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Sixty years of environmental change in the worlds largest freshwater lake – Lake Baikal Siberia

机译:世界上最大的淡水湖–西伯利亚贝加尔湖六十年的环境变化

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摘要

High-resolution data collected over the past 60 years by a single family of Siberian scientists on Lake Baikal reveal significant warming of surface waters and long-term changes in the basal food web of the world's largest, most ancient lake. Attaining depths over 1.6 km, Lake Baikal is the deepest and most voluminous of the world's great lakes. Increases in average water temperature (1.21 °C since 1946), chlorophyll a (300% since 1979), and an influential group of zooplankton grazers (335% increase in cladocerans since 1946) may have important implications for nutrient cycling and food web dynamics. Results from multivariate autoregressive (MAR) modeling suggest that cladocerans increased strongly in response to temperature but not to algal biomass, and cladocerans depressed some algal resources without observable fertilization effects. Changes in Lake Baikal are particularly significant as an integrated signal of long-term regional warming, because this lake is expected to be among those most resistant to climate change due to its tremendous volume. These findings highlight the importance of accessible, long-term monitoring data for understanding ecosystem response to large-scale stressors such as climate change.
机译:在过去60年中,一个西伯利亚科学家家族​​在贝加尔湖上收集的高分辨率数据显示,地表水显着升温,并且是世界上最大,最古老的湖泊基础食物网的长期变化。贝加尔湖的水深超过1.6公里,是世界上最深,最大的湖泊。平均水温的升高(自1946年以来为1.21°C),叶绿素a(自1979年以来为300%)以及一群有影响力的浮游动物放牧者(自1946年以来锁骨鱼类增加了335%)可能对养分循环和食物网动态产生重要影响。多元自回归(MAR)建模的结果表明,枝角类对温度的响应强烈增强,但对藻类生物量没有响应,而枝形角类对某些藻类资源的抑制作用却没有明显的受精作用。贝加尔湖的变化作为长期区域变暖的综合信号特别重要,因为由于其巨大的水量,预计该湖将是最耐气候变化的湖之一。这些发现强调了可访问的长期监测数据对于理解生态系统对诸如气候变化等大规模压力源的反应的重要性。

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