Proteomics

Dataset Information

0

LC-MSMS analysis of muscle in the gilt-head sea bream depending on pollutant levels


ABSTRACT: The oceans are now all affected by human activities. The study of the impact of pollution on the health status of exploited marine populations is essential to better understand the direct constraints that stress generates on growth, reproduction, immune system and, ultimately, on the reproductive success of animals. Interactions between different stressors can generate non-additive effects ("cocktail effects"), which makes experimental models under controlled conditions based on only one or a few "stressors" insufficient. Thus, quantitative proteomics was used to analyse muscle proteome of wild gilt-head sea bream evolving in the Mediterranean Sea (coastal area) with contrasting levels of organic and inorganic contamination. The prospects of researching biomarkers of health status that can be used as indicators of the status of a population or an ecosystem are of major interest for the monitoring and management of natural environments, hence promoting the conservation and management of marine species.

INSTRUMENT(S): Q Exactive HF-X

ORGANISM(S): Sparus Aurata

TISSUE(S): Muscle

SUBMITTER: Fabrice BERTILE  

LAB HEAD: Sarah Cianférani

PROVIDER: PXD037412 | Pride | 2025-03-17

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
MQresults_Sparus_Muscle.zip Other
QX24843NC_220803165305.raw Raw
QX24846NC_220803202022.raw Raw
QX24847NC_220803222618.raw Raw
QX24850NC_220804014940.raw Raw
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Publications

Molecular fingerprint of gilthead seabream physiology in response to pollutant mixtures in the wild.

Beauvieux Anaïs A   Fromentin Jean-Marc JM   Romero Diego D   Couffin Nathan N   Brown Adrien A   Metral Luisa L   Bourjea Jérôme J   Bertile Fabrice F   Schull Quentin Q  

Environmental pollution (Barking, Essex : 1987) 20231030 Pt 2


The increase in trace element concentrations in the aquatic environment due to anthropogenic activities, urges the need for their monitoring and potential toxicity, persistence, bioaccumulation, and biomagnification at different trophic levels. Gilthead seabream is a species of commercial importance in the Mediterranean Sea, both for the aquaculture and fisheries sectors, however very little is known about their trace element contamination accumulation and the resulting effect on their health st  ...[more]

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