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Patterns and controls of temperature sensitivity of soil respiration in a meadow steppe of the Songnen Plain, Northeast China

机译:松嫩平原草甸草原土壤呼吸温度敏感性的模式与控制

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摘要

Quantifying the temporal and spatial patterns of temperature sensitivity (Q10) of soil respiration (Rs) as well as its controlling factors is critical to reveal the response the soil ecological processes to global warming and improve carbon budget estimations at a regional scale. The seasonal and annual variations in the temperature response of Rs were assessed during the two growing seasons in 2011 and 2012 in four different vegetation sites in a meadow steppe of the Songnen Plain, China. The Q10 values across all sites exhibited significant seasonal variations with a minimum value (1.81–2.34) occurring during summer and a peak value (3.82–4.54) occurring in either spring or autumn. The mean seasonal Q10 values showed no significant differences among the four different vegetation types. On the annual scale, however, the Chloris virgata site had significantly higher annual Q10 values (3.67–4.22) than the other three community sites in 2011 and 2012 and over the two years (2.01–3.67), indicating that the response of the Rs to climate warming may vary with vegetation type. The soil temperature and moisture had interactive effects on the variations of Q10 values. Soil temperature was the dominant factor influencing Q10 values, while soil moisture was an additional contributor to the variations of Q10. Due to the significant temporal and spatial variations in soil respiration response to temperature, acclimation of Rs to temperature variation should be taken into account in forecasting future terrestrial carbon cycle and its feedback to global warming.
机译:量化土壤呼吸(Rs)的温度敏感性(Q10)及其控制因素的时空格局对于揭示土壤生态过程对全球变暖的响应以及改善区域规模的碳预算估算至关重要。在中国松嫩平原草甸草原的四个不同植被场所,分别于2011年和2012年的两个生长季节评估了Rs的温度响应的季节和年度变化。所有站点的Q10值均表现出明显的季节性变化,夏季出现最小值(1.81-2.34),春季或秋季出现峰值(3.82-4.54)。四种不同植被类型之间的平均季节Q10值显示无显着差异。然而,就年度规模而言,Chloris virgata站点在2011年和2012年以及两年(2.01–3.67)中具有比其他三个社区站点更高的年度Q10值(3.67–4.22),这表明Rs的响应气候变暖可能因植被类型而异。土壤温度和湿度对Q10值的变化具有交互作用。土壤温度是影响Q10值的主要因素,而土壤水分是影响Q10变化的另一个因素。由于土壤呼吸对温度的响应存在明显的时空变化,因此在预测未来的陆地碳循环及其对全球变暖的反馈时,应考虑Rs对温度变化的适应性。

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