Adrian Rita, O'Reilly Catherine M, Zagarese Horacio, Baines Stephen B, Hessen Dag O, Keller Wendel, Livingstone David M, Sommaruga Ruben, Straile Dietmar, Van Donk Ellen, Weyhenmeyer Gesa A, Winder Monika
Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Berlin, Germany.
Limnol Oceanogr. 2009 Nov;54(6):2283-2297. doi: 10.4319/lo.2009.54.6_part_2.2283.
While there is a general sense that lakes can act as sentinels of climate change, their efficacy has not been thoroughly analyzed. We identified the key response variables within a lake that act as indicators of the effects of climate change on both the lake and the catchment. These variables reflect a wide range of physical, chemical, and biological responses to climate. However, the efficacy of the different indicators is affected by regional response to climate change, characteristics of the catchment, and lake mixing regimes. Thus, particular indicators or combinations of indicators are more effective for different lake types and geographic regions. The extraction of climate signals can be further complicated by the influence of other environmental changes, such as eutrophication or acidification, and the equivalent reverse phenomena, in addition to other land-use influences. In many cases, however, confounding factors can be addressed through analytical tools such as detrending or filtering. Lakes are effective sentinels for climate change because they are sensitive to climate, respond rapidly to change, and integrate information about changes in the catchment.
虽然人们普遍认为湖泊可以作为气候变化的哨兵,但其有效性尚未得到充分分析。我们确定了湖泊中的关键响应变量,这些变量可作为气候变化对湖泊及其集水区影响的指标。这些变量反映了对气候的广泛物理、化学和生物响应。然而,不同指标的有效性受到区域气候变化响应、集水区特征和湖泊混合机制的影响。因此,特定的指标或指标组合对不同的湖泊类型和地理区域更为有效。除其他土地利用影响外,富营养化或酸化等其他环境变化以及等效的反向现象的影响会使气候信号的提取更加复杂。然而,在许多情况下,可以通过去趋势或滤波等分析工具来解决混杂因素。湖泊是气候变化的有效哨兵,因为它们对气候敏感,对变化反应迅速,并整合了有关集水区变化的信息。