北半球湖泊中关键食草动物物候的一致温度依赖性。

Uniform temperature dependency in the phenology of a keystone herbivore in lakes of the Northern Hemisphere.

机构信息

Limnological Institute, University of Konstanz, Konstanz, Germany.

出版信息

PLoS One. 2012;7(10):e45497. doi: 10.1371/journal.pone.0045497. Epub 2012 Oct 5.

Abstract

Spring phenologies are advancing in many ecosystems associated with climate warming causing unpredictable changes in ecosystem functioning. Here we establish a phenological model for Daphnia, an aquatic keystone herbivore based on decadal data on water temperatures and the timing of Daphnia population maxima from Lake Constance, a large European lake. We tested this model with long-term time-series data from two lakes (Müggelsee, Germany; Lake Washington, USA), and with observations from a diverse set of 49 lakes/sites distributed widely across the Northern Hemisphere (NH). The model successfully captured the observed temporal variation of Daphnia phenology in the two case study sites (r(2) = 0.25 and 0.39 for Müggelsee and Lake Washington, respectively) and large-scale spatial variation in the NH (R(2) = 0.57). These results suggest that Daphnia phenology follows a uniform temperature dependency in NH lakes. Our approach--based on temperature phenologies--has large potential to study and predict phenologies of animal and plant populations across large latitudinal gradients in other ecosystems.

摘要

春季物候在许多与气候变暖相关的生态系统中正在提前出现,导致生态系统功能发生不可预测的变化。在这里,我们根据来自康斯坦茨湖(一个大型欧洲湖泊)的数十年水温数据和 Daphnia 种群数量最大值的时间,为一种水生关键草食动物 Daphnia 建立了一个物候模型。我们使用来自两个湖泊(德国的 Müggelsee 和美国的华盛顿湖)的长期时间序列数据以及来自分布在北半球广泛地区的 49 个湖泊/地点的多样观测数据来测试这个模型。该模型成功地捕捉到了两个案例研究地点 Daphnia 物候的观测时间变化(Müggelsee 和华盛顿湖的 r(2)分别为 0.25 和 0.39)以及北半球的大尺度空间变化(R(2)为 0.57)。这些结果表明,Daphnia 的物候遵循 NH 湖泊中统一的温度依赖性。我们的方法——基于温度物候——具有很大的潜力来研究和预测其他生态系统中跨大纬度梯度的动物和植物种群的物候。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ff5/3465311/2799bac6619c/pone.0045497.g001.jpg

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