Influence of newly imposed salinity and waterlogging on Eucalyptus gracilis in South Australia

We investigated the effects of waterlogging and salinity on the water relations of Eucalyptus gracilis F. Muell. growing within the Stockyard Plain Disposal Basin Reserve, 15 km southwest of Waikerie, South Australia. Presence and depth of the saline groundwater had relatively little effect on the w...

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Published inTree physiology Vol. 25; no. 10; pp. 1339 - 1346
Main Authors Barrett, M.S, Preiss, K.A, Sinclair, R
Format Journal Article
LanguageEnglish
Published Canada 01.10.2005
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Abstract We investigated the effects of waterlogging and salinity on the water relations of Eucalyptus gracilis F. Muell. growing within the Stockyard Plain Disposal Basin Reserve, 15 km southwest of Waikerie, South Australia. Presence and depth of the saline groundwater had relatively little effect on the water relations of the trees even when large differences in tree health were visible. Predawn water potential, stomatal conductance, and foliar sodium and potassium concentrations were similar for all individuals independent of the depth and salinity of the groundwater. As expected, the severity of water stress increased over summer when predawn water potentials became progressively more negative and foliar salt concentrations increased. These changes occurred in all plants independent of depth or salinity of the groundwater.
AbstractList We investigated the effects of waterlogging and salinity on the water relations of Eucalyptus gracilis F. Muell. growing within the Stockyard Plain Disposal Basin Reserve, 15 km southwest of Waikerie, South Australia. Presence and depth of the saline groundwater had relatively little effect on the water relations of the trees even when large differences in tree health were visible. Predawn water potential, stomatal conductance, and foliar sodium and potassium concentrations were similar for all individuals independent of the depth and salinity of the groundwater. As expected, the severity of water stress increased over summer when predawn water potentials became progressively more negative and foliar salt concentrations increased. These changes occurred in all plants independent of depth or salinity of the groundwater.
Waterlogging and salinity effects on water relations in Eucalyptus gracilis were studied in plants growing at the Stockyard Plain Disposal Basin Reserve, South Australia. Saline groundwater presence and depth had little effect on trees even when diminished tree health was evident. Predawn water potential, stomatal conductance, and leaf sodium and potassium levels were similar for all trees regardless of groundwater depth and salinity. As water stress became more severe during the summer, predawn water potentials also became more negative and foliar salt levels rose, but these changes were independent of groundwater conditions.
Author Barrett, M.S
Sinclair, R
Preiss, K.A
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Snippet We investigated the effects of waterlogging and salinity on the water relations of Eucalyptus gracilis F. Muell. growing within the Stockyard Plain Disposal...
Waterlogging and salinity effects on water relations in Eucalyptus gracilis were studied in plants growing at the Stockyard Plain Disposal Basin Reserve, South...
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SubjectTerms Eucalyptus
Eucalyptus - physiology
Eucalyptus gracilis
flooded conditions
forest trees
genetic variation
groundwater
hybrids
Plant Transpiration - physiology
saline water
salinity
salt stress
salt tolerance
Soil
South Australia
stomatal conductance
stress tolerance
Trees - physiology
Water - physiology
water potential
water stress
Title Influence of newly imposed salinity and waterlogging on Eucalyptus gracilis in South Australia
URI https://www.ncbi.nlm.nih.gov/pubmed/16076782
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