The shell phenotypic variability of the keyhole limpet Fissurella latimarginata: insights from an experimental approach using a water flow flume

Author:

Vasconcelos Joana12,Caamaño Diego3,Tuset Víctor M4,Sousa Ricardo56,Riera Rodrigo17

Affiliation:

1. Departamento de Ecología, Facultad de Ciencias, Universidad Católica de la Santísima Concepción, Casilla 297, Concepción, Chile

2. Faculdade de Ciências da Vida, Universidade da Madeira, Campus Universitário da Penteada, Caminho da Penteada, 9020-105 Funchal, Madeira Island, Portugal

3. Departamento de Ingeniería Civil, Facultad de Ingeniería, Universidad Católica de la Santísima Concepción, Casilla 297, Concepción, Chile

4. Institute of Marine Science (CSIC), Passeig Marítim 37–49, Barcelona 08003, Cataluña, Spain

5. Direção de Serviços de Monitorização, Estudos e Investigação do Mar (DSEIMar), Direção Regional do Mar, 9000-054 Funchal, Madeira Island, Portugal

6. Observatório Oceânico da Madeira, Agência Regional para o Desenvolvimento da Investigação Tecnologia e Inovação (OOM/ARDITI), Edifício Madeira Tecnopolo, Piso 0, Caminho da Penteada, 9020-105 Funchal, Madeira Island, Portugal

7. Grupo en Biodiversidad y Conservación, IU-ECOAQUA, Universidad de Las Palmas de Gran Canaria, Marine Scientific and Technological Park, Crta Taliarte s/n, 35214 Telde, Spain

Abstract

ABSTRACT Hydrodynamics are a major environmental factor on intertidal rocky shores. Morphological responses to this factor are expected to strongly influence spatial distribution of species across environmental gradients. We here analysed the shell phenotypic variability of the limpet Fissurella latimarginata using geometric morphometric analysis. The limpets were obtained from a sheltered intertidal coastal area and a wave-exposed environment. To determine whether the shell shape variation of the intertidal molluscs is linked to their resistance to differential intertidal wave exposure, mesocosm studies were developed in a hydraulic flume to explore the effects of hydrodynamic forces on this limpet species. A unidirectional current was used to test the impacts of step-by-step increased current flow velocities for each limpet. The phenotypic variability observed in the populations of F. latimarginata was associated with habitats characterized by contrasting wave exposure. Limpets from exposed environments showed a flattened, round to laterally wider and posteriorly narrower shell shape, larger foot and higher full limpet height, and were dislodged at higher velocities. A more laterally compressed and peaked shape was found in limpets from sheltered areas and these showed a lower resistance to wave action by dislodging at lower velocities.

Publisher

Oxford University Press (OUP)

Subject

Animal Science and Zoology,Aquatic Science

Reference64 articles.

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