Trophic ecology of Angolan cold-water coral reefs (SE Atlantic) based on stable isotope analyses

被引:0
作者
Beatriz Vinha
Sergio Rossi
Andrea Gori
Ulrike Hanz
Antonio Pennetta
Giuseppe E. De Benedetto
Furu Mienis
Veerle A. I. Huvenne
Dierk Hebbeln
Claudia Wienberg
Jürgen Titschack
André Freiwald
Stefano Piraino
Covadonga Orejas
机构
[1] Università del Salento,Dipartimento di Scienze e Tecnologie Biologiche e Ambientali (DiSTeBA)
[2] Hanse Wissenschaftskolleg – Institute for Advanced Study,Instituto de Ciências Do Mar, LABOMAR
[3] Universidade Federal do Ceará,Departament de Biologia Evolutiva, Ecologia i Ciències Ambientals
[4] CoNISMa,Institut de Recerca de La Biodiversitat (IRBio)
[5] Consorzio Nazionale Interuniversitario per le Scienze del Mare,Department of Ocean Systems
[6] Universitat de Barcelona,Bentho
[7] Universitat de Barcelona,Pelagic Processes
[8] NIOZ Royal Netherlands Institute for Sea Research,Laboratorio di Spettrometria di Massa Analitica e Isotopica, Dipartimento di Beni Culturali
[9] Alfred Wegener Institute for Polar and Marine Research,Ocean BioGeosciences
[10] Università del Salento,MARUM – Center for Marine Environmental Sciences
[11] National Oceanography Centre,undefined
[12] University of Bremen,undefined
[13] Senckenberg Am Meer,undefined
[14] Marine Research Department,undefined
[15] NBFC,undefined
[16] National Biodiversity Future Center,undefined
[17] Instituto Español de Oceanografía,undefined
[18] Centro Oceanográfico de Gijón,undefined
[19] (IEO-CSIC),undefined
来源
Scientific Reports | / 13卷
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摘要
Cold-water coral (CWC) reefs of the Angolan margin (SE Atlantic) are dominated by Desmophyllum pertusum and support a diverse community of associated fauna, despite hypoxic conditions. In this study, we use carbon and nitrogen stable isotope analyses (δ13C and δ15N) to decipher the trophic network of this relatively unknown CWC province. Although fresh phytodetritus is available to the reef, δ15N signatures indicate that CWCs (12.90 ± 1.00 ‰) sit two trophic levels above Suspended Particulate Organic Matter (SPOM) (4.23 ± 1.64 ‰) suggesting that CWCs are highly reliant on an intermediate food source, which may be zooplankton. Echinoderms and the polychaete Eunice norvegica occupy the same trophic guild, with high δ13C signatures (-14.00 ± 1.08 ‰) pointing to a predatory feeding behavior on CWCs and sponges, although detrital feeding on 13C enriched particles might also be important for this group. Sponges presented the highest δ15N values (20.20 ± 1.87 ‰), which could be due to the role of the sponge holobiont and bacterial food in driving intense nitrogen cycling processes in sponges’ tissue, helping to cope with the hypoxic conditions of the reef. Our study provides first insights to understand trophic interactions of CWC reefs under low-oxygen conditions.
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[1]  
Mueller CE(2014)Opportunistic feeding on various organic food sources by the cold-water coral Biogeosciences 11 123-133
[2]  
Larsson AI(2009)The cold-water coral community as hotspot of carbon cycling on continental margins: A food-web analysis from Rockall Bank (northeast Atlantic) Limnol. Oceanogr. 54 1829-1844
[3]  
Veuger B(2015)Cold-water coral reefs and adjacent sponge grounds: Hotspots of benthic respiration and organic carbon cycling in the deep sea Front. Mar. Sci. 2 37-219
[4]  
Middelburg JJ(2006)Food supply mechanisms for cold-water corals along a continental shelf edge J. Mar. Syst. 60 207-104
[5]  
van Oevelen D(2014)Linking benthic hydrodynamics and cold-water coral occurrences: A high-resolution model study at three cold-water coral provinces in the NE Atlantic Prog. Oceanogr. 122 92-171
[6]  
van Oevelen D(1992)The distribution of the scleractinian coral Sarsia 77 157-25
[7]  
Cathalot C(2014) around the Faroe islands and the relation to internal tidal mixing Prog. Oceanogr. 125 16-629
[8]  
Thiem Ø(2009)High-resolution temperature observations of a trapped nonlinear diurnal tide influencing cold-water corals on the Logachev mounds Limnol. Oceanogr. 54 620-1815
[9]  
Ravagnan E(2014)Downwelling and deep-water bottom currents as food supply mechanisms to the cold-water coral Biogeosciences 11 1799-268
[10]  
Fosså JH(2017) (Scleractinia) at the Mingulay Reef Complex Coral Reefs 36 255-4356