BBX7 interacts with BBX8 to accelerate flowering in chrysanthemum

The quantitative control of FLOWERING LOCUS T (FT) activation is important for the floral transition in flowering plants. However, the flowering regulation mechanisms in the day-neutral, summer-flowering chrysanthemum plant remain unclear. In this study, the chrysanthemum BBX7 homolog CmBBX7 was iso...

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Veröffentlicht in:Molecular horticulture 2023-04, Vol.3 (1), p.7-7, Article 7
Hauptverfasser: Zhai, Yiwen, Zhu, Yuqing, Wang, Qi, Wang, Guohui, Yu, Yao, Wang, Lijun, Liu, Tao, Liu, Shenhui, Hu, Qian, Chen, Sumei, Chen, Fadi, Jiang, Jiafu
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Sprache:eng
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Zusammenfassung:The quantitative control of FLOWERING LOCUS T (FT) activation is important for the floral transition in flowering plants. However, the flowering regulation mechanisms in the day-neutral, summer-flowering chrysanthemum plant remain unclear. In this study, the chrysanthemum BBX7 homolog CmBBX7 was isolated and its flowering function was identified. The expression of CmBBX7 showed a diurnal rhythm and CmBBX7 exhibited higher expression levels than CmBBX8 . Overexpression of CmBBX7 in transgenic chrysanthemum accelerated flowering, whereas lines transfected with a chimeric repressor ( pSRDX-CmBBX7 ) exhibited delayed flowering. Yeast single hybridization, luciferase, electrophoretic mobility shift, and chromatin immunoprecipitation assays showed that CmBBX7 directly targets CmFTL1 . In addition, we found that CmBBX7 and CmBBX8 interact to positively regulate the expression of CmFTL1 through binding to its promoter. Collectively, these results highlight CmBBX7 as a key cooperator in the BBX8–FT module to control chrysanthemum flowering. Graphical Abstract
ISSN:2730-9401
2730-9401
DOI:10.1186/s43897-023-00055-2