Soil and ecosystem respiration responses to grazing, watering and experimental warming chamber treatments across topographical gradients in northern Mongolia

环境科学 土壤呼吸 生态系统 生态系统呼吸 放牧 草原 气候变化 土壤碳 干旱 呼吸 放牧压力 大气科学 生长季节 农学 生态学 土壤水分 土壤科学 初级生产 生物 植物 地质学
作者
Anarmaa Sharkhuu,Alain F. Plante,Orsoo Enkhmandal,Cédric Gonneau,Brenda B. Casper,Bazartseren Boldgiv,Peter S. Petraitis
出处
期刊:Geoderma [Elsevier]
卷期号:269: 91-98 被引量:58
标识
DOI:10.1016/j.geoderma.2016.01.041
摘要

Globally, soil respiration is one of the largest fluxes of carbon to the atmosphere and is known to be sensitive to climate change, representing a potential positive feedback. We conducted a number of field experiments to study independent and combined impacts of topography, watering, grazing and climate manipulations on bare soil and vegetated soil (i.e., ecosystem) respiration in northern Mongolia, an area known to be highly vulnerable to climate change and overgrazing. Our results indicated that soil moisture is the most important driving factor for carbon fluxes in this semi-arid ecosystem, based on smaller carbon fluxes under drier conditions. Warmer conditions did not result in increased respiration. Although the system has local topographical gradients in terms of nutrient, moisture availability and plant species, soil respiration responses to OTC treatments were similar on the upper and lower slopes, implying that local heterogeneity may not be important for scaling up the results. In contrast, ecosystem respiration responses to OTCs differed between the upper and the lower slopes, implying that the response of vegetation to climate change may override microbial responses. Our results also showed that light grazing may actually enhance soil respiration while decreasing ecosystem respiration, and grazing impact may not depend on climate change. Overall, our results indicate that soil and ecosystem respiration in this semi-arid steppe are more sensitive to precipitation fluctuation and grazing pressure than to temperature change.
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