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March 21, 2026Marine Environmental Research2 citationsOpen Access

Fishing trawlers drive the fine-scale daytime distribution of bottlenose dolphins at the Tiber River estuary (Western Mediterranean Sea)

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MLMaria Silvia LabriolaAPAntonio ParisiNMNadia Marinchel

Key Points

  • The study aims to understand how fishing trawlers affect the daytime distribution of bottlenose dolphins at the Tiber River estuary.
  • Analyzed five years of boat-based survey data and Vessel Monitoring System fishing data.
  • Used multivariate analysis to assess spatial and temporal correlations.
  • Employed generalized linear mixed-effects models to model dolphin occurrence based on environmental factors.
  • Dolphin presence significantly correlated with fishing hotspots.
  • On trawling days, dolphins shifted farther offshore, likely feeding on trawler-associated prey.
  • Certain trawlers were identified as having a strong positive effect on dolphin occurrence.

Abstract

Fisheries can strongly alter marine ecosystem dynamics, influencing the ecology and behaviour of top predators such as cetaceans. At the Tiber River estuary (Tyrrhenian Sea, Western Mediterranean), bottlenose dolphins ( Tursiops truncatus ) frequently interact with bottom trawlers operating off the coast of Rome. We combined five years (2019-2023) of boat-based survey data with fishing data derived from the Vessel Monitoring System (VMS) to assess the influence of trawling activity on dolphin distribution. Spatial and temporal correlations between dolphin presence and fishing effort were analysed using multivariate analysis and overlap metrics. Dolphin occurrence was modelled relative to environmental and vessel-level predictors with generalized linear mixed-effects models (GLMMs), incorporating chlorophyll-a concentration (concurrent and lagged) as a proxy for productivity. In the area where sufficient survey effort was invested, dolphin presence was strongly associated with fishing hotspots, and dolphins shifted farther offshore on trawling days, indicating an ecological switch from nearshore natural resources to trawler-associated prey. Spatial overlap varied markedly among vessels, indicating preferences for certain trawlers. GLMMs identified specific vessels with a significant positive effect on dolphin occurrence, even after controlling for productivity. Catch analysis revealed these vessels landed higher amounts of European hake and common octopus, key dolphin prey species. Findings suggest dolphins exhibit flexible, and possibly socially acquired, foraging strategies in response to fisheries, with trawling acting as a strong driver of their distribution. While adaptive, such associations may reduce natural foraging, alter ecological dynamics, and pose conservation issues. This study provides a fine-scale perspective of fishery-driven behavioural change in dolphins and offers actionable insights for local management under EU marine biodiversity directives.

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Cite This Study

Labriola et al. (2026) studied this question.

synapsesocial.com/papers/69be38356e48c4981c6786b8https://doi.org/10.1016/j.marenvres.2026.107996
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