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Climate-induced interannual variability and projected change of two harmful algal bloom taxa in Chesapeake Bay, USA

机译:中国Chesapeake Bay的两种有害藻类盛开群的际际变化和预计变化

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摘要

Retrospective analysis of water quality monitoring data reveals strong interannual shifts in the spatial distribution of two harmful algal species (Prorocentrum minimum and Karlodinium venefi-cum) in eutrophic Chesapeake Bay. A habitat model, based on the temperature and salinity tolerance of the two species as well as their nutrient preferences, provides a good interpretation for the observed seasonal progression and spatial distribution of these taxa. It also points to climate-induced variability in the hy-drological forcing as a mechanism driving the interannual shifts in the algal distributions: both P. minimum and K. veneficum shift downstream during wetter years but upstream during dry years. Climate downscaling simulations using the habitat model show upstream shifts of the two species in the estuary and longer blooming seasons by the mid-21st century. Salt intrusion due to sea level rise will raise salinity in the estuary and cause these HAB species to migrate upstream, but increasing winter-spring flows may also drive favorable salinity habitat downstream. Warming leads to longer growing seasons of P. minimum and K. veneficum but may suppress bloom habitat during their respective peak bloom periods.
机译:回顾性分析水质监测数据揭示了富营养化切萨皮克湾的两种有害藻类(Prorocentrum最小和Karlodinium-Cumi-Cumi-Cumi-Cumi-Cumi-Cumi-Cumi-Cumi-Cumi-Cumi-Chefies的强劲际变化。一种栖息地模型,基于两种物种的温度和盐度耐受性以及它们的营养偏好,为观察到的季节性进展和这些分类的空间分布提供了良好的解释。它还指出,气候诱导的潮流强制变异,作为驱动藻类分布中的际变化的机制:P.最小和K. viseficum在潮湿的岁月内移位,但在干燥的年度上游。使用栖息地模型的气候镇压模拟显示21世纪中期两种物种的上游班次。由于海平面上升,盐侵入将提高河口的盐度,并导致这些HAB物种迁移上游,但增加冬季春季流量也可能在下游推动有利的盐度栖息地。变暖导致P.最低和K.Veficum的季节更长,但可能会在各自的峰绽放期间抑制盛开的栖息地。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|2002-2002|共1页
  • 作者

    M. Li; W. Ni; F. Zhang;

  • 作者单位

    University of Maryland Center for Environmental Science Horn Point Laboratory 2020 Horn Point Road Cambridge MD 21613 United States;

    University of Maryland Center for Environmental Science Horn Point Laboratory 2020 Horn Point Road Cambridge MD 21613 United States;

    University of Maryland Center for Environmental Science Horn Point Laboratory 2020 Horn Point Road Cambridge MD 21613 United States;

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