Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Plant Molecular Biology Research, Plant Reproductive Biology, Wheat and Barley Genetics and Pathology, and Plant nutrient uptake and metabolism.
Correction: Wang et al. Increased Compound Droughts and Heatwaves in a Double Pack in Central Asia. Remote Sens. 2022, 14, 2959
Water quality and interaction between groundwater and surface water impacted by agricultural activities in an oasis-desert region
Increased Compound Droughts and Heatwaves in a Double Pack in Central Asia
TOP1α fine-tunes TOR-PLT2 to maintain root tip homeostasis in response to sugars
Publisher Correction: TOP1α fine-tunes TOR-PLT2 to maintain root tip homeostasis in response to sugars
A chromatin loop represses <i><scp>WUSCHEL</scp></i> expression in Arabidopsis
The MBD7 complex promotes expression of methylated transgenes without significantly altering their methylation status
<i><scp>APETALA</scp>2</i> antagonizes the transcriptional activity of <i><scp>AGAMOUS</scp></i> in regulating floral stem cells in <i>Arabidopsis thaliana</i>
<i>FAR-RED ELONGATED HYPOCOTYL3</i> activates <i>SEPALLATA2</i> but inhibits <i>CLAVATA3</i> to regulate meristem determinacy and maintenance in <i>Arabidopsis</i>
<i> <scp>AUXIN RESPONSE FACTOR</scp> 3 </i> integrates the functions of <i> <scp>AGAMOUS</scp> </i> and <i> <scp>APETALA</scp> 2 </i> in floral meristem determinacy
DNA Topoisomerase I Affects Polycomb Group Protein-Mediated Epigenetic Regulation and Plant Development by Altering Nucleosome Distribution in <i>Arabidopsis</i>
DNA Topoisomerase 1α Promotes Transcriptional Silencing of Transposable Elements through DNA Methylation and Histone Lysine 9 Dimethylation in Arabidopsis
MicroRNAs Inhibit the Translation of Target mRNAs on the Endoplasmic Reticulum in Arabidopsis
Oomycete pathogens encode RNA silencing suppressors
POWERDRESS and Diversified Expression of the MIR172 Gene Family Bolster the Floral Stem Cell Network
Generation of a luciferase-based reporter for CHH and CG DNA methylation inArabidopsis thaliana
Genetic Screens for Floral Mutants in Arabidopsis thaliana: Enhancers and Suppressors
The floral homeotic protein APETALA2 recognizes and acts through an AT-rich sequence element
MicroRNA–Mediated Repression of the Seed Maturation Program during Vegetative Development in Arabidopsis