Area of research
Plant Science
Research interest
Research interests include Biology, Effector, Phytophthora sojae, RNA splicing, Genome, and Genetics.
A Phase‐Separated SR Protein Reprograms Host Pre‐mRNA Splicing to Enhance Disease Susceptibility
Low-input lipidomics reveals lipid metabolism remodelling during early mammalian embryo development
Alternative splicing of a potato disease resistance gene maintains homeostasis between growth and immunity
Comparative transcriptomics of the chilling stress response in two Asian mangrove species, <i>Bruguiera gymnorhiza</i> and <i>Rhizophora apiculata</i>
Plant immunity suppressor <scp>SKRP</scp> encodes a novel <scp>RNA</scp>‐binding protein that targets exon 3′ end of unspliced <scp>RNA</scp>
<i>Phytophthora sojae </i>apoplastic effector AEP1 mediates sugar uptake by mutarotation of extracellular aldose and is recognized as a MAMP
Phytophthora Effectors Modulate Genome-wide Alternative Splicing of Host mRNAs to Reprogram Plant Immunity
Pathogen manipulation of chloroplast function triggers a light-dependent immune recognition
Cleavage of a pathogen apoplastic protein by plant subtilases activates host immunity
Decoding co-/post-transcriptional complexities of plant transcriptomes and epitranscriptome using next-generation sequencing technologies
Genome Analysis of Two Newly Emerged Potato Late Blight Isolates Sheds Light on Pathogen Adaptation and Provides Tools for Disease Management
Boron reduces cell wall aluminum content in rice (Oryza sativa) roots by decreasing H2O2 accumulation
Putrescine alleviates aluminum toxicity in rice (<i>Oryza sativa</i>) by reducing cell wall Al contents in an ethylene‐dependent manner
Editing of an effector gene promoter sequence impacts plant‐<i>Phytophthora</i> interaction
Polymorphism in natural alleles of the avirulence gene Avr1c is associated with the host adaptation of Phytophthora sojae
The <i>Phytophthora sojae </i><scp>RXLR</scp> effector Avh238 destabilizes soybean Type2 Gm<scp>ACS</scp>s to suppress ethylene biosynthesis and promote infection
Natural allelic variations provide insights into host adaptation of <i>Phytophthora</i> avirulence effector PsAvr3c
Functional Analysis of PsAvr3c Effector Family From Phytophthora Provides Probes to Dissect SKRP Mediated Plant Susceptibility
A Phytophthora Effector Manipulates Host Histone Acetylation and Reprograms Defense Gene Expression to Promote Infection
An oomycete plant pathogen reprograms host pre-mRNA splicing to subvert immunity
The Activation of Phytophthora Effector Avr3b by Plant Cyclophilin is Required for the Nudix Hydrolase Activity of Avr3b
Cassava genome from a wild ancestor to cultivated varieties
FGF signaling activates a Sox9-Sox10 pathway for the formation and branching morphogenesis of mouse ocular glands