Area of research
Plant Science · Food Science
Research interest
Research focused on Betalain and Gene, with related work in Mycotoxin, Aflatoxin, Argonaute. Notable publications include 'ARGONAUTE10 promotes the degradation of miR165/6 through the SDN1 and SDN2 exonucleases in Arabidopsis', 'Pitaya Nutrition, Biology, and Biotechnology: A Review', and 'Rainbow latex microspheres lateral flow immunoassay with smartphone-based device for simultaneous detection of three mycotoxins in cereals'.
The poetry of nitrogen and carbon metabolic shifts: The role of C/N in pitaya phase change
Unraveling betalain suppression in pitaya: insights from co-activator <i>HuMYB9</i> binding at <i>HuCYP76AD1-1</i>, <i>HuADH1</i>, and <i>HuDODA1</i> super-enhancers
Genetic Analyses of Flower Main Traits from Two Pitayas and Their Progenies: A Cactus Plant
Pitaya Nutrition, Biology, and Biotechnology: A Review
High Bioaffinity Controllable Assembly Nanocarrier UiO-66-NH<sub>2</sub>@Quantum Dot-Based Immunochromatographic Assay for Simultaneous Detection of Five Mycotoxins in Cereals and Feed
Identification of HubHLH family and key role of HubHLH159 in betalain biosynthesis by activating the transcription of HuADH1, HuCYP76AD1-1, and HuDODA1 in pitaya
Identification of <scp><i>HuSPL</i></scp> family and key role of <scp><i>HuSPL12</i></scp> in regulation of betalain biosynthesis in pitaya
Melatonin's chromatic magic: Examining its role in orchestrating pigment biosynthesis in horticultural crops
Rainbow latex microspheres lateral flow immunoassay with smartphone-based device for simultaneous detection of three mycotoxins in cereals
Genome-Wide Identification of WRKY Gene Family in Pitaya Reveals the Involvement of HmoWRKY42 in Betalain Biosynthesis
Ribonuclease activity of MARF1 controls oocyte RNA homeostasis and genome integrity in mice
ARGONAUTE10 promotes the degradation of miR165/6 through the SDN1 and SDN2 exonucleases in Arabidopsis