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Synergistic effects of regional climate patterns and local water management on freshwater mussel communities

机译:区域气候模式与当地水资源管理对淡水贻贝群落的协同效应

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Human alterations to aquatic ecosystems are leading to decreases in species richness and biomass and subsequent changes in community composition. In many cases species losses are non-random: species with traits poorly adapted to the new environmental conditions suffer greater losses. We used long-term data from a southern US river, the Kiamichi River, to evaluate the synergistic effects of regional climate patterns coupled with water management practices on freshwater mussel communities. Mussel communities in the river changed over the 15 year period of this study, with overall densities and species richness decreasing and community structure shifting from assemblages dominated by thermally sensitive to thermally tolerant species. These changes corresponded with a period of very low flows in the river caused by a combination of climate patterns (a regional drought) and local water management practices (decreased reservoir releases). These low flows, coupled with high summer air temperatures, changed the river in many locations from a continuously flowing river to a series of shallow, isolated pools where water temperatures sometimes exceeded 40 degrees C. Altered conditions led to higher mortality rates of thermally sensitive compared to tolerant species. We predict future shifts in river ecosystem function as mussel communities change in response to changing climate and water management. (C) 2010 Elsevier Ltd. All rights reserved.
机译:人类对水生生态系统的改变导致物种丰富度和生物量的减少,以及随后群落组成的变化。在许多情况下,物种损失是非随机的:具有难以适应新环境条件的特​​征的物种遭受更大的损失。我们使用来自美国南部河流Kiamichi河的长期数据来评估区域气候模式与水管理实践对淡水贻贝群落的协同效应。在本研究的15年期间,河中的贻贝群落发生了变化,总体密度和物种丰富度下降,群落结构从对热敏感物种占主导地位的组合转变为对热耐受物种的控制。这些变化与气候模式(区域干旱)和当地水管理实践(水库释放量减少)共同造成的河流流量非常低的时期相对应。这些低流量加上夏季高气温,使许多地方的河流从不断流动的河流变成了一系列浅水,孤立的水池,水池中的水温有时超过40摄氏度。条件的变化导致对热敏感的死亡率更高耐受物种。我们预测随着贻贝群落随着气候和水资源管理的变化而变化,河流生态系统功能的未来变化。 (C)2010 Elsevier Ltd.保留所有权利。

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