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DOI10.1007/s00442-019-04459-0
Shifts in seawater chemistry disrupt trophic links within a simple shoreline food web
Jellison, Brittany M.1,3; Gaylord, Brian1,2
发表日期2019
ISSN0029-8549
EISSN1432-1939
卷号190期号:4页码:955-967
英文摘要

Marine intertidal systems have long served as focal environments for ecological research, yet these environments are changing due to the entry of human-produced carbon dioxide into seawater, which causes 'ocean acidification' (OA). One component of OA is a decline in seawater pH, an alteration known to disrupt organism behaviors underlying predator-prey interactions. To date, however, studies examining OA's effects on feeding relationships consider predominantly simple direct interactions between consumers and their food sources. Here, we extended these established approaches to test how decreased seawater pH might alter cascading effects that span tiered linkages in trophic networks. We employed a model shoreline food web incorporating a sea star predator (Leptasterias hexactis), an herbivorous snail prey (Tegula funebralis), and a common macroalgal resource for the prey (Mazzaella flaccida). Results demonstrate direct negative effects of low pH on anti-predator behavior of snails, but also weakened indirect interactions, driven by increased snail consumption of macroalgae even as sea stars ate more snails. This latter outcome arose because low pH induced 'foolhardy' behaviors in snails, whereby their flight responses were supplanted by other activities that allowed for foraging. These findings highlight the potential for human-induced changes in seawater chemistry to perturb prey behaviors and trophic dynamics with accompanying community-level consequences.


WOS研究方向Environmental Sciences & Ecology
来源期刊OECOLOGIA
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/101449
作者单位1.Univ Calif Davis, Bodega Marine Lab, Bodega Bay, CA 94923 USA;
2.Univ Calif Davis, Dept Ecol & Evolut, Davis, CA 95616 USA;
3.Bowdoin Coll, Dept Biol, Brunswick, ME 04011 USA
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GB/T 7714
Jellison, Brittany M.,Gaylord, Brian. Shifts in seawater chemistry disrupt trophic links within a simple shoreline food web[J],2019,190(4):955-967.
APA Jellison, Brittany M.,&Gaylord, Brian.(2019).Shifts in seawater chemistry disrupt trophic links within a simple shoreline food web.OECOLOGIA,190(4),955-967.
MLA Jellison, Brittany M.,et al."Shifts in seawater chemistry disrupt trophic links within a simple shoreline food web".OECOLOGIA 190.4(2019):955-967.
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