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How do trees die? A test of the hydraulic failure and carbon starvation hypotheses

Plant Cell & Environment · 2013 · Vol. 37(1) · pp. 153–161
Sanna SevantoNate G. McDowellL. Turin DickmanRobert E. PangleWilliam T. Pockman

Abstract

Despite decades of research on plant drought tolerance, the physiological mechanisms by which trees succumb to drought are still under debate. We report results from an experiment designed to separate and test the current leading hypotheses of tree mortality. We show that piñon pine (Pinus edulis) trees can die of both hydraulic failure and carbon starvation, and that during drought, the loss of conductivity and carbohydrate reserves can also co-occur. Hydraulic constraints on plant carbohydrate use determined survival time: turgor loss in the phloem limited access to carbohydrate reserves, but hydraulic control of respiration prolonged survival. Our data also demonstrate that hydraulic failure may be associated with loss of adequate tissue carbohydrate content required for osmoregulation, which then promotes failure to maintain hydraulic integrity.

Plant Water Relations and Carbon DynamicsTree-ring climate responsesPlant responses to water stressTurgor pressurePhloemBiologyCarbohydrateRespirationEnvironmental scienceBotanyEcologyBiochemistry

MeSH terms

CarbohydratesCarbonOsmosisPhotosynthesisTime FactorsTreesWaterPlant TranspirationCell RespirationPinusXylemPhloemDroughts

Funding

  • U.S. Department of Energy
  • Office of Science
  • Laboratory Directed Research and Development
  • Los Alamos National Laboratory
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