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Interaction webs in arctic ecosystems: Determinants of arctic change?

机译:北极生态系统中的互动网:北极变化的决定因素?

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How species interact modulate their dynamics, their response to environmental change, and ultimately the functioning and stability of entire communities. Work conducted at Zackenberg, Northeast Greenland, has changed our view on how networks of arctic biotic interactions are structured, how they vary in time, and how they are changing with current environmental change: firstly, the high arctic interaction webs are much more complex than previously envisaged, and with a structure mainly dictated by its arthropod component. Secondly, the dynamics of species within these webs reflect changes in environmental conditions. Thirdly, biotic interactions within a trophic level may affect other trophic levels, in some cases ultimately affecting land-atmosphere feedbacks. Finally, differential responses to environmental change may decouple interacting species. These insights form Zackenberg emphasize that the combination of long-term, ecosystem-based monitoring, and targeted research projects offers the most fruitful basis for understanding and predicting the future of arctic ecosystems.
机译:物种如何互动调制其动态,对环境变化的响应,并最终是整个社区的运作和稳定性。在格陵兰岛东北地区Zackenberg进行的工作已经改变了我们对北极地区网络的网络结构的看法,它们如何随着时间的推移而变化,以及如何随着当前的环境变化而改变:首先,高北极互动纤维网更复杂之前设想,并且结构主要由其节肢动物组分决定。其次,这些网中物种的动态反映了环境条件的变化。第三,在营养水平内的生物相互作用可能会影响其他营养性水平,在某些情况下最终影响土地气氛反馈。最后,对环境变化的差异反应可能会脱节互动物种。这些见解表达了Zackenberg强调,长期,基于生态系统的监测和有针对性的研究项目的组合为理解和预测北极生态系统的未来提供了最丰富的基础。

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