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DatoValore
TitleDefining seasonal functional traits of a freshwater zooplankton community Using ?13C and ?15N stable isotope analysis
AbstractFunctional-based approaches are increasingly being used to define the functional diversity of aquatic ecosystems. In this study, we proposed the use of ?13C and ?15N stable isotopes as a proxy of zooplankton functional traits in Lake Maggiore, a large, deep subalpine Italian lake. We analyzed the seasonal pattern of ?13C and ?15N signatures of different crustacean zooplankton taxa to determine food sources, preferred habitats, and trophic positions of species throughout one year. The cladocerans Daphnia longispina galeata gr., Diaphanosoma brachyurum, and Eubosmina longispina were grouped into a primary consumer functional group from their ?13C and ?15N isotopic signatures, but while the former two species shared the same food sources, the latter exhibited a more selective feeding strategy. Cyclopoid copepods occupied a distinct functional group from the other secondary consumers, being the most 15N enriched group in the lake. The ?15N signature of calanoid copepods showed trophic enrichment in comparison to Daphnia and Eubosmina and linear mixing model results confirmed a predator-prey relationship. In our study, we have demonstrated that the use of ?13C and ?15N stable isotopes represented an effective tool to define ecological roles of freshwater zooplankton species and to determine functional diversity in a lake.
SourceWater (Basel) 10 (2)
Keywordsfunctional diversity; zooplankton; seasonality; stable isotope analysis; trophic interactions
JournalWater (Basel)
EditorMolecular Diversity Preservation International, Basel,
Year2018
TypeArticolo in rivista
DOI10.3390/w10020108
AuthorsVisconti A.; Caroni R.; Rawcliffe R.; Fadda A.; Piscia R.; Manca M.
Text398834 2018 10.3390/w10020108 Scopus 2 s2.0 85041238055 ISI Web of Science WOS 000426775500018 functional diversity; zooplankton; seasonality; stable isotope analysis; trophic interactions Defining seasonal functional traits of a freshwater zooplankton community Using 13C and 15N stable isotope analysis Visconti A.; Caroni R.; Rawcliffe R.; Fadda A.; Piscia R.; Manca M. National Research Council Institute of Ecosystem Study, Largo Tonolli 50, Verbania, 28922, , Italy; Advanced Technology Institute, University of Surrey, Guildford, GU2 7XH, , United Kingdom; University of Sassari, Department of Science for Nature and Environmental Resources, Piazza Universita 21, Sassari, 07100, , Italy Functional based approaches are increasingly being used to define the functional diversity of aquatic ecosystems. In this study, we proposed the use of 13C and 15N stable isotopes as a proxy of zooplankton functional traits in Lake Maggiore, a large, deep subalpine Italian lake. We analyzed the seasonal pattern of 13C and 15N signatures of different crustacean zooplankton taxa to determine food sources, preferred habitats, and trophic positions of species throughout one year. The cladocerans Daphnia longispina galeata gr., Diaphanosoma brachyurum, and Eubosmina longispina were grouped into a primary consumer functional group from their 13C and 15N isotopic signatures, but while the former two species shared the same food sources, the latter exhibited a more selective feeding strategy. Cyclopoid copepods occupied a distinct functional group from the other secondary consumers, being the most 15N enriched group in the lake. The 15N signature of calanoid copepods showed trophic enrichment in comparison to Daphnia and Eubosmina and linear mixing model results confirmed a predator prey relationship. In our study, we have demonstrated that the use of 13C and 15N stable isotopes represented an effective tool to define ecological roles of freshwater zooplankton species and to determine functional diversity in a lake. 10 Published version http //www.scopus.com/inward/record.url eid=2 s2.0 85041238055 partnerID=q2rCbXpz Articolo 2018_Water_10_108.pdf Articolo in rivista Molecular Diversity Preservation International 2073 4441 Water Basel Water Basel Water Basel Water. Basel CARONI ROSSANA marinamarcella.manca MANCA MARINA MARCELLA roberta.piscia PISCIA ROBERTA