Jingying Li
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Coupling of both a transactivation module and a double‐stranded DNA‐binding domain boosts Cas12i3 variant‐based cytosine and adenine editing in plants
INTRODUCTION Base editing facilitates precise single-nucleotide substitution in a sequence-specific manner, enabling the creation of targeted loss-of-function or gain-of-function mutations. This technology significantly accelerates research in functional genomics and applications in crop improvement, de novo domestication, and directed evolution.
Molecular-Specific Optical Coherence Tomography Contrast Agents for High-Sensitivity In Vivo Detection of Corneal Injury
Cite Jump to ExpandCollapse LetterNovember 25, 2025 Molecular-Specific Optical Coherence Tomography Contrast Agents for High-Sensitivity In Vivo Detection of Corneal Injury Click to copy article linkArticle link copied! Shuya Liu Shuya Liu New Cornerstone Science Laboratory, MOE Key Laboratory for Analytical Science of Food Safety and Biology, Fujian Provincial Key Laboratory of Analysis and Detection Technology for Food Safety, College of Chemistry, Fuzhou University, Fuzhou 350116, P. R.
Analysis of a Series of Mutants Highlights Complex Regulation of Fusarium Head Blight Resistance Conferred by Fhb1 Locus in Wheat
Fusarium head blight (FHB), which is mainly caused by Fusarium graminearum, is one of the devastating wheat diseases that threaten global wheat production (Rawat et al. 2016; Li et al. 2019; Su et al. 2019; Wang et al. 2020). Improvement of FHB resistance has become an urgent need for securing worldwide wheat production. Fhb1, a quantitative trait locus located on chromosome 3BS and exploited in Chinese variety cv Sumai 3 (SM3), provides the most stable and major effect on FHB resistance in wheat.
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