Cells, Genes & Molecules
A Pathway to Salt-Tolerant Crops in a Changing Climate
A new metabolic model identifies the genetic basis of salt stress resilience in plants.
Cells, Genes & Molecules
A new metabolic model identifies the genetic basis of salt stress resilience in plants.
Rachel Shekar ·
Computational Models
A new tool generates images of stomata that improve the accuracy of stomal detection by deep learning models.
Rachel Shekar ·
Computational Models
A new model of hazelnut enhances our understanding of its growth and development.
Rachel Shekar ·
Computational Models
A new study reveals that sometimes adding more data to a model reduces its predictive power.
Alun Salt ·
Computational Models
A combination of modern methods and indigenous knowledge could help conserve endangered plants.
Alun Salt ·
Computational Models
Climate models often struggle to capture the timing of leaf drop. A new study finds that scientists haven’t been looking at rainfall the way plants have.
Alun Salt ·
Computational Models
Researchers develop innovative techniques to track plant aging
Rachel Shekar ·
Computational Models
Researchers use a functional-structural plant model to analyze how architectural and physiological traits affect nitrogen uptake and physiological efficiency.
Rachel Shekar ·
Cells, Genes & Molecules
Scientists create a computational model to uncover the role of metabolites in the vacuole fusion process.
Rachel Shekar ·
Computational Models
MODELBARK provides valuable insights into the dynamics of bark formation through computer simulations.
Rachel Shekar ·
Computational Models
Small garden patches provide crucial food for wild bees when farm flowers are scarce in early spring and late summer.
Alun Salt ·
Computational Models
Researchers improve model prediction accuracy by closing existing data gaps.
Rachel Shekar ·