Instituto de Floricultura, Centro de Investigación de Recursos Naturales, Instituto Nacional de Tecnología Agropecuaria, Hurlingham, Buenos Aires, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas, Ciudad Autónoma de Buenos Aires, Argentina.
Consejo Nacional de Investigaciones Científicas y Técnicas, Ciudad Autónoma de Buenos Aires, Argentina; Escuela de Ciencia y Tecnología, Universidad Nacional de San Martín, San Martín, Buenos Aires, Argentina.
Plant Sci. 2019 Oct;287:110195. doi: 10.1016/j.plantsci.2019.110195. Epub 2019 Jul 23.
Progression of leaf senescence depends on several families of transcription factors. In Arabidopsis, the NAC family plays crucial roles in the modulation of leaf senescence; however, the mechanisms involved in this NAC-mediated regulation have not been extensively explored in agronomic species. Petunia hybrida is an ornamental plant that is commonly found worldwide. Decreasing the rate of leaf and petal senescence in P. hybrida is essential for maintaining plant quality. In this study, we examined the NAC-mediated networks involved in regulating senescence in this species. From 41 NAC genes, the expression of which changed in Arabidopsis during leaf senescence, we identified 29 putative orthologs in P. hybrida. Analysis using quantitative real-time-PCR indicated that 24 genes in P. hybrida changed their transcript levels during natural leaf senescence. Leaf-expressed genes were subsequently assessed in petals undergoing natural and pollination-induced senescence. Expression data and phylogenetic analysis were used to generate a list of 10-15 candidate genes; 7 of these were considered key regulatory candidates in senescence because of their consistent upregulation in the three senescence processes examined. Altogether, we identified common and distinct patterns of gene expression at different stages of leaf and petal development and during progression of senescence. The results obtained in this study will contribute to the understanding of NAC-mediated regulatory networks in petunia.
叶片衰老的进程取决于几个转录因子家族。在拟南芥中,NAC 家族在叶片衰老的调控中发挥着关键作用;然而,在农业物种中,这种 NAC 介导的调节机制尚未得到广泛探索。矮牵牛是一种常见于世界各地的观赏植物。降低矮牵牛叶片和花瓣衰老的速度对于保持植物品质至关重要。在本研究中,我们研究了参与调控该物种衰老的 NAC 介导的网络。从拟南芥叶片衰老过程中表达变化的 41 个 NAC 基因中,我们在矮牵牛中鉴定出了 29 个假定的同源基因。使用定量实时 PCR 分析表明,矮牵牛中有 24 个基因在自然叶片衰老过程中改变了它们的转录水平。随后在自然衰老和授粉诱导衰老的花瓣中评估了叶表达基因。表达数据和系统发育分析用于生成 10-15 个候选基因的列表;由于它们在三个研究的衰老过程中一致上调,其中 7 个被认为是衰老的关键调节候选基因。总的来说,我们在叶片和花瓣发育的不同阶段以及衰老进程中鉴定了基因表达的共同和不同模式。本研究的结果将有助于理解矮牵牛中 NAC 介导的调节网络。