Laure Velez
University of Montpellier
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Featured researches published by Laure Velez.
Current Biology | 2011
David Mouillot; Camille Albouy; François Guilhaumon; Frida Ben Rais Lasram; Marta Coll; Vincent Devictor; Christine N. Meynard; Daniel Pauly; Jean Antoine Tomasini; Marc Troussellier; Laure Velez; Reg Watson; Emmanuel J. P. Douzery; Nicolas Mouquet
The Mediterranean Sea (0.82% of the global oceanic surface) holds 4%-18% of all known marine species (~17,000), with a high proportion of endemism [1, 2]. This exceptional biodiversity is under severe threats [1] but benefits from a system of 100 marine protected areas (MPAs). Surprisingly, the spatial congruence of fish biodiversity hot spots with this MPA system and the areas of high fishing pressure has not been assessed. Moreover, evolutionary and functional breadth of species assemblages [3] has been largely overlooked in marine systems. Here we adopted a multifaceted approach to biodiversity by considering the species richness of total, endemic, and threatened coastal fish assemblages as well as their functional and phylogenetic diversity. We show that these fish biodiversity components are spatially mismatched. The MPA system covers a small surface of the Mediterranean (0.4%) and is spatially congruent with the hot spots of all taxonomic components of fish diversity. However, it misses hot spots of functional and phylogenetic diversity. In addition, hot spots of endemic species richness and phylogenetic diversity are spatially congruent with hot spots of fishery impact. Our results highlight that future conservation strategies and assessment efficiency of current reserve systems will need to be revisited after deconstructing the different components of biodiversity.
Methods in Ecology and Evolution | 2013
Dominique Gravel; Timothée Poisot; Camille Albouy; Laure Velez; David Mouillot
1. Current global changes make it important to be able to predict which interactions will occur in the emerging ecosystems. Most of the current methods to infer the existence of interactions between two species require a good knowledge of their behaviour or a direct observation of interactions. In this paper, we overcome these limitations by developing a method, inspired from the niche model of food web structure, using the statistical relationship between predator and prey body size to infer the matrix of potential interactions among a pool of species. 2. The novelty of our approach is to infer, for any species of a given species pool, the three species-specific parameters of the niche model. The method applies to both local and metaweb scales. It allows one to evaluate the feeding interactions of a new species entering the community. 3. We find that this method gives robust predictions of the structure of food webs and that its efficiency is increased when the strength of the body-size relationship between predators and preys increases. 4. We finally illustrate the potential of the method to infer the metaweb structure of pelagic fishes of the Mediterranean sea under different global change scenarios.
Global Change Biology | 2014
Camille Albouy; Laure Velez; Marta Coll; Francesco Colloca; François Le Loc'h; David Mouillot; Dominique Gravel
Climate change is inducing deep modifications in species geographic ranges worldwide. However, the consequences of such changes on community structure are still poorly understood, particularly the impacts on food-web properties. Here, we propose a new framework, coupling species distribution and trophic models, to predict climate change impacts on food-web structure across the Mediterranean Sea. Sea surface temperature was used to determine the fish climate niches and their future distributions. Body size was used to infer trophic interactions between fish species. Our projections reveal that 54 fish species of 256 endemic and native species included in our analysis would disappear by 2080-2099 from the Mediterranean continental shelf. The number of feeding links between fish species would decrease on 73.4% of the continental shelf. However, the connectance of the overall fish web would increase on average, from 0.26 to 0.29, mainly due to a differential loss rate of feeding links and species richness. This result masks a systematic decrease in predator generality, estimated here as the number of prey species, from 30.0 to 25.4. Therefore, our study highlights large-scale impacts of climate change on marine food-web structure with potential deep consequences on ecosystem functioning. However, these impacts will likely be highly heterogeneous in space, challenging our current understanding of climate change impact on local marine ecosystems.
Ecology | 2015
Camille Albouy; Frida Ben Rais Lasram; Laure Velez; François Guilhaumon; Christine N. Meynard; Séverine Boyer; Laura Benestan; Nicolas Mouquet; Emmanuel J. P. Douzery; Roland Aznar; Marc Troussellier; Samuel Somot; Fabien Leprieur; François Le Loc'h; David Mouillot
The FishMed database provides traits, phylogeny, current and projected species distribution of Mediterranean fishes, and associated sea surface temperature (SST) from the regional oceanic model NEMOMED8. Data for the current geographical distributions of 635 Mediterranean fish species were compiled from a published expert knowledge atlas of fishes of the northern Atlantic and the Mediterranean (FNAM) edited between 1984 and 1986 and from an updated exotic fish species list. Two future sets of projected species distributions were obtained for the middle and end of the 21st century by using an ensemble forecasting approach for 288 coastal Mediterranean fish species based on SST according to the IPPC/SRES A2 scenario implemented with the Mediterranean climatic model NEMOMED8. The functional part of the database encompasses 12 biological and ecological traits (maximal and common lengths, vertical distribution, habitat, migration type, mode of reproduction, sex shift, semelparity, diet type (larvae and adults), social behavior, species origin, and depth) for the 635 fish species. To build the phylogeny we inferred the timing and geographic origins of Mediterranean teleost species diversity using nucleotide sequences collected from GenBank including 62% of Mediterranean teleost species plus nine outgroups. Maximum likelihood Bayesian phylogenetic and dating analyses were calibrated using 20 fossil species. An additional 124 fish species were grafted onto the chronogram according to their taxonomic affinity to obtain a phylogenetic tree including 498 species. Finally we also present the associated SST data for the observed period (1961–1980) and for the middle (2040–2059) and the end of the 21st century (2080–2099) obtained from NEMOMED8 according to the IPCC A2 scenario. The FishMed database might be of interest in the context of global anthropogenic changes as coastal Mediterranean ecosystems are currently recognized as one of the most impacted ecosystems on earth.
Journal of Biogeography | 2013
Camille Albouy; François Guilhaumon; Fabien Leprieur; Frida Ben Rais Lasram; Samuel Somot; Roland Aznar; Laure Velez; François Le Loc'h; David Mouillot
Diversity and Distributions | 2015
François Guilhaumon; Camille Albouy; Joachim Claudet; Laure Velez; Frida Ben Rais Lasram; Jean-Antoine Tomasini; Emmanuel J. P. Douzery; Christine N. Meynard; Nicolas Mouquet; Marc Troussellier; Miguel B. Araújo; David Mouillot
Ecology Letters | 2016
Eva Maire; Joshua E. Cinner; Laure Velez; Cindy Huchery; Camilo Mora; Stéphanie D'agata; Laurent Vigliola; Laurent Wantiez; Michel Kulbicki; David Mouillot
Estuarine Coastal and Shelf Science | 2013
Jennifer Tournois; Franck Ferraton; Laure Velez; David J. McKenzie; Catherine Aliaume; Lény Mercier; Audrey M. Darnaude
Journal of Marine Systems | 2016
Arnaud Grüss; Michael J. Schirripa; David Chagaris; Laure Velez; Yunne-Jai Shin; Philippe Verley; Ricardo Oliveros-Ramos; Cameron H. Ainsworth
Ecological Modelling | 2016
Arnaud Grüss; William J. Harford; Michael J. Schirripa; Laure Velez; Skyler R. Sagarese; Yunne-Jai Shin; Philippe Verley