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首页> 外文期刊>Global change biology >Sentinel systems on the razor's edge: effects of warming on Arctic geothermal stream ecosystems
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Sentinel systems on the razor's edge: effects of warming on Arctic geothermal stream ecosystems

机译:剃刀边缘的前哨系统:变暖对北极地热流生态系统的影响

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摘要

The Earth is experiencing historically unprecedented rates of warming, with surface temperatures projected to increase by 3-5 degrees C globally, and up to 7.5 degrees C in high latitudes, within the next century. Knowledge of how this will affect biological systems is still largely restricted to the lower levels of organization (e.g. species range shifts), rather than at the community, food web or ecosystem level, where responses cannot be predicted from studying single species in isolation. Further, many correlational studies are confounded with time and/or space, whereas experiments have been mostly confined to laboratory microcosms that cannot capture the true complexity of natural ecosystems. We used a 'natural experiment' in an attempt to circumvent these shortcomings, by characterizing community structure and trophic interactions in 15 geothermal Icelandic streams ranging in temperature from 5 degrees C to 45 degrees C. Even modest temperature increases had dramatic effects across multiple levels of organization, from changes in the mean body size of the top predators, to unimodal responses of species populations, turnover in community composition, and lengthening of food chains. Our results reveal that the rates of warming predicted for the next century have serious implications for the structure and functioning of these fragile 'sentinel' ecosystems across multiple levels of organization.
机译:地球正经历着史无前例的升温,下一个世纪以来,全球地表温度预计将升高3-5摄氏度,高纬度地区将升高到7.5摄氏度。关于这将如何影响生物系统的知识仍然很大程度上局限于组织的较低水平(例如物种范围的变化),而不是社区,食物网或生态系统的知识,在社区,食物网或生态系统的水平上,无法通过单独研究单个物种来预测反应。此外,许多相关研究都与时间和/或空间混淆,而实验主要限于无法捕捉自然生态系统真正复杂性的实验室缩影。为了描述这些缺点,我们使用了一项“自然实验”,以表征15种温度在5摄氏度至45摄氏度之间的冰岛地热流中的群落结构和营养相互作用。即使温和的温度升高,也会在多个温度水平上产生显着影响从顶级捕食者的平均体型变化到物种种群的单峰响应,群落组成更新和食物链延长的组织。我们的研究结果表明,预测到下个世纪的升温速度会对组织各个层面上这些脆弱的“前哨”生态系统的结构和功能产生严重影响。

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