Microhabitat partitioning between sympatric intertidal fish species highlights the importance of sediment composition in gravel beach conservation

Author:

Wagner Maximilian12ORCID,Benac Čedomir3ORCID,Pamić Maja45,Bračun Sandra1,Ladner Martin1,Plakolm Pia Clarissa1,Koblmüller Stephan1ORCID,Svardal Hannes2ORCID,Brandl Simon J.6ORCID

Affiliation:

1. Institute of Biology University of Graz Graz Austria

2. Department of Biology University of Antwerp Antwerp Belgium

3. Faculty of Civil Engineering University of Rijeka Rijeka Croatia

4. Faculty of Science University of Zagreb Zagreb Croatia

5. Public Institution Kamenjak Premantura Croatia

6. Department of Marine Science, Marine Science Institute The University of Texas at Austin Port Aransas Texas USA

Abstract

AbstractGravel beaches in the Mediterranean ecoregion represent an economically important and unique habitat type. Yet, burgeoning tourism, intensive coastal development and artificial nourishment of beaches may jeopardize their ecological communities. To date, species that reside on gravel beaches and the consequences of beach alterations are poorly understood, which hampers the development of a sustainable coastal tourism industry along the region's shorelines. Using a simple collection method based on dredging buckets through the intertidal section of beaches, we quantified the microhabitat association of two sympatric clingfish species in the genus Gouania at seven natural and an artificial gravel beach based on sediment characteristics. We hypothesized that slender (G. pigra) and stout (G. adriatica) morphotypes would partition interstitial niche space based on sediment size, which may affect the vulnerability of the species to changes in gravel beach composition due to coastal development. We detected substantial differences in gravel composition within and among the sampled beaches which suggests scope for microhabitat partitioning in Gouania. Indeed, we found significant relationships between species identity and the presence/absence and abundance of individuals in hauls based on their positioning on PC1. Our results suggest that modifications of gravel beaches through coastal development, including beach nourishment, intensifying coastal erosion, or artificial beach creation, may have detrimental consequences for the two species if sediment types or sizes are altered. We posit that, given the simplicity and efficacy of our sampling method and the sensitivity of Gouania species to prevailing gravel composition, the genus could serve as an important indicator for gravel beach management in the Mediterranean ecoregion.

Publisher

Wiley

Subject

Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics

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