Area of research
Plant Science · Molecular Biology
Research interest
Research focused on Root (linguistics) and Arabidopsis, with related work in Computational biology, Lateral root, Root system. Notable publications include 'The Plant Peptidome: An Expanding Repertoire of Structural Features and Biological Functions', 'Capturing the phosphorylation and protein interaction landscape of the plant TOR kinase', and 'Lateral root morphogenesis is dependent on the mechanical properties of the overlaying tissues'.
Stomatal opening under high temperatures is controlled by the OST1-regulated TOT3–AHA1 module
Integrative approaches to enhance reproductive resilience of crops for climate-proof agriculture
25 Years of thermomorphogenesis research: milestones and perspectives
TPLATE complex‐dependent endocytosis attenuates CLAVATA1 signaling for shoot apical meristem maintenance
Wandering between hot and cold: temperature dose-dependent responses
The membrane-localized protein kinase MAP4K4/TOT3 regulates thermomorphogenesis
Protein kinase and phosphatase control of plant temperature responses
Capturing the phosphorylation and protein interaction landscape of the plant TOR kinase
Non‐canonical AUX/IAA protein IAA33 competes with canonical AUX/IAA repressor IAA5 to negatively regulate auxin signaling
The Xerobranching Response Represses Lateral Root Formation When Roots Are Not in Contact with Water
Synergistic action of auxin and cytokinin mediates aluminum‐induced root growth inhibition in Arabidopsis
Plant peptides – taking them to the next level
The Plant Peptidome: An Expanding Repertoire of Structural Features and Biological Functions
Shaping a root system: regulating lateral versus primary root growth
Designer crops: optimal root system architecture for nutrient acquisition
Omics and modelling approaches for understanding regulation of asymmetric cell divisions in arabidopsis and other angiosperm plants
Lateral root morphogenesis is dependent on the mechanical properties of the overlaying tissues
Tackling Drought Stress: RECEPTOR-LIKE KINASES Present New Approaches
Analyzing Lateral Root Development: How to Move Forward