Area of research
Plant Science · Endocrinology
Research interest
Research interests include Biology, Virology, Nicotiana benthamiana, RNA, Genetics, and Cell biology.
Occurrence and integrated control of major rice diseases in China
Viral proteins suppress rice defenses by boosting OsTSN1 RNA decay via phase separation and multimerization
Comprehensive virome analysis of soybean agroecosystems in China reveals geographic patterns and interfacial virus spillovers
Soybean stay-green associated geminivirus: A serious threat to soybean production in China
Plant virology in the 21st century in China: Recent advances and future directions
Genome editing of a dominant resistance gene for broad‐spectrum resistance to bacterial diseases in rice without growth penalty
CRISPR/FnCas12a-mediated efficient multiplex and iterative genome editing in bacterial plant pathogens without donor DNA templates
Rice stripe virus nonstructural protein 3 suppresses plant defence responses mediated by the <scp>MEL</scp> – <scp>SHMT1</scp> module
Knockout of the virus replication‐related genes <i>UbEF1B</i> and <i>CCR4/NOT3</i> by CRISPR/Cas9 confers high‐efficiency and broad‐spectrum resistance to geminiviruses in <i>Nicotiana benthamiana</i>
Epidemiological evaluation and identification of the insect vector of soybean stay-green associated virus
An evolutionarily conserved C4HC3-type E3 ligase regulates plant broad-spectrum resistance against pathogens
ty-5 Confers Broad-Spectrum Resistance to Geminiviruses
Comprehensive Analysis of Ubiquitome Changes in Nicotiana benthamiana after Rice Stripe Virus Infection
<i>Rice stripe virus</i>: Exploring Molecular Weapons in the Arsenal of a Negative-Sense RNA Virus
Red-light is an environmental effector for mutualism between begomovirus and its vector whitefly
The unfolded protein response plays dual roles in rice stripe virus infection through fine-tuning the movement protein accumulation
Development of a Mini-Replicon-Based Reverse-Genetics System for Rice Stripe Tenuivirus
NSvc4 Encoded by Rice Stripe Virus Targets Host Chloroplasts to Suppress Chloroplast-Mediated Defense
Rice black-streaked dwarf virus P10 promotes phosphorylation of GAPDH (glyceraldehyde-3-phosphate dehydrogenase) to induce autophagy in <i>Laodelphax striatellus</i>
Taxonomy of the order Bunyavirales: second update 2018
Nuclear autophagy degrades a geminivirus nuclear protein to restrict viral infection in solanaceous plants
Tenuivirus utilizes its glycoprotein as a helper component to overcome insect midgut barriers for its circulative and propagative transmission
Diterpenoid compounds from Wedelia trilobata induce resistance to Tomato spotted wilt virus via the JA signal pathway in tobacco plants
Beclin1 restricts RNA virus infection in plants through suppression and degradation of the viral polymerase
Taxonomy of the family Arenaviridae and the order Bunyavirales: update 2018
Genome sequencing of the sweetpotato whitefly <i>Bemisia tabaci</i> MED/Q
Model-based structural and functional characterization of the Rice stripe tenuivirus nucleocapsid protein interacting with viral genomic RNA
Multi-omics analysis of niche specificity provides new insights into ecological adaptation in bacteria
A host plant genome (<i>Zizania latifolia</i>) after a century‐long endophyte infection
Rice Stripe Tenuivirus NSvc2 Glycoproteins Targeted to the Golgi Body by the N-Terminal Transmembrane Domain and Adjacent Cytosolic 24 Amino Acids via the COP I- and COP II-Dependent Secretion Pathway