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A global analysis of complexity–biodiversity relationships on marine artificial structures

Authors :
Richard C. Thompson
Catriona Macleod
Kenneth M.Y. Leung
Luciana V. R. Messano
Kathleen E. Knick
Moisés A. Aguilera
Terrence P. T. Ng
Adam Davey
Rochelle D. Seitz
Connor McKenzie
Stephen J. Hawkins
Tasman P. Crowe
Jean C. Yee
Mick E. Hanley
Edward Tak Chuen Lau
Paul R. Brooks
Ricardo Coutinho
Martin Thiel
Shimrit Perkol-Finkel
Louise B. Firth
Gregory M. Ruiz
Clarissa M. L. Fraser
Melanie J. Bishop
DJ Ross
Peter D. Steinberg
Mathew J. Perkins
Chela J. Zabin
Chee B. Cheah
Ido Sella
J. David Aguirre
Francesco Paolo Mancuso
Emma L. Johnston
Sandisiwe Mafanya
Gail V. Ashton
Maria L. Vozzo
Benny K. K. Chan
Francesca Porri
Kathryn A. O'Shaughnessy
Maritina Bernardi
Lais P. D. Naval-Xavier
Su Yin Chee
Raviv Shirazi
Marco Abbiati
Laura Airoldi
Paula Pattrick
Elisabeth M. A. Strain
Strain E.M.A.
Steinberg P.D.
Vozzo M.
Johnston E.L.
Abbiati M.
Aguilera M.A.
Airoldi L.
Aguirre J.D.
Ashton G.
Bernardi M.
Brooks P.
Chan B.K.K.
Cheah C.B.
Chee S.Y.
Coutinho R.
Crowe T.
Davey A.
Firth L.B.
Fraser C.
Hanley M.E.
Hawkins S.J.
Knick K.E.
Lau E.T.C.
Leung K.M.Y.
McKenzie C.
Macleod C.
Mafanya S.
Mancuso F.P.
Messano L.V.R.
Naval-Xavier L.P.D.
Ng T.P.T.
O'Shaughnessy K.A.
Pattrick P.
Perkins M.J.
Perkol-Finkel S.
Porri F.
Ross D.J.
Ruiz G.
Sella I.
Seitz R.
Shirazi R.
Thiel M.
Thompson R.C.
Yee J.C.
Zabin C.
Bishop M.J.
Elisabeth M. A. Strain, Peter D. Steinberg, Maria Vozzo, Emma L. Johnston, Marco Abbiati, Moises A. Aguilera, Laura Airoldi, J. David Aguirre, Gail Ashton, Maritina Bernardi, Paul Brooks,Benny K. K. Chan, Chee B. Cheah, Su Yin Chee, Ricardo Coutinho, Tasman Crowe, Adam Davey, Louise B. Firth, Clarissa Fraser, Mick E. Hanley, Stephen J. Hawkins, Kathleen E. Knick, Edward T. C. Lau, Kenneth M. Y. Leung, Connor McKenzie, Catriona Macleod, Sandisiwe Mafanya, Francesco P. Mancuso, Luciana V. R. Messano, Lais P. D. Naval-Xavier, Terrence P. T. Ng, Kathryn A. O'Shaughnessy, Paula Pattrick, Mathew J. Perkins, Shimrit Perkol-Finkel, Francesca Porri, Donald J. Ross, Gregory Ruiz, Ido Sella, Rochelle Seitz, Raviv Shirazi, Martin Thiel, Richard C. Thompson, Jean C. Yee, Chela Zabin, Melanie J. Bishop
Publication Year :
2021

Abstract

Aim Topographic complexity is widely accepted as a key driver of biodiversity, but at the patch‐scale, complexity–biodiversity relationships may vary spatially and temporally according to the environmental stressors complexity mitigates, and the species richness and identity of potential colonists. Using a manipulative experiment, we assessed spatial variation in patch‐scale effects of complexity on intertidal biodiversity. Location 27 sites within 14 estuaries/bays distributed globally. Time period 2015–2017. Major taxa studied Functional groups of algae, sessile and mobile invertebrates. Methods Concrete tiles of differing complexity (flat; 2.5‐cm or 5‐cm complex) were affixed at low–high intertidal elevation on coastal defence structures, and the richness and abundance of the colonizing taxa were quantified after 12 months. Results The patch‐scale effects of complexity varied spatially and among functional groups. Complexity had neutral to positive effects on total, invertebrate and algal taxa richness, and invertebrate abundances. However, effects on the abundance of algae ranged from positive to negative, depending on location and functional group. The tidal elevation at which tiles were placed accounted for some variation. The total and invertebrate richness were greater at low or mid than at high intertidal elevations. Latitude was also an important source of spatial variation, with the effects of complexity on total richness and mobile mollusc abundance greatest at lower latitudes, whilst the cover of sessile invertebrates and sessile molluscs responded most strongly to complexity at higher latitudes. Conclusions After 12 months, patch‐scale relationships between biodiversity and habitat complexity were not universally positive. Instead, the relationship varied among functional groups and according to local abiotic and biotic conditions. This result challenges the assumption that effects of complexity on biodiversity are universally positive. The variable effect of complexity has ramifications for community and applied ecology, including eco‐engineering and restoration that seek to bolster biodiversity through the addition of complexity.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....500879d1802413579a7a5355b14176d5