Marine heat wave and multiple stressors tip bull kelp forest to sea urchin barrens
Морская волна тепла и совокупное воздействие нескольких стрессоров превратили лес бычьей ламинарии в пустошь морских ежей
2019-10-21
SCID: 54.1/sjmhaujf
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bull kelp forestkelp forest ecosystem servicesmarine heat wavemultiple stressorssea urchin barrens
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Abstract (AI)
Extreme climatic events have recently impacted marine ecosystems around the world, including foundation species such as corals and kelps. Here, we describe the rapid climate-driven catastrophic shift in 2014 from a previously robust kelp forest to unproductive large scale urchin barrens in northern California. Bull kelp canopy was reduced by >90% along more than 350 km of coastline. Twenty years of kelp ecosystem surveys reveal the timing and magnitude of events, including mass mortalities of sea stars (2013-), intense ocean warming (2014-2017), and sea urchin barrens (2015-). Multiple stressors led to the unprecedented and long-lasting decline of the kelp forest. Kelp deforestation triggered mass (80%) abalone mortality (2017) resulting in the closure in 2018 of the recreational abalone fishery worth an estimated $44 M and the collapse of the north coast commercial red sea urchin fishery (2015-) worth $3 M. Key questions remain such as the relative roles of ocean warming and sea star disease in the massive purple sea urchin population increase. Science and policy will need to partner to better understand drivers, build climate-resilient fisheries and kelp forest recovery strategies in order to restore essential kelp forest ecosystem services.
Key Findings
1
Bull kelp canopy declined by more than 90% across over 350 kilometers of northern California coastline.
2
In 2014, multiple climate-related stressors caused a catastrophic shift from a robust bull kelp forest to large-scale, unproductive sea urchin barrens.
3
Kelp deforestation caused 80% abalone mortality in 2017, closing the recreational abalone fishery in 2018 and contributing to collapse of the commercial red sea urchin fishery.
4
The ecosystem shift followed sea star mass mortality beginning in 2013, intense ocean warming from 2014–2017, and sea urchin barrens emerging from 2015 onward.
5
The relative contributions of ocean warming and sea star disease to purple sea urchin population growth remain unresolved, highlighting the need for climate-resilient recovery and fisheries strategies.
Research Object
Northern California bull kelp forest ecosystem
Research Subject
The climate-driven catastrophic shift from kelp forest to sea urchin barrens and its ecological and fishery impacts under multiple stressors
Publication Details
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2019-10-21
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