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Large-Scale Spatial Distribution Patterns of Gastropod Assemblages in Rocky Shores

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Title
Large-Scale Spatial Distribution Patterns of Gastropod Assemblages in Rocky Shores
Published in
PLOS ONE, August 2013
DOI 10.1371/journal.pone.0071396
Pubmed ID
Authors

Patricia Miloslavich, Juan José Cruz-Motta, Eduardo Klein, Katrin Iken, Vanessa Weinberger, Brenda Konar, Tom Trott, Gerhard Pohle, Gregorio Bigatti, Lisandro Benedetti-Cecchi, Yoshihisa Shirayama, Angela Mead, Gabriela Palomo, Manuel Ortiz, Judith Gobin, Adriana Sardi, Juan Manuel Díaz, Ann Knowlton, Melisa Wong, Ana C. Peralta

Abstract

Gastropod assemblages from nearshore rocky habitats were studied over large spatial scales to (1) describe broad-scale patterns in assemblage composition, including patterns by feeding modes, (2) identify latitudinal pattern of biodiversity, i.e., richness and abundance of gastropods and/or regional hotspots, and (3) identify potential environmental and anthropogenic drivers of these assemblages. Gastropods were sampled from 45 sites distributed within 12 Large Marine Ecosystem regions (LME) following the NaGISA (Natural Geography in Shore Areas) standard protocol (www.nagisa.coml.org). A total of 393 gastropod taxa from 87 families were collected. Eight of these families (9.2%) appeared in four or more different LMEs. Among these, the Littorinidae was the most widely distributed (8 LMEs) followed by the Trochidae and the Columbellidae (6 LMEs). In all regions, assemblages were dominated by few species, the most diverse and abundant of which were herbivores. No latitudinal gradients were evident in relation to species richness or densities among sampling sites. Highest diversity was found in the Mediterranean and in the Gulf of Alaska, while highest densities were found at different latitudes and represented by few species within one genus (e.g. Afrolittorina in the Agulhas Current, Littorina in the Scotian Shelf, and Lacuna in the Gulf of Alaska). No significant correlation was found between species composition and environmental variables (r≤0.355, p>0.05). Contributing variables to this low correlation included invasive species, inorganic pollution, SST anomalies, and chlorophyll-a anomalies. Despite data limitations in this study which restrict conclusions in a global context, this work represents the first effort to sample gastropod biodiversity on rocky shores using a standardized protocol across a wide scale. Our results will generate more work to build global databases allowing for large-scale diversity comparisons of rocky intertidal assemblages.

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Geographical breakdown

Country Count As %
South Africa 2 2%
Australia 2 2%
Portugal 1 <1%
Norway 1 <1%
Namibia 1 <1%
United States 1 <1%
Unknown 110 93%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 29 25%
Student > Master 15 13%
Student > Ph. D. Student 13 11%
Researcher 12 10%
Student > Doctoral Student 8 7%
Other 19 16%
Unknown 22 19%
Readers by discipline Count As %
Agricultural and Biological Sciences 49 42%
Environmental Science 24 20%
Earth and Planetary Sciences 8 7%
Biochemistry, Genetics and Molecular Biology 4 3%
Medicine and Dentistry 3 3%
Other 4 3%
Unknown 26 22%