首页> 外文期刊>The New Phytologist >Environmental controls and the influence of vegetation type, fine roots and rhizomorphs on diel and seasonal variation in soil respiration
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Environmental controls and the influence of vegetation type, fine roots and rhizomorphs on diel and seasonal variation in soil respiration

机译:环境控制及植被类型,细根和根状对土壤呼吸中diel和季节变化的影响

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Characterization of spatial and temporal variation of soil respiration coupled with fine root and rhizomorph dynamics is necessary to understand the mechanisms that regulate soil respiration. A dense wireless network array of soil CO sensors in combination with minirhizotron tubes was used to continuously measure soil respiration over 1 yr in a mixed conifer forest in California, USA, in two adjacent areas with different vegetation types: an area with woody vegetation (Wv) and an area with scattered herbaceous vegetation (Hv). Annual soil respiration rates and the lengths of fine roots and rhizomorphs were greater at Wv than at Hv. Soil respiration was positively correlated with fine roots and rhizomorphs at Wv but only with fine roots at Hv. Diel and seasonal soil respiration patterns were decoupled with soil temperature at Wv but not at Hv. When decoupled, higher soil respiration rates were observed at increasing temperatures, demonstrating a hysteresis effect. The diel hysteresis at Wv was explained by including the temperature-dependent component of soil respiration and the variation dependent on photosynthetically active radiation. The results show that vegetation type and fine root and rhizomorph dynamics influence soil respiration in addition to changes in light, temperature and moisture.
机译:表征土壤呼吸的时空变化以及精细的根系和根茎动力学特性是了解调节土壤呼吸的机制所必需的。在美国加利福尼亚州的一个混合针叶林中,在两个植被类型不同的相邻区域中,将密集的无线网络阵列的土壤CO传感器与微型根管一起用于连续测量1年以上的土壤呼吸。 )和散布草本植物(Hv)的区域。 Wv的年土壤呼吸速率以及细根和根状茎的长度大于Hv。土壤呼吸与Wv的细根和根茎呈正相关,而与Hv的细根仅正相关。 Diel和季节性土壤呼吸模式与Wv处的土壤温度不相关,而与Hv处的土壤温度无关。当解耦时,在升高的温度下观察到更高的土壤呼吸速率,表明有滞后效应。通过包括土壤呼吸的温度相关成分和依赖光合有效辐射的变化来解释Wv的diel滞后现象。结果表明,除了光照,温度和湿度的变化外,植被类型,细根和根茎的动态还影响土壤呼吸。

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