Jiangsu Key Laboratory of Crop Genetics and Physiology, College of Horticulture and Plant Protection, Yangzhou University, Yangzhou 225009, P.R. China.
Sci Rep. 2017 Mar 20;7:44926. doi: 10.1038/srep44926.
Herbaceous peony (Paeonia lactiflora Pall.) is popular worldwide because of its gorgeous flower colour, and the yellow flower is the rarest. However, its mechanism of yellow formation is still unexplored from the post-translational level. In this study, the anatomy of the petal, cell sap pH and metal elements were investigated in bicoloured flower cultivar 'Jinhui' with red outer-petal and yellow inner-petal, and the yellow formation was influenced by the anatomy of petal, while not by the cell sap pH and metal elements. Subsequently, microRNAs sequencing (miRNA-seq) was used to identify small RNAs (sRNAs). A total of 4,172,810 and 3,565,152 specific unique sRNAs were obtained, 207 and 204 conserved miRNAs and 38 and 42 novel miRNAs were identified from red outer-petal and yellow inner-petal, respectively, which were confirmed by subcloning. Among these miRNAs, 163 conserved and 28 novel miRNAs were differentially expressed in two wheel of petals. And 5 differentially expressed miRNAs and their corresponding target genes related to yellow formation were screened, and their dynamic expression patterns confirmed that the yellow formation might be under the regulation of miR156e-3p-targeted squamosa promoter binding protein-like gene (SPL1). These results improve the understanding of miRNA regulation of the yellow formation in P. lactiflora.
芍药(Paeonia lactiflora Pall.)因其绚丽的花色而在全球广受欢迎,其中黄色花最为稀有。然而,其花色形成的机制尚未从翻译后水平进行探索。本研究以具有红瓣和黄瓣的双色花品种‘Jinhui’为材料,对花瓣解剖结构、细胞液 pH 值和金属元素进行了研究,结果表明花瓣解剖结构影响花色形成,而与细胞液 pH 值和金属元素无关。随后,采用小 RNA 测序(miRNA-seq)技术鉴定小 RNA(sRNA)。从红瓣和黄瓣中分别获得了 4,172,810 和 3,565,152 个特异的独特 sRNA,鉴定出 207 个和 204 个保守 miRNA,以及 38 个和 42 个新的 miRNA,通过亚克隆进行了验证。在这些 miRNA 中,有 163 个保守和 28 个新的 miRNA 在两个花瓣轮中差异表达。筛选出 5 个与花色形成相关的差异表达 miRNA 及其相应的靶基因,并对其动态表达模式进行了验证,表明花色形成可能受到 miR156e-3p 靶向花椰菜花叶病毒 35S 启动子结合蛋白样基因(SPL1)的调控。这些结果提高了对芍药花色形成中 miRNA 调控作用的理解。