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Seasonal and diurnal patterns of soil respiration in an evergreen coniferous forest: Evidence from six years of observation with automatic chambers

机译:常绿针叶林土壤呼吸的季节性和昼夜模式:来自使用自动室进行六年观测的证据

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摘要

Soil respiration (Rs) plays a key role in the carbon balance of forest ecosystems. There is growing evidence that Rs is strongly correlated with canopy photosynthesis; however, how Rs is linked to aboveground attributes at various phenological stages, on the seasonal and diurnal scale, remains unclear. Using an automated closed dynamic chamber system, we assessed the seasonal and diurnal patterns of Rs in a temperate evergreen coniferous forest from 2005 to 2010. High-frequency Rs rates followed seasonal soil temperature patterns but the relationship showed strong hysteresis. Predictions of Rs based on a temperature-response model underestimated the observed values from June to July and overestimated those from August to September and from January to April. The observed Rs was higher in early summer than in late summer and autumn despite similar soil temperatures. At a diurnal scale, the Rs pattern showed a hysteresis loop with the soil temperature trend during the seasons of high biological activity (June to October). In July and August, Rs declined after the morning peak from 0800 to 1400 h, although soil temperatures continued to increase. During that period, figure-eight-shaped diurnal Rs patterns were observed, suggesting that a midday decline in root physiological activity may have occurred in early summer. In September and October, Rs was higher in the morning than in the night despite consistently high soil temperatures. We have characterised the magnitude and pattern of seasonal and diurnal Rs in an evergreen forest. We conclude that the temporal variability of Rs at high resolution is more related to seasons across the temperature dependence.
机译:土壤呼吸(Rs)在森林生态系统的碳平衡中起关键作用。越来越多的证据表明,Rs与冠层的光合作用密切相关。然而,在季节和昼夜尺度上,在各个物候阶段,Rs如何与地上属性联系起来仍不清楚。我们使用自动封闭动态室系统评估了2005年至2010年温带常绿针叶林中Rs的季节和昼夜模式。高频Rs率遵循季节性土壤温度模式,但关系显示出很强的滞后性。基于温度响应模型的Rs预测低估了6月至7月的观测值,而高估了8月至9月以及1月至4月的观测值。尽管土壤温度相似,初夏的Rs仍高于夏末和秋季。在昼夜尺度上,在高生物活性季节(6月至10月),Rs模式显示出土壤温度趋势的滞后回线。尽管土壤温度持续升高,但在7月和8月的Rs在早晨高峰后从0800下降到1400 h。在此期间,观察到了八字形的昼夜Rs模式,这表明初夏可能发生了根部生理活动的午后下降。尽管土壤温度持续较高,但在9月和10月,早晨的Rs高于夜间的Rs。我们已经描述了常绿森林中季节性和昼夜Rs的大小和模式。我们得出结论,高分辨率下Rs的时间变异性与整个温度依赖性的季节有关。

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