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Archaeal nitrification is a key driver of high nitrous oxide emissions from arctic peatlands

机译:archaeal硝化是来自北极泥炭块的高碳氧化物排放的关键驱动因素

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Bare peat surfaces created by frost action and wind erosion in permafrost peatlands have been shown to emit high amounts of nitrous oxide (N2O). With global warming, emissions of this highly potent greenhouse gas are expected to increase in Arctic permafrost peatlands. In natural unmanaged soils with low nitrogen deposition, such as Arctic soils, nitrification is the main source of nitrite and nitrate, and thus a key driver of N2O emissions. Here, we investigated nitrification, ammonia oxidizer populations and N2O production in vegetated and bare peat soils from four distant Arctic geographic locations. Through a combination of molecular analyses and group-specific inhibitor assays, we show that ammonia oxidation, the first step in nitrification, is mainly performed by ammonia-oxidizing archaea (AOA). All soils from different locations, including bare peat soils with high N2O emissions, harbored only two AOA phylotypes, including an organism closely related to Ca. Nitrosocosmicus spp. This indicates that high N2O emissions from these ecosystems are primarily fueled by nitrification mediated by very few archaeal species. To our knowledge, arctic peat soils in this study are the first natural environments where high N2O emissions have been linked to AOA. Any changes in archaeal nitrification induced by global warming will therefore impact on N2O emissions from the permafrost peatlands.
机译:通过霜冻动作和多年冻土泥炭地创造的裸泥坯表面已经显示出高量的氧化亚氮(N2O)。随着全球变暖,这种高效温室气体的排放预计将增加北极永久冻土泥炭块。在具有低氮沉积的天然非托管土壤中,如北极土壤,硝化是亚硝酸盐和硝酸盐的主要来源,因此是N2O排放的关键驱动器。在这里,我们研究了来自四个遥远的北极地理位置的植被和裸泥土中的硝化,氨氧化剂群和N2O生产。通过分子分析和群体特异性抑制剂测定的组合,我们表明氨氧化是硝化的第一步,主要由氨氧化archaea(AOA)进行。来自不同地点的所有土壤,包括具有高N2O排放的裸泥炭土,只有两个AOA文型,包括与CA密切相关的生物。硝基肌肌肉SPP。这表明来自这些生态系统的高N2O排放主要通过亚硝化颗粒状物种介导的硝化来燃料。为了我们的知识,本研究中的北极泥炭土壤是第一个高N2O排放与AOA相关的自然环境。因此,全球变暖引起的古硝化硝化的任何变化都会影响来自永久冻土泥炭泥的N2O排放。

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