Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Plant Molecular Biology Research, Genomics and Chromatin Dynamics, Epigenetics and DNA Methylation, and Plant nutrient uptake and metabolism.
MicroRNA-29 is an essential regulator of brain maturation through regulation of CH methylation
An Activity-Mediated Transition in Transcription in Early Postnatal Neurons
A scalable platform for the development of cell-type-specific viral drivers
The histone H3 variant H3.3 regulates gene body DNA methylation in Arabidopsis thaliana
On the origin and evolutionary consequences of gene body DNA methylation
Disruption of DNA-methylation-dependent long gene repression in Rett syndrome
The Histone Variant H2A.W Defines Heterochromatin and Promotes Chromatin Condensation in Arabidopsis
Genome-wide identification and characterization of functional neuronal activity–dependent enhancers
MORC1 represses transposable elements in the mouse male germline
Transcriptional gene silencing by <i>Arabidopsis</i> microrchidia homologues involves the formation of heteromers
SNF2 chromatin remodeler-family proteins FRG1 and -2 are required for RNA-directed DNA methylation
Non-CG methylation patterns shape the epigenetic landscape in Arabidopsis
Comprehensive Analysis of Silencing Mutants Reveals Complex Regulation of the Arabidopsis Methylome
Plants regenerated from tissue culture contain stable epigenome changes in rice
RNA interference knockdown of <i>DNA methyl-transferase 3</i> affects gene alternative splicing in the honey bee
A Matrix Protein Silences Transposons and Repeats through Interaction with Retinoblastoma-Associated Proteins
Dual Binding of Chromomethylase Domains to H3K9me2-Containing Nucleosomes Directs DNA Methylation in Plants
MORC Family ATPases Required for Heterochromatin Condensation and Gene Silencing
Genome-wide analysis of histone H3.1 and H3.3 variants in <i>Arabidopsis thaliana</i>
Loss of the DNA Methyltransferase MET1 Induces H3K9 Hypermethylation at PcG Target Genes and Redistribution of H3K27 Trimethylation to Transposons in Arabidopsis thaliana
DNA Methyltransferases Are Required to Induce Heterochromatic Re-Replication in Arabidopsis
The SET-Domain Protein SUVR5 Mediates H3K9me2 Deposition and Silencing at Stimulus Response Genes in a DNA Methylation–Independent Manner