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首页> 外文期刊>Estuarine Coastal and Shelf Science >The river-estuarine continuum of nutrients and phytoplankton communities in an estuary physically divided by a sea dike
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The river-estuarine continuum of nutrients and phytoplankton communities in an estuary physically divided by a sea dike

机译:河口的河口养分和浮游植物群落的连续体在物理上被海堤分开

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Spatial and temporal variation in nutrients, physical variables, primary productivity and the size and taxonomic composition of phytoplanlcton was investigated over an annual cycle in a macrotidal estuary transected by a sea dike in a temperate region. Our aim was to evaluate whether the river continuum approximation was valid in the highly altered estuary. Ambient nutrient concentrations were generally much higher in the freshwater than in the seawater zone, but decreased downstream. The chlorophyll a concentrations were also much higher in freshwater and decreased downstream along the river estuary continuum. Primary productivity displayed a similar pattern, except in February and August, when it increased rapidly in seawater following freshwater discharge. This suggests that nutrient availability could have been important in determining the spatial variation in phytoplankton biomass and production. Winter and summer blooms of nano-sized phytoplankton developed in freshwater dominated by Stephanodiscus sp. and Eudorina elegans, which favour low and high temperatures, respectively. The nutrient increase following eutrophic freshwater discharge may have supported phytoplankton blooms dominated by Thalassiosira rotula (micro-sized) and Heterocapsa sp. (nano-sized) in the late winter and monsoon season, respectively, in the upper regions of the seawater zone. However, blooms and primary productivity decreased downstream and the taxonomic composition also varied, corresponding to significant spatial changes of nutrients, salinity and water transparency that were validated by statistical analyses. This suggests that the river continuum was sustained between the fresh and seawater zones, as well as within individual zones, although they were physically transected by the sea dike. The river continuum in highly altered estuaries that can extend seaward during monsoons may be important to the primary production and food web of the Yellow Sea. (c) 2015 Elsevier Ltd. All rights reserved.
机译:在温带地区由海堤横切的大潮河口中,在年度周期内调查了营养素,物理变量,初级生产力以及浮游植物的大小和生物分类组成的时空变化。我们的目的是评估在高度变化的河口中河流连续体近似是否有效。淡水中的环境养分浓度通常比海水区高得多,但下游下降。淡水中的叶绿素a浓度也高得多,而沿河口连续带的下游则降低。初级生产力显示出类似的模式,除了在二月和八月,当淡水排放之后,海水中的初级生产力迅速增加。这表明养分的有效性在确定浮游植物生物量和产量的空间变化方面可能很重要。在Stephanodiscus sp。主导的淡水中产生了纳米级浮游植物的冬,夏季花。和Eudorina elegans,分别有利于低温和高温。富营养化淡水排放后营养物质的增加可能支持了以浮游藻(Thalasiosira rotula)(微型)和杂藻(Heterocapsa sp)为主的浮游植物开花。冬季晚些时候和季风季节分别在海水区的上部(纳米大小)。但是,下游的水华和初级生产力下降,分类学组成也发生变化,这与营养素,盐度和水透明度的显着空间变化相对应,这已通过统计分析得到了验证。这表明尽管淡水区和海水区已被海堤物理切断,但河流的连续体在淡水区和海水区之间以及各个区中得以维持。河口高度变化的河流连续体可能在季风期间向海延伸,这可能对黄海的初级生产和食物网很重要。 (c)2015 Elsevier Ltd.保留所有权利。

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