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Integrative ecosystem analyses of phytoplankton dynamics in the YorkRiver estuary (USA)

机译:约克河口(美国)浮游植物动力学的综合生态系统分析

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摘要

The relative importance of biotic (top-down) vs. abiotic (bottom-up) controls on phytoplankton dynamics was investigated in the York River estuary, Virginia (USA) by a combination of extensive analyses of long-term data sets collected by the U.S. Environmental Protection Agency (EPA) monitoring program over 17 years (1984-2001), field studies (1996-1997) and ecosystem modeling analyses. Results from the analysis of long-term data records collected at three stations along the salinity gradient suggested that phytoplankton are more likely controlled by abiotic mechanisms such as resource limitation than biotic mechanisms such as grazing since annual cycles of primary production and phytoplankton biomass were similar and no grazing effects were evident based on the observed relationship between phytoplankton and zooplankton biomass (R super(2) < 0.2, p > 0.1). This scenario was supported by short-term field observations made over an annual cycle at three stations in the mid-channel of the estuary where both chlorophyll a and primary production demonstrated similar patterns of seasonal variation. Ratios of fluorescence before and after acidification at all study sites were relatively high suggesting low grazing pressure in the estuary. A tidally-averaged, size-structured plankton ecosystem model was previously developed and verified for the lower York River estuary. The validated ecosystem model was also used to examine this issue and simulation results supported the importance of bottom-up control in the York River estuary.
机译:在美国弗吉尼亚州的约克河河口,通过对美国收集的长期数据进行了广泛的分析,研究了生物(自上而下)与非生物(自下而上)控制对浮游植物动力学的相对重要性。环境保护局(EPA)历时17年(1984-2001年)的监测计划,实地研究(1996-1997年)和生态系统建模分析。从沿盐度梯度的三个站点收集的长期数据记录的分析结果表明,浮游植物更可能受到非生物机制(如资源限制)的控制,而非生物机制(如放牧),因为初级生产和浮游生物量的年周期相似且根据观察到的浮游植物与浮游动物生物量之间的关系,没有明显的放牧作用(R super(2)<0.2,p> 0.1)。该情景得到了河口中部通道三个站点在一年周期内进行的短期实地观测的支持,其中叶绿素a和初级产量均表现出相似的季节性变化模式。在所有研究地点,酸化前后的荧光比率都较高,表明河口的放牧压力较低。潮汐平均,大小结构的浮游生物生态系统模型是以前开发和验证的约克河下游河口。经过验证的生态系统模型也用于研究此问题,模拟结果支持了在约克河河口进行自下而上控制的重要性。

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