Area of research
Plant Science · Biochemistry
Research interest
Research interests include Plant Molecular Biology Research, Lipid metabolism and biosynthesis, Plant Pathogens and Fungal Diseases, and Plant Stress Responses and Tolerance.
Ear photosynthesis outweighs flag and top second leaf contributions to oat grain weight and oil accumulation
Creating ultra-high linolenic acid camelina by co-expressing AtFAD2sm with synonymous mutations and BnFAD3 in the fae1 mutant.
A method for maintaining the release of co-suppression and maximally restoring the RDR6 expression.
Lipidomics studies reveal dynamic changes in polar lipids of developing endosperm of oat and wheat varieties with differing oil contents.
Contiguous identity between entire coding regions of transgenic and native genes rather than special regions is essential for a strong co-suppression.
Polyphenols in twenty cultivars of blue honeysuckle (Lonicera caerulea L.): Profiling, antioxidant capacity, and α-amylase inhibitory activity
Bioengineering of Soybean Oil and Its Impact on Agronomic Traits.
FUSCA3-induced AINTEGUMENTA-like 6 manages seed dormancy and lipid metabolism.
Nitrate improves aluminium resistance through SLAH‐mediated citrate exudation from roots
Genome-wide analysis revealed the stepwise origin and functional diversification of HSDs from lower to higher plant species.
Quantitative Investigation of <i>FAD2</i> Cosuppression Reveals RDR6-Dependent and RDR6-Independent Gene Silencing Pathways.
ABA-INSENSITIVE 3 with or without FUSCA3 highly up-regulates lipid droplet proteins and activates oil accumulation.
Nanotherapeutics for hydrogen sulfide-involved treatment: An emerging approach for cancer therapy
Multiple caleosins have overlapping functions in oil accumulation and embryo development.
Calmodulin‐like protein CML24 interacts with CAMTA2 and WRKY46 to regulate <i>ALMT1</i>‐dependent Al resistance in <i>Arabidopsis thaliana</i>
A 3-ketoacyl-CoA synthase 11 (KCS11) homolog from Malania oleifera synthesizes nervonic acid in plants rich in 11Z-eicosenoic acid.
Concerted increases of <i>FAE1</i> expression level and substrate availability improve and singularize the production of very-long-chain fatty acids in Arabidopsis seeds.
Evaluation of duplicated reference genes for quantitative real-time PCR analysis in genome unknown hexaploid oat (<i>Avena sativa</i> L.).
Accelerating gene function discovery by rapid phenotyping of fatty acid composition and oil content of single transgenic T<sub>1</sub> Arabidopsis and camelina seeds.
Transcriptome Analysis Reveals Candidate Genes for Petroselinic Acid Biosynthesis in Fruits of <i>Coriandrum sativum</i> L.
Evaluation of duplicated reference genes for quantitative real-time PCR analysis in genome unknown hexaploid oat (Avena sativa&nbsp;L.)
Evaluation of duplicated reference genes for quantitative real-time PCR analysis in genome unknown hexaploid oat (Avena sativa L.)
Evaluation of duplicated reference genes for quantitative real-time PCR analysis in genome unknown hexaploid oat (Avena sativa L.)
Effect of Imidacloprid Uptake from Contaminated Soils on Vegetable Growth
WRINKLED1 homologs highly and functionally express in oil-rich endosperms of oat and castor.
Strong co-suppression impedes an increase in polyunsaturated fatty acids in seeds overexpressing FAD2.
Genome-wide analysis reveals the evolution and structural features of WRINKLED1 in plants.
FACE‐IT: A science gateway for food security research
Aneurysmal Bone Cyst of the Orbit
A Myb Transcription Factor of Phytophthora sojae, Regulated by MAP Kinase PsSAK1, Is Required for Zoospore Development