New publication: From the pool to the sea: Applicable isotope turnover rates and diet to skin discrimination factors for bottlenose dolphins (Tursiops truncatus)
Dear all, We are pleased to announce the publication of the following paper in "Journal of Experimental Marine Biology and Ecology": Giménez, J., Ramírez, F., Almunia, J., Forero, M. G., de Stephanis, R. (2016) From the pool to the sea: Applicable isotope turnover rates and diet to skin discrimination factors for bottlenose dolphins (*Tursiops truncatus*). Journal of Experimental Marine Biology and Ecology 475:54-61. *Abstract:*One of the most common applications in isotopic ecology is the assessment of animal's assimilated diet through mass-balance mixing models. Its applicability relies on the use of accurate diet to tissue discrimination factors and turnover rates, which are known to vary as a function of several factors including taxon or tissue type. To date, few studies have assessed isotopic discrimination factors and turnover rates in cetacean species under controlled conditions. Previous experimental studies focused on blood, a difficult sample to obtain in the wild, or on a more appropriate tissue, the skin, but assessed in short experimental trials without arriving to the isotopic equilibrium. We carried out the longest controlled feeding experiment available (350 days) in bottlenose dolphins (*Tursiops truncatus*) in order to assess discrimination factors and turnover rates in skin. Animals' isotopic composition was first stabilized by maintaining individuals under an isotopically constant diet during 172 days. Afterwards, diet was shifted and maintained during 178 days to calculate isotopic discrimination and turnover rates. Estimates for isotopic discrimination factors were 1.01 ± 0.37‰ (mean ± sd) for *δ*13C and 1.57 ± 0.52‰ for *δ*15N. Half-life turnover rates were estimated to be 24.16 ± 8.19 days for carbon and 47.63 ± 19 days for nitrogen. This is the first time that applicable values are available to assess the diet of free ranging small cetaceans through stable isotope mixing model analysis. You can download the paper in: http://www.sciencedirect.com/science/article/pii/S0022098115300514 or visit my ResearchGate (https://www.researchgate.net/profile/Joan_Gimenez2) Kind Regards, Joan Giménez -- *Joan Giménez Verdugo* *PhD Student* *Severo Ochoa* Estación Biológica de Doñana (EBD-CSIC) Department of Conservation Biology Americo Vespucio Ave, s/n 41092 Sevilla (Spain) www.ebd.csic.es --- Research Gate: Joan Giménez <https://www.researchgate.net/profile/Joan_Gimenez2> Phone: +34 619 176 849 ü Please consider the environment before printing this E-mail
Dear all, We are pleased to announce the publication of the following paper in "Environmetal Research": Sala, B., Giménez, J., de Stephanis, R., Barceló, D., & Eljarrat, E. (2019). First determination of high levels of organophosphorus flame retardants and plasticizers in dolphins from Southern European waters. *Environmental Research*. *Abstract:* This study evaluates for the first time organophosphorus flame retardant (OPFR) occurrence in the Alboran Sea delphinids (Spain). OPFRs were detected in all the individuals with concentration levels up to 24.7 μg/g lw. Twelve out of sixteen tested analytes were detected, being TBOEP which presented the highest detection frequency, and IDPP which presented the highest levels of concentration. OPFR distribution in different tissues (blubber, brain, kidney, muscle and liver) was evaluated. The pattern distribution showed the highest contribution for blubber (mean value of 68%) and the lowest contribution for liver (mean value of 2%). Seven OPFRs were detected in brain samples showing their capacity to surpass the blood-brain barrier and reach the brain. Moreover, high affinity for the brain tissue was observed. This is extremely important due to the neurotoxic effects of several compounds such as TCEP and TNBP. OPFR levels were compared with previously published PBDE concentrations, and no significant differences were observed. Taking into account the lower use and lower bioaccumulation and biomagnification capacities of OPFRs, this could indicate an additional OPFR source of pollution in addition to their use as FRs. You can download the paper in: https://authors.elsevier.com/c/1Ydla3Ao5rVdE or visit my ResearchGate (https://www.researchgate.net/profile/Joan_Gimenez2 ) Kind Regards, Joan Giménez -- *Joan Giménez, PhD* *Postdoctoral Researcher* Institut de Ciències del Mar (ICM-CSIC) Passeig Maritim 37-49 E-08003 Barcelona (Spain). www.icm.csic.es --- Personal website: http://gimenezverdugo.wixsite.com/joangimenez Research Gate: Joan Giménez <https://www.researchgate.net/profile/Joan_Gimenez2> Phone: +34 619 176 849 ü Please consider the environment before printing this E-mail
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Joan Giménez Verdugo