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From the Cover: Predator transitory spillover induces trophic cascades in ecological sinks

机译:从封面看:捕食者的短暂溢出导致生态汇中的营养级联

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摘要

Understanding the effects of cross-system fluxes is fundamental in ecosystem ecology and biological conservation. Source-sink dynamics and spillover processes may link adjacent ecosystems by movement of organisms across system boundaries. However, effects of temporal variability in these cross-system fluxes on a whole marine ecosystem structure have not yet been presented. Here we show, using 35 y of multitrophic data series from the Baltic Sea, that transitory spillover of the top-predator cod from its main distribution area produces cascading effects in the whole food web of an adjacent and semi-isolated ecosystem. At varying population size, cod expand/contract their distribution range and invade/retreat from the neighboring Gulf of Riga, thereby affecting the local prey population of herring and, indirectly, zooplankton and phytoplankton via top-down control. The Gulf of Riga can be considered for cod a “true sink” habitat, where in the absence of immigration from the source areas of the central Baltic Sea the cod population goes extinct due to the absence of suitable spawning grounds. Our results add a metaecosystem perspective to the ongoing intense scientific debate on the key role of top predators in structuring natural systems. The integration of regional and local processes is central to predict species and ecosystem responses to future climate changes and ongoing anthropogenic disturbances.
机译:了解跨系统通量的影响是生态系统生态学和生物保护的基础。源汇动态和溢出过程可能通过生物体跨越系统边界的移动而将相邻的生态系统联系起来。然而,尚未提出这些跨系统通量的时间变化对整个海洋生态系统结构的影响。在这里,我们显示了使用来自波罗的海的35年多营养数据系列,顶级捕食者鳕鱼从其主要分布区的瞬时溢出在邻近和半隔离的生态系统的整个食物网络中产生级联效应。在不同的种群规模下,鳕鱼会扩大/收缩其分布范围,并从邻近的里加湾入侵/撤退,从而通过自上而下的控制影响当地鲱鱼的捕食种群,并间接影响浮游动物和浮游植物。里加湾可被认为是鳕鱼的“真正下沉”栖息地,由于没有合适的产卵场,鳕鱼种群在波罗的海中部地区没有移民的情况下灭绝。我们的研究结果为正在进行的关于顶级掠食者在构建自然系统中的关键作用的激烈科学辩论提供了元生态系统视角。区域和地方进程的整合对于预测物种和生态系统对未来气候变化和持续的人为干扰的反应至关重要。

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