Area of research
Genetics · Plant Science
Research interest
Research focused on Pollen and Heterosis, with related work in Genetics, Gene, Sterility. Notable publications include 'Analysis of small RNAs revealed differential expressions during pollen and embryo sac development in autotetraploid rice', 'Comparative cytological and transcriptomic analysis of pollen development in autotetraploid and diploid rice', and 'Carbohydrate metabolism and fertility related genes high expression levels promote heterosis in autotetraploid rice harboring double neutral genes'.
The natural variation allele <i>OsGSW3.2</i> in <i>Oryza rufipogon</i> is involved in brassinosteroid signaling and influences grain size and weight
OsmiR5519 regulates grain size and weight and down-regulates sucrose synthase gene RSUS2 in rice (Oryza sativa L.)
Rice <i>BARENTSZ</i> genes are required to maintain floral developmental stability against temperature fluctuations
Natural allelic variation in <i>GRAIN SIZE AND WEIGHT 3</i> of wild rice regulates the grain size and weight
OsmiRNA5488 Regulates the Development of Embryo Sacs and Targets OsARF25 in Rice (Oryza sativa L.)
Thermo-Sensitive Genic Male Sterile Lines of Neo-Tetraploid Rice Developed through Gene Editing Technology Revealed High Levels of Hybrid Vigor
An uncharacterized protein NY1 targets EAT1 to regulate anther tapetum development in polyploid rice
Identification of qGL3.5, a Novel Locus Controlling Grain Length in Rice Through Bulked Segregant Analysis and Fine Mapping
MircroRNA Profiles of Early Rice Inflorescence Revealed a Specific miRNA5506 Regulating Development of Floral Organs and Female Megagametophyte in Rice
iTRAQ-based quantitative glutelin proteomic analysis reveals differentially expressed proteins in the physiological metabolism process during endosperm development and their impacts on yield and quality in autotetraploid rice
Profiling of Chemical and Structural Composition of Lignocellulosic Biomasses in Tetraploid Rice Straw
Comparative Cytological and Transcriptome Analysis Revealed the Normal Pollen Development Process and Up-Regulation of Fertility-Related Genes in Newly Developed Tetraploid Rice
Carbohydrate metabolism and fertility related genes high expression levels promote heterosis in autotetraploid rice harboring double neutral genes
Editing of the <i>OsACS</i> locus alters phosphate deficiency-induced adaptive responses in rice seedlings
Re-sequencing and transcriptome analysis reveal rich DNA variations and differential expressions of fertility-related genes in neo-tetraploid rice
Cytological and transcriptome analyses reveal abrupt gene expression for meiosis and saccharide metabolisms that associated with pollen abortion in autotetraploid rice
Analysis of small RNAs revealed differential expressions during pollen and embryo sac development in autotetraploid rice
Comparative cytological and transcriptomic analysis of pollen development in autotetraploid and diploid rice