首页> 外文期刊>Plant, Cell & Environment >Evaporative enrichment and time lags between delta18O of leaf water and organic pools in a pine stand
【24h】

Evaporative enrichment and time lags between delta18O of leaf water and organic pools in a pine stand

机译:松树林中叶片水的δ18O与有机池之间的蒸发富集和时滞

获取原文
获取原文并翻译 | 示例
           

摘要

Understanding ecosystem water fluxes has gained increasing attention, as climate scenarios predict a drier environment for many parts of the world. Evaporative enrichment of (18)O (Delta(18)O) of leaf water and subsequent enrichment of plant organic matter can be used to characterize environmental and physiological factors that control evaporation, based on a recently established mechanistic model. In a Pinus sylvestris forest, we measured the dynamics of oxygen isotopic composition (delta(18)O) every 6 h for 4 d in atmospheric water vapour, xylem sap, leaf water and water-soluble organic matter in current (N) and previous year (N-1) needles, phloem sap, together with leaf gas exchange for pooled N and N-1 needles, and relevant micrometeorological variables. Leaf water delta(18)O showed strong diel periodicity, while delta(18)O in atmospheric water vapour and in xylem sap showed little variation. The Delta(18)O was consistently lower for N than for N-1 needles, possibly related to phenological stage. Modelled leaf water Delta(18)O showed good agreement with measured values when applying a non-steady state evaporative enrichment model including a Peclet effect. We determined the time lags between delta(18)O signals from leaf water to water-soluble foliar organic matter and to phloem sap at different locations down the trunk, which clearly demonstrated the relevance of considering these time-lag effects for carbon transport, source-sink and carbon flux partitioning studies.
机译:随着气候情景预测世界许多地方的干旱环境,对生态系统水通量的了解越来越受到关注。基于最近建立的机械模型,叶水的(18)O(Delta(18)O)蒸发富集和随后的植物有机质富集可用于表征控制蒸发的环境和生理因素。在樟子松森林中,我们测量了大气中水蒸气,木质部汁液,叶水和水溶性有机物中每6 h氧同位素组成(delta(18)O)每6 h的动态变化,当前和以前年(N-1)针,韧皮部汁液,以及合并的N和N-1针的叶片气体交换,以及相关的微气象变量。叶片水的delta(18)O表现出很强的diel周期性,而大气水蒸气和木质部汁液中的delta(18)O几乎没有变化。 N的Delta(18)O始终低于N-1针,这可能与物候阶段有关。当应用包括Peclet效应的非稳态蒸发富集模型时,模型叶水Delta(18)O与测量值显示出良好的一致性。我们确定了从叶水到水溶性叶面有机质以及韧皮部汁液在树干下方不同位置之间的delta(18)O信号之间的时滞,这清楚地证明了考虑这些时滞效应对于碳转运,来源的相关性。汇和碳通量分配研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号