Area of research
Plant Science
Research interest
Research interests include Biology, Effector, Nicotiana benthamiana, Cell biology, Phytophthora sojae, and Oomycete.
An Insect Effector Mimics Its Host Immune Regulator to Undermine Plant Immunity
An Insect Salivary Sheath Protein Triggers Plant Resistance to Insects and Pathogens as a Conserved HAMP
Ferritin From Striped Stem Borer (<i>Chilo suppressalis</i>) Oral Secretion Acts as an Effector Helping to Maintain Iron Homoeostasis and Impair Defenses in Rice
StBPA1 attenuates surface receptor activation and finely regulates immune responses against bacterial and oomycete pathogens in potato
Lysobacter enzymogenes prevents Phytophthora infection by inhibiting pathogen growth and eliciting plant immune responses
The oomycete-specific BAG subfamily maintains protein homeostasis and promotes pathogenicity in an atypical HSP70-independent manner
BPL3 binds the long non-coding RNA <i>nalncFL7</i> to suppress <i>FORKED-LIKE7</i> and modulate HAI1-mediated MPK3/6 dephosphorylation in plant immunity
Cyclophilin effector Al106 of mirid bug <i>Apolygus lucorum</i> inhibits plant immunity and promotes insect feeding by targeting <scp>PUB33</scp>
Planthopper-Secreted Salivary Calmodulin Acts as an Effector for Defense Responses in Rice
A <i>Phytophthora capsici</i> <scp>RXLR</scp> effector manipulates plant immunity by targeting <scp>RAB</scp> proteins and disturbing the protein trafficking pathway
The<i>Phytophthora sojae</i>effector PsFYVE1 modulates immunity-related gene expression by targeting host RZ-1A protein
Making Use of Plant uORFs to Control Transgene Translation in Response to Pathogen Attack
Ferroptosis induced by the biocontrol agent <i>Pythium oligandrum</i> enhances soybean resistance to <i>Phytophthora sojae</i>
Nep1-Like Proteins From the Biocontrol Agent Pythium oligandrum Enhance Plant Disease Resistance Independent of Cell Death and Reactive Oxygen Species
Novel EIicitin from <i>Pythium oligandrum</i> Confers Disease Resistance against <i>Phytophthora capsici</i> in Solanaceae Plants
Engineering crop Phytophthora resistance by targeting pathogen-derived PI3P for enhanced catabolism
The <i>Pythium periplocum</i> elicitin PpEli2 confers broad-spectrum disease resistance by triggering a novel receptor-dependent immune pathway in plants
GmPAO-mediated polyamine catabolism enhances soybean Phytophthora resistance without growth penalty
Vitellogenin from planthopper oral secretion acts as a novel effector to impair plant defenses
A Phytophthora sojae CRN effector mediates phosphorylation and degradation of plant aquaporin proteins to suppress host immune signaling
An Activity‐Based Sensing Fluorogenic Probe for Monitoring Ethylene in Living Cells and Plants
Targeting of anti-microbial proteins to the hyphal surface amplifies protection of crop plants against Phytophthora pathogens
Type 2 Nep1-Like Proteins from the Biocontrol Oomycete Pythium oligandrum Suppress Phytophthora capsici Infection in Solanaceous Plants
<i>Phytophthora</i> infection signals‐induced translocation of NAC089 is required for endoplasmic reticulum stress response‐mediated plant immunity
Double-faced role of Bcl-2-associated athanogene 7 in plant–<i>Phytophthora</i> interaction
Comparison of the Distinct, Host-Specific Response of Three Solanaceae Hosts Induced by Phytophthora infestans
The mirid bug Apolygus lucorum deploys a glutathione peroxidase as a candidate effector to enhance plant susceptibility
Prediction and Characterization of RXLR Effectors in <i>Pythium</i> Species
Plant Pathogens Utilize Effectors to Hijack the Host Endoplasmic Reticulum as Part of Their Infection Strategy
Molecular mechanism of nanochitin whisker elicits plant resistance against Phytophthora and the receptors in plants