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在一个北方城市化地区,溪流藻类群落的变化与水质和集水区变量有关。

Variation in stream diatom communities in relation to water quality and catchment variables in a boreal, urbanized region.

机构信息

Department of Geosciences and Geography, P.O. Box 64, FIN-00014 University of Helsinki, Finland.

Department of Geosciences and Geography, P.O. Box 64, FIN-00014 University of Helsinki, Finland.

出版信息

Sci Total Environ. 2015 Oct 15;530-531:279-289. doi: 10.1016/j.scitotenv.2015.05.101. Epub 2015 Jun 3.

Abstract

Intensive anthropogenic land use such as urbanization alters the hydrological cycle, water chemistry and physical habitat characteristics, thus impairing stream physicochemical and biological quality. Diatoms are widely used to assess stream water quality as they integrate water chemistry temporally and reflect the joint influence of multiple stressors on stream biota. However, knowledge of the major community patterns of diatoms in urban streams remains limited especially in boreal regions. The aim of this study was to examine the effects of water chemistry and catchment characteristics on stream diatom communities, and to test the performance of the Index of Pollution Sensitivity (IPS) as a stream water quality indicator across an urban-to-rural gradient in southern Finland. Diatom community structure and species richness were related to local-scale variables such as water temperature, aluminium concentration, and electrical conductivity, which were in turn influenced by patterns in catchment land use and land cover. Diatoms reflected the intensity of human activities as more intensive land use increased the occurrence of pollution-tolerant species. The change in community structure along the land use intensity gradient was accompanied by a distinct decline in species richness. On the contrary, the IPS index failed to indicate differences in water quality along the urban-to-rural gradient as no consistent differences in the IPS values were found. Our results highlight the joint influence of multifaceted factors that underlie diatom patterns, and show that diatom biodiversity can be used as cost-effective metric indicating urban stream conditions. However, the IPS index turned out to be an unsuitable tool for assessing water quality among these streams.

摘要

集约化的人类土地利用,如城市化,改变了水文循环、水化学和物理生境特征,从而损害了溪流的理化和生物质量。由于硅藻能够综合反映水化学的时间变化,并反映多种胁迫因素对溪流生物群的综合影响,因此被广泛用于评估溪流水质。然而,人们对城市溪流中硅藻主要群落模式的认识仍然有限,尤其是在北方地区。本研究的目的是检验水化学和集水区特征对溪流硅藻群落的影响,并检验污染敏感性指数(IPS)作为芬兰南部城市到农村梯度的溪流水质指标的性能。硅藻群落结构和物种丰富度与局部尺度变量有关,如水温、铝浓度和电导率,而这些变量又受到集水区土地利用和土地覆被模式的影响。硅藻反映了人类活动的强度,因为更密集的土地利用增加了耐污染物种的出现。群落结构沿土地利用强度梯度的变化伴随着物种丰富度的明显下降。相反,IPS 指数未能表明城市到农村梯度的水质差异,因为 IPS 值没有一致的差异。我们的结果强调了多种因素的综合影响,这些因素是硅藻模式的基础,并表明硅藻生物多样性可用作指示城市溪流状况的具有成本效益的指标。然而,IPS 指数被证明是评估这些溪流水质的不合适工具。

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