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将退化状态与生态系统对环境变化的脆弱性联系起来。

Linking degradation status with ecosystem vulnerability to environmental change.

作者信息

Angeler David G, Baho Didier L, Allen Craig R, Johnson Richard K

机构信息

Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, PO Box 7050, 750 07, Uppsala, Sweden,

出版信息

Oecologia. 2015 Jul;178(3):899-913. doi: 10.1007/s00442-015-3281-y. Epub 2015 Mar 10.

Abstract

Environmental change can cause regime shifts in ecosystems, potentially threatening ecosystem services. It is unclear if the degradation status of ecosystems correlates with their vulnerability to environmental change, and thus the risk of future regime shifts. We assessed resilience in acidified (degraded) and circumneutral (undegraded) lakes with long-term data (1988-2012), using time series modeling. We identified temporal frequencies in invertebrate assemblages, which identifies groups of species whose population dynamics vary at particular temporal scales. We also assessed species with stochastic dynamics, those whose population dynamics vary irregularly and unpredictably over time. We determined the distribution of functional feeding groups of invertebrates within and across the temporal scales identified, and in those species with stochastic dynamics, and assessed attributes hypothesized to contribute to resilience. Three patterns of temporal dynamics, consistent across study lakes, were identified in the invertebrates. The first pattern was one of monotonic change associated with changing abiotic lake conditions. The second and third patterns appeared unrelated to the environmental changes we monitored. Acidified and the circumneutral lakes shared similar levels and patterns of functional richness, evenness, diversity, and redundancy for species within and across the observed temporal scales and for stochastic species groups. These similar resilience characteristics suggest that both lake types did not differ in vulnerability to the environmental changes observed here. Although both lake types appeared equally vulnerable in this study, our approach demonstrates how assessing systemic vulnerability by quantifying ecological resilience can help address uncertainty in predicting ecosystem responses to environmental change across ecosystems.

摘要

环境变化会导致生态系统发生状态转变,可能威胁到生态系统服务。目前尚不清楚生态系统的退化状态是否与其对环境变化的脆弱性相关,进而与未来发生状态转变的风险相关。我们利用时间序列模型,通过长期数据(1988 - 2012年)评估了酸化(退化)湖泊和中性(未退化)湖泊的恢复力。我们确定了无脊椎动物群落中的时间频率,这能识别出其种群动态在特定时间尺度上发生变化的物种组。我们还评估了具有随机动态的物种,即那些种群动态随时间不规则且不可预测地变化的物种。我们确定了在所识别的时间尺度内和跨时间尺度上,以及在具有随机动态的物种中,无脊椎动物功能摄食组的分布,并评估了假设对恢复力有贡献的属性。在无脊椎动物中识别出了三种在各研究湖泊中一致的时间动态模式。第一种模式是与湖泊非生物条件变化相关的单调变化模式。第二种和第三种模式似乎与我们监测的环境变化无关。酸化湖泊和中性湖泊在所观察的时间尺度内和跨时间尺度上,以及对于随机物种组而言,在功能丰富度、均匀度、多样性和冗余度的水平和模式方面具有相似性。这些相似的恢复力特征表明,这两种湖泊类型在此处观察到的环境变化的脆弱性方面没有差异。尽管在本研究中这两种湖泊类型似乎同样脆弱,但我们的方法展示了通过量化生态恢复力来评估系统脆弱性如何有助于解决预测生态系统对跨生态系统环境变化的响应中的不确定性。

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