Title of article :
Comparative vessel anatomy of arctic deciduous and evergreen dicots
Author/Authors :
Fisher، Jack B. نويسنده , , Gorsuch، Dennis M. نويسنده , , Oberbauer، Steven F. نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2001
Pages :
-1642
From page :
1643
To page :
0
Abstract :
Arctic tundra plant species exhibit striking variation in leaf character and growth form. Both are likely related to differences in vessel anatomy, and all may affect responses to climate changes in the Arctic. To investigate the relationships among leaf character, growth form, vessel anatomy, and susceptibility to freeze-thaw-induced xylem cavitation, xylem vessel characteristics were compared among six deciduous and six evergreen arctic dicot species of erect and prostrate growth forms. We hypothesized that deciduous and erect species would have larger and longer vessels than evergreen and cushion/mat-forming species. Vessel lengths, diameters, and densities were measured for each species. Theoretical vessel flow rates were calculated using Poiseuilleʹs law for ideal capillaries. Flow rates were used to determine the susceptibility of vessels to cavitation induced by freeze-thaw events that may become more frequent with global warming. Vessel diameters were larger in deciduous species compared to evergreens, and in shrubs/trees vs. cushion/mat-forming plants. Vessel length distributions, however, did not differ for growth form or leaf character. Vessel density was greater in cushion/mat-forming A species than in shrub/tree species. Deciduous plants showed a greater contribution to total conductivity by relatively larger vessels than evergreens. One of the deciduous species, Vaccinium uliginosum, is predicted to be susceptible to freeze-thawinduced cavitation. These results have important implications for future arctic species composition and plant community structure.
Keywords :
Neonatal Fc receptor , IgG transport , Colostrum , Pig , mammary gland
Journal title :
American Journal of Botany
Serial Year :
2001
Journal title :
American Journal of Botany
Record number :
33271
Link To Document :
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