Influence of season, drought and xylem ABA on stomatal responses to leaf-to-air vapour pressure difference of trees of the Australian wet-dry tropics

被引:29
作者
Thomas, DS
Eamus, D
Shanahan, S
机构
[1] No Terr Univ, Sch Biol Environm & Chem Sci, Darwin, NT 0909, Australia
[2] No Terr Univ, Sch Math & Phys Sci, Darwin, NT 0909, Australia
关键词
D O I
10.1071/BT98090
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
This paper reports the results of two experiments undertaken to investigate the influence of season and soil drying on stomatal responses to leaf-to-air vapour pressure differences. We examined the response of stomatal conductance to increasing leaf-to-air vapour pressure difference, in the wet and dry seasons, of five tropical tree species. We also examined leaves of these species for anatomical differences to determine whether this could explain differences in stomatal sensitivity to leaf-to-air vapour pressure differences. Finally, we conducted a split-root experiment with one of those species to look for interactions between xylem abscisic acid concentration, predawn water potential, leaf area to root mass ratio and stomatal responses to leaf-to-air vapour pressure differences. Stomatal conductance declined linearly with increasing leaf-to-air vapour pressure difference in all species. Leaves that expanded in the 'dry' season were more sensitive to leaf-to-air vapour pressure differences than those that had expanded in the 'wet' season. The value of leaf-to-air vapour pressure difference where 50% of extrapolated maximum stomatal conductance would occur was 5.5 kPa for wet season but only 3.4 kPa for dry season leaves. In the wet season, transpiration rate increased with increasing leaf-to-air vapour pressure difference in most example species. However, in the dry season, transpiration was constant as leaf-to-air vapour pressure differences increased in most cases. There were significant changes in the proportion of cell wall exposed to air space in leaves, between wet and dry seasons, in three of four species examined. In the split-root experiment, a very mild water stress increased stomatal sensitivity to leaf-to-air vapour pressure differences, and stomatal conductivity declined linearly with decreasing predawn water potential. However, levels of ABA in the xylem did not change, and stomatal sensitivity to exogenous ABA did not change. The ratio of leaf area to root mass declined during water stress and was correlated to changes in stomatal sensitivity to leaf-to-air vapour pressure differences.
引用
收藏
页码:143 / 151
页数:9
相关论文
共 29 条
[1]   Root and stem xylem embolism, stomatal conductance, and leaf turgor in Acer grandidentatum populations along a soil moisture gradient [J].
Alder, NN ;
Sperry, JS ;
Pockman, WT .
OECOLOGIA, 1996, 105 (03) :293-301
[2]  
Brock J., 1993, NATIVE PLANTS NO AUS
[4]   Diurnal change in the relationship between stomatal conductance and abscisic acid in the xylem sap of field-grown peach trees [J].
Correia, MJ ;
Rodrigues, ML ;
Ferreira, MI ;
Pereira, JS .
JOURNAL OF EXPERIMENTAL BOTANY, 1997, 48 (314) :1727-1736
[5]   GROWTH, BIOMASS ALLOCATION AND FOLIAR NUTRIENT CONTENTS OF 2 EUCALYPTUS SPECIES OF THE WET DRY TROPICS OF AUSTRALIA GROWN UNDER CO2 ENRICHMENT [J].
DUFF, GA ;
BERRYMAN, CA ;
EAMUS, D .
FUNCTIONAL ECOLOGY, 1994, 8 (04) :502-508
[6]   Seasonal patterns in soil moisture, vapour pressure deficit, tree canopy cover and pre-dawn water potential in a northern Australian savanna [J].
Duff, GA ;
Myers, BA ;
Williams, RJ ;
Eamus, D ;
OGrady, A ;
Fordyce, IR .
AUSTRALIAN JOURNAL OF BOTANY, 1997, 45 (02) :211-224
[8]   PHOTOSYNTHETIC RESPONSES TO TEMPERATURE, LIGHT FLUX-DENSITY, CO2 CONCENTRATION AND VAPOR-PRESSURE DEFICIT IN EUCALYPTUS TETRODONTA CROWN UNDER CO2 ENRICHMENT [J].
EAMUS, D ;
DUFF, GA ;
BERRYMAN, CA .
ENVIRONMENTAL POLLUTION, 1995, 90 (01) :41-49
[9]  
EAMUS D, 1987, AUST J PLANT PHYSIOL, V14, P331