Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Plant Molecular Biology Research, Photosynthetic Processes and Mechanisms, Plant Stress Responses and Tolerance, and Plant Reproductive Biology.
Multi-scale thermal homeostasis: Plants achieve temperature control through hierarchical regulation
Harnessing Green Revolution genes to optimize tomato production efficiency for vertical farming.
A new strategy of molecular breeding for optimal heading date and grain yield in rice by modulating elite allelic combinations of Ghd7, Hd3a, RFT1 and Gn1a
TillerPET: High-throughput in-situ phenotyping of rice tiller number and compactness from post-harvest stubble
Grow rice under sunshine of Xizang/Tibet: promise and challenges.
Translational repression of FZP mediated by CU-rich element/OsPTB interactions modulates panicle development in rice.
Regulation of nitrogen starvation responses by the alarmone (p)ppGpp in rice.
An efficient screening system to identify protein-protein or protein-DNA interaction partners of rice transcription factors.
A phosphate starvation response-centered network regulates mycorrhizal symbiosis.
The Welwitschia genome reveals a unique biology underpinning extreme longevity in deserts
The Welwitschia genome reveals a unique biology underpinning extreme longevity in deserts
The Ghd7 transcription factor represses ARE1 expression to enhance nitrogen utilization and grain yield in rice.
Liquid-Liquid Phase Transition Drives Intra-chloroplast Cargo Sorting.
Nondestructive 3D Image Analysis Pipeline to Extract Rice Grain Traits Using X-Ray Computed Tomography.
OsWUS promotes tiller bud growth by establishing weak apical dominance in rice.
OsABAR1, a novel GRAM domain-containing protein, confers drought and salt tolerance via an ABA-dependent pathway in rice.
CHR721, interacting with OsRPA1a, is essential for both male and female reproductive development in rice.
Tiller Bud Formation Regulators MOC1 and MOC3 Cooperatively Promote Tiller Bud Outgrowth by Activating FON1 Expression in Rice.
<i>Ef-cd</i> locus shortens rice maturity duration without yield penalty.
Abce1 orchestrates M-phase entry and cytoskeleton architecture in mouse oocyte
The genome and transcriptome of Trichormus sp. NMC-1: insights into adaptation to extreme environments on the Qinghai-Tibet Plateau
Fine Structure and Sensory Apparatus of the Mouthparts of the Maize Weevil,<i>Sitophilus zeamais</i>Motschulsky (Coleoptera: Curculionoidea: Dryophthoridae)
Overexpression of microRNA OsmiR397 improves rice yield by increasing grain size and promoting panicle branching