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Permafrost degradation stimulates carbon loss from experimentally warmed tundra

机译:多年冻土退化会刺激实验性冻土的碳损失

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A large pool of organic carbon (C) has been accumulating in the Arctic for thousands of years because cold and waterlogged conditions have protected soil organic material from microbial decomposition. As the climate warms this vast and frozen C pool is at risk of being thawed, decomposed, and released to the atmosphere as greenhouse gasses. At the same time, some C losses may be offset by warming-mediated increases in plant productivity. Plant and microbial responses to warming ultimately determine net C exchange from ecosystems, but the timing and magnitude of these responses remain uncertain. Here we show that experimental warming and permafrost (ground that remains below 08C for two or more consecutive years) degradation led to a two-fold increase in net ecosystem C uptake during the growing season. However, warming also enhanced winter respiration, which entirely offset growing-season C gains. Winter C losses may be even higher in response to actual climate warming than to our experimental manipulations, and, in that scenario, could be expected to more than double overall net C losses from tundra to the atmosphere. Our results highlight the importance of winter processes in determining whether tundra acts as a C source or sink, and demonstrate the potential magnitude of C release from the permafrost zone that might be expected in a warmer climate.
机译:北极已经积聚了数千年的大量有机碳(C),这是因为寒冷和涝灾条件已使土壤有机物质免受微生物分解。随着气候变暖,这个庞大而结冰的碳库有被融化,分解并以温室气体的形式释放到大气中的风险。同时,一些碳的损失可能被变暖介导的植物生产力的提高所抵消。植物和微生物对变暖的反应最终决定了来自生态系统的净碳交换,但是这些反应的时间和强度仍然不确定。在这里,我们显示出实验性的变暖和多年冻土(连续两年或更长时间保持在08C以下的地面)退化导致生长季节净生态系统C吸收量增加了两倍。但是,变暖也增强了冬季呼吸,这完全抵消了生长季节C的增加。响应实际气候变暖,冬季C损失甚至可能比我们的实验操作还要高,并且在这种情况下,预计从苔原到大气的总C净损失将增加一倍以上。我们的结果突显了冬季过程在确定冻原是作为碳源还是碳汇的过程中的重要性,并证明了在温暖气候下可能从多年冻土带释放碳的潜在幅度。

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