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流量减少条件下的河流生态系统功能

Stream ecosystem functioning under reduced flow conditions.

作者信息

Dewson Zoë S, James Alexander B W, Death Russell G

机构信息

Institute of Natural Resources-Ecology, Massey University, Private Bag 11-222, Palmerston North, New Zealand.

出版信息

Ecol Appl. 2007 Sep;17(6):1797-808. doi: 10.1890/06-1901.1.

Abstract

Assessments of flow reduction in streams often focus on changes to biological communities and in-stream physical characteristics, with little consideration for changes in ecosystem functioning. It is unclear whether functional indicators of ecosystem condition may be useful for assessing the impacts of reduced discharge on small streams. Using weirs and diversions to reduce stream discharge during summer baseflow conditions, we tested the response of leaf breakdown, coarse particulate organic matter (CPOM) retention, and primary production to one month of water abstraction in before-after, control-impact (BACI) designed experiments. Discharge at impact (downstream) reaches decreased by over 85% in each of three small New Zealand streams compared to controls (upstream). There also were decreases in velocity, depth, and wetted width. Sediment cover increased at impact reaches, but there were only small changes to conductivity, pH, and surface water temperature. We installed mesh bags filled with willow leaves in-stream for one month to measure leaf breakdown. Reduced discharge had little influence on leaf breakdown rate in these streams. Travel distances and retention structures for CPOM were evaluated using releases of paper strips and wooden dowelling over a range of discharges. The distance traveled by released CPOM increased with increasing discharge, and the importance of riffles as retention structures increased at lower discharges. We measured the accumulation of chlorophyll a after one month on artificial substrates as an estimate of the relative primary production of control and impact reaches. The differences in chlorophyll a concentrations between control and impact reaches were inconsistent among streams. These ecosystem functions have responded inconsistently to water removal in these streams. However, the strong response of CPOM retention to reduced discharge could complement measures of biological community structure when the influence of reduced discharge is assessed. We recommend further investigation in a wide range of streams to assess the utility of these processes as functional indicators of reduced discharge.

摘要

对溪流流量减少的评估通常侧重于生物群落和溪流内部物理特征的变化,而很少考虑生态系统功能的变化。目前尚不清楚生态系统状况的功能指标是否有助于评估流量减少对小溪流的影响。在夏季基流条件下,我们利用堰闸和引水设施减少溪流流量,在前后对照、控制影响(BACI)设计的实验中,测试了叶片分解、粗颗粒有机物质(CPOM)滞留和初级生产对一个月取水的响应。与对照(上游)相比,新西兰三条小溪流中每条溪流的影响(下游)河段流量减少了85%以上。流速、深度和湿周也有所降低。影响河段的沉积物覆盖增加,但电导率、pH值和地表水温度仅有微小变化。我们在溪流中放置装满柳叶的网袋一个月以测量叶片分解情况。流量减少对这些溪流中的叶片分解速率影响很小。利用纸条和木销在一系列流量下的释放来评估CPOM的移动距离和滞留结构。释放的CPOM移动距离随流量增加而增加,在较低流量下,浅滩作为滞留结构的重要性增加。我们测量了一个月后人工基质上叶绿素a的积累量,以估计对照河段和影响河段的相对初级生产量。对照河段和影响河段之间叶绿素a浓度的差异在不同溪流中并不一致。这些生态系统功能对这些溪流中的取水反应不一致。然而,CPOM滞留对流量减少的强烈反应在评估流量减少影响时可补充生物群落结构的测量。我们建议在更广泛的溪流中进行进一步调查,以评估这些过程作为流量减少功能指标的效用。

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