Local stressors mask the effects of warming in freshwater ecosystems

被引:32
作者
Morris, Olivia F. [1 ]
Loewen, Charlie J. G. [2 ]
Woodward, Guy [1 ]
Schaefer, Ralf B. [3 ]
Piggott, Jeremy J. [4 ]
Vinebrooke, Rolf D. [5 ]
Jackson, Michelle C. [6 ]
机构
[1] Imperial Coll London, Georgina Mace Ctr Living Planet, Dept Life Sci, Silwood Pk Campus, London, Berks, England
[2] Univ Toronto, Dept Ecol & Evolutionary Biol, Toronto, ON, Canada
[3] Univ Koblenz Landau, Inst Environm Sci, Landau, Germany
[4] Univ Dublin, Trinity Coll Dublin, Dept Zool, Dublin, Ireland
[5] Univ Alberta, Dept Biol Sci, Edmonton, AB, Canada
[6] Univ Oxford, Dept Biol, Oxford, England
基金
英国自然环境研究理事会;
关键词
antagonisms; aquatic ecology; dominance null model; global change; multiple stressors; stressor interactions; MULTIPLE STRESSORS; NULL MODEL; BIODIVERSITY; CONSEQUENCES; METAANALYSIS; ANTAGONISM; SYNERGISM; IMPACTS;
D O I
10.1111/ele.14108
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Climate warming is a ubiquitous stressor in freshwater ecosystems, yet its interactive effects with other stressors are poorly understood. We address this knowledge gap by testing the ability of three contrasting null models to predict the joint impacts of warming and a range of other aquatic stressors using a new database of 296 experimental combinations. Despite concerns that stressors will interact to cause synergisms, we found that net impacts were usually best explained by the effect of the stronger stressor alone (the dominance null model), especially if this stressor was a local disturbance associated with human land use. Prediction accuracy depended on stressor identity and how asymmetric stressors were in the magnitude of their effects. These findings suggest we can effectively predict the impacts of multiple stressors by focusing on the stronger stressor, as habitat alteration, nutrients and contamination often override the biological consequences of higher temperatures in freshwater ecosystems.
引用
收藏
页码:2540 / 2551
页数:12
相关论文
共 49 条
[1]  
Almond R. E., 2020, Living Planet Report 2020Bending the curve of biodiversity loss. World Wildlife Fund
[2]   Evidence for multiple stressor interactions and effects on coral reefs [J].
Ban, Stephen S. ;
Graham, Nicholas A. J. ;
Connolly, Sean R. .
GLOBAL CHANGE BIOLOGY, 2014, 20 (03) :681-697
[3]   A meta-analysis of the effects of ultraviolet B radiation and its synergistic interactions with pH, contaminants, and disease on amphibian survival [J].
Bancroft, Betsy A. ;
Baker, Nick J. ;
Blaustein, Andrew R. .
CONSERVATION BIOLOGY, 2008, 22 (04) :987-996
[4]   Impacts of multiple stressors on freshwater biota across spatial scales and ecosystems [J].
Birk, Sebastian ;
Chapman, Daniel ;
Carvalho, Laurence ;
Spears, Bryan M. ;
Andersen, Hans Estrup ;
Argillier, Christine ;
Auer, Stefan ;
Baattrup-Pedersen, Annette ;
Banin, Lindsay ;
Beklioglu, Meryem ;
Bondar-Kunze, Elisabeth ;
Borja, Angel ;
Branco, Paulo ;
Bucak, Tuba ;
Buijse, Anthonie D. ;
Cardoso, Ana Cristina ;
Couture, Raoul-Marie ;
Cremona, Fabien ;
de Zwart, Dick ;
Feld, Christian K. ;
Ferreira, M. Teresa ;
Feuchtmayr, Heidrun ;
Gessner, Mark O. ;
Gieswein, Alexander ;
Globevnik, Lidija ;
Graeber, Daniel ;
Graf, Wolfram ;
Gutierrez-Canovas, Cayetano ;
Hanganu, Jenica ;
Iskin, Ugur ;
Jarvinen, Marko ;
Jeppesen, Erik ;
Kotamaki, Niina ;
Kuijper, Marijn ;
Lemm, Jan U. ;
Lu, Shenglan ;
Solheim, Anne Lyche ;
Mischke, Ute ;
Moe, S. Jannicke ;
Noges, Peeter ;
Noges, Tiina ;
Ormerod, Steve J. ;
Panagopoulos, Yiannis ;
Phillips, Geoff ;
Posthuma, Leo ;
Pouso, Sarai ;
Prudhomme, Christel ;
Rankinen, Katri ;
Rasmussen, Jes J. ;
Richardson, Jessica .
NATURE ECOLOGY & EVOLUTION, 2020, 4 (08) :1060-1068
[5]   Experimental strategies to assess the biological ramifications of multiple drivers of global ocean change-A review [J].
Boyd, Philip W. ;
Collins, Sinead ;
Dupont, Sam ;
Fabricius, Katharina ;
Gattuso, Jean-Pierre ;
Havenhand, Jonathan ;
Hutchins, David A. ;
Riebesell, Ulf ;
Rintoul, Max S. ;
Vichi, Marcello ;
Biswas, Haimanti ;
Ciotti, Aurea ;
Gao, Kunshan ;
Gehlen, Marion ;
Hurd, Catriona L. ;
Kurihara, Haruko ;
McGraw, Christina M. ;
Navarro, Jorge M. ;
Nilsson, Goeran E. ;
Passow, Uta ;
Poertner, Hans-Otto .
GLOBAL CHANGE BIOLOGY, 2018, 24 (06) :2239-2261
[6]   Density and biotic interactions modify the combined effects of global and local stressors [J].
Brooks, Paul R. ;
Crowe, Tasman P. .
OIKOS, 2018, 127 (12) :1746-1758
[7]   Managing for Interactions between Local and Global Stressors of Ecosystems [J].
Brown, Christopher J. ;
Saunders, Megan I. ;
Possingham, Hugh P. ;
Richardson, Anthony J. .
PLOS ONE, 2013, 8 (06)
[8]   Classifying ecosystem stressor interactions: Theory highlights the data limitations of the additive null model and the difficulty in revealing ecological surprises [J].
Burgess, Benjamin J. ;
Purves, Drew ;
Mace, Georgina ;
Murrell, David J. .
GLOBAL CHANGE BIOLOGY, 2021, 27 (13) :3052-3065
[9]   Interactions among ecosystem stressors and their importance in conservation [J].
Cote, Isabelle M. ;
Darling, Emily S. ;
Brown, Christopher J. .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2016, 283 (1824)
[10]   Interactive and cumulative effects of multiple human stressors in marine systems [J].
Crain, Caitlin Mullan ;
Kroeker, Kristy ;
Halpern, Benjamin S. .
ECOLOGY LETTERS, 2008, 11 (12) :1304-1315