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State of the California Current 2019–2020: Back to the Future With Marine Heatwaves?

Edward D. Weber; Toby D. Auth; Simone Baumann-Pickering; Timothy R. Baumgartner; Eric P. Bjorkstedt; Steven J. Bograd; Brian J. Burke; José L. Cadena-Ramírez; Elizabeth A. Daly; Martin de la Cruz; Heidi Dewar; John C. Field; Jennifer L. Fisher; Ashlyn Giddings; Ralf Goericke; Eliana Gomez-Ocampo; Jose Gomez-Valdes; Elliott L. Hazen; John Hildebrand; Cheryl A. Horton; Kym C. Jacobson; Michael G. Jacox; Jaime Jahncke; Mati Kahru; Raphe M. Kudela; Bertha E. Lavaniegos; Andrew Leising; Sharon R. Melin; Luis Erasmo Miranda-Bojorquez; Cheryl A. Morgan; Catherine F. Nickels; Rachael A. Orben; Jessica M. Porquez; Elan J. Portner; Roxanne R. Robertson; Daniel L. Rudnick; Keith M. Sakuma; Jarrod A. Santora; Isaac D. Schroeder; Owyn E. Snodgrass; William J. Sydeman; Andrew R. Thompson; Sarah Ann Thompson; Jennifer S. Trickey; Josue Villegas-Mendoza; Pete Warzybok; William Watson; Samantha M. Zeman
Frontiers in Marine Science · Vol. 8 · 2021

Abstract

The California Current System (CCS) has experienced large fluctuations in environmental conditions in recent years that have dramatically affected the biological community. Here we synthesize remotely sensed, hydrographic, and biological survey data from throughout the CCS in 2019–2020 to evaluate how recent changes in environmental conditions have affected community dynamics at multiple trophic levels. A marine heatwave formed in the north Pacific in 2019 and reached the second greatest area ever recorded by the end of summer 2020. However, high atmospheric pressure in early 2020 drove relatively strong Ekman-driven coastal upwelling in the northern portion of the CCS and warm temperature anomalies remained far offshore. Upwelling and cooler temperatures in the northern CCS created relatively productive conditions in which the biomass of lipid-rich copepod species increased, adult krill size increased, and several seabird species experienced positive reproductive success. Despite these conditions, the composition of the fish community in the northern CCS remained a mixture of both warm- and cool-water-associated species. In the southern CCS, ocean temperatures remained above average for the seventh consecutive year. Abundances of juvenile fish species associated with productive conditions were relatively low, and the ichthyoplankton community was dominated by a mixture of oceanic warm-water and cosmopolitan species. Seabird species associated with warm water also occurred at greater densities than cool-water species in the southern CCS. The population of northern anchovy, which has been resurgent since 2017, continued to provide an important forage base for piscivorous fishes, offshore colonies of seabirds, and marine mammals throughout the CCS. Coastal upwelling in the north, and a longer-term trend in warming in the south, appeared to be controlling the community to a much greater extent than the marine heatwave itself.

Bibliographic Information

JournalFrontiers in Marine Science
PublisherFrontiers
Publication Date2021-08-10
Publication Year2021
Volume8
Document TypeJournal Article
eISSN2296-7745
DOI10.3389/fmars.2021.709454
SubjectMarine science; fisheries; aquaculture; pollution; ocean observation; policy

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.frontiersin.org/journals/marine-science
Publisher PageOpen Publisher Page
This article is openly available from the publisher.