Area of research
Plant Science · Agronomy and Crop Science
Research interest
Research interests include Crop Yield and Soil Fertility, Wheat and Barley Genetics and Pathology, Genetics and Plant Breeding, and Climate change impacts on agriculture.
Improving wheat tolerance to post-flowering heat using matched development stages and field-based reaction norms.
Adapting nitrogen fertilization to increase cotton productivity sustainably and decrease nitrogen loss to the environment
Saving water for more crop per drop: high-throughput phenotyping reveals plastic regulation of transpiration in wheat under natural evaporative demand
Identifying water stress response haplotypes in barley using latent environmental covariates
Envirotyping facilitates understanding of genotype × environment interactions and highlights the potential of stay-green traits in wheat
Phenotyping the hidden half: combining UAV phenotyping and machine learning to predict barley root traits in the field.
Envirotyping Facilitates Understanding of Genotype × Environment Interactions and Highlights the Potential of Stay-green Traits in Wheat
Saving water to get ‘more crop per drop’ – A new phenotyping framework revealed wide plasticity in wheat
Sustained assimilate supply determines grain development in wheat under post-anthesis heat.
Spatial probabilistic patterns of joint heat and water stress of chickpea in Australia
Phenotyping the hidden half: Combining UAV phenotyping and machine learning to predict barley root traits in the field
Late nitrogen fertilization increases biomass of cotton bolls by reinforcing source sink performance
Understanding wheat growth and the seasonal climatic characteristics of major drought patterns occurring in cold dryland environments from Iran
Does late water deficit induce root growth or senescence in wheat?
Identification of environment similarities using a crop model to assist the cultivation and breeding of a new crop in a new region
A cross‐scale analysis to understand and quantify the effects of photosynthetic enhancement on crop growth and yield across environments
The Concepts of Seed Germination Rate and Germinability: A Re-Evaluation for Cool-Season Grasses
Unsupervised Plot-Scale LAI Phenotyping via UAV-Based Imaging, Modelling, and Machine Learning.
Evolution and application of digital technologies to predict crop type and crop phenology in agriculture
Limiting transpiration rate in high evaporative demand conditions to improve Australian wheat productivity
Genotype-specific P-spline response surfaces assist interpretation of regional wheat adaptation to climate change
How does post-flowering heat impact grain growth and its determining processes in wheat?
Physiological and Genetic Drivers Underpinning Canopy Development are Associated with Durum Wheat Yield in Rainfed Environments
Heat shocks increasingly impede grain filling but have little effect on grain setting across the Australian wheatbelt
Early vigour in wheat: Could it lead to more severe terminal drought stress under elevated atmospheric [CO<sub>2</sub> ] and semi-arid conditions?
Variation in Australian durum wheat germplasm for productivity traits under irrigated and rainfed conditions: genotype performance for agronomic traits and benchmarking
Increasing Heat Tolerance in Wheat to Counteract Recent and Projected Increases in Heat Stress
Risk assessment of frost damage to sugar beet simulated under cold and semi-arid environments.
Recent Trends in Drought, Heat and Frost-Induced Yield Losses Across the Australian Wheatbelt
Sowing date detection at the field scale using CubeSats remote sensing