Area of research
Plant Science · Cognitive Neuroscience
Research interest
Research interests include Plant Molecular Biology Research, Functional Brain Connectivity Studies, Plant nutrient uptake and metabolism, and Chromosomal and Genetic Variations.
The potential of wheat spatial omics.
Single-cell and tissue transcriptomes unveil factors regulating vein initiation and development in grass leaf primordia.
Transposable Element-Driven Expansion of Enhancer RNA Repertoires Underlies Regulatory Innovation and Polyploid Adaptation in Cereal Crops
Precise control of chromatin loop extrusion enhances sustainable green revolution yield in rice.
IMOP-Cancer: identifying mutation order pairs impacting cancer phenotypes
NSUN2 promotes colorectal cancer progression by enhancing SKIL mRNA stabilization
GLK transcription factors accompany ELONGATED HYPOCOTYL5 to orchestrate light-induced seedling development in Arabidopsis
GLK transcription factors accompany ELONGATED HYPOCOTYL5 to orchestrate light-induced seedling development in Arabidopsis.
Regulatory NADH dehydrogenase-like complex optimizes C<sub>4</sub> photosynthetic carbon flow and cellular redox in maize.
The effect of pH shifting on the calcium-fortified milk analogue with chickpea protein
Spatial effects of ecological cognition on firewood collection by households in protected areas: An analysis based on the giant panda nature reserves
A Quantitative Computational Framework for Allopolyploid Single-Cell Data Integration and Core Gene Ranking in Development.
HSFA1a modulates plant heat stress responses and alters the 3D chromatin organization of enhancer-promoter interactions
ACTL6A protects gastric cancer cells against ferroptosis through induction of glutathione synthesis
HSFA1a modulates plant heat stress responses and alters the 3D chromatin organization of enhancer-promoter interactions.
Genome resources for the elite bread wheat cultivar Aikang 58 and mining of elite homeologous haplotypes for accelerating wheat improvement
Centromere repositioning and shifts in wheat evolution
Regulatory NADH dehydrogenase‐like complex optimizes C<sub>4</sub> photosynthetic carbon flow and cellular redox in maize
Transposable element-initiated enhancer-like elements generate the subgenome-biased spike specificity of polyploid wheat
Genome and transcriptome of Selaginella kraussiana reveal evolution of root apical meristems in vascular plants
CURLY LEAF modulates apoplast liquid water status in Arabidopsis leaves.
LHP1-mediated epigenetic buffering of subgenome diversity and defense responses confers genome plasticity and adaptability in allopolyploid wheat
LHP1-mediated epigenetic buffering of subgenome diversity and defense responses confers genome plasticity and adaptability in allopolyploid wheat.
Transposable element-initiated enhancer-like elements generate the subgenome-biased spike specificity of polyploid wheat.
Triticeae-BGC: a web-based platform for detecting, annotating and evolutionary analysis of biosynthetic gene clusters in Triticeae.
Identifying the driver miRNAs with somatic copy number alterations driving dysregulated ceRNA networks in cancers
Author Correction: Transposable elements orchestrate subgenome-convergent and -divergent transcription in common wheat.
Ruminococcus gnavus plays a pathogenic role in diarrhea-predominant irritable bowel syndrome by increasing serotonin biosynthesis
Glucose-driven TOR–FIE–PRC2 signalling controls plant development
Glucose-driven TOR-FIE-PRC2 signalling controls plant development.