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利用 Illumina 和 PacBio Sequel 测序对观赏海棠(Malus spp.)半同胞家系花色变异进行转录组分析。

Transcriptomic analysis of flower color variation in the ornamental crabapple (Malus spp.) half-sib family through Illumina and PacBio Sequel sequencing.

机构信息

Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, 159 Longpan Road, Nanjing, 210037, China.

出版信息

Plant Physiol Biochem. 2020 Apr;149:27-35. doi: 10.1016/j.plaphy.2020.01.033. Epub 2020 Feb 1.

Abstract

Ornamental crabapple is an important woody ornamental plant with flower colors ranging from white to pink to red, and the degree of redness is directly related to the anthocyanin content. To explore the molecular mechanism leading to the variation in flower color in ornamental crabapple, transcriptome sequencing using the Illumina and PacBio Sequel platforms revealed the difference in gene expression between the petals of plants with white and red flowers in the half-sib family. In total, the analysis identified 603 differentially expressed genes (DEGs), including 449 upregulated and 154 downregulated genes. GO and KEGG enrichment analyses of the DEGs showed that the oxidation-reduction process and catalytic activity were more active in red petals, and most of the DEGs were involved in secondary metabolite synthesis and plant hormone signaling. Among the 603 DEGs, 10 were enriched as structural genes. Transcription factors related to anthocyanin synthesis and five genes related to anthocyanin transport and degradation were highly expressed in red petals. In addition, this study found that five AUX gene signals were differentially expressed in the two petal types. The discovery of these DEGs indicates that plant endogenous hormones also exert a regulatory effect on flower color.

摘要

观赏海棠是一种重要的木本观赏植物,花色从白色到粉色再到红色,红色的程度与花色苷含量直接相关。为了探索观赏海棠花色变化的分子机制,利用 Illumina 和 PacBio Sequel 平台进行转录组测序,揭示了半同胞家系中白花和红花植株花瓣之间基因表达的差异。总共鉴定出 603 个差异表达基因(DEGs),包括 449 个上调基因和 154 个下调基因。对 DEGs 的 GO 和 KEGG 富集分析表明,红花中氧化还原过程和催化活性更为活跃,大多数 DEGs 参与次生代谢物合成和植物激素信号转导。在 603 个 DEGs 中,有 10 个被富集为结构基因。与花青素合成相关的转录因子和与花青素运输和降解相关的 5 个基因在红花中高度表达。此外,本研究还发现,两种花瓣类型中 5 个 AUX 基因信号存在差异表达。这些 DEGs 的发现表明,植物内源激素也对花色有调节作用。

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