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Modeling trophic flows in the wettest mangroves of the world: the case of Bahía Málaga in the Colombian Pacific coast

  • Gustavo A. Castellanos-Galindo
  • Jaime Cantera
  • Natasha Valencia
  • Sebastian Giraldo
  • Enrique Peña
  • Lotta C. Kluger
  • Matthias Wolff

Abstract

The structurally most developed Neotropical mangrove forests are found along the southern and central macrotidal Colombian Pacific coast. This extremely rainy area (>7,000 mm year−1) is sparsely populated and sustains a relatively small artisanal fishery. In this article, we present an ecosystem (trophic) model, built using Ecopath with Ecosim, containing 18 functional groups of a representative mangrove area of this coast. Similar to other mangrove ecosystem models, mangroves contribute most (96%) to total system biomass, providing the primary food source for other important compartments (e.g., crabs). However, most of the mangrove litterfall is constantly washed away by tidal currents, a possible reason for the very low mean transfer efficiencies to higher trophic levels and low biomass of epifauna and nekton found, compared with other Neotropical mangroves. Fish biomass is dominated by zoobenthivores (snappers, catfishes) and detritivores (mullets) which represent, together with mangrove cockles, the target resources of a low trophic level-based fishery. Very low salinities throughout the year may contribute to an impoverished community of primary and secondary consumers that is able to withstand but not flourish under these conditions. This mangrove ecosystem may be highly vulnerable to overexploitation according to the low energy reserve (overhead) of the system.

Zitiere diese Aktivität

Castellanos-Galindo G.A., Cantera J., Valencia N., Giraldo S., Peña E., Kluger L.C. and Wolff M. (2017) Modeling trophic flows in the wettest mangroves of the world: the case of Bahía Málaga in the Colombian Pacific coast. Hydrobiologia 803(1): 13-27. 10.1007/s10750-017-3300-6

Details

Datum 14.07.2017
Journal Hydrobiologia
Issue 1
Volume 803
Seiten 13-27
Open Access Closed Access
Open Access Status Closed Access
Eprints_link https://cris.leibniz-zmt.de/id/eprint/1711
Peer-Reviewed

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