Literature DB >> 25288829

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

Bradford Butman1, Alfredo L Aretxabaleta2, Patrick J Dickhudt1, P Soupy Dalyander1, Christopher R Sherwood1, Donald M Anderson3, Bruce A Keafer3, Richard P Signell1.   

Abstract

Cysts of Alexandrium fundyense, a dinoflagellate that causes toxic algal blooms in the Gulf of Maine, spend the winter as dormant cells in the upper layer of bottom sediment or the bottom nepheloid layer and germinate in spring to initiate new blooms. Erosion measurements were made on sediment cores collected at seven stations in the Gulf of Maine in the autumn of 2011 to explore if resuspension (by waves and currents) could change the distribution of over-wintering cysts from patterns observed in the previous autumn; or if resuspension could contribute cysts to the water column during spring when cysts are viable. The mass of sediment eroded from the core surface at 0.4 Pa ranged from 0.05 kg m-2 near Grand Manan Island, to 0.35 kg m-2 in northern Wilkinson Basin. The depth of sediment eroded ranged from about 0.05 mm at a station with sandy sediment at 70 m water depth on the western Maine shelf, to about 1.2 mm in clayey-silt sediment at 250 m water depth in northern Wilkinson Basin. The sediment erodibility measurements were used in a sediment-transport model forced with modeled waves and currents for the period October 1, 2010 to May 31, 2011 to predict resuspension and bed erosion. The simulated spatial distribution and variation of bottom shear stress was controlled by the strength of the semi-diurnal tidal currents, which decrease from east to west along the Maine coast, and oscillatory wave-induced currents, which are strongest in shallow water. Simulations showed occasional sediment resuspension along the central and western Maine coast associated with storms, steady resuspension on the eastern Maine shelf and in the Bay of Fundy associated with tidal currents, no resuspension in northern Wilkinson Basin, and very small resuspension in western Jordan Basin. The sediment response in the model depended primarily on the profile of sediment erodibility, strength and time history of bottom stress, consolidation time scale, and the current in the water column. Based on analysis of wave data from offshore buoys from 1996 to 2012, the number of wave events inducing a bottom shear stress large enough to resuspend sediment at 80 m ranged from 0 to 2 in spring (April and May) and 0 to 10 in winter (October through March). Wave-induced resuspension is unlikely in water greater than about 100 m deep. The observations and model results suggest that a millimeter or so of sediment and associated cysts may be mobilized in both winter and spring, and that the frequency of resuspension will vary interannually. Depending on cyst concentration in the sediment and the vertical distribution in the water column, these events could result in a concentration in the water column of at least 104 cysts m-3. In some years, resuspension events could episodically introduce cysts into the water column in spring, where germination is likely to be facilitated at the time of bloom formation. An assessment of the quantitative effects of cyst resuspension on bloom dynamics in any particular year requires more detailed investigation.

Entities:  

Keywords:  Alexandrium fundyense; Bottom stress; Gulf of Maine; HAB; Harmful algal blooms; Sediment resuspension; Sediment transport

Year:  2014        PMID: 25288829      PMCID: PMC4185196          DOI: 10.1016/j.dsr2.2013.10.011

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


  8 in total

1.  Uncertainties in sediment erodibility estimates due to a lack of standards for experimental protocols and data interpretation.

Authors:  Lawrence P Sanford
Journal:  Integr Environ Assess Manag       Date:  2006-01       Impact factor: 2.992

2.  Near-bottom circulation and dispersion of sediment containing Alexandrium fundyense cysts in the Gulf of Maine during 2010-2011.

Authors:  Alfredo L Aretxabaleta; Bradford Butman; Richard P Signell; P Soupy Dalyander; Christopher R Sherwood; Vitalii A Sheremet; Dennis J McGillicuddy
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05       Impact factor: 2.732

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

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

4.  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

5.  An endogenous annual clock in the toxic marine dinoflagellate Gonyaulax tamarensis.

Authors:  D M Anderson; B A Keafer
Journal:  Nature       Date:  1987 Feb 12-18       Impact factor: 49.962

6.  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

7.  Understanding interannual, decadal level variability in paralytic shellfish poisoning toxicity in the Gulf of Maine: the HAB Index.

Authors:  Donald M Anderson; Darcie A Couture; Judith L Kleindinst; Bruce A Keafer; Dennis J McGillicuddy; Jennifer L Martin; Mindy L Richlen; J Michael Hickey; Andrew R Solow
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

8.  Categorizing the severity of paralytic shellfish poisoning outbreaks in the Gulf of Maine for forecasting and management.

Authors:  Judith L Kleindinst; Donald M Anderson; Dennis J McGillicuddy; Richard P Stumpf; Kathleen M Fisher; Darcie A Couture; J Michael Hickey; Christopher Nash
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

  8 in total
  5 in total

1.  Near-bottom circulation and dispersion of sediment containing Alexandrium fundyense cysts in the Gulf of Maine during 2010-2011.

Authors:  Alfredo L Aretxabaleta; Bradford Butman; Richard P Signell; P Soupy Dalyander; Christopher R Sherwood; Vitalii A Sheremet; Dennis J McGillicuddy
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05       Impact factor: 2.732

2.  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

3.  Growing Degree-Day Measurement of Cyst Germination Rates in the Toxic Dinoflagellate Alexandrium catenella.

Authors:  Alexis D Fischer; Michael L Brosnahan
Journal:  Appl Environ Microbiol       Date:  2022-05-23       Impact factor: 5.005

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.  Understanding interannual, decadal level variability in paralytic shellfish poisoning toxicity in the Gulf of Maine: the HAB Index.

Authors:  Donald M Anderson; Darcie A Couture; Judith L Kleindinst; Bruce A Keafer; Dennis J McGillicuddy; Jennifer L Martin; Mindy L Richlen; J Michael Hickey; Andrew R Solow
Journal:  Deep Sea Res Part 2 Top Stud Oceanogr       Date:  2014-05-01       Impact factor: 2.732

  5 in total

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