Literature DB >> 22276783

Moving beyond the cambium necrosis hypothesis of post-fire tree mortality: cavitation and deformation of xylem in forest fires.

S T Michaletz1, E A Johnson1, M T Tyree2,3.   

Abstract

• It is widely assumed that post-fire tree mortality results from necrosis of phloem and vascular cambium in stems, despite strong evidence that reduced xylem conductivity also plays an important role. • In this study, experiments with Populus balsamifera were used to demonstrate two mechanisms by which heat reduces the hydraulic conductivity of xylem: air seed cavitation and conduit wall deformation. Heat effects on air seed cavitation were quantified using air injection experiments that isolate potential temperature-dependent changes in sap surface tension and pit membrane pore diameters. Heat effects on conduit wall structure were demonstrated using air conductivity measurements and light microscopy. • Heating increased vulnerability to cavitation because sap surface tension varies inversely with temperature. Heating did not affect cavitation via changes in pit membrane pore diameters, but did cause significant reductions in xylem air conductivity that were associated with deformation of conduit walls (probably resulting from thermal softening of viscoelastic cell wall polymers). • Additional work is required to understand the relative roles of cavitation and deformation in the reduction of xylem conductivity, and how reduced xylem conductivity in roots, stems, and branches correlates and interacts with foliage and root necroses to cause tree mortality. Future research should also examine how heat necrosis of ray parenchyma cells affects refilling of embolisms that occur during and after the fire event. © No claim to original US government works. New Phytologist
© 2012 New Phytologist Trust.

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Year:  2012        PMID: 22276783     DOI: 10.1111/j.1469-8137.2011.04021.x

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  5 in total

1.  Changes in tracheid and ray traits in fire scars of North American conifers and their ecophysiological implications.

Authors:  Estelle Arbellay; Markus Stoffel; Elaine K Sutherland; Kevin T Smith; Donald A Falk
Journal:  Ann Bot       Date:  2014-06-18       Impact factor: 4.357

2.  Experimental evidence for heat plume-induced cavitation and xylem deformation as a mechanism of rapid post-fire tree mortality.

Authors:  Adam G West; Jacques A Nel; William J Bond; Jeremy J Midgley
Journal:  New Phytol       Date:  2016-05-06       Impact factor: 10.151

3.  FireStem2D--a two-dimensional heat transfer model for simulating tree stem injury in fires.

Authors:  Efthalia K Chatziefstratiou; Gil Bohrer; Anthony S Bova; Ravishankar Subramanian; Renato P M Frasson; Amy Scherzer; Bret W Butler; Matthew B Dickinson
Journal:  PLoS One       Date:  2013-07-19       Impact factor: 3.240

4.  Nobody's perfect: can irregularities in pit structure influence vulnerability to cavitation?

Authors:  Lenka Plavcová; Steven Jansen; Matthias Klepsch; Uwe G Hacke
Journal:  Front Plant Sci       Date:  2013-11-12       Impact factor: 5.753

5.  Bark flammability as a fire-response trait for subalpine trees.

Authors:  Thibaut Frejaville; Thomas Curt; Christopher Carcaillet
Journal:  Front Plant Sci       Date:  2013-11-25       Impact factor: 5.753

  5 in total

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