Literature DB >> 28741816

Combining projected changes in species richness and composition reveals climate change impacts on coastal Mediterranean fish assemblages.

Camille Albouy1,2, François Guilhaumon3, Miguel B Araújo3,4,5, David Mouillot1,6, Fabien Leprieur1.   

Abstract

Species Temporal Turnover (STT) is one of the most familiar metrics to assess changes in assemblage composition as a consequence of climate change. However, STT mixes two components in one metric, changes in assemblage composition caused by a process of species loss or gain (i.e. the nestedness component) and changes in assemblage composition caused by a process of species replacement (i.e. the species replacement component). Drawing on previous studies investigating spatial patterns of beta diversity, we propose measures of STT that allow analysing each component (species replacement vs. nestedness), separately. We also present a mapping strategy to simultaneously visualize changes in species richness and assemblage composition. To illustrate our approach, we used the Mediterranean coastal fish fauna as a case study. Using Bioclimatic Envelope Models (BEMs) we first projected the potential future climatic niches of 288 coastal Mediterranean fish species based on a global warming scenario. We then aggregated geographically the species-level projections to analyse the projected changes in species richness and composition. Our results show that projected changes in assemblage composition are caused by different processes (species replacement vs. nestedness) in several areas of the Mediterranean Sea. In addition, our mapping strategy highlights that the coastal fish fauna in several regions of the Mediterranean Sea could experience a 'cul-de-sac' effect if exposed to climate warming. Overall, the joint exploration of changes in species richness and composition coupled with the distinction between species replacement and nestedness bears important information for understanding the nature of climate change impacts on biodiversity. These methodological advances should help decision-makers in prioritizing action in the areas facing the greatest vulnerability to climate.
© 2012 Blackwell Publishing Ltd.

Entities:  

Keywords:  Bioclimatic Envelop Model; Mediterranean Sea; Mediterranean coastal fish; Nestedness; Species Temporal Turnover; Turnover; beta diversity; nestedness; turnover

Year:  2012        PMID: 28741816     DOI: 10.1111/j.1365-2486.2012.02772.x

Source DB:  PubMed          Journal:  Glob Chang Biol        ISSN: 1354-1013            Impact factor:   10.863


  7 in total

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Authors:  Baoxiu Xing; He Chen; Qingfeng Chen; Yan Zhang; Zifang Liu; Zhao Yang
Journal:  Environ Sci Pollut Res Int       Date:  2018-09-24       Impact factor: 4.223

Review 2.  Conservation physiology of marine fishes: state of the art and prospects for policy.

Authors:  David J McKenzie; Michael Axelsson; Denis Chabot; Guy Claireaux; Steven J Cooke; Richard A Corner; Gudrun De Boeck; Paolo Domenici; Pedro M Guerreiro; Bojan Hamer; Christian Jørgensen; Shaun S Killen; Sjannie Lefevre; Stefano Marras; Basile Michaelidis; Göran E Nilsson; Myron A Peck; Angel Perez-Ruzafa; Adriaan D Rijnsdorp; Holly A Shiels; John F Steffensen; Jon C Svendsen; Morten B S Svendsen; Lorna R Teal; Jaap van der Meer; Tobias Wang; Jonathan M Wilson; Rod W Wilson; Julian D Metcalfe
Journal:  Conserv Physiol       Date:  2016-10-18       Impact factor: 3.079

3.  Are we ready to track climate-driven shifts in marine species across international boundaries? - A global survey of scientific bottom trawl data.

Authors:  Aurore A Maureaud; Romain Frelat; Laurène Pécuchet; Nancy Shackell; Bastien Mérigot; Malin L Pinsky; Kofi Amador; Sean C Anderson; Alexander Arkhipkin; Arnaud Auber; Iça Barri; Richard J Bell; Jonathan Belmaker; Esther Beukhof; Mohamed L Camara; Renato Guevara-Carrasco; Junghwa Choi; Helle T Christensen; Jason Conner; Luis A Cubillos; Hamet D Diadhiou; Dori Edelist; Margrete Emblemsvåg; Billy Ernst; Tracey P Fairweather; Heino O Fock; Kevin D Friedland; Camilo B Garcia; Didier Gascuel; Henrik Gislason; Menachem Goren; Jérôme Guitton; Didier Jouffre; Tarek Hattab; Manuel Hidalgo; Johannes N Kathena; Ian Knuckey; Saïkou O Kidé; Mariano Koen-Alonso; Matt Koopman; Vladimir Kulik; Jacqueline Palacios León; Ya'arit Levitt-Barmats; Martin Lindegren; Marcos Llope; Félix Massiot-Granier; Hicham Masski; Matthew McLean; Beyah Meissa; Laurène Mérillet; Vesselina Mihneva; Francis K E Nunoo; Richard O'Driscoll; Cecilia A O'Leary; Elitsa Petrova; Jorge E Ramos; Wahid Refes; Esther Román-Marcote; Helle Siegstad; Ignacio Sobrino; Jón Sólmundsson; Oren Sonin; Ingrid Spies; Petur Steingrund; Fabrice Stephenson; Nir Stern; Feriha Tserkova; Georges Tserpes; Evangelos Tzanatos; Itai van Rijn; Paul A M van Zwieten; Paraskevas Vasilakopoulos; Daniela V Yepsen; Philippe Ziegler; James T Thorson
Journal:  Glob Chang Biol       Date:  2020-11-10       Impact factor: 10.863

4.  Predicting the impact of climate change on threatened species in UK waters.

Authors:  Miranda C Jones; Stephen R Dye; Jose A Fernandes; Thomas L Frölicher; John K Pinnegar; Rachel Warren; William W L Cheung
Journal:  PLoS One       Date:  2013-01-22       Impact factor: 3.240

5.  The use of a predictive habitat model and a fuzzy logic approach for marine management and planning.

Authors:  Tarek Hattab; Frida Ben Rais Lasram; Camille Albouy; Chérif Sammari; Mohamed Salah Romdhane; Philippe Cury; Fabien Leprieur; François Le Loc'h
Journal:  PLoS One       Date:  2013-10-11       Impact factor: 3.240

6.  Low connectivity between Mediterranean marine protected areas: a biophysical modeling approach for the dusky grouper Epinephelus marginatus.

Authors:  Marco Andrello; David Mouillot; Jonathan Beuvier; Camille Albouy; Wilfried Thuiller; Stéphanie Manel
Journal:  PLoS One       Date:  2013-07-08       Impact factor: 3.240

7.  Predicting future thermal habitat suitability of competing native and invasive fish species: from metabolic scope to oceanographic modelling.

Authors:  Stefano Marras; Andrea Cucco; Fabio Antognarelli; Ernesto Azzurro; Marco Milazzo; Michel Bariche; Momme Butenschön; Susan Kay; Massimiliano Di Bitetto; Giovanni Quattrocchi; Matteo Sinerchia; Paolo Domenici
Journal:  Conserv Physiol       Date:  2015-01-20       Impact factor: 3.079

  7 in total

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