花瓣
赤霉素
生物
衰老
泛素连接酶
乙烯
串扰
脱落酸
植物
细胞生物学
泛素
生物化学
发芽
基因
催化作用
物理
光学
作者
Jingyun Lu,Guifang Zhang,Chao Ma,Y.Y. LI,Chuyan Jiang,Yaru Wang,Bingjie Zhang,Rui Wang,Yuexuan Qiu,Yanxing Ma,Yangchao Jia,Cai‐Zhong Jiang,Xiaoming Sun,Nan Ma,Yunhe Jiang,Junping Gao
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2024-02-05
卷期号:36 (5): 1736-1754
被引量:2
标识
DOI:10.1093/plcell/koae035
摘要
Abstract Roses are among the most popular ornamental plants cultivated worldwide for their great economic, symbolic, and cultural importance. Nevertheless, rapid petal senescence markedly reduces rose (Rosa hybrida) flower quality and value. Petal senescence is a developmental process tightly regulated by various phytohormones. Ethylene accelerates petal senescence, while gibberellic acid (GA) delays this process. However, the molecular mechanisms underlying the crosstalk between these phytohormones in the regulation of petal senescence remain largely unclear. Here, we identified SENESCENCE-ASSOCIATED F-BOX (RhSAF), an ethylene-induced F-box protein gene encoding a recognition subunit of the SCF-type E3 ligase. We demonstrated that RhSAF promotes degradation of the GA receptor GIBBERELLIN INSENSITIVE DWARF1 (RhGID1) to accelerate petal senescence. Silencing RhSAF expression delays petal senescence, while suppressing RhGID1 expression accelerates petal senescence. RhSAF physically interacts with RhGID1s and targets them for ubiquitin/26S proteasome-mediated degradation. Accordingly, ethylene-induced RhGID1C degradation and RhDELLA3 accumulation are compromised in RhSAF-RNAi lines. Our results demonstrate that ethylene antagonizes GA activity through RhGID1 degradation mediated by the E3 ligase RhSAF. These findings enhance our understanding of the phytohormone crosstalk regulating petal senescence and provide insights for improving flower longevity.
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