Xylem embolism and bubble formation during freezing suggest complex dynamics of pressure in Betula pendula stems

Katline Charra-Vaskou, Anna Lintunen, Thierry Améglio, Eric Badel, Hervé Cochard, Stefan Mayr, Yann Salmon, Heikki Suhonen, Mahaut Van Rooij, Guillaume Charrier

Research output: Contribution to journalArticleScientificpeer-review

Abstract

Freeze-thaw-induced embolism, a key limiting factor for perennial plants results from the formation of gas bubbles during freezing and their expansion during thawing. However, the ice volumetric increase generates local pressures, which can affect the formation of bubbles. To characterize local dynamics of pressure tension and the physical state of the sap during freeze-thaw cycles, we simultaneously used ultrasonic acoustic emission analysis and synchrotron-based high-resolution computed tomography on the diffuse-porous species Betula pendula. Visualization of individual air-filled vessels and the distribution of gas bubbles in frozen xylem were performed.. Ultrasonic emissions occurred after ice formation, together with bubble formation, whereas the development of embolism took place after thawing. The pictures of frozen tissues indicated that the positive pressure induced by the volumetric increase of ice can provoke inward flow from the cell wall toward the lumen of the vessels. We found no evidence that wider vessels within a tissue were more prone to embolism, although the occurrence of gas bubbles in larger conduits would make them prone to earlier embolism. These results highlight the need to monitor local pressure as well as ice and air distribution during xylem freezing to understand the mechanism leading to frost-induced embolism.

Original languageEnglish
JournalJournal of Experimental Botany
Volume74
Issue number18
Pages (from-to)5840-5853
Number of pages14
ISSN0022-0957
DOIs
Publication statusPublished - 29 Sept 2023
MoE publication typeA1 Journal article-refereed

Fields of Science

  • Acoustic emissions
  • freezing stress
  • gas bubbles
  • high-resolution computed tomography
  • plant hydraulics
  • pressure
  • tension
  • xylem anatomy
  • 11831 Plant biology

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