Scinovex
articleTop 1% cited

Contrasting changes in taxonomic vs. functional diversity of tropical fish communities after habitat degradation

Ecological Applications · 2010 · Vol. 20(6) · pp. 1512–1522
Sébastien VillégerJulia Ramos MirandaDomingo Flores HernándezDavid Mouillot

Abstract

Human activities have strong impacts on ecosystem functioning through their effect on abiotic factors and on biodiversity. There is also growing evidence that species functional traits link changes in species composition and shifts in ecosystem processes. Hence, it appears to be of utmost importance to quantify modifications in the functional structure of species communities after human disturbance in addition to changes in taxonomic structure. Despite this fact, there is still little consensus on the actual impacts of human-mediated habitat alteration on the components of biodiversity, which include species functional traits. Therefore, we studied changes in taxonomic diversity (richness and evenness), in functional diversity, and in functional specialization of estuarine fish communities facing drastic environmental and habitat alterations. The Terminos Lagoon (Gulf of Mexico) is a tropical estuary of primary concern for its biodiversity, its habitats, and its resource supply, which have been severely impacted by human activities. Fish communities were sampled in four zones of the Terminos Lagoon 18 years apart (1980 and 1998). Two functions performed by fish (food acquisition and locomotion) were studied through the measurement of 16 functional traits. Functional diversity of fish communities was quantified using three independent components: richness, evenness, and divergence. Additionally, we measured the degree of functional specialization in fish communities. We used a null model to compare the functional and the taxonomic structure of fish communities between 1980 and 1998. Among the four largest zones studied, three did not show strong functional changes. In the northern part of the lagoon, we found an increase in fish richness but a significant decrease of functional divergence and functional specialization. We explain this result by a decline of specialized species (i.e., those with particular combinations of traits), while newly occurring species are redundant with those already present. The species that decreased in abundance have functional traits linked to seagrass habitats that regressed consecutively to increasing eutrophication. The paradox found in our study highlights the need for a multifaceted approach in the assessment of biodiversity changes in communities under pressure.

Marine and coastal plant biologyMarine and fisheries researchMarine Biology and Ecology ResearchSpecies evennessSpecies richnessEcologyBiodiversityHabitatEcosystemBiologyAbiotic componentSpecies diversity

MeSH terms

AnimalsConservation of Natural ResourcesFishesMexicoOceans and SeasPopulation DynamicsTropical ClimateEcosystem
Citations
629
FWCI
12.40
field-weighted impact
References
45
Percentile
99%
vs. same field & year
Citations per year
Cited by
A functional approach reveals community responses to disturbances
Trends in Ecology & Evolution · 2012 · 1,904 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.