Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Biology, Photosystem II, Chemistry, Photosynthesis, Chlorophyll fluorescence, and Alternaria alternata.
Plant resistance inducer AMHA enhances antioxidant capacities to promote cold tolerance by regulating the upgrade of glutathione S-transferase in tea plant
<scp>N4</scp>‐acetylcytidine <scp>mRNA</scp> modification regulates photosynthesis in plants
Discovery, Herbicidal Activity and Biosynthesis of a Novel Natural Tetramic Acid from <i>Alternaria Species</i>
Study on Chemical Diversity, Antioxidant and Antibacterial Activities, and HaCaT Cytotoxicity of Camphora tenuipilis (a Traditional Aromatic Plant from Xishuangbanna)
Salicylic acid suppresses 1O2-mediated susceptibility to <i>Alternaria alternata</i> in Arabidopsis
Fast chlorophyll fluorescence rise kinetics as a high-throughput diagnostic tool for evaluating the capacity of 2-amino-3-methylhexanoic acid at inducing plant resistance against high temperature
Structure-Based Design, Virtual Screening, and Discovery of Novel Patulin Derivatives as Biogenic Photosystem II Inhibiting Herbicides
Alternaria TeA toxin activates a chloroplast retrograde signaling pathway to facilitate JA-dependent pathogenicity
Natural plant inducer 2-Amino-3-Methylhexanoic acid protects physiological activity against high-temperature damage to tea (Camellia sinensis)
Action of the fungal compound citrinin, a bioherbicide candidate, on photosystem <scp>II</scp>
Griseofulvin Inhibits Root Growth by Targeting Microtubule-Associated Proteins Rather Tubulins in Arabidopsis
Recent Advances in Alternaria Phytotoxins: A Review of Their Occurrence, Structure, Bioactivity, and Biosynthesis
Natural 2-Amino-3-Methylhexanoic Acid as Plant Elicitor Inducing Resistance against Temperature Stress and Pathogen Attack
Tenuazonic Acid-Triggered Cell Death Is the Essential Prerequisite for Alternaria alternata (Fr.) Keissler to Infect Successfully Host Ageratina adenophora
Action Mode of the Mycotoxin Patulin as a Novel Natural Photosystem II Inhibitor
Structure-based ligand design and discovery of novel tenuazonic acid derivatives with high herbicidal activity
A fungal <i>Bipolaris bicolor</i> strain as a potential bioherbicide for goosegrass ( <i>Eleusine indica</i> ) control
Comparative effect of tenuazonic acid, diuron, bentazone, dibromothymoquinone and methyl viologen on the kinetics of Chl a fluorescence rise OJIP and the MR820 signal
Novel Action Targets of Natural Product Gliotoxin in Photosynthetic Apparatus
An evaluation of tenuazonic acid, a potential biobased herbicide in cotton
Comparative phytotoxicity of usnic acid, salicylic acid, cinnamic acid and benzoic acid on photosynthetic apparatus of Chlamydomonas reinhardtii
Recent advances in tenuazonic acid as a potential herbicide
TeA is a key virulence factor for Alternaria alternata (Fr.) Keissler infection of its host
Classification and characteristics of heat tolerance in Ageratina adenophora populations using fast chlorophyll a fluorescence rise O-J-I-P
Multiple mechanism confers natural tolerance of three lilyturf species to glyphosate
In vivo assessment of effect of phytotoxin tenuazonic acid on PSII reaction centers
Blocking the <scp>Q<sub>B</sub></scp>‐binding site of photosystem <scp>II</scp> by tenuazonic acid, a non–host‐specific toxin of <scp><i>A</i></scp><i>lternaria alternata</i>, activates singlet oxygen‐mediated and <scp>EXECUTER</scp>‐dependent signalling in <scp><i>Arabidopsis</i></scp>
Differential sensitivity to the potential bioherbicide tenuazonic acid probed by the JIP-test based on fast chlorophyll fluorescence kinetics
Effect of vulculic acid produced by Nimbya alternantherae on the photosynthetic apparatus of Alternanthera philoxeroides