Journal article
Structural adjustments in resprouting trees drive differences in post-fire transpiration
RH Nolan, PJ Mitchell, RA Bradstock, PNJ Lane, R Oren
Tree Physiology | Published : 2014
Abstract
Following disturbance many woody species are capable of resprouting new foliage, resulting in a reduced leaf-to-sapwood area ratio and altered canopy structure. We hypothesized that such changes would promote adjustments in leaf physiology, resulting in higher rates of transpiration per unit leaf area, consistent with the mechanistic framework proposed by Whitehead et al. (Whitehead D, Jarvis PG, Waring RH (1984) Stomatal conductance, transpiration and resistance to water uptake in a Pinus sylvestris spacing experiment. Can J For Res 14:692-700). We tested this in Eucalyptus obliqua L'Hér following a wildfire by comparing trees with unburnt canopies with trees that had been subject to 100% c..
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Funding Acknowledgements
This research was funded through an Australian Postgraduate Award in conjunction with Melbourne Water and the Victorian Department of Environment and Primary Industries.