa invasion, although many of potentially involved biological pathways still remain unexplored. In this respect, the aim of the present study was to investigate some molecular and cellular effects in the white seabream Diplodus sargus, an ecologically key species, which included the alien C. racemosa in its diet. Organisms were sampled in 2 seasonal periods from 3 locations of Southern Italy, each characterized by different levels of algal abundance. The level of caulerpin, one of the main secondary algal metabolites, in fish tissues has been used as an indicator of the trophic exposure to the seaweed and related with molecular and cellular responses. Chemical analyses indicated that fish from invaded sites can accumulate caulerpin, with liver concentrations ranging from a few up to hundreds of µg/g. Biomarkers analyses revealed only limited alterations of the main antioxidant defences, such as glutathione reductase and levels of glutathione; on the other hand, increased enzymatic activities of cytochrome P450, glutathione S-transferases and acyl CoA oxidase, as well as enhanced gene transcription for peroxisome proliferator-activated receptor alpha, cytochrome P4501A and vitellogenin 1 were observed in fish more exposed to C. racemosa as indicated by liver concentrations of caulerpin higher than 50 µg/g. Despite a direct molecular relationship with this algal metabolite could not be established, our results suggest that a C. racemosa enriched diet can modulate biotransformation and fatty acids metabolism of D. sargus. Assessing whether similar effects represent short- or long-term effects will be of crucial importance to understand consequences on the general health status and reproductive performance of exposed key fish species in the Mediterranean region.


Subject(s)
Caulerpa/chemistry , Environmental Exposure , Fish Proteins/genetics , Food Chain , Indoles/pharmacology , Perciformes/genetics , Perciformes/metabolism , Animals , Cytochrome P-450 Enzyme System/genetics , Cytochrome P-450 Enzyme System/metabolism , Environmental Monitoring , Female , Fish Proteins/metabolism , Introduced Species , Italy , Liver/metabolism , Molecular Sequence Data , PPAR alpha/genetics , PPAR alpha/metabolism , Seasons , Sequence Analysis, DNA , Vitellogenins/genetics , Vitellogenins/metabolism
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