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Plant-derived compounds stimulate the decomposition of organic matter in arctic permafrost soils

机译:植物来源的化合物刺激北极多年冻土中有机物的分解

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摘要

Arctic ecosystems are warming rapidly, which is expected to promote soil organic matter (SOM) decomposition. In addition to the direct warming effect, decomposition can also be indirectly stimulated via increased plant productivity and plant-soil C allocation, and this so called "priming effect" might significantly alter the ecosystem C balance. In this study, we provide first mechanistic insights into the susceptibility of SOM decomposition in arctic permafrost soils to priming. By comparing 119 soils from four locations across the Siberian Arctic that cover all horizons of active layer and upper permafrost, we found that an increased availability of plant-derived organic C particularly stimulated decomposition in subsoil horizons where most of the arctic soil carbon is located. Considering the 1,035 Pg of arctic soil carbon, such an additional stimulation of decomposition beyond the direct temperature effect can accelerate net ecosystem C losses, and amplify the positive feedback to global warming.
机译:北极生态系统正在迅速变暖,这有望促进土壤有机物(SOM)的分解。除直接变暖作用外,还可通过提高植物生产力和植物土壤碳的分配来间接刺激分解,这种所谓的“引发效应”可能会大大改变生态系统的碳平衡。在这项研究中,我们提供了有关北极多年冻土中SOM分解易引发性的初步力学见解。通过比较西伯利亚北极地区四个覆盖活动层和上多年冻土层的所有地区的119种土壤,我们发现,植物来源的有机碳的利用率增加,尤其刺激了大部分北极土壤碳所处的次土壤层级的分解。考虑到1,035 Pg的北极土壤碳,除了直接的温度效应外,这种额外的分解刺激还可以加速生态系统净碳损失,并扩大对全球变暖的积极反馈。

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