Literature DB >> 25431527

Spatial and temporal variability of Alexandrium cyst fluxes in the Gulf of Maine: Relationship to seasonal particle export and resuspension.

C H Pilskaln1, D M Anderson2, D J McGillicuddy2, B A Keafer2, K Hayashi1, K Norton2.   

Abstract

Quantification of Alexandrium cyst fluxes through the Gulf of Maine water column is central to understanding the linkage between the source and fate of annual Alexandrium blooms in the offshore waters. These blooms often lead to paralytic shellfish poisoning (PSP) and extensive closures of shellfish beds. We report here on time-series sediment trap deployments completed at four offshore locations in the gulf between 2005 and 2010 as components of two ECOHAB-GOM field programs. Data presented documents the substantial spatial and temporal fluctuations in Alexandrium fundyense cyst fluxes in the gulf. Cyst delivery out of the euphotic zone peaked primarily between July and August following annual spring-summer Alexandrium blooms and was greatest in the western gulf. At all sites, cyst flux maxima to the subsurface waters were rarely coincident with seasonal peaks in the total mass export of particulate material indicating that cyst delivery was primarily via individually sinking cysts. Where persistent benthic nepheloid layers (BNLs) exist, significant sediment resuspension input of cysts to the near-bottom water column was evidenced by deep cyst fluxes that were up to several orders of magnitude greater than that measured above the BNL. The largest cyst fluxes in the BNL were observed in the eastern gulf, suggesting greater resuspension energy and BNL cyst inventories in this region. Temporal similarities between peak cyst export out of the upper ocean and peak cyst fluxes in the BNL were observed and document the contribution of seasonal, newly formed cysts to the BNL. The data however also suggest that many Alexandrium cells comprising the massive, short-lived blooms do not transition into cysts. Time-series flow measurements and a simple 1D model demonstrate that the BNL cyst fluxes reflect the combined effects of tidal energy-maintained resuspension, deposition, and input of cysts from the overlying water column.

Entities:  

Keywords:  Alexandrium; Cysts; Gulf of Maine; Particulate flux; Resuspension; Sediment traps

Year:  2014        PMID: 25431527      PMCID: PMC4243940          DOI: 10.1016/j.dsr2.2012.11.001

Source DB:  PubMed          Journal:  Deep Sea Res 2 Top Stud Oceanogr        ISSN: 0967-0645            Impact factor:   2.732


  6 in total

1.  Seasonality and interaction of biogenic and lithogenic particulate flux at the panama basin.

Authors:  S Honjo
Journal:  Science       Date:  1982-11-26       Impact factor: 47.728

2.  Gulf of Maine Harmful Algal Bloom in summer 2005 - Part 2: Coupled Bio-physical Numerical Modeling.

Authors:  Ruoying He; Dennis J McGillicuddy; Bruce A Keafer; Donald M Anderson
Journal:  J Geophys Res       Date:  2008-07-26

3.  Benthic nepheloid layers in the Gulf of Maine and Alexandrium cyst inventories.

Authors:  C H Pilskaln; K Hayashi; B A Keafer; D M Anderson; D J McGillicuddy
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05       Impact factor: 2.732

4.  Alexandrium fundyense cysts in the Gulf of Maine: long-term time series of abundance and distribution, and linkages to past and future blooms.

Authors:  Donald M Anderson; Bruce A Keafer; Judith L Kleindinst; Dennis J McGillicuddy; Jennifer L Martin; Kerry Norton; Cynthia H Pilskaln; Juliette L Smith; Christopher R Sherwood; Bradford Butman
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

5.  Investigation of the 2006 Alexandrium fundyense Bloom in the Gulf of Maine: In situ Observations and Numerical Modeling.

Authors:  Yizhen Li; Ruoying He; Dennis J McGillicuddy; Donald M Anderson; Bruce A Keafer
Journal:  Cont Shelf Res       Date:  2009-08-05       Impact factor: 2.391

6.  Georges Bank: a leaky incubator of Alexandrium fundyense blooms.

Authors:  D J McGillicuddy; D W Townsend; B A Keafer; M A Thomas; D M Anderson
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

  6 in total
  6 in total

1.  Benthic nepheloid layers in the Gulf of Maine and Alexandrium cyst inventories.

Authors:  C H Pilskaln; K Hayashi; B A Keafer; D M Anderson; D J McGillicuddy
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05       Impact factor: 2.732

2.  A red tide of Alexandrium fundyense in the Gulf of Maine.

Authors:  D J McGillicuddy; M L Brosnahan; D A Couture; R He; B A Keafer; J P Manning; J L Martin; C H Pilskaln; D W Townsend; D M Anderson
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

3.  Alexandrium fundyense cysts in the Gulf of Maine: long-term time series of abundance and distribution, and linkages to past and future blooms.

Authors:  Donald M Anderson; Bruce A Keafer; Judith L Kleindinst; Dennis J McGillicuddy; Jennifer L Martin; Kerry Norton; Cynthia H Pilskaln; Juliette L Smith; Christopher R Sherwood; Bradford Butman
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

4.  Investigating the importance of sediment resuspension in Alexandrium fundyense cyst population dynamics in the Gulf of Maine.

Authors:  Bradford Butman; Alfredo L Aretxabaleta; Patrick J Dickhudt; P Soupy Dalyander; Christopher R Sherwood; Donald M Anderson; Bruce A Keafer; Richard P Signell
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

5.  PSP toxin levels and plankton community composition and abundance in size-fractionated vertical profiles during spring/summer blooms of the toxic dinoflagellate Alexandrium fundyense in the Gulf of Maine and on Georges Bank, 2007, 2008, and 2010: 1. Toxin levels.

Authors:  Jonathan R Deeds; Christian M Petitpas; Vangie Shue; Kevin D White; Bruce A Keafer; Dennis J McGillicuddy; Peter J Milligan; Donald M Anderson; Jefferson T Turner
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

6.  Dynamics of an intense Alexandrium catenella red tide in the Gulf of Maine: satellite observations and numerical modeling.

Authors:  Yizhen Li; Richard P Stumpf; D J McGillicuddy; Ruoying He
Journal:  Harmful Algae       Date:  2020-10-26       Impact factor: 4.273

  6 in total

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