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Article|02 Jan 2024|OPEN
MicroRNA396 negatively regulates shoot regeneration in tomato
Su-Jin Park1,2 , Ji-Sun Park1 , Jin Ho Yang1 , Ki-Beom Moon1 , Seung Yong Shin1,3 and Jae-Heung Jeon1 , Hyun-Soon Kim1,2 , , Hyo-Jun Lee,1,3,4 ,
1Plant Systems Engineering Research Center, Korea Research Institute of Bioscience and Biotechnology, 125 Gwahak-ro, Daejeon 34141, Korea
2Department of Biosystems and Bioengineering, KRIBB School of Biotechnology, University of Science and Technology, 125 Gwahak-ro, Daejeon 34113, Korea
3Department of Functional Genomics, KRIBB School of Bioscience, University of Science and Technology, 125 Gwahak-ro, Daejeon 34113, Korea
4Department of Biological Sciences, Sungkyunkwan University, 2066 Seobu-ro, Suwon 16419, Korea
*Corresponding author. E-mail: hyuns@kribb.re.kr,hyojunlee@kribb.re.kr

Horticulture Research 11,
Article number: uhad291 (2024)
doi: https://doi.org/10.1093/hr/uhad291
Views: 70

Received: 24 Sep 2023
Accepted: 19 Dec 2023
Published online: 02 Jan 2024

Abstract

Numerous studies have been dedicated to genetically engineering crops to enhance their yield and quality. One of the key requirements for generating genetically modified plants is the reprogramming of cell fate. However, the efficiency of shoot regeneration during this process is highly dependent on genotypes, and the underlying molecular mechanisms remain poorly understood. Here, we identified microRNA396 (miR396) as a negative regulator of shoot regeneration in tomato. By selecting two genotypes with contrasting shoot regeneration efficiencies and analyzing their transcriptome profiles, we found that miR396 and its target transcripts, which encode GROWTH-REGULATING FACTORs (GRFs), exhibit differential abundance between high- and low-efficiency genotypes. Suppression of miR396 functions significantly improved shoot regeneration rates along with increased expression of GRFs in transformed T0 explants, suggesting that miR396 is a key molecule involved in the determination of regeneration efficiency. Notably, we also showed that co-expression of a miR396 suppressor with the gene-editing tool can be employed to generate gene-edited plants in the genotype with a low capacity for shoot regeneration. Our findings show the critical role of miR396 as a molecular barrier to shoot regeneration in tomato and suggest that regeneration efficiency can be improved by blocking this single microRNA.