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Critical approach to diatom-based bioassessment of the regulated sections of urban flowing water ecosystems

机译:基于硅藻的城市流水生态系统受管制区域生物评估的关键方法

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Hydromorphological transformations of small urban streams results in changes in habitat conditions, i. e. increase in water speed current and/or oxygen concentration, and finally changes in aquatic organism structure. The ecological status of two regulated urban streams was determined by diatom-based biomonitoring in their upper and lower sections using selected diatom indices (IO, IPS, IBD, GDI, TDI). Qualitative and quantitative analyses were performed to analyse the structure of diatom assemblages and to reveal the spatial relationships between stream sites. The bioassessment was supported with a chemical analysis of the water. The upper sections were found to be characterised by poor/bad ecological status, and the lower sections below highly-transformed and impacted streambeds by good/moderate status. Since the bioassessment revealed unexpected results, an analysis was performed of the dominant species, with special attention paid to the autecology of diatoms. A new model of bioassessment was implemented where the most frequent and dominant species, Achnanthidium minutissimum, was excluded from the analysis. The results obtained by the new analysis were similar to those of the chemical analysis. Such a critical approach is needed to reveal the true ecological status of flowing water ecosystems, particularly in the case of regulated streams where transformation has resulted in a change in more ` pseudo-mountain' habitat conditions.
机译:小型城市河流的水文形态变化导致栖息地条件发生变化,即e。增加水速电流和/或氧气浓度,最终改变水生生物结构。通过使用选定的硅藻指数(IO,IPS,IBD,GDI,TDI)在其上部和下部进行基于硅藻的生物监测来确定两条受管制的城市河流的生态状况。进行了定性和定量分析,以分析硅藻集合体的结构,并揭示了河流位点之间的空间关系。生物评估得到水的化学分析的支持。发现上部区域的特征是生态状况差/差,而下部区域的下部/下部则受到良好/中等状况的影响而发生了高度变化和受到影响的河床。由于生物评估显示出出乎意料的结果,因此对优势种进行了分析,并特别注意了硅藻的自律性。实施了一种新的生物评估模型,其中从分析中排除了最常见和占优势的物种Ac草。通过新分析获得的结果与化学分析的结果相似。需要这种关键的方法来揭示流水生态系统的真实生态状况,特别是在受管制的溪流中,其转化导致更多的“伪山”生境条件发生变化。

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