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A springtime source of toxic Pseudo-nitzschia cells on razor clam beaches in the Pacific Northwest
Institution:1. University of Washington, School of Oceanography, Seattle, WA, USA;2. Northwest Fisheries Science Center, 2725 Montlake Blvd. East, Seattle, WA, USA;3. College of Earth, Ocean and Atmospheric Sciences, Oregon State University, Corvallis, OR, USA;4. Woods Hole Oceanographic Institution, 266 Woods Hole Road, MS#21, Woods Hole, MA 02543-1050, USA;1. Palau International Coral Reef Center, 1 M-Dock Road, P.O. Box 7086, Koror 96940, Palau;2. Bureau of Arts and Culture, P.O. Box 100, Koror 96940, Palau;3. United Nations Joint Presence (GEF-SGP), Suite 301, 3rd Flr. Surangel Building, Koror 96940, Palau;4. Palau Automated Land and Resource System, P.O. Box 100, Koror 96940, Palau;5. The Nature Conservancy, Palau Field Office, P.O. Box 1738, Koror 96940, Palau;1. University Corporation for Atmospheric Research, Joint Office for Science Support, Visiting Scientist at Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, 2725 Montlake Blvd. E., Seattle, WA 98112, USA;2. Environmental and Fisheries Sciences Division, Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, 2725 Montlake Blvd. E., Seattle, WA 98112, USA;3. University of Washigton, under contract to Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, 2725 Montlake Blvd. E., Seattle, WA 98112, USA;4. University of Washington Tacoma, Campus Box 358400, 1900 Commerce St., Tacoma, WA 98402, USA;5. Woods Hole Oceanographic Institution, MS#32, Woods Hole, MA 02543, USA;1. Coastal Watershed Institute, Florida Gulf Coast University, 10501 FGCU Blvd South, Fort Myers, FL 33965, USA;2. Biology Department, MS #32, Woods Hole Oceanographic Institution, Woods Hole, MA 02543, USA
Abstract:Concentrations of domoic acid (DA) above the regulatory limit in Washington coast razor clams are usually higher on northern beaches from summer to fall. Recent field studies have confirmed that the primary source of toxic Pseudo-nitzschia (PN) cells in those seasons is a semi-retentive topographically trapped seasonal eddy located offshore and north of the clamming beaches. Another semi-retentive coastal feature, Heceta Bank, that has been shown to support toxic PN cells in summer, is located south of Washington's clamming beaches. In this paper we present evidence to demonstrate that Heceta Bank, although not a likely source of toxic cells to Washington in summer due to the prevailing southward seasonal currents, may be a source of cells in springtime before the southward currents develop. In contrast to summer and fall seasons, concentrations of DA in razor clams are typically higher at southern beaches in spring. The likelihood of a southern source is explored using biological and transport data surrounding a period of toxic razor clams in April 2005. In particular, satellite-derived chlorophyll data confirm that a bloom occurred over Heceta Bank in March of that year, just prior to a period of strong storm-driven northward transport. PN cells of the same species observed in the April bloom on Washington beaches and in offshore waters were documented in Oregon offshore waters on the northern edge of Heceta Bank. That species, P. australis, has been shown to be highly toxic in this region; shore-based data show that razor clams on Oregon beaches were also toxic at the time when P. australis was observed offshore. Both measured and modeled currents show that transport was more than sufficient to move cells from the vicinity of Heceta Bank, Oregon to southern Washington beaches by the time the toxic cells were observed on those beaches. The rapid transport was due in part to the presence of the buoyant plume from the Columbia River, a common feature in winter and spring in nearshore waters of the U.S. Pacific Northwest.
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