Area of research
Molecular Biology · Plant Science
Research interest
Research focused on Genome and Camellia sinensis, with related work in Gene, Polyploid, Adaptation (eye). Notable publications include 'The Tea Tree Genome Provides Insights into Tea Flavor and Independent Evolution of Caffeine Biosynthesis', 'The Reference Genome of Tea Plant and Resequencing of 81 Diverse Accessions Provide Insights into Its Genome Evolution and Adaptation', and 'Genome Sequences Provide Insights into the Reticulate Origin and Unique Traits of Woody Bamboos'.
Clonal longevity and the enigmatic flowering of woody bamboos are associated with rates of protein evolution
OsV14 interacts with OsPetC to affect photosynthetic efficiency
Chloroplast-Localized Protein, OsAL7, with Two Elongation Factor Thermostable Domains Is Essential for Normal Chloroplast Development and Seedling Longevity in Oryza sativa
Genome assemblies of 11 bamboo species highlight diversification induced by dynamic subgenome dominance
BambooBase: A comprehensive database of bamboo omics and systematics
Elevated [CO2] reduces CH4 emissions from rice paddies under in situ straw incorporation
Genomes of Meniocus linifolius and Tetracme quadricornis reveal the ancestral karyotype and genomic features of core Brassicaceae
Synergistic effect of elevated CO2 and straw amendment on N2O emissions from a rice–wheat cropping system
Five new and noteworthy species of Epidendroideae (Orchidaceae) from southwestern China based on morphological and phylogenetic evidence
The<i>Pharus latifolius</i>genome bridges the gap of early grass evolution
Effects of arbuscular mycorrhizal fungi on crop growth and soil N2O emissions in the legume system
The Reference Genome of Tea Plant and Resequencing of 81 Diverse Accessions Provide Insights into Its Genome Evolution and Adaptation
Parallel ddRAD and Genome Skimming Analyses Reveal a Radiative and Reticulate Evolutionary History of the Temperate Bamboos
SMRT sequencing of the Oryza rufipogon genome reveals the genomic basis of rice adaptation
The draft genome sequence of an upland wild rice species, Oryza granulata
Improved hybrid <i>de novo</i> genome assembly and annotation of African wild rice, <i>Oryza longistaminata</i> , from Illumina and PacBio sequencing reads
SMRT- and Illumina-based RNA-seq analyses unveil the ginsinoside biosynthesis and transcriptomic complexity in Panax notoginseng
SMRT sequencing of the <i>Oryza rufipogon</i> genome reveals the genomic basis of rice adaptation
Genome Sequences Provide Insights into the Reticulate Origin and Unique Traits of Woody Bamboos
Evolution of Oryza chloroplast genomes promoted adaptation to diverse ecological habitats
The Chromosome-Based Rubber Tree Genome Provides New Insights into Spurge Genome Evolution and Rubber Biosynthesis
The Tea Tree Genome Provides Insights into Tea Flavor and Independent Evolution of Caffeine Biosynthesis
The caterpillar fungus, Ophiocordyceps sinensis, genome provides insights into highland adaptation of fungal pathogenicity
Rapid diversification of five <i>Oryza</i> AA genomes associated with rice adaptation
ResSeq: Enhancing Short-Read Sequencing Alignment By Rescuing Error-Containing Reads
Prevalent Role of Gene Features in Determining Evolutionary Fates of Whole-Genome Duplication Duplicated Genes in Flowering Plants