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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Rapid food web recovery in response to removal of an introduced apex predator
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Rapid food web recovery in response to removal of an introduced apex predator

机译:快速食物网的恢复是由于去除了引进的先头天敌

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摘要

Non-native species have increased extinction rates, decreased diversity, altered organism distributions, and constrained ecosystem functioning in native aquatic and terrestrial communities. Although widespread fish introductions have dramatically altered fish communities in north temperate lakes, restoration of native fish communities has been rarely accomplished. This study evaluated a native fish community restoration using a stable isotope based metric. Stable isotopes from a native apex predator(lake trout (Salvelinus namaycush)) were used to measure food web changes following removal of a dominant non-native apex predator (smallmouth bass (Micropterus dolomieu)). Prior to bass removal, lake trout consumed primarily invertebrates. Within 2 years of the initiation of an experimental removal effort, lake trout delat~13C values (-25.9%o to -24.9%o) and trophic position (3.5-3.9) increased, reflecting a switch to prey fish consumption that was supported by stomach contents analyses. Here, we showthe rapid reestablishment of food web linkages within a native fish community in response to changes in principal energy sources and trophic position of a native apex predator along with the ability to quantify the extent of these changes.
机译:非本地物种在本地水生和陆生群落中具有更高的灭绝率,减少的多样性,改变的生物分布以及受限制的生态系统功能。尽管大量引进鱼类已大大改变了北部温带湖泊的鱼类群落,但恢复本地鱼类群落的工作却很少。这项研究使用稳定的基于同位素的指标评估了本地鱼类群落的恢复情况。来自本地先端捕食者(鳟鱼(Salvelinus namaycush))的稳定同位素用于测量去除非主要先端捕食者(小嘴鲈(Micropterus dolomieu))后食物网的变化。在去除鲈鱼之前,湖鳟鱼主要消耗无脊椎动物。在开始进行实验性移除工作的2年内,湖鳟的delat〜13C值(-25.9%o至-24.9%o)和营养位置(3.5-3.9)有所增加,反映了转向捕食鱼类的消费得到了支持胃内容物分析。在这里,我们展示了本地鱼类群落中食物网链接的快速重建,以响应主要能量来源的变化和本地尖齿捕食者的营养位置,以及量化这些变化的程度的能力。

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