Published March 2013 | Version Published
Journal Article Open

Is global ocean sprawl a cause of jellyfish blooms?

Abstract

Jellyfish (Cnidaria, Scyphozoa) blooms appear to be increasing in both intensity and frequency in many coastal areas worldwide, due to multiple hypothesized anthropogenic stressors. Here, we propose that the proliferation of artificial structures – associated with (1) the exponential growth in shipping, aquaculture, and other coastal industries, and (2) coastal protection (collectively, "ocean sprawl") – provides habitat for jellyfish polyps and may be an important driver of the global increase in jellyfish blooms. However, the habitat of the benthic polyps that commonly result in coastal jellyfish blooms has remained elusive, limiting our understanding of the drivers of these blooms. Support for the hypothesized role of ocean sprawl in promoting jellyfish blooms is provided by observations and experimental evidence demonstrating that jellyfish larvae settle in large numbers on artificial structures in coastal waters and develop into dense concentrations of jellyfish-producing polyps.

Additional Information

© 2013 Ecological Society of America. Published online 7 Sep 2012. This research is a contribution to the Global Expansion of Jellyfish Blooms: Magnitude, Causes and Consequences Working Group, supported by the National Center for Ecological Analysis and Synthesis (NCEAS is supported by the National Science Foundation [grant #DEB-94-21535], the University of California at Santa Barbara, and the State of California) and the Evaluation of Ecosystem Impacts of Global Change in Mediterranean Ecosystems (MEDEICG) project, funded by the Spanish National Plan of I+D (CTM2009-07013). The C quinquecirrha experiments were conducted by DB and JM and supported by National Oceanic and Atmospheric Administration grant #NA09NOS4780214 to DB. We thank K Davies for artistic work.

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Identifiers

Eprint ID
37859
Resolver ID
CaltechAUTHORS:20130410-111511641

Funding

National Center for Ecological Analysis and Synthesis (NCEAS)
NSF
DEB-94-21535
University of California Santa Barbara
State of California
Evaluation of Ecosystem Impacts of Global Change in Mediterranean Ecosystems (MEDEICG) project
Spanish National Plan of I+D
CTM2009-07013
National Oceanic and Atmospheric Administration grant
NA09NOS4780214

Dates

Created
2013-04-10
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Updated
2021-11-09
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