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Drought and recovery effects on belowground respiration dynamics and the partitioning of recent carbon in managed and abandoned grassland

机译:对地下呼吸动力学的干旱和恢复效果以及近期碳的划分在管理和废弃的草原中的分区

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The supply of soil respiration with recent photoassimilates is an important and fast pathway for respiratory loss of carbon (C). To date it is unknown how drought and land-use change interactively influence the dynamics of recent C in soil-respired CO2. In an in situ common-garden experiment, we exposed soil-vegetation monoliths from a managed and a nearby abandoned mountain grassland to an experimental drought. Based on two (CO2)-C-13 pulse-labelling campaigns, we traced recently assimilated C in soil respiration during drought, rewetting and early recovery. Independent of grassland management, drought reduced the absolute allocation of recent C to soil respiration. Rewetting triggered a respiration pulse, which was strongly fuelled by C assimilated during drought. In comparison to the managed grassland, the abandoned grassland partitioned more recent C to belowground respiration than to root C storage under ample water supply. Interestingly, this pattern was reversed under drought. We suggest that these different response patterns reflect strategies of the managed and the abandoned grassland to enhance their respective resilience to drought, by fostering their resistance and recovery respectively. We conclude that while severe drought can override the effects of abandonment of grassland management on the respiratory dynamics of recent C, abandonment alters strategies of belowground assimilate investment, with consequences for soil-CO2 fluxes during drought and drought-recovery.
机译:利用最近的光化纤维素供应土壤呼吸是碳(C)呼吸丧失的重要且快速的途径。迄今为止,若干干旱和土地利用变化是如何相互作用地影响土壤呼吸二氧化碳中最近C的动态。在原位共同的园林实验中,我们从管理和附近的山地草地上暴露了土壤 - 植被整体,以实验干旱。基于两个(CO2)-C-13脉冲标签活动,我们在干旱,重新润湿和早期恢复期间追溯到土壤呼吸中的最近被同化的C.独立于草原管理,干旱将最近C的绝对分配降低到土壤呼吸。重新润湿引发了呼吸脉冲,在干旱期间C的C同化强烈燃料。与管理草原相比,废弃的草原将更新的C近来分区,而不是在充足的供水下储存而不是根C储存。有趣的是,这种模式在干旱下逆转。我们建议,这些不同的反应模式反映了管理和废弃的草原的策略,以通过分别培养其抵抗和复苏来增强各自的抗旱性。我们得出结论,虽然严重的干旱可以覆盖遗弃草地管理对近期呼吸动力的影响,放弃改变了地下同化投资的策略,对干旱和干旱恢复过程中的土壤二氧化碳助焊剂的后果。

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