Area of research
Plant Science · Genetics
Research interest
Research interests include Plant Molecular Biology Research, Plant Parasitism and Resistance, Plant nutrient uptake and metabolism, and Genetic Mapping and Diversity in Plants and Animals.
An NLR-transposase fusion gene from rye provides broadly effective resistance to stripe rust in wheat.
A single-cell rice atlas integrates multi-species data to reveal cis-regulatory evolution.
LAZY5 acts in an LAZY1‐independent pathway to regulate rice tiller angle
Moracin N alleviates ischaemic brain injury in mice by suppressing neuronal ferroptosis via the activation of the Keap1/Nrf2 signalling pathway
Risk factors analysis and prediction model construction of hospital-acquired pneumonia after traumatic brain injury
Optimization of braided stent design for cerebral aneurysms: the role of wire cross-sectional geometry
HSFA2D-LAZY6-LAZY1 module regulates shoot gravitropism and tiller angle in rice.
Photosynthetic capacity and assimilate transport of the lower canopy influence maize yield under high planting density
LAZY4 acts additively with the starch–statolith-dependent gravity-sensing pathway to regulate shoot gravitropism and tiller angle in rice
Effect of early mobilization on the development of pneumonia in patients with traumatic brain injury in the neurosurgical intensive care unit: A historical controls study
Low phosphorus promotes NSP1–NSP2 heterodimerization to enhance strigolactone biosynthesis and regulate shoot and root architecture in rice
LAZY3 interacts with LAZY2 to regulate tiller angle by modulating shoot gravity perception in rice.
Clinical Outcomes After Cranioplasty With Titanium Mesh, Polyetheretherketone, or Composite Bone Cement: A Retrospective Study
Uncover the mystery of pleiotropic effects of PROG1 during rice domestication
LAZing around: The intricate dance of amyloplast sedimentation and gravity sensing in plants
Targeting a gene regulatory element enhances rice grain yield by decoupling panicle number and size.
Molecular basis underlying rice tiller angle: Current progress and future perspectives
OsHYPK-mediated protein N-terminal acetylation coordinates plant development and abiotic stress responses in rice
Glioma Shapes Blood–Brain Barrier Integrity and Remodels the Tumor Microenvironment: Links with Clinical Features and Prognosis
Author Correction: Genomic basis of geographical adaptation to soil nitrogen in rice
Author Correction: Genomic basis of geographical adaptation to soil nitrogen in rice.
The unconventional prefoldin RPB5 interactor mediates the gravitropic response by modulating cytoskeleton organization and auxin transport in Arabidopsis.
A route to de novo domestication of wild allotetraploid rice
Genomic basis of geographical adaptation to soil nitrogen in rice
Genomic basis of geographical adaptation to soil nitrogen in rice.
LAZY2 controls rice tiller angle through regulating starch biosynthesis in gravity-sensing cells.
Enhancing rice grain production by manipulating the naturally evolved cis-regulatory element-containing inverted repeat sequence of OsREM20
Strigolactone and Karrikin Signaling Pathways Elicit Ubiquitination and Proteolysis of SMXL2 to Regulate Hypocotyl Elongation in Arabidopsis
Karrikin Signaling Acts Parallel to and Additively with Strigolactone Signaling to Regulate Rice Mesocotyl Elongation in Darkness
Strigolactone and Karrikin Signaling Pathways Elicit Ubiquitination and Proteolysis of SMXL2 to Regulate Hypocotyl Elongation in Arabidopsis.