Area of research
Insect Science · Plant Science
Research interest
Research interests include Biology, Wolbachia, Phytophthora, Spiroplasma, Nicotiana benthamiana, and Oomycete.
Discovery of Tropolone Stipitaldehyde as a Potential Agent for Controlling Phytophthora Blight and Its Action Mechanism Research
Infection density pattern of <i>Cardinium</i> affects the responses of bacterial communities in an invasive whitefly under heat conditions
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
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
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
Wolbachia and Spiroplasma could influence bacterial communities of the spider mite Tetranychus truncatus
Prediction and Characterization of RXLR Effectors in <i>Pythium</i> Species
Variation in the microbiome of the spider mite Tetranychus truncatus with sex, instar and endosymbiont infection
<i>Wolbachia</i> affects reproduction in the spider mite <i>Tetranychus truncatus</i> (Acari: Tetranychidae) by regulating <i> chorion protein <scp>S38</scp> ‐like </i> and <i>Rop</i>
<i>Wolbachia</i> dominate <i>Spiroplasma</i> in the co‐infected spider mite <i>Tetranychus truncatus</i>
Co‐infection of <i>Wolbachia</i> and <i>Spiroplasma</i> in spider mite <i>Tetranychus truncatus</i> increases male fitness
Symbiont‐conferred reproduction and fitness benefits can favour their host occurrence
Comparative analyses of salivary proteins from the facultative symbiont-infected and uninfected Tetranychus truncatus
Screening of spider mites (Acari: Tetranychidae) for reproductive endosymbionts reveals links between co-infection and evolutionary history
<p align="center"><strong>A review of prevalence and phylogeny of the bacterial symbiont <em>Cardinium</em> in mites (subclass: Acari)</strong></p>