Area of research
Plant Science · Genetics
Research interest
Research interests include Plant Molecular Biology Research, Genetic Mapping and Diversity in Plants and Animals, Plant Parasitism and Resistance, and Rice Cultivation and Yield Improvement.
Strigolactone perception: a key hub in nutrient responses of higher plants.
Mutual potentiation of IPA1 and OsNPR1 enhances rice immunity
Branching plasticity: An adaptive trait mediating crop performance amid environmental variability
Understanding capacity fading from structural degradation in Prussian blue analogues for wide-temperature sodium-ion cylindrical battery
Multifunctional Tunnel Structural Interfacial Modulation Promises Fast-Charge and Long-Life Na-Layered Oxides
Manipulation of a strigolactone transporter in tomato confers resistance to the parasitic weed broomrape
High Energy Density Heterostructured Sodium Layered Oxide Cathodes Enabled by Mechanical‐Chemical Coupling Effect
Cas9-PE: a robust multiplex gene editing tool for simultaneous precise editing and site-specific random mutation in rice.
Spatially Selective Substitution for Structural Stabilization of Sodium Layered Oxide Cathodes
Creation of high-resistant starch rice through systematic editing of amylopectin biosynthetic genes in rs4.
Shaping future sugarcane: Ideal plant architecture and breeding strategies
Natural Variation of a Specific <scp>NLR</scp> Gene <scp> <i>RGA4L</i> </scp> Confers Strong Chilling Tolerance in Rice
LAZY5 acts in an LAZY1‐independent pathway to regulate rice tiller angle
High Energy Density Heterostructured Sodium Layered Oxide Cathodes Enabled by Mechanical‐Chemical Coupling Effect
LAZY5 acts in an LAZY1-independent pathway to regulate rice tiller angle.
Natural Variation of a Specific NLR Gene RGA4L Confers Strong Chilling Tolerance in Rice.
Identifying rubber-related genes through developing a sense/antisense RNA expression mutant library of Taraxacum kok-saghyz Rodin.
Targeted genome-modification tools and their advanced applications in crop breeding.
Insights on advanced g‐C<sub>3</sub>N<sub>4</sub> in energy storage: Applications, challenges, and future
Regulatory mechanisms of strigolactone perception in rice
Duplication and sub‐functionalization of flavonoid biosynthesis genes plays important role in Leguminosae root nodule symbiosis evolution
Fine-tuning of IPA1 transactivation activity by E3 ligase IPI7-mediated non-proteolytic K29-ubiquitination during Magnaporthe oryzae infection.
Genome editing of 3' UTR-embedded inhibitory region enables generation of gene knock-up alleles in plants.
Duplication and sub-functionalization of flavonoid biosynthesis genes plays important role in Leguminosae root nodule symbiosis evolution.
Shaping rice Green Revolution traits by engineering ATG immediate upstream 5'-UTR sequences of OsSBI and OsHTD1.
D53 represses rice blast resistance by directly targeting phenylalanine ammonia lyases.
Long‐Cycle‐Life Cathode Materials for Sodium‐Ion Batteries toward Large‐Scale Energy Storage Systems
A Gγ protein regulates alkaline sensitivity in crops.
Low phosphorus promotes NSP1–NSP2 heterodimerization to enhance strigolactone biosynthesis and regulate shoot and root architecture in rice
Genomic insight into domestication of rubber tree.