about
Breeding for the future: what are the potential impacts of future frost and heat events on sowing and flowering time requirements for Australian bread wheat (Triticum aestivium) varieties?Frost trends and their estimated impact on yield in the Australian wheatbelt.The shifting influence of drought and heat stress for crops in northeast Australia.Day length affects the dynamics of leaf expansion and cellular development in Arabidopsis thaliana partially through floral transition timing.Individual leaf development in Arabidopsis thaliana: a stable thermal-time-based programme.Velocity of temperature and flowering time in wheat - assisting breeders to keep pace with climate change.Assessment of the Potential Impacts of Wheat Plant Traits across Environments by Combining Crop Modeling and Global Sensitivity Analysis.Contribution of Crop Models to Adaptation in Wheat.Detection and use of QTL for complex traits in multiple environments.Large-scale characterization of drought pattern: a continent-wide modelling approach applied to the Australian wheatbelt--spatial and temporal trends.Environment characterization as an aid to wheat improvement: interpreting genotype-environment interactions by modelling water-deficit patterns in North-Eastern Australia.Stay-green traits to improve wheat adaptation in well-watered and water-limited environments.High-throughput phenotyping of seminal root traits in wheat.Using a 3-D virtual sunflower to simulate light capture at organ, plant and plot levels: contribution of organ interception, impact of heliotropism and analysis of genotypic differences.Projected impact of future climate on water-stress patterns across the Australian wheatbelt.VERNALIZATION1 Modulates Root System Architecture in Wheat and Barley.PHENOPSIS, an automated platform for reproducible phenotyping of plant responses to soil water deficit in Arabidopsis thaliana permitted the identification of an accession with low sensitivity to soil water deficit.Integrating modelling and phenotyping approaches to identify and screen complex traits - Illustration for transpiration efficiency in cereals.A low-cost method to rapidly and accurately screen for transpiration efficiency in wheatShort-term responses of leaf growth rate to water deficit scale up to whole-plant and crop levels: an integrated modelling approach in maizeSimulations of virtual plants reveal a role for SERRATE in the response of leaf development to light in Arabidopsis thalianaSelection in Early Generations to Shift Allele Frequency for Seminal Root Angle in WheatRisk assessment of frost damage to sugar beet simulated under cold and semi-arid environmentsEarly vigour in wheat: could it lead to more severe terminal drought stress under elevated atmospheric [CO2 ] and semi-arid conditions?
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description
hulumtuese
@sq
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Karine Chenu
@ast
Karine Chenu
@en
Karine Chenu
@es
Karine Chenu
@nl
type
label
Karine Chenu
@ast
Karine Chenu
@en
Karine Chenu
@es
Karine Chenu
@nl
prefLabel
Karine Chenu
@ast
Karine Chenu
@en
Karine Chenu
@es
Karine Chenu
@nl
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P1153
6506041520
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P31
P496
0000-0001-7273-2057