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      Uptake of water via branches helps timberline conifers refill embolized xylem in late winter.

      Plant physiology
      Biological Transport, Picea, cytology, physiology, Plant Shoots, Plant Stems, Seasons, Water, metabolism, Xylem
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          Abstract

          Xylem embolism is a limiting factor for woody species worldwide. Conifers at the alpine timberline are exposed to drought and freeze-thaw stress during winter, which induce potentially lethal embolism. Previous studies indicated that timberline trees survive by xylem refilling. In this study on Picea abies, refilling was monitored during winter and spring seasons and analyzed in the laboratory and in situ experiments, based on hydraulic, anatomical, and histochemical methods. Refilling started in late winter, when the soil was frozen and soil water not available for the trees. Xylem embolism caused up to 86.2% ± 3.1% loss of conductivity and was correlated with the ratio of closed pits. Refilling of xylem as well as recovery in shoot conductance started in February and corresponded with starch accumulation in secondary phloem and in the mesophyll of needles, where we also observed increasing aquaporin densities in the phloem and endodermis. This indicates that active, cellular processes play a role for refilling even under winter conditions. As demonstrated by our experiments, water for refilling was thereby taken up via the branches, likely by foliar water uptake. Our results suggest that refilling is based on water shifts to embolized tracheids via intact xylem, phloem, and parenchyma, whereby aquaporins reduce resistances along the symplastic pathway and aspirated pits facilitate isolation of refilling tracheids. Refilling must be taken into account as a key process in plant hydraulics and in estimating future effects of climate change on forests and alpine tree ecosystems.

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          Author and article information

          Journal
          24521876
          3982737
          10.1104/pp.114.236646

          Chemistry
          Biological Transport,Picea,cytology,physiology,Plant Shoots,Plant Stems,Seasons,Water,metabolism,Xylem
          Chemistry
          Biological Transport, Picea, cytology, physiology, Plant Shoots, Plant Stems, Seasons, Water, metabolism, Xylem

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