Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Abscisic acid, Arabidopsis, Vascular bundle, Transpiration, and Guard cell.
Drought recovery in plants triggers a cell-state-specific immune activation
Apoplastic metabolomics reveals sugars as mesophyll messengers regulating guard cell ion transport under red light
A tale of two pumps: Blue light and abscisic acid alter Arabidopsis leaf hydraulics via bundle sheath cell H+-ATPases
Arabidopsis transcriptome responses to low water potential using high-throughput plate assays
Illuminating plant water dynamics: the role of light in leaf hydraulic regulation
Arabidopsis transcriptome responses to low water potential using high-throughput plate assays
Leaf hydraulic maze: Abscisic acid effects on bundle sheath, palisade, and spongy mesophyll conductance
Arabidopsis leaf hydraulic conductance is regulated by xylem sap pH, controlled, in turn, by a P‐type H <sup>+</sup> ‐ATPase of vascular bundle sheath cells
Wide vessels sustain marginal transpiration flux and do not optimize inefficient gas exchange activity under impaired hydraulic control and salinity
Mesophyll Abscisic Acid Restrains Early Growth and Flowering But Does Not Directly Suppress Photosynthesis
Role of guard-cell ABA in determining steady-state stomatal aperture and prompt vapor-pressure-deficit response
Role of Aquaporins in a Composite Model of Water Transport in the Leaf
The Role of Plasma Membrane Aquaporins in Regulating the Bundle Sheath-Mesophyll Continuum and Leaf Hydraulics
Differential tissue-specific expression of NtAQP1 in Arabidopsis thaliana reveals a role for this protein in stomatal and mesophyll conductance of CO2 under standard and salt-stress conditions