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The Consequences of Internal Waves for Phytoplankton Focusing on the Distribution and Production of Planktothrix rubescens

机译:浮游植物内部波动的后果-以紫苏浮游生物的分布和生产为中心

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摘要

Consequences of internal wave motion for phytoplankton and in particular for the distribution and production of the harmful and buoyant cyanobacterium Planktothrix rubescens were investigated based on data from two field campaigns conducted in Lake Ammer during summer 2009 and 2011. In both years, P. rubescens dominated the phytoplankton community and formed a deep chlorophyll maximum (DCM) in the metalimnion. Internal wave motions caused vertical displacement of P. rubescens of up to 6 m and 10 m, respectively. Vertical displacements of isotherms and of iso-concentration lines of P. rubescens from the same depth range coincided, suggesting that P. rubescens did not or could not regulate its buoyancy to prevent wave-induced vertical displacements. Diatoms dominated the phytoplankton community in the epilimnion and were vertically separated from P. rubescens. The thickness of the diatom layer, but not the diatom concentrations within the layer, changed in phase with the changes in the thickness of the epilimnion caused by internal wave motions. Seiche induced vertical displacements of P. rubescens caused fluctuations in the light intensity available at the depth of the P. rubescens layer. The interplay between seiche induced vertical displacements of the P. rubescens layer and the daily cycle of incident light lead to differences in the daily mean available light intensity between lake ends by up to a factor of ∼3. As a consequence, the daily mean specific oxygen production rate of P. rubescens differed by up to a factor of ∼7 between lake ends. The horizontal differences in the specific oxygen production rate of P. rubescens were persistent over several days suggesting that the associated production of P. rubescens biomass may lead to phytoplankton patchiness. The effect of internal seiches on the spatial heterogeneity and the persistence of horizontal differences in production, however, depend on the timing and the synchronization between internal wave motion and the daily course of incident light intensity. Vertical displacements caused by internal waves could be distinguished from other factors influencing the distribution of P. rubescens (e.g. active buoyancy control, production, vertical mixing) by a temperature-based data transformation. This technique may be of general use for separating wave-induced transport from other processes (e.g. sedimentation, vertical mixing) that affect the distributions of dissolved substances and suspended particles.
机译:基于2009年夏季和2011年夏季在安默湖进行的两次野外调查的数据,对浮游植物,特别是有害和浮游蓝藻浮游生物的内部波运动的后果进行了调查。浮游植物群落,并在金属亚胺中形成一个深的叶绿素最大值(DCM)。内波运动分别导致红假单胞菌的垂直位移分别高达6 m和10 m。同一深度范围内冬凌草的等温线和等浓度线的垂直位移一致,表明冬凌草没有或不能调节其浮力以防止波浪引起的垂直位移。硅藻主导着上浮游植物的浮游植物群落,并与红景天垂直分离。硅藻层的厚度,而不是层内的硅藻浓度,与由内部波动引起的外延膜厚度的变化同相变化。 Seiche诱导的红假单胞菌的垂直位移引起了红假单胞菌层深度处可用光强度的波动。 Seiche诱导的红景天层垂直位移与入射光的日周期之间的相互作用导致湖泊两端之间的日平均可用光强度之差达到约3倍。结果,红景天的日平均比氧产生率在湖的两端之间相差高达7倍。冬凌草的特定氧气产生速率的水平差异持续了几天,这表明冬凌草生物量的相关生产可能导致浮游植物斑块。内部空间变化对空间异质性和生产中水平差异的持久性的影响,取决于内部波动和入射光强度的日常变化之间的时间关系和同步性。通过基于温度的数据转换,可以将内部波引起的垂直位移与影响风疹假单胞菌分布的其他因素区分开(例如主动浮力控制,生产,垂直混合)。该技术可能通常用于将波引起的传输与影响溶解物质和悬浮颗粒分布的其他过程(例如沉降,垂直混合)分开。

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