Hydraulic and photosynthetic co‐ordination in seasonally dry tropical forest trees
Open Access
- 29 October 2002
- journal article
- research article
- Published by Wiley in Plant, Cell & Environment
- Vol. 25 (11) , 1435-1444
- https://doi.org/10.1046/j.1365-3040.2002.00919.x
Abstract
In the present study the linkage between hydraulic, photosynthetic and phenological properties of tropical dry forest trees were investigated. Seasonal patterns of stem‐specific conductivity (KSP) described from 12 species, including deciduous, brevi‐deciduous and evergreen species, indicated that only evergreen species were consistent in their response to a dry‐to‐wet season transition. In contrast, KSP in deciduous and brevi‐deciduous species encompassed a range of responses, from an insignificant increase in KSP following rains in some species, to a nine‐fold increase in others. Amongst deciduous species, the minimum KSP during the dry season ranged from 6 to 56% of wet season KSP, indicating in the latter case that a significant portion of the xylem remained functional during the dry season. In all species and all seasons, leaf‐specific stem conductivity (KL) was strongly related to the photosynthetic capacity of the supported foliage, although leaf photosynthesis became saturated in species with high KL. The strength of this correlation was surprising given that much of the whole‐plant resistance appears to be in the leaves. Hydraulic capacity, defined as the product of KL and the soil–leaf water potential difference, was strongly correlated with the photosynthetic rate of foliage in the dry season, but only weakly correlated in the wet season.Keywords
This publication has 41 references indexed in Scilit:
- Hydraulic vulnerability, vessel refilling, and seasonal courses of stem water potential of Sorbus aucuparia L. and Sambucus nigra L.Journal of Experimental Botany, 2001
- Stem water transport and freeze-thaw xylem embolism in conifers and angiosperms in a Tasmanian treeline heathOecologia, 2001
- Seasonal changes in hydraulic conductance, xylem embolism and leaf area in Eucalyptus tetrodonta and Eucalyptus miniata saplings in a north Australian savannaPlant, Cell & Environment, 2000
- Xylem cavitation and hydraulic control of stomatal conductance in Laurel (Laurus nobilis L.)Plant, Cell & Environment, 2000
- Soil and Stem Water Storage Determine Phenology and Distribution of Tropical Dry Forest TreesEcology, 1994
- Drought Tolerance and Xylem Embolism in Co‐Occurring Species of Coastal Sage and ChaparralEcology, 1994
- The Effect of Reduced Hydraulic Conductance on Stomatal Conductance and Xylem CavitationJournal of Experimental Botany, 1993
- Seasonal Drought and Leaf Fall in a Tropical ForestEcology, 1990
- Photon yield of O2 evolution and chlorophyll fluorescence characteristics at 77 K among vascular plants of diverse originsPlanta, 1987
- Leaf Conductance in Relation to Rate of CO2 AssimilationPlant Physiology, 1985