Area of research
Global and Planetary Change · Plant Science
Research interest
Research interests include Plant Water Relations and Carbon Dynamics, Plant responses to elevated CO2, Tree-ring climate responses, and Plant responses to water stress.
Environmental, Physiological and Biochemical Processes Determining the Oxygen Isotope Ratio of Tree-Ring Cellulose
Open source 3D phenotyping of chickpea plant architecture across plant development
Cell and chloroplast anatomical features are poorly estimated from 2D cross‐sections
Climate and soils together regulate photosynthetic carbon isotope discrimination within C<sub>3</sub> plants worldwide
Embracing 3D Complexity in Leaf Carbon–Water Exchange
Segmentation of lettuce in coloured 3D point clouds for fresh weight estimation
Leaf day respiration: low <scp>CO</scp><sub>2</sub> flux but high significance for metabolism and carbon balance
Online <scp>CO</scp> <sub>2</sub> and H <sub>2</sub> O oxygen isotope fractionation allows estimation of mesophyll conductance in C <sub>4</sub> plants, and reveals that mesophyll conductance decreases as leaves age in both C <sub>4</sub> and C <sub>3</sub> plants
Enhanced decomposition and nitrogen mineralization sustain rapid growth of <i>Eucalyptus regnans</i> after wildfire
Stable isotopes in leaf water of terrestrial plants
Measurements of transpiration isotopologues and leaf water to assess enrichment models in cotton
New constraints on atmospheric CO<sub>2</sub> concentration for the Phanerozoic
Increasing leaf hydraulic conductance with transpiration rate minimizes the water potential drawdown from stem to leaf
Turnover time of the non‐structural carbohydrate pool influences δ<sup>18</sup><scp>O</scp> of leaf cellulose
Sensitivity of plants to changing atmospheric <scp>CO</scp><sub>2</sub> concentration: from the geological past to the next century
Diffusional conductances to CO2 as a target for increasing photosynthesis and photosynthetic water-use efficiency
The oxygen isotope enrichment of leaf‐exported assimilates – does it always reflect lamina leaf water enrichment?
Transpiration rate relates to within‐ and across‐species variations in effective path length in a leaf water model of oxygen isotope enrichment
Isotopic composition of transpiration and rates of change in leaf water isotopologue storage in response to environmental variables
Mesophyll diffusion conductance to CO2: An unappreciated central player in photosynthesis
Short‐term effects of CO<sub>2</sub> and O<sub>2</sub> on citrate metabolism in illuminated leaves