4.4 Article

Isotopic variation in five species of stream fishes under the influence of different land uses

Journal

JOURNAL OF FISH BIOLOGY
Volume 87, Issue 3, Pages 559-578

Publisher

WILEY
DOI: 10.1111/jfb.12734

Keywords

carbon; food resources; nitrogen; stable isotopes; trophic position; trophic webs

Funding

  1. National Council for Scientific and Technological Development (Conselho Nacional de Desenvolvimento Cientifico e Tecnologico, CNPq)
  2. Coordination for the Improvement of Higher Education Personnel (Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior, CAPES)
  3. Minas Gerais Power Company (Companhia Energetica de Minas Gerais, CEMIG)
  4. P&D ANEEL/CEMIG GT [487]
  5. UFLA
  6. Ministry of Environment (MMA)
  7. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (CNPq) [302960/2011-2, 306325/2011-0]
  8. Fundacao de Amparo a Pesquisa do Estado de Minas Gerais (FAPEMIG) [PPM-00077/13, PPM-00237/13]

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The aim of this study was to test if changes in land use alter the isotopic signature of fish species, promoting changes in the trophic position and food resource partitioning between these consumers. Three different systems were investigated: pasture streams (n = 3), streams in sugar cane plantations (n = 3) and reference streams (n = 3). Fish species Aspidoras fuscoguttatus, Astyanax altiparanae, Characidium zebra, Hisonotus piracanjuba and Knodus moenkhausii were selected, and their nitrogen and carbon isotopic compositions were estimated to assess changes in the trophic level and partitioning of food items consumed. The composition of C-13 (parts per thousand) only differed among the land use categories for A. altiparanae, H. piracanjuba and K. moenkhausii. Resource partitioning was different for all species, with changes in the sources or proportions they consumed in each land use category, but only A. altiparanae introduced new food sources in large quantity in altered land uses. It is important to note, however, that the results from the resource partitioning analysis are limited due to large overlapping of isotopic signatures between the analysed food resources. All fish species exhibited variation in N-15 (parts per thousand), with the highest values found in streams under sugar cane or pasture influence. Despite the variation in nitrogen isotopic values, only C. zebra and H. piracanjuba displayed changes in trophic level. Therefore, it is believed that the increase in the N-15 (parts per thousand) value of the individuals collected in streams under the influence of sugar cane or pasture was due to the greater influence of livestock dung and chemical and organic fertilizers. The results also highlight the importance of studying consumer species along with all forms of resources available at each location separately, because the signatures of these resources also vary within different land uses. (C) 2015 The Fisheries Society of the British Isles

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