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Is the macrophyte diversification along the trophic gradient distinct enough for river monitoring?

机译:在营养梯度上的大型植物多样性是否足以用于河流监测?

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The variation of a number of parameters characterizing aquatic plant assemblages in rivers across a wide trophic gradient was investigated to evaluate their usefulness for a Polish national river monitoring system. Analyses were conducted at 100 sites included in the national river monitoring system, representing a uniform river type, i.e., small-and medium-sized lowland rivers with a sandy substrate. Results of botanical surveys, which were supplemented with comprehensive monthly quality records, were obtained from the national monitoring database. By analyzing the Jaccard distances of the botanical metrics using the adonis function, the variation in species composition between rivers of different trophic status was determined. The group consisting of the most degraded rivers was the most homogeneous in terms of botanical composition. The cleanest rivers displayed a high level of heterogeneity within their group, as numerous different unique species were found there at low frequencies. The variation of the macrophyte metrics used to assess the ecological status ( Macrophyte Index for Rivers ( MIR) and River Macrophyte Nutrient Index ( RMNI)) reflected a trophic gradient. We confirmed that vegetation diversification along a trophic gradient is evident enough to detect degradation in a five quality class system.
机译:研究了在宽营养梯度上河流中水生植物群落的许多参数变化,以评估其对波兰国家河流监测系统的实用性。在包括在国家河流监测系统中的100个地点进行了分析,这些地点代表了统一的河流类型,即具有沙质底物的中小型低地河流。从国家监测数据库获得了植物调查的结果,并补充了全面的每月质量记录。通过使用阿多尼斯函数分析植物学指标的雅卡德距离,确定了不同营养状态的河流之间物种组成的变化。就植物组成而言,退化程度最高的河流组成的群最均一。最干净的河流在它们的种群中表现出高度的异质性,因为在低频发现了许多不同的独特物种。用于评估生态状况的大型植物指标(河流大型植物指数(MIR)和河流大型植物营养指数(RMNI))的变化反映了营养梯度。我们证实,沿着营养梯度的植被多样化明显可以检测出五种质量等级系统中的退化。

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