SlBPC1 regulates fruit elongation by directly repressing SlOFP2 / SlOFP21 and SUN expression in tomato

Fruit shape is an important agronomical trait that influences consumer preference. Despite the dramatic variations in fruit shape among tomato germplasms, the underlying genes and regulatory mechanisms remain poorly understood. Here, we found that knockout of the transcription factor SlBPC1 leads to elongated fruits, resulting from altered cell division patterns during ovary development. Further studies revealed that SlBPC1 regulates fruit shape by repressing its target genes SlOFP21 and SUN. Overexpression of SlOFP21 resulted in the formation of elongated fruits with an increased fruit shape index. Moreover, SlBPC1 also represses the expression of SlOFP2, a homolog of SlOFP21. Consistently, overexpression of SlOFP2 also led to elongated fruits in tomato. SlOFP2 and SlOFP21 were found to interact with fruit elongation activator SlTRM5 and repressors SlTRM17/20a and SlTRM19. Together, our results revealed an SlBPC1-SlOFP2/SlOFP21/SUN regulatory module that provides new insights and molecular tools for the genetic improvement of fruit shape traits in tomato breeding programs.

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Publication Details

Journal
Journal of Integrative Plant Biology
Published
2026-10-04
DOI
https://doi.org/10.1111/jipb.70409
Primary Topic
Plant Molecular Biology Research
Type
article
Field-Weighted Citation Impact
0.00

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article

SlBPC1 regulates fruit elongation by directly repressing SlOFP2 / SlOFP21 and SUN expression in tomato

Jing Wei, Zhibiao Ye, Zonglie Hong, Sunan Gao et al.
Journal of Integrative Plant Biology
Plant Molecular Biology Research
article

SlBPC1 regulates fruit elongation by directly repressing SlOFP2 / SlOFP21 and SUN expression in tomato

Jing Wei, Zhibiao Ye, Zonglie Hong, Sunan Gao, Jie Ye, Junhong Zhang, Licheng Xiao, Lei Song, Long Cui, Taotao Wang, Rong Huang, Jiajun Ran, Wenran Su, Chunrui Chen, Jingyi Li
article en

Abstract

Fruit shape is an important agronomical trait that influences consumer preference. Despite the dramatic variations in fruit shape among tomato germplasms, the underlying genes and regulatory mechanisms remain poorly understood. Here, we found that knockout of the transcription factor SlBPC1 leads to elongated fruits, resulting from altered cell division patterns during ovary development. Further studies revealed that SlBPC1 regulates fruit shape by repressing its target genes SlOFP21 and SUN. Overexpression of SlOFP21 resulted in the formation of elongated fruits with an increased fruit shape index. Moreover, SlBPC1 also represses the expression of SlOFP2, a homolog of SlOFP21. Consistently, overexpression of SlOFP2 also led to elongated fruits in tomato. SlOFP2 and SlOFP21 were found to interact with fruit elongation activator SlTRM5 and repressors SlTRM17/20a and SlTRM19. Together, our results revealed an SlBPC1-SlOFP2/SlOFP21/SUN regulatory module that provides new insights and molecular tools for the genetic improvement of fruit shape traits in tomato breeding programs.

Journal of Integrative Plant Biology
University of Idaho (US), Huazhong Agricultural University (CN), Academy of Agricultural and Forestry Sciences (RO), Gannan Normal University (CN)
National Natural Science Foundation of China, Huazhong Agricultural University, Zhejiang Academy of Agricultural Sciences, Hebei Agricultural University, Fundamental Research Funds for the Central Universities
Zero hunger
Openalex Percentile: Top 15%
Plant Molecular Biology Research
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