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Hydraulic redistribution of soil water by roots affects whole-stand evapotranspiration and net ecosystem carbon exchange

机译:根系水分对土壤水分的水力再分配会影响整个林木蒸散量和生态系统净碳交换

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摘要

Summary times Hydraulic redistribution (HR) of water via roots from moist to drier portions of the soil occurs in many ecosystems, potentially influencing both water use and carbon assimilation. times By measuring soil water content, sap flow and eddy covariance, we investigated the temporal variability of HR in a loblolly pine (Pinus taeda) plantation during months of normal and below-normal precipitation, and examined its effects on tree transpiration, ecosystem water use and carbon exchange. times The occurrence of HR was explained by courses of reverse flow through roots. As the drought progressed, HR maintained soil moisture above 0.15 cm3 cm-3 and increased transpiration by 30-50%. HR accounted for 15-25% of measured total site water depletion seasonally, peaking at 1.05 mm d-1. The understory species depended on water redistributed by the deep-rooted overstory pine trees for their early summer water supply. Modeling carbon flux showed that in the absence of HR, gross ecosystem productivity and net ecosystem exchange could be reduced by 750 and 400 g C m-2 yr-1, respectively. times Hydraulic redistribution mitigated the effects of soil drying on understory and stand evapotranspiration and had important implications for net primary productivity by maintaining this whole ecosystem as a carbon sink.
机译:摘要时间在许多生态系统中,水通过根部从水分的潮湿部分到干燥的部分进行水力再分配(HR),可能会影响用水和碳同化。通过测量土壤含水量,汁液流量和涡动协方差,我们研究了正常和低于正常降雨量的几个月中火炬松(Pinus taeda)人工林的HR时空变化,并研究了其对树木蒸腾,生态系统用水的影响和碳交换。 HR的发生可以通过根部逆向流动的过程来解释。随着干旱的进行,HR将土壤湿度保持在0.15 cm3 cm-3以上,并使蒸腾作用增加了30-50%。 HR占季节性测量的总场地耗水量的15-25%,峰值为1.05 mm d-1。下层树种依靠深层的上层松树重新分配的水来供应夏季初的水。模拟碳通量表明,在没有HR的情况下,生态系统总生产力和净生态系统交换可能分别减少750和400 g C m-2 yr-1。次水力再分配减轻了土壤干燥对林下蒸腾和林分蒸散的影响,并通过维持整个生态系统作为碳汇而对净初级生产力产生重要影响。

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