Area of research
Genetics · Plant Science
Research interest
Research interests include Biology, Gene, Genetics, Oryza sativa, Mutant, and Panicle.
The BELL-KNOX module qSH1-OSH71 regulates rice seed shattering via direct activation of OsXTH12 xyloglucanase
Genome-Wide Profile of Mutations Induced by Carbon Ion Beam Irradiation of Dehulled Rice Seeds
GWAS Combined with WGCNA of Transcriptome and Metabolome to Excavate Key Candidate Genes for Rice Anaerobic Germination
Small Auxin Up RNA 56 (SAUR56) regulates heading date in rice
MYB Transcription Factor OsC1PLSr Involves the Regulation of Purple Leaf Sheath in Rice
A new method for mutation inducing in rice by using DC electrophoresis bath and its mutagenic effects
RNA-Seq and Genome-Wide Association Studies Reveal Potential Genes for Rice Seed Shattering
Characteristics of Fertility Transition Response to the Cumulative Effective Low Temperature in a Two-Line Male Sterile Rice Cultivar
Identification of QTLs involved in cold tolerance during the germination and bud stages of rice (<i>Oryza sativa</i> L.) via a high-density genetic map
Identification of stable QTLs and candidate genes involved in anaerobic germination tolerance in rice via high-density genetic mapping and RNA-Seq
Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS
Development and utilization of functional KASP markers to improve rice eating and cooking quality through MAS breeding
Characterization and Fine Mapping of a Leaf Wilt Mutant, <i>m3</i>, Induced by Heavy Ion Irradiation of Rice
4-Coumarate-CoA Ligase-Like Gene OsAAE3 Negatively Mediates the Rice Blast Resistance, Floret Development and Lignin Biosynthesis
NBS-LRR Protein Pik-H4 Interacts with OsBIHD1 to Balance Rice Blast Resistance and Growth by Coordinating Ethylene-Brassinosteroid Pathway
Quantitative trait loci identification and meta-analysis for rice panicle-related traits
Marker‐assisted selection for rice blast resistance genes <i>Pi2</i> and <i>Pi9</i> through high‐resolution melting of a gene‐targeted amplicon
A genotyping platform assembled with high-throughput DNA extraction, codominant functional markers, and automated CE system to accelerate marker-assisted improvement of rice
Chromosome mapping, molecular cloning and expression analysis of a novel gene response for leaf width in rice
Diallel analysis of combining ability and heterosis for yield and yield components in rice by using positive loci