Hydrologic Variability and Its Control of Phytoplankton Community Structure and Function in Two Shallow, Coastal, Lagoonal Ecosystems: The Neuse and New River Estuaries, North Carolina, USA

被引:0
作者
Hans W. Paerl
Nathan S. Hall
Benjamin L. Peierls
Karen L. Rossignol
Alan R. Joyner
机构
[1] University of North Carolina at Chapel Hill,Institute of Marine Sciences
来源
Estuaries and Coasts | 2014年 / 37卷
关键词
Phytoplankton; Coastal ecosystem; Neuse River Estuary; New River Estuary; Hydrology;
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摘要
Hydrologic conditions, especially changes in freshwater input, play an important, and at times dominant, role in determining the structure and function of phytoplankton communities and resultant water quality of estuaries. This is particularly true for microtidal, shallow water, lagoonal estuaries, where water flushing and residence times show large variations in response to changes in freshwater inputs. In coastal North Carolina, there has been an increase in frequency and intensity of extreme climatic (hydrologic) events over the past 15 years, including eight hurricanes, six tropical storms, and several record droughts; these events are forecast to continue in the foreseeable future. Each of the past storms exhibited unique hydrologic and nutrient loading scenarios for two representative and proximate coastal plain lagoonal estuaries, the Neuse and New River estuaries. In this synthesis, we used a 13-year (1998–2011) data set from the Neuse River Estuary, and more recent 4-year (2007–2011) data set from the nearby New River Estuary to examine the effects of these hydrologic events on phytoplankton community biomass and composition. We focused on the ability of specific taxonomic groups to optimize growth under hydrologically variable conditions, including seasonal wet/dry periods, episodic storms, and droughts. Changes in phytoplankton community composition and biomass were strongly modulated by the amounts, duration, and seasonality of freshwater discharge. In both estuaries, phytoplankton total and specific taxonomic group biomass exhibited a distinctive unimodal response to varying flushing rates resulting from both event-scale (i.e., major storms, hurricanes) and more chronic seasonal changes in freshwater input. However, unlike the net negative growth seen at long flushing times for nano-/microphytoplankton, the pigments specific to picophytoplankton (zeaxanthin) still showed positive net growth due to their competitive advantage under nutrient-limited conditions. Along with considerations of seasonality (temperature regimes), these relationships can be used to predict relative changes in phytoplankton community composition in response to hydrologic events and changes therein. Freshwater inputs and droughts, while not manageable in the short term, must be incorporated in water quality management strategies for these and other estuarine and coastal ecosystems faced with increasing frequencies and intensities of tropical cyclones, flooding, and droughts.
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页码:31 / 45
页数:14
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[1]  
Adolf JE(2006)Environmental forcing of phytoplankton floral composition, biomass, and primary productivity in Chesapeake Bay, USA Estuarine Coastal and Shelf Science 67 108-122
[2]  
Yeager CL(1999)Use of a date-specific method to examine variability in the flushing times of Georgia estuaries Estuarine Coastal and Shelf Science 49 469-482
[3]  
Miller WD(2008)Atmospheric warming and the amplification of precipitation extremes Science 321 1481-1484
[4]  
Mallonee ME(2010)Modeled impact of anthropogenic warming on the frequency of intense Atlantic hurricanes Science 327 454-458
[5]  
Harding LW(2001)Factors in the decline of coastal ecosystems Science 293 629-638
[6]  
Alber M(1993)Patterns of phytoplankton primary productivity in the Neuse River Estuary, North Carolina, USA Marine Ecology Progress Series 97 287-297
[7]  
Sheldon JE(1994)Dynamics of NH Estuaries 17 361-371
[8]  
Allan RP(1993) and NO Marine Ecology Progress Series 102 69-77
[9]  
Soden BJ(2004) uptake in the water column of the Neuse River estuary, North Carolina Proceedings of the National Academy of Science USA 101 9291-9296
[10]  
Bender MA(2006)In situ variations of xanthophylls diatoxanthin and diadinoxanthin: photadaptation and relationships with a hydrodynamical system in the eastern English Channel Limnology and Oceanography 51 463-487