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Drought rewires the cores of food webs

机译:干旱重新打造食物网的核心

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摘要

Droughts are intensifying across the globe with potentially devastating implications for freshwater ecosystems. We used new network science approaches to investigate drought impacts on stream food webs and explored potential consequences for web robustness to future perturbations. The substructure of the webs was characterized by a core of richly connected species surrounded by poorly connected peripheral species. Although drought caused the partial collapse of the food webs, the loss of the most extinction-prone peripheral species triggered a substantial rewiring of interactions within the networks’ cores. These shifts in species interactions in the core conserved the underlying core/periphery substructure and stability of the drought-impacted webs. When we subsequently perturbed the webs by simulating species loss in silico, the rewired drought webs were as robust as the larger, undisturbed webs. Our research unearths previously unknown compensatory dynamics arising from within the core that could underpin food web stability in the face of environmental perturbations.
机译:全球干旱正在加剧,对淡水生态系统具有潜在的破坏性影响。我们使用了新的网络科学方法来调查干旱对溪流食物网的影响,并探讨了网的坚固性对未来扰动的潜在影响。纤维网的下部结构的特征在于,核心是连接紧密的物种,周围是连接不良的外围物种。尽管干旱导致食物网部分崩溃,但最容易灭绝的外围物种的丧失引发了网络核心之间相互作用的重新布线。核心中物种相互作用的这些变化保留了潜在的核心/外围亚结构和受干旱影响的网的稳定性。随后,当我们通过模拟计算机上的物种损失来干扰网时,重新布线的干旱网与较大的未干扰网一样坚固。我们的研究发掘了以前未知的由核心内部产生的补偿动力,这些动力可能在面对环境扰动的情况下增强食物网的稳定性。

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