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Predicting Phenotypes
Integration of physiology and development of traits underpinning plant success
Land plant genetic network innovations
Connecting plant water relations phenotype to whole plant success – Bryophytes
Connecting plant water relations phenotype to whole plant success
Domestication underground – exploring how modification of plant hormone signalling, including during plant breeding, influences beneficial plant-microbe symbiosis
Evolution and function of molecular networks that control potential and water allocation in plant growth
Impacts of crop domestication on water management
Model emulation
Complex mathematical networks
Discovering new pathways to enhance breeding predictions by integrating genome to phenome and hierarchical biological models
Mechanism and Network Prediction
Evolution of eucalyptus clade relative to heat and water stress
Predicting adaptive trajectories in natural systems
Phylogenomics of photoperiod response
Adaptations to heat and water stress in the Andropogoneae grasses
Leaf cuticle properties
Homology detection, alignment and ancestral state reconstruction of genetic networks
Responsible Innovation
Genomic analysis of mechanisms of adaptive evolution
Genome manipulation technology development and application to analysis of stress response networks
Genome editing for complex trait enhancement
Quantitative biology and the law
Access to genetic resources
Freedom to operate with genetic technologies
Molecular markers/sequence data
Capacity
Improved phylogenetic profiling to better understand and predict the genotype to phenotype map
Andropogonaeae focused grass pan-genome
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