Biology (Aug 2023)

Trophic Position of the Species and Site Trophic State Affect Diet Niche and Individual Specialization: From Apex Predator to Herbivore

  • Lukáš Vejřík,
  • Ivana Vejříková,
  • Petr Blabolil,
  • Zuzana Sajdlová,
  • Luboš Kočvara,
  • Tomáš Kolařík,
  • Daniel Bartoň,
  • Tomáš Jůza,
  • Marek Šmejkal,
  • Jiří Peterka,
  • Martin Čech

DOI
https://doi.org/10.3390/biology12081113
Journal volume & issue
Vol. 12, no. 8
p. 1113

Abstract

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Intra-species variability in isotopic niches, specifically isotopic total niche width (ITNW), isotopic individual niche width (IINW), and isotopic individual specialization (IIS), was studied using an innovative approach without sacrificing the vertebrates. Stable isotopes (δ13C, δ15N) in four body tissues differing in isotopic half-life were analyzed from four freshwater fish species representing different trophic positions. ITNW was widest for the apex predator (European catfish) and narrowest for the obligate predator (Northern pike). IINW exhibited a polynomial trend for the European catfish, Northern pike, and Eurasian perch (mesopredator), decreasing with body mass and increasing again after exceeding a certain species-dependent body mass threshold. Thus, for ectotherms, apex predator status is linked rather to its size than to the species. In herbivores (rudd), IINW increased with body mass. The IIS of predators negatively correlated with site trophic state. Therefore, eutrophication can significantly change the foraging behavior of certain species. We assume that the observed trends will occur in other species at similar trophic positions in either aquatic or terrestrial systems. For confirmation, we recommend conducting a similar study on other species in different habitats.

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