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Isotopic evidence for the provenance and turnover of organic carbon by soil microorganisms in the Antarctic dry valleys

机译:南极干旱河谷土壤微生物的有机碳来源和转换的同位素证据

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The extremely cold and arid Antarctic dry valleys are one of the most environmentally harsh terrestrial ecosystems supporting organisms in which the biogeochemical transformations of carbon are exclusively driven by microorganisms. The natural abundance of ~(13)C and ~(15)N in source organic materials and soils have been examined to obtain evidence for the provenance of the soil organic matter and the C loss as CO_2 during extended incubation (approximately 1200 days at 10°C under moist conditions) has been used to determine the potential decay of soil organic C. The organic matter in soils remote from sources of liquid water or where lacustrine productivity was low had isotope signatures characteristic of endolithic (lichen) sources, whereas at more sheltered and productive sites, the organic matter in the soils that was a mixture mainly lacustrine detritus and moss-derived organic matter. Soil organic C declined by up to 42% during extended incubation under laboratory conditions (equivalent to 50-73 years in the field on a thermal time basis), indicating relatively fast turnover, consistent with previous studies indicating mean residence times for soil organic C in dry valley soils in the range 52-123 years and also with recent inputs of relatively labile source materials.
机译:极冷和干旱的南极干旱谷是对环境最不利的陆地生态系统之一,支持生物,其中碳的生物地球化学转化完全由微生物驱动。已对源有机物质和土壤中〜(13)C和〜(15)N的自然丰度进行了研究,以获取证据证明土壤中有机物的来源和长期培养过程中(作为CO_2的碳损失,CO_2在10时约1200天)潮湿条件下的°C)已用于确定土壤有机碳的潜在衰减。远离液态水源或湖水生产率低的土壤中的有机物具有内生岩(地衣)源的同位素特征,而庇护和生产场所,土壤中的有机物主要是湖相碎屑和苔藓类有机物的混合物。在实验室条件下(在热时间基础上相当于田间50-73年)的长时间孵育过程中,土壤有机碳最多下降了42%,这表明更新速度相对较快,这与之前的研究表明土壤有机碳在土壤中的平均停留时间一致。干旱谷地的土壤介于52-123年之间,并且最近投入了相对不稳定的原料。

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