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底栖藻类生物群落的群落结构和对水文变化的生态响应:藻类指标和多元技术在河流管理中的应用。

Community structure and ecological responses to hydrological changes in benthic algal assemblages in a regulated river: application of algal metrics and multivariate techniques in river management.

机构信息

Department of Plant Sciences, Faculty of Natural Sciences, University of Tabriz, 29 Bahman Blvd, Tabriz, 51666-14779, Iran.

Institute of Environment, University of Tabriz, 29 Bahman Blvd, Tabriz, 51666-14779, Iran.

出版信息

Environ Sci Pollut Res Int. 2021 Aug;28(29):39805-39825. doi: 10.1007/s11356-021-13546-w. Epub 2021 Mar 25.

Abstract

The flow regime of the Wimmera River was substantially modified due to the construction of a water supply reservoir. Samples of diatoms and soft algae and measurements of water quality were analysed at ten sampling sites for 3 years (between February 2012 and November 2014) along the MacKenzie River, a tributary of the Wimmera River, in different seasons and under different flow regimes, to understand the spatial and temporal variation in the relationship between algal communities, water quality and stream condition. Baseline information on algal communities and water quality was collected during base flow conditions, while experiments on the effect of water releases on algal communities were based on flow regime variations (manipulated flow regimes), specifically on the algae community structure, water quality and ecosystem function. Algal species composition changed along the river under different flow regimes and different seasons. Under base flow, Bacillariophyta (diatoms) were more abundant upstream, and filamentous green algae were more abundant downstream. The results showed that the algal composition shifted downstream after water release events. Chlorophyta (green algae), Cyanophyta (blue-green algae) and Chrysophyta gradually increased from upstream to downstream under base flow conditions and before water releases, whereas diatoms were greater upstream and increased downstream after water releases. The results are presented to tailor discharge and duration of the river flows by amalgamation of consumptive and environmental flows to improve the condition of the stream thereby supplementing the flows dedicated to environmental outcomes.

摘要

由于供水水库的建设,怀默拉河的水流状态发生了很大的改变。在 2012 年 2 月至 2014 年 11 月的 3 年间,在不同的季节和不同的水流状态下,沿怀默拉河的支流麦肯齐河的 10 个采样点分析了硅藻和软藻样本以及水质测量结果,以了解藻类群落、水质和溪流状况之间的时空变化关系。在基流条件下收集了藻类群落和水质的基线信息,而关于放水对藻类群落影响的实验则基于水流状态变化(人为控制水流状态),特别是藻类群落结构、水质和生态系统功能。在不同的水流状态和不同的季节下,河流的藻类物种组成发生了变化。在基流条件下,浮游植物(硅藻)在上游更为丰富,丝状绿藻在下游更为丰富。结果表明,放水事件后藻类群落向下游转移。在基流条件下,绿藻(绿藻)、蓝藻(蓝藻)和金藻(金藻)逐渐从上游到下游增加,而硅藻在上游较多,并在放水后增加。这些结果表明,可以通过合并消耗性和环境水流来调整排放量和河流水流的持续时间,以改善溪流状况,从而补充专门用于环境目标的水流。

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