Area of research
Molecular Biology · Plant Science
Research interest
Research focused on CRISPR and Cytidine deaminase, with related work in Genome editing, Computational biology, Metabolic engineering. Notable publications include 'Quantitative regulation of Waxy expression by CRISPR/Cas9‐based promoter and 5'UTR‐intron editing improves grain quality in rice', 'Plant Synthetic Metabolic Engineering for Enhancing Crop Nutritional Quality', and 'PhieABEs: a PAM‐less/free high‐efficiency adenine base editor toolbox with wide target scope in plants'.
Programmable genome engineering and gene modifications for plant biodesign
The type V effectors for CRISPR/Cas-mediated genome engineering in plants
<scp>PhieDBEs</scp>: a <scp>DBD</scp>‐containing, <scp>PAM</scp>‐flexible, high‐efficiency dual base editor toolbox with wide targeting scope for use in plants
PhieABEs: a PAM‐less/free high‐efficiency adenine base editor toolbox with wide target scope in plants
Exploring C-to-G and A-to-Y Base Editing in Rice by Using New Vector Tools
The ScCas9<sup>++</sup> variant expands the CRISPR toolbox for genome editing in plants
Quantitative regulation of Waxy expression by CRISPR/Cas9‐based promoter and 5'UTR‐intron editing improves grain quality in rice
PhieCBEs: Plant High-Efficiency Cytidine Base Editors with Expanded Target Range
Prospects and progress on crocin biosynthetic pathway and metabolic engineering
Nicking Endonuclease-Mediated Vector Construction Strategies for Plant Gene Functional Research
Plant Synthetic Metabolic Engineering for Enhancing Crop Nutritional Quality