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Sediment resuspension, salinity and temperature affect the plankton community of a shallow coastal lake

机译:沉积物的重悬,盐度和温度影响着沿海浅湖的浮游生物群落

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摘要

Climate change is predicted to cause an increasing frequency of storm tides, rising sea levels and water temperatures, and altered precipitation and run-off. Such changes are likely to influence turbidity, salinity and temperature regimes of coastal aquatic ecosystems. To determine possible effects on plankton communities of these ecosystems, we combined feeding experiments with a monitoring study of tidally influenced, polymictic Lake Waihola (New Zealand). The feeding experiments were carried out using dominant Daphnia carinata, and important taxa of heterotrophic nanoflagellates (HNF) and ciliates. The field study encompassed the entire planktonic food web. Moderate levels of turbidity and salinity affected clearance and ingestion rates of D. carinata, HNF and oligotrich ciliates in our feeding experiments. Redundancy analysis identified sediment resuspension, salinity and temperature as important factors affecting the plankton communities in Lake Waihola. A wide variety of biota was affected by sediment resuspension and temperature. Fewer species responded to salinity, most likely due to unusually low salinities throughout the monitoring period. If global warming results in altered turbidity, salinity or temperature regimes in coastal aquatic ecosystems changes might be expected in the structure of their plankton communities, with potential consequences throughout the food web.
机译:预计气候变化将导致潮汐频率增加,海平面升高和水温升高以及降雨和径流变化。这种变化可能会影响沿海水生生态系统的浊度,盐度和温度状况。为了确定可能对这些生态系统的浮游生物群落造成的影响,我们将饲喂实验与潮汐影响的多学科怀霍拉湖(新西兰)的监测研究相结合。饲喂实验使用优势水蚤,重要的异养纳米鞭毛类(HNF)和纤毛虫类群进行。现场研究涵盖了整个浮游食物网。在我们的喂养实验中,中等浊度和盐度水平会影响D. carinata,HNF和oligotrich纤毛虫的清除率和摄入率。冗余分析确定了沉积物的重悬,盐度和温度是影响怀霍拉湖浮游生物群落的重要因素。沉积物的重悬和温度影响着各种各样的生物区系。盐分响应的物种较少,最可能是由于在整个监测期内盐分异常低。如果全球变暖导致沿海水生生态系统的浊度,盐度或温度变化,那么其浮游生物群落的结构可能会发生变化,并可能对整个食物网造成潜在影响。

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