Embolism resistance of three boreal conifer species varies with pit structure
- 16 April 2009
- journal article
- Published by Wiley in New Phytologist
- Vol. 182 (3) , 675-686
- https://doi.org/10.1111/j.1469-8137.2009.02783.x
Abstract
While tracheid size of conifers is often a good proxy of water transport efficiency, correlations between conifer wood structure and transport safety remain poorly understood. It is hypothesized that at least some of the variation in bordered pit and tracheid structure is associated with both transport efficiency and embolism resistance. Stem and root samples from three boreal Pinaceae species were collected to test this hypothesis. Tracheid and pit anatomy were studied using light microscopy as well as scanning and transmission electron microscopy. While tracheid size explained at least 90% of the variation in specific conductivity for stem and root samples, the strongest correlations with embolism resistance occurred at the pit level. Both torus thickness and depth of the pit chamber showed a linear increase with greater vulnerability to cavitation. Greater embolism resistance was correlated with increasing wood density and tracheid wall reinforcement. A thinner torus may be more flexible and better able to seal the pit aperture. The pit chamber depth is proportional to the distance that the margo needs to deflect for pit aspiration.Keywords
This publication has 34 references indexed in Scilit:
- Maximum height in a conifer is associated with conflicting requirements for xylem designProceedings of the National Academy of Sciences, 2008
- Ion-mediated flow changes suppressed by minimal calcium presence in xylem sap in Chrysanthemum and Prunus laurocerasusJournal of Experimental Botany, 2006
- Inter‐vessel pitting and cavitation in woody Rosaceae and other vesselled plants: a basis for a safety versus efficiency trade‐off in xylem transportPlant, Cell & Environment, 2005
- Evolution of Water Transport and Xylem StructureInternational Journal of Plant Sciences, 2003
- How do water transport and water storage differ in coniferous earlywood and latewood?Journal of Experimental Botany, 2002
- Trends in wood density and structure are linked to prevention of xylem implosion by negative pressureOecologia, 2001
- The effects of acclimation to sunlight on the xylem vulnerability to embolism in Fagus sylvatica L.Plant, Cell & Environment, 1999
- Use of centrifugal force in the study of xylem cavitationJournal of Experimental Botany, 1997
- Water‐stress‐induced xylem embolism in three species of conifersPlant, Cell & Environment, 1990
- THE LENGTH, TANGENTIAL DIAMETER, AND LENGTH/WIDTH RATIO OF CONIFER TRACHEIDSCanadian Journal of Botany, 1965