EARL

The effect of emergent compounds and climate change in aquatic organisms with different early life history strategies

 Coordinatore BANGOR UNIVERSITY 

 Organization address address: COLLEGE ROAD
city: BANGOR
postcode: LL57 2DG

contact info
Titolo: Ms.
Nome: Christine
Cognome: Davey
Email: send email
Telefono: +44 1248 382136
Fax: +44 1248 382042

 Nazionalità Coordinatore United Kingdom [UK]
 Totale costo 210˙092 €
 EC contributo 210˙092 €
 Programma FP7-PEOPLE
Specific programme "People" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call FP7-PEOPLE-2010-IEF
 Funding Scheme MC-IEF
 Anno di inizio 2011
 Periodo (anno-mese-giorno) 2011-08-01   -   2013-07-31

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    BANGOR UNIVERSITY

 Organization address address: COLLEGE ROAD
city: BANGOR
postcode: LL57 2DG

contact info
Titolo: Ms.
Nome: Christine
Cognome: Davey
Email: send email
Telefono: +44 1248 382136
Fax: +44 1248 382042

UK (BANGOR) coordinator 210˙092.80

Mappa


 Word cloud

Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.

serratus    multiple    palaemon    economically    differ    adult    populations    stressors    varians    related    strategies    variability    appear    individuals    affect    salinity    organisms    animals    combined    adapt    larvae    climate    biochemistry    larval    shrimps    estuarine    strategy    aquatic    environmental    population    hypothesis    compounds    species    adaptive       emergent    traits    combine    survival    climatic    scientists    facilities    tools    shrimp    responses    life    survive    habitat    pharmaceutical    ecosystems    stress    coastal    vulnerable    marine    closely    earl    history    concentrations    pharmaceuticals    temperature    found    stages    predict    ecology    stage    longirostris    environment    exposed   

 Obiettivo del progetto (Objective)

'A present challenge in global change research is to determine and understand how multiple environmental stressors combine to affect individuals, populations and ecosystems. In the marine habitat, stressors appear to strongly affect the larval stages. Most aquatic animals develop through dispersive larval stages, highly vulnerable, that must survive and recruit to the adult stocks in order to ensure population persistence; failures in recruitment lead to population extinction. However, organisms differ in their life history strategy and habitat use, even if they are closely related; these differences may have profound effects on responses to stress. The objective of this proposal is to evaluate the combined role of climate driven variables (salinity, temperature) and anthropogenic compounds (pharmaceuticals) on aquatic animals with different life history strategy. Both salinity and temperature are forced by climate; concentrations of pharmaceuticals have been determined in coastal waters only recently and constitute an “unknown” as a source of larval mortality. The hypothesis is that larval responses to a combination of temperature, salinity and concentration of pharmaceuticals will depend on the life history. This will be tested using three closely related species of European shrimp (Palaemon serratus, P. longirostris and Palaemonetes varians) with different life history. These are economically relevant estuarine-coastal shrimp, exposed to important environmental variability. The project will follow a modern comparative experimental approach evaluating the performance of larvae characterized by different functional traits. This proposal works on multidisciplinary aspects with tools from ecology, biochemistry and modeling, establishing mechanistic relationships between larval traits, adaptive strategies and larval survival. The results will help to predict changes at the level of populations and adapt aquaculture facilities in response to future climatic conditions.'

Introduzione (Teaser)

Scientists investigating the impacts of climate change need to understand how multiple environmental stressors combine to affect individuals, populations and ecosystems. In marine ecosystems, stressors appear to have a significant effect on the larval stages of organisms.

Descrizione progetto (Article)

Most aquatic organisms pass through a highly vulnerable larval stage, which they must survive into adulthood in order for the population to continue. However, even closely related species differ in their life history and use of habitat, which can make a major difference in how they respond to stress.

An EU-funded project, EARL, studied the combined role of salinity and temperature (which are influenced by climate change) and pharmaceuticals on marine organisms. Researchers used three closely related species of European shrimp (Palaemon serratus, P. longirostris and P. varians). The hypothesis was that the shrimp larvae's responses to the different stressors will depend on their life history.

The species used were economically and ecologically important estuarine-coastal shrimps, which were exposed to environmental variability. Scientists used tools from ecology and biochemistry to establish the relationship between larval traits, adaptive strategies and larval survival.

Exposure to pharmaceuticals was carried out using a control treatment and specimens exposed to three selected pharmaceutical compounds. The concentrations used reflected those found in the environment. They were also exposed to concentrations 20-40 times higher than those found in nature in order to investigate threshold concentrations that lead to sub-lethal effects.

The three chosen pharmaceutical compounds were diclofenac sodium, clofibric acid and clotrimazole. Results showed how the effects of these emergent compounds were different among the model species and stronger when the shrimps were under some additional stress.

Researchers concluded that an assessment of the effects of emergent compounds should take environmental stress into account when designing experiments. This involves considering inter-specific life histories approach and more than one stage (embryonic, larval, juvenile or adult) in species with complex life cycles.

EARL will fill a current gap in the scientific knowledge as research is scarce with regard to larval biology and trait-mediated effects in the marine environment. The project's methods can be used as a guide for future research on the effects of pharmaceuticals on physiological processes or on the effects of pollution on ecosystems.

Furthermore, results from the EARL initiative will help to predict changes at the population level and help research facilities to adapt in response to future climatic conditions.

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