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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Acclimation of Biogenic Volatile Organic Compound Emission From Subarctic Heath Under Long-Term Moderate Warming
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Acclimation of Biogenic Volatile Organic Compound Emission From Subarctic Heath Under Long-Term Moderate Warming

机译:长期中等变暖下蛛网膜光学生物挥发性有机化合物发射的驯化生物挥发性有机化合物

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摘要

Biogenic volatile organic compound (BVOC) emissions from subarctic ecosystems have shown to increase drastically in response to a long-term temperature increase of only 2°C. We assessed whether this increase takes place already after 3 years of warming and how the increase changes over time. To test this, we measured BVOC emissions and CO_2 fluxes in a field experiment on a subarctic wet heath, where ecosystem plots were subjected to passive warming by open top chambers for 3 (OTC3) or 13 years (OTC13) or were kept as unmanipulated controls. Already after 3 years of moderate temperature increase of 1-2°C, warming increased the emissions of isoprene (five-to sixfold) and monoterpenes (three-to fourfold) from the subarctic heath. The several-fold higher BVOC emissions in the warmed plots are likely a result of increased vegetation biomass and altered vegetation composition as a shift in the species coverage was observed already after 3 years of warming. Warming also increased gross ecosystem production and ecosystem respiration, but the increases were much lower than those for BVOCs. Our results demonstrate that the strong BVOC responses to warming already appeared after 3 years, and the BVOC and CO_2 fluxes had acclimated to this warming after 3 years, showing no differences with another 10 years of warming. This finding has important implications for predicting CO_2 and BVOC fluxes in subarctic ecosystems.
机译:来自亚治愈生态系统的生物挥发性有机化合物(BVOC)排放表明,响应于仅2°C的长期温度升高而急剧增加。我们评估了这一增加是否在3年的变暖后发生,以及随着时间的推移如何变化。为了测试这一点,我们测量了BVOC排放和CO_2助熔剂在亚阵亡湿雾周上的场实验中,其中通过开口顶部室(OTC3)或13岁(OTC13)进行了生态系统图的被动变暖,或者被视为非法对照。经过3年的中度温度升高1-2°C,升温增加了异戊二烯(五到六倍)和从亚曲率雾的单口(三到四倍)的排放。温热的图中的几倍高的BVOC排放可能是植被生物量增加和改变的植被组合物,因为已经在3年的变暖后观察到物种覆盖的转变。变暖也增加了生态系统生产和生态系统呼吸,但增加的比较低于BVOC的产量。我们的结果表明,在3年后已经出现了对变暖的强烈BVOC反应,并且BVOC和CO_2助势在3年后依赖于这种变暖,表现出与另外10年的变暖没有差异。这一发现对预测亚地区生态系统中的CO_2和BVOC通量具有重要意义。

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