首页> 外文期刊>Hydrobiologia >Crowded waters: short-term response of invertebrate drift to water abstraction
【24h】

Crowded waters: short-term response of invertebrate drift to water abstraction

机译:拥挤的水域:无脊椎动物漂移到水抽象的短期反应

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Water abstraction modifies the environmental conditions of stream ecosystems, which can affect invertebrate assemblages by altering drift. We examined this issue with a before-after-control-impact design experiment in which we diverted 90% of the natural flow from a headwater stream. We measured flow-reduction effects on drift densities (animals/m(3)), total drift rates (animals leaving the reach per hour) and net balance of invertebrates entering or leaving the Impact reach. We also identified the specific taxa and traits that drove these responses. The sudden decrease in flow promoted a 12-fold increase in overall drift density at the Impact reach, which was primarily driven by filterers, shredders and taxa associated with fast velocities, such as simulids. By contrast, drift densities of other abundant taxa, such as Baetis, Esolus and chironomids, increased less than what could be expected from the magnitude of flow reduction. While drift rates remained unchanged after water abstraction, the Impact reach became a net invertebrate exporter indicating that many taxa drifted actively as a response to stressful conditions rather than passively, which would be reduced by water abstraction. Therefore, our results suggest that water abstraction influences drift, with potentially important consequences for the invertebrate assemblages and ecosystem processes further downstream.
机译:水抽象改变了流生态系统的环境条件,可以通过改变漂移来影响无脊椎动物组装。我们用一个前后控制冲击设计实验检查了这个问题,其中我们将90%的自然流从沿着下游进行了转移。我们测量了对漂移密度的流量减少影响(动物/ m(3)),总漂移率(动物留下的动物)和无脊椎动物进入或离开冲击率的净平衡。我们还确定了开展这些反应的特定分类群和特征。流动突然减少促进了在冲击杆处的整体漂移密度增加了12倍,这主要由滤光器,粉碎机和与快速速度相关的捕获剂驱动,例如模拟。相比之下,其他丰富的分类群(如Baetis,Esolus和依湿型)的漂移密度,从减少的流量幅度增加到可能预期的程度。虽然在抽水后漂移率保持不变,但冲击率成为净无脊椎动物出口国,表明许多分类群作为对压力条件而不是被动的反应,这将被水抽象减少。因此,我们的结果表明,抽取水抽象影响漂移,对无脊椎动物组合和生态系统进一步下游的潜在重要后果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号