4.7 Article

Stable isotopes of a terrestrial amphibian illustrate fertilizer-related nitrogen enrichment of food webs in agricultural habitats

期刊

出版社

ELSEVIER
DOI: 10.1016/j.agee.2021.107553

关键词

Bufo spinosus; Agriculture; Amphibians; Habitat use; Forest; 8(15)N; 8(13)C

资金

  1. CPER (Contrat de Projet EtatRegion)
  2. FEDER (Fonds Europeen de Developpement Regional)
  3. IUF (Institut Uni-versitaire de France)
  4. CNRS (Centre Nationale de la Recherche Scientifique)
  5. Agence de l'Eau Loire-Bretagne
  6. Agence de l'Eau Adour-Garonne
  7. Region Nouvelle-Aquitaine [20171R20110, 20181R20214, 20191R20216]
  8. ANSES (Agence nationale de securite sanitaire de l'alimentation, de l'environnement et du travail)
  9. CPER ECONAT
  10. Conseil Departemental des Deux-Sevres

向作者/读者索取更多资源

By using stable isotope analysis, this study aimed to assess the habitat use of the spined toad in different environments. The results showed that 815N values can effectively distinguish agricultural habitat use, indicating its potential as a tool for assessing habitat use in terrestrial taxa. Further research is needed to explore the use of individual 815N values as indicators of other constraints in agricultural habitats.
To comprehensively assess the impacts of agricultural practices on biodiversity in complex landscapes mixing both agricultural habitats and remnants of other (presumably more favorable) types of habitats, a prerequisite is to evaluate to which extent agricultural habitats are actually used by a given species. Here, we tested whether the stable isotope method can help to discriminate habitat use of a wild vertebrate, the spined toad (Bufo spinosus). We expected habitat to influence their 813C values and the use of fertilizers to increase 815N values of individuals from agricultural landscapes. Based on 114 toads from seven sites characterized by contrasted habitats (agricultural, forest or mixed habitats), we found that toad blood 815N values were positively related to agricultural surface area, a result that was corroborated by diverging blood 815N values between habitat categories. Conversely, toad 813C values did not vary according to the habitat. Our results suggest that isotopic values (especially 815N) could be a powerful tool to assess agricultural habitat use in terrestrial taxa. Further studies should usefully investigate whether individual 815N values can be used as a fingerprint of other constraints of agricultural habitats (e.g., contaminants) in agricultural landscapes.

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