Area of research
Plant Science · Cell Biology
Research interest
Research interests include Biology, Fusarium, Mutant, Fungicide, Mycelium, and Xanthomonas oryzae.
Novel Naphthyl and Phenyl Maleimide Derivatives: Molecular Design, Systematic Optimization, Antifungal Evaluation, and Action Mechanism
Action mechanism of a novel agrichemical quinofumelin against Fusarium graminearum
A83V Mutation in FaSDHC2 Confers High Field Resistance to Pydiflumetofen and Exhibits Negative Cross-Resistance to Benzovindiflupyr in <i>Fusarium asiaticum</i>
Risk assessment and molecular mechanism of Sclerotium rolfsii resistance to boscalid
<scp>The G143S</scp> mutation in cytochrome <scp><i>b</i></scp> confers high resistance to pyraclostrobin in <scp><i>Fusarium pseudograminearum</i></scp>
Endoplasmic reticulum-mitochondrial encounter structure regulates the mitochondrial morphology, DON biosynthesis and toxisome formation in Fusarium graminearum
Cytochrome <i>c</i> Oxidase Influences Pyraclostrobin Sensitivity in <i>Fusarium graminearum</i> by Regulating <i>FgAox</i> Through Transcription Factors FgAod2 and FgAod5
Methyl jasmonate mitigates <i>Fusarium graminearum</i> infection in wheat by inhibiting deoxynivalenol synthesis
Pathogen Composition and Fungicide Sensitivity in Rice Spikelet Rot Disease
Application of dsRNA of FgPMA1 for disease control on Fusarium graminearum
Point mutations of Dicer2 conferred Fusarium asiaticum resistance to RNAi-related biopesticide
Molecular and biological characterization of lab-induced benzovindiflupyr-resistant mutants of Didymella bryoniae
The <scp>G143A</scp>/S substitution of mitochondrially encoded cytochrome <i>b</i> (Cytb) in <i>Magnaporthe oryzae</i> confers resistance to quinone outside inhibitors
Risk assessment and molecular mechanism of <i>Fusarium incarnatum</i> resistance to phenamacril
Mitochondrial dynamics caused by QoIs and SDHIs fungicides depended on FgDnm1 in Fusarium graminearum
FgMet3 and FgMet14 related to cysteine and methionine biosynthesis regulate vegetative growth, sexual reproduction, pathogenicity, and sensitivity to fungicides in Fusarium graminearum
FfCOX17 is Involved in Fumonisins Production, Growth, Asexual Reproduction, and Fungicide Sensitivity in Fusarium fujikuroi
Cytochrome bc1 Complex: Potential Breach to Improve the Activity of Phenazines on <i>Xanthomonas</i>
The plasma membrane H <sup>+</sup> ‐ATPase FgPMA1 regulates the development, pathogenicity, and phenamacril sensitivity of <i>Fusarium graminearum</i> by interacting with FgMyo‐5 and FgBmh2
Antifungal Activity of Quinofumelin against Fusarium graminearum and Its Inhibitory Effect on DON Biosynthesis
Glucose-6-Phosphate Isomerase FgGPI, a β<sub>2</sub> Tubulin-Interacting Protein, Is Indispensable for Fungal Development and Deoxynivalenol Biosynthesis in <i>Fusarium graminearum</i>
Structural basis of Fusarium myosin I inhibition by phenamacril
Degradation of SERRATE via ubiquitin-independent 20S proteasome to survey RNA metabolism
Characterization of the Resistance Mechanism and Risk of <i>Fusarium verticillioides</i> to the Myosin Inhibitor Phenamacril
Genome-Wide Identification and Characterization of Fusarium graminearum-Responsive lncRNAs in Triticum aestivum
Ethylenediaminetetraacetic Acid Disodium Salt Acts as an Antifungal Candidate Molecule against Fusarium graminearum by Inhibiting DON Biosynthesis and Chitin Synthase Activity
Carbendazim‐resistance associated β <sub>2</sub> ‐tubulin substitutions increase deoxynivalenol biosynthesis by reducing the interaction between β <sub>2</sub> ‐tubulin and IDH3 in <scp> <i>Fusarium graminearum</i> </scp>
Intron-mediated regulation of β-tubulin genes expression affects the sensitivity to carbendazim in Fusarium graminearum
The critical role of cytochrome c maturation (CCM) system in the tolerance of Xanthomonas campestris pv. campestris to phenazines
Molecular and biological characterization of Sclerotinia sclerotiorum resistant to the anilinopyrimidine fungicide cyprodinil