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Article|10 Apr 2026|OPEN
Molecular mechanism of abscisic acid regulating bud-break through the NnTIFY10A/B-NnABI5 module in lotus
Huiyan Jiang1 , Fengjun Liu2 , Xiaojing Liu3 , Ping Zhou1 , Guangyang Liu4 , Qijiang Jin1 , Yanjie Wang1 and Yingchun Xu,1,5 ,
1Key Laboratory of Landscape Agriculture, Ministry of Agriculture and Rural Affairs, Key Laboratory of Flower Biology and Germplasm Development, Ministry of Agriculture and Rural Affairs, Key Laboratory of Biology of Ornamental Plants in East China, National Forestry and Grassland Administration, College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China
2Suzhou Academy of Agricultural Sciences, Suzhou 215000, China
3Institute of Botany, Key Laboratory for Conservation and Utilization of Plant Resources, Jiangsu Province and Chinese Academy of Sciences, Jiangsu Nanjing 210014, China
4Xuzhou Academy of Agricultural Sciences, Xuzhou 221000, China
5Sanya Research Institute of Nanjing Agricultural University, Building 9, Wutong Industrial Park, Zhenzhou Road, Yazhou District, Sanya 572000, China
*Corresponding author. E-mail: xyc@njau.edu.cn

Horticulture Research 13,
Article number: uhag125 (2026)
doi: https://doi.org/10.1093/hr/uhag125
Views: 105

Received: 11 Sep 2025
Accepted: 23 Mar 2026
Published online: 10 Apr 2026

Abstract

The apical bud-break is an important stage in the regulation of lotus (Nelumbo nucifera Gaertn.) flowering. Phytohormones play a key role in the development of plant buds, but the molecular mechanisms underlying the crosstalk between different phytohormone signals, especially abscisic acid (ABA) and jasmonic acid (JA), in lotus bud-break remain unclear. In this study, we found that the exogenous application of ABA inhibited the lotus apical bud-break. In addition, the expression of the gene encoding ABSCISIC ACID INSENSITIVE 5 (NnABI5), a crucial regulator of ABA signaling, was gradually downregulated during lotus apical bud-break. The transient overexpression of NnABI5 in lotus and heterologous expression in Arabidopsis thaliana (L.) Heynh. demonstrated that NnABI5 negatively regulates apical bud-break and seed germination. NnABI5 interacted with the JA pathway inhibitors NnTIF[F/Y] XG 10A/B (NnTIFY10A/B), reducing the binding ability of NnABI5 to response genes EARLY METHIONINE-LABELED 1 (NnEM1) and NnEM6. In contrast, NnTIFY10A/B positively regulates apical bud break and seed germination. Notably, exogenous application of the JA biosynthesis inhibitor DIECA alleviated the inhibitory effect of ABA. In vitro protein degradation assays revealed that ABA could accelerate the degradation of NnTIFY10A/B. In summary, our data reveal the crosstalk of the JA and ABA signaling pathways in lotus apical bud-break, laying a theoretical foundation for understanding the regulation of flowering in this species.