Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Biology, Cell biology, Appressorium, Magnaporthe, Mutant, and Effector.
The multifunctional ascorbate peroxidase MoApx1 secreted by <i>Magnaporthe oryzae</i> mediates the suppression of rice immunity
Engineering a transposon-associated TnpB-ωRNA system for efficient gene editing and phenotypic correction of a tyrosinaemia mouse model
Early molecular events in the interaction between Magnaporthe oryzae and rice
Autophagy and cell wall integrity pathways coordinately regulate the development and pathogenicity through MoAtg4 phosphorylation in Magnaporthe oryzae
MoMkk1 and MoAtg1 dichotomously regulating autophagy and pathogenicity through MoAtg9 phosphorylation in <i>Magnaporthe oryzae</i>
MoRgs3 functions in intracellular reactive oxygen species perception-integrated cAMP signaling to promote appressorium formation in <i>Magnaporthe oryzae</i>
MEDIATOR SUBUNIT 16 negatively regulates rice immunity by modulating PATHOGENESIS RELATED 3 activity
MoErv14 mediates the intracellular transport of cell membrane receptors to govern the appressorial formation and pathogenicity of Magnaporthe oryzae
Peroxisome dynamics determines host-derived ROS accumulation and infectious growth of the rice blast fungus
Hydrophobic cue-induced appressorium formation depends on MoSep1-mediated MoRgs7 phosphorylation and internalization in Magnaporthe oryzae
Methionine biosynthesis enzyme MoMet2 is required for rice blast fungus pathogenicity by promoting virulence gene expression via reducing 5mC modification
GmERF54, an ERF Transcription Factor, Negatively Regulates the Resistance of Soybean to the Common Cutworm (Spodoptera litura Fabricius)
Membrane component ergosterol builds a platform for promoting effector secretion and virulence in <i>Magnaporthe oryzae</i>
MoIug4 is a novel secreted effector promoting rice blast by counteracting host OsAHL1‐regulated ethylene gene transcription
Homeostasis of cell wall integrity pathway phosphorylation is required for the growth and pathogenicity of <i>Magnaporthe oryzae</i>
MoErv29 promotes apoplastic effector secretion contributing to virulence of the rice blast fungus <i>Magnaporthe oryzae</i>
Balancing of the mitotic exit network and cell wall integrity signaling governs the development and pathogenicity in Magnaporthe oryzae
The rice blast fungus MoRgs1 functioning in cAMP signaling and pathogenicity is regulated by casein kinase MoCk2 phosphorylation and modulated by membrane protein MoEmc2
Gene deletion and constitutive expression of the pectate lyase gene 1 (MoPL1) lead to diminished virulence of Magnaporthe oryzae
Cell wall integrity in Magnaporthe oryzae is weakened by proteins secreted by Bacillus licheniformis BL06
Fg12 ribonuclease secretion contributes to <i>Fusarium graminearum</i> virulence and induces plant cell death
A self-balancing circuit centered on MoOsm1 kinase governs adaptive responses to host-derived ROS in Magnaporthe oryzae
Magnaporthe oryzae Auxiliary Activity Protein MoAa91 Functions as Chitin-Binding Protein To Induce Appressorium Formation on Artificial Inductive Surfaces and Suppress Plant Immunity
Phosphatase‐associated protein <scp>MoTip41</scp> interacts with the phosphatase <scp>MoPpe1</scp> to mediate crosstalk between <scp>TOR</scp> and cell wall integrity signalling during infection by the rice blast fungus <i>Magnaporthe oryzae</i>
Shedding light on autophagy coordinating with cell wall integrity signaling to govern pathogenicity of <i>Magnaporthe oryzae</i>
Histone acetyltransferase MoHat1 acetylates autophagy-related proteins MoAtg3 and MoAtg9 to orchestrate functional appressorium formation and pathogenicity in <i>Magnaporthe oryzae</i>
Phosphorylation-guarded light-harvesting complex II contributes to broad-spectrum blast resistance in rice
System-Wide Characterization of MoArf GTPase Family Proteins and Adaptor Protein MoGga1 Involved in the Development and Pathogenicity of Magnaporthe oryzae
Calcium Signaling Is Suppressed in<i>Magnaporthe oryzae</i>Conidia by<i>Bacillus cereus</i>HS24
MoPpe1 partners with MoSap1 to mediate TOR and cell wall integrity signalling in growth and pathogenicity of the rice blast fungus <i>Magnaporthe oryzae</i>