Key Laboratory of Landscape Architecture, Jiangsu Province, College of Landscape Architecture, Nanjing Forestry University, Nanjing 210037, China.
Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China.
Genes (Basel). 2020 Mar 26;11(4):353. doi: 10.3390/genes11040353.
is widely grown for the purpose of urban greening and the pleasant aroma emitted from its flowers. The floral scent is determined by several monoterpenoid volatiles, such as linalool and its oxides, which are a few of the most common volatiles and the main components of the essential oils in most sweet osmanthus cultivars. In addition, the relative contents of - and -linalool oxide (furan) may affect the aromas and quality of the essential oils. MYB proteins represent the largest family of transcription factors in plants and participate in regulating secondary metabolites. Several -elements, especially AC-rich regions, are known to be bound by 2R-MYBs and could be found in the promoter of the enzyme genes in the terpenoid metabolic pathway. However, there has to date been no investigation into the 2R-MYB family genes involved in regulating terpenoid biosynthesis in . Here, 243 non-redundant 2R-MYB proteins were grouped into 33 clusters based on the phylogeny and exon-intron distribution. These genes were unevenly distributed on 23 chromosomes. Ka/Ks analysis showed that the major mode of 2R-MYB gene evolution was purifying selection. Expression analysis indicated that 2R-MYB genes in exhibited varied expression patterns. A total of 35 OfMYBs representing the highest per kilobase per million mapped reads in the flower were selected for quantitative real-time PCR analysis. The correlation analysis between the expression level and the contents of fragrant compounds at different flowering stages suggested that / exhibited remarkably positive correlation with the accumulation of -linalool oxides. ///// showed significantly negative correlations with one or more linalool oxides. Characterization of these proteins revealed that OfMYB19 and OfMYB137 were localized in the nuclei, but did not show transcriptional activation in the yeast system, which suggested that they may be bound to other transcription factors to exert regulatory functions. These findings provide useful information for further functional investigation of the 2R-MYBs and offer a foundation for clarifying the 2R-MYB transcription factors involved in the molecular mechanism of the regulation of monoterpenoid biosynthesis in .
它被广泛种植,用于城市绿化,其花朵散发宜人香气。花香由几种单萜类挥发物决定,如芳樟醇及其氧化物,它们是最常见的挥发物之一,也是大多数甜桂花品种精油的主要成分。此外,-和 -氧化芳樟醇(呋喃)的相对含量可能会影响精油的香气和质量。MYB 蛋白是植物中最大的转录因子家族,参与调节次生代谢物。已知一些-元件,特别是富含 AC 的区域,与 2R-MYB 结合,并可在萜类代谢途径中酶基因的启动子中找到。然而,迄今为止,尚未研究参与调节 的萜类生物合成的 2R-MYB 家族基因。在这里,根据系统发育和外显子-内含子分布,将 243 个非冗余 2R-MYB 蛋白分为 33 个簇。这些基因不均匀分布在 23 条染色体上。Ka/Ks 分析表明,2R-MYB 基因的主要进化模式是纯化选择。表达分析表明, 中的 2R-MYB 基因表现出不同的表达模式。总共选择了 35 个在花中代表每百万映射读数每千碱基最高表达的 OfMYBs 进行定量实时 PCR 分析。不同开花阶段表达水平与香气化合物含量的相关分析表明, /与 -氧化芳樟醇的积累呈显著正相关。 /////与一种或多种芳樟醇氧化物呈显著负相关。这些蛋白质的表征表明,OfMYB19 和 OfMYB137 定位于细胞核中,但在酵母系统中没有表现出转录激活,这表明它们可能与其他转录因子结合发挥调节功能。这些发现为进一步研究 2R-MYBs 提供了有用的信息,并为阐明参与单萜生物合成调控的 2R-MYB 转录因子提供了基础。