Wu Xiaomei, Ling Wu, Pan Yusha, Yang Zhengmin, Ma Jie, Yang Yujie, Xiang Wei, Zhou Li, Sun Mengshan, Chen Jiren, Chen Haixia, Zheng Sixiang, Zeng Jianguo, Li Yufan
Hunan Mid-subtropical Quality Plant Breeding and Utilization Engineering Technology Research Center, College of Horticulture, Hunan Agriculture University, Changsha, 410128, China.
Hunan Mid-subtropical Quality Plant Breeding and Utilization Engineering Technology Research Center, College of Horticulture, Hunan Agriculture University, Changsha, 410128, China; Agricultural Technology Extension Center of Jiangxi Province, Nanchang, 330000, China.
Plant Physiol Biochem. 2024 Jan;206:108287. doi: 10.1016/j.plaphy.2023.108287. Epub 2023 Dec 22.
Lilium is a commercially important genus of bulbous flowers, investigating the flowering molecular mechanisms is important for flowering regulation of lily. MADS-box SHORT VEGETATIVE PHASE (SVP) orthologs are involved in the flowering transition and floral organ differentiation in many plants. In this study, we identified an SVP ortholog from L. × formolongi (LfSVP), which was closely related to Arabidopsis SVP according to phylogenetic analysis. Tissue-specific expression patterns indicated that LfSVP expression levels peaked in the leaves and showed low expression levels in flowering tepals. Stage-dependent expression patterns of LfSVP showed high transcription level in the flowering induction stage under different photoperiods and exhibited transcription peak in the floral budding development stage under long days. Overexpressed LfSVP led to delayed flowering and floral organ defects in Arabidopsis independent of photoperiod. Tobacco rattle virus -induced gene silencing of LfSVP caused a strongly earlier flowering time and floral organ defects of L. × formolongi. Moreover, LfSVP can interact with L. × formolongi APETALA1 (AP1) in both yeast and tobacco cells, and the two may interact to regulate floral organ differentiation. In conclusion, LfSVP is a flowering repressor and may be involved in the regulation of floral organ differentiation. This study will be helpful for the molecular breeding of short-life-period and rich floral patterns lily varieties.
百合是一种具有重要商业价值的球根花卉属,研究其开花分子机制对百合的花期调控具有重要意义。MADS盒基因SHORT VEGETATIVE PHASE(SVP)直系同源基因参与了许多植物的开花转变和花器官分化。在本研究中,我们从麝香百合(LfSVP)中鉴定出一个SVP直系同源基因,根据系统发育分析,它与拟南芥SVP密切相关。组织特异性表达模式表明,LfSVP的表达水平在叶片中达到峰值,而在开花的花被片中表达水平较低。LfSVP的阶段依赖性表达模式显示,在不同光周期下的开花诱导阶段转录水平较高,在长日照下的花芽发育阶段出现转录峰值。过表达LfSVP导致拟南芥开花延迟和花器官缺陷,且不受光周期影响。烟草脆裂病毒诱导的LfSVP基因沉默导致麝香百合开花时间大幅提前和花器官缺陷。此外,LfSVP在酵母和烟草细胞中均能与麝香百合APETALA1(AP1)相互作用,二者可能相互作用来调节花器官分化。总之,LfSVP是一种开花抑制因子,可能参与花器官分化的调控。本研究将有助于短命且花型丰富的百合品种的分子育种。