Marine harmful algal blooms (HABs) in the United States: History, current status and future trends

被引:284
作者
Anderson, Donald M. [1 ]
Fensin, Elizabeth [2 ]
Gobler, Christopher J. [3 ]
Hoeglund, Alicia E. [4 ]
Hubbard, Katherine A. [4 ]
Kulis, David M. [1 ]
Landsberg, Jan H. [4 ]
Lefebvre, Kathi A. [5 ]
Provoost, Pieter [6 ]
Richlen, Mindy L. [1 ]
Smith, Juliette L. [7 ]
Solow, Andrew R. [1 ]
Trainer, Vera L. [5 ]
机构
[1] Woods Hole Oceanog Inst, Woods Hole, MA 02543 USA
[2] NC Div Water Resources, 4401 Reedy Creek Rd, Raleigh, NC 27607 USA
[3] SUNY Stony Brook, Sch Marine & Atmospher Sci, Southampton, NY 11968 USA
[4] Fish & Wildlife Res Inst, Florida Fish & Wildlife Conservat Commiss, St Petersburg, FL 33701 USA
[5] NOAA, Environm & Fisheries Sci Div, Northwest Fisheries Sci Ctr, Natl Marine Fisheries Serv, Seattle, WA 98112 USA
[6] UNESCO, Intergovt Oceanog Commiss IOC, IOC Project Off IODE, B-8400 Oostende, Belgium
[7] Virginia Inst Marine Sci, Dept Aqut Hlth Sci, Gloucester Point, VA 23062 USA
关键词
HAB; Harmful algal bloom; Red tide; Eutrophication; Time series; HAEDAT; KARENIA-BREVIS BLOOMS; BROWN-TIDE BLOOMS; DINOFLAGELLATE COCHLODINIUM-POLYKRIKOIDES; INDIAN RIVER LAGOON; WEST FLORIDA SHELF; PSEUDO-NITZSCHIA SPP; PROROCENTRUM-LIMA DINOPHYCEAE; QUAHOG MERCENARIA-MERCENARIA; LOWER CHESAPEAKE BAY; LAND-SEA INTERFACE;
D O I
10.1016/j.hal.2021.101975
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
Harmful algal blooms (HABs) are diverse phenomena involving multiple. species and classes of algae that occupy a broad range of habitats from lakes to oceans and produce a multiplicity of toxins or bioactive compounds that impact many different resources. Here, a review of the status of this complex array of marine HAB problems in the U.S. is presented, providing historical information and trends as well as future perspectives. The study relies on thirty years (1990-2019) of data in HAEDAT the IOC-ICES-PICES Harmful Algal Event database, but also includes many other reports. At a qualitative level, the U.S. national HAB problem is far more extensive than was the case decades ago, with more toxic species and toxins to monitor, as well as a larger range of impacted resources and areas affected. Quantitatively, no significant trend is seen for paralytic shellfish toxin (PST) events over the study interval, though there is clear evidence of the expansion of the problem into new regions and the emergence of a species that produces PSTs in Florida - Pyrodinium bahamense. Amnesic shellfish toxin (AST) events have significantly increased in the U.S., with an overall pattern of frequent outbreaks on the West Coast, emerging, recurring outbreaks on the East Coast, and sporadic incidents in the Gulf of Mexico. Despite the long historical record of neurotoxic shellfish toxin (NST) events, no significant trend is observed over the past 30 years. The recent emergence of diarrhetic shellfish toxins (DSTs) in the U.S. began along the Gulf Coast in 2008 and expanded to the West and East Coasts, though no significant trend through time is seen since then. Ciguatoxin (CTX) events caused by Gambierdiscus dinoflagellates have long impacted tropical and subtropical locations in the U.S., but due to a lack of monitoring programs as well as under-reporting of illnesses, data on these events are not available for time series analysis. Geographic expansion of Gambierdiscus into temperate and non endemic areas (e.g., northern Gulf of Mexico) is apparent, and fostered by ocean warming. HAB-related marine wildlife morbidity and mortality events appear to be increasing, with statistically significant increasing trends observed in marine mammal poisonings caused by ASTs along the coast of California and NSTs in Florida. Since their first occurrence in 1985 in New York, brown tides resulting from high-density blooms of Aureococcus have spread south to Delaware, Maryland, and Virginia, while those caused by Aureoumbra have spread from the Gulf Coast to the east coast of Florida. Blooms of Margalefidinium polykrikoides occurred in four locations in the U. S. from 1921-2001 but have appeared in more than 15 U.S. estuaries since then, with ocean warming implicated as a causative factor. Numerous blooms of toxic cyanobacteria have been documented in all 50 U.S. states and the transport of cyanotoxins from freshwater systems into marine coastal waters is a recently identified and potentially significant threat to public and ecosystem health. Taken together, there is a significant increasing trend in all HAB events in HAEDAT over the 30-year study interval. Part of this observed HAB expansion simply reflects a better realization of the true or historic scale of the problem, long obscured by inadequate monitoring. Other contributing factors include the dispersion of species to new areas, the discovery of new HAB poisoning syndromes or impacts, and the stimulatory effects of human activities like nutrient pollution, aquaculture expansion, and ocean warming, among others. One result of this multifaceted expansion is that many regions of the U.S. now face a daunting diversity of species and toxins, representing a significant and growing challenge to resource managers and public health officials in terms of toxins, regions, and time intervals to monitor, and necessitating new approaches to monitoring and management. Mobilization of funding and resources for research, monitoring and management of HABs requires accurate information on the scale and nature of the national problem. HAEDAT and other databases can be of great value in this regard but efforts are needed to expand and sustain the collection of data regionally and nationally.
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相关论文
共 434 条
[1]  
Abbott G.M., 2009, RESOURCE GUIDE PUBLI, P1
[2]   Saxitoxin monitoring in three species of Florida puffer fish [J].
Abbott, Jay P. ;
Flewelling, Leanne J. ;
Landsberg, Jan H. .
HARMFUL ALGAE, 2009, 8 (02) :343-348
[3]   Distribution and potential toxicity of benthic harmful dinoflagellates in waters of Florida Bay and the Florida Keys [J].
Accoroni, Stefano ;
Totti, Cecilia ;
Romagnoli, Tiziana ;
Giulietti, Sonia ;
Glibert, Patricia M. .
MARINE ENVIRONMENTAL RESEARCH, 2020, 155
[4]  
Almazan-Becerril A., 2016, FLORECIMIENTOS ALGAL, P308
[5]  
Anderson D.M., 2001, INTERGOVERNMENTAL OC, V59
[6]   Bloom dynamics of toxic Alexandrium species in the northeastern US [J].
Anderson, DM .
LIMNOLOGY AND OCEANOGRAPHY, 1997, 42 (05) :1009-1022
[7]   POTENTIAL IMPORTANCE OF BENTHIC CYSTS OF GONYAULAX-TAMARENSIS AND G GONYAULAX-EXCAVATA IN INITIATING TOXIC DINOFLAGELLATE BLOOMS [J].
ANDERSON, DM ;
WALL, D .
JOURNAL OF PHYCOLOGY, 1978, 14 (02) :224-234
[8]   DISTRIBUTION OF THE TOXIC DINOFLAGELLATE GONYAULAX-TAMARENSIS IN THE SOUTHERN NEW-ENGLAND REGION [J].
ANDERSON, DM ;
KULIS, DM ;
ORPHANOS, JA ;
CEURVELS, AR .
ESTUARINE COASTAL AND SHELF SCIENCE, 1982, 14 (04) :447-458
[9]   AN IMMUNOFLUORESCENT SURVEY OF THE BROWN TIDE CHRYSOPHYTE AUREOCOCCUS-ANOPHAGEFFERENS ALONG THE NORTHEAST COAST OF THE UNITED-STATES [J].
ANDERSON, DM ;
KEAFER, BA ;
KULIS, DM ;
WATERS, RM ;
NUZZI, R .
JOURNAL OF PLANKTON RESEARCH, 1993, 15 (05) :563-580
[10]   Alexandrium fundyense cysts in the Gulf of Maine: Long-term time series of abundance and distribution, and linkages to past and future blooms [J].
Anderson, Donald M. ;
Keafer, Bruce A. ;
Kleindinst, Judith L. ;
McGillicuddy, Dennis J., Jr. ;
Martin, Jennifer L. ;
Norton, Kerry ;
Pilskaln, Cynthia H. ;
Smith, Juliette L. ;
Sherwood, Christopher R. ;
Butman, Bradford .
DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 2014, 103 :6-26