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超高分辨率质谱推断的格陵兰冰原夏季持续输出富氮有机物。

Continuous summer export of nitrogen-rich organic matter from the Greenland Ice Sheet inferred by ultrahigh resolution mass spectrometry.

机构信息

Bristol Glaciology Centre, School of Geographical Sciences, University of Bristol , University Road, Bristol BS8 1SS, United Kingdom.

出版信息

Environ Sci Technol. 2014 Dec 16;48(24):14248-57. doi: 10.1021/es501732h. Epub 2014 Nov 21.

Abstract

Runoff from glaciers and ice sheets has been acknowledged as a potential source of bioavailable dissolved organic matter (DOM) to downstream ecosystems. This source may become increasingly significant as glacial melt rates increase in response to future climate change. Recent work has identified significant concentrations of bioavailable carbon and iron in Greenland Ice Sheet (GrIS) runoff. The flux characteristics and export of N-rich DOM are poorly understood. Here, we employed electrospray ionization (ESI) coupled to Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) to determine the elemental compositions of DOM molecules in supraglacial water and subglacial runoff from a large GrIS outlet glacier. We provide the first detailed temporal analysis of the molecular composition of DOM exported over a full melt season. We find that DOM pools in supraglacial and subglacial runoff are compositionally diverse and that N-rich material is continuously exported throughout the melt season, as the snowline retreats further inland. Identification of protein-like compounds and a high proportion of N-rich DOM, accounting for 27-41% of the DOM molecules identified by ESI FT-ICR MS, may suggest a microbial provenance and high bioavailability of glacially exported DOM to downstream microbial communities.

摘要

冰川和冰原的径流已被认为是下游生态系统中生物可利用溶解有机物质 (DOM) 的潜在来源。随着未来气候变化导致冰川融化速度的增加,这一来源可能变得越来越重要。最近的研究已经确定了格陵兰冰原 (GrIS) 径流中生物可利用碳和铁的显著浓度。富含氮的 DOM 的通量特征和输出仍知之甚少。在这里,我们采用电喷雾电离 (ESI) 与傅里叶变换离子回旋共振质谱 (FT-ICR MS) 相结合,来确定来自大型 GrIS 出流冰川的冰上水中和冰下径流中 DOM 分子的元素组成。我们提供了 DOM 在整个融雪季节输出的分子组成的首次详细时间分析。我们发现,冰上和冰下径流中的 DOM 池在组成上是多种多样的,并且富含氮的物质在整个融雪季节都在不断输出,随着雪线向内陆进一步退缩。鉴定出类蛋白质化合物和富含氮的 DOM 的高比例,占 ESI FT-ICR MS 鉴定的 DOM 分子的 27-41%,这可能表明微生物来源和冰川输出 DOM 对下游微生物群落具有高生物利用度。

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