Plant Protection and Microbiology, Zhejiang Academy of Agricultural Sciences, Hangzhou, Zhejiang, China.
Institute of Horticulture, Zhejiang Academy of Agriculture Sciences, Hangzhou, Zhejiang, China.
Mol Biol Rep. 2021 Mar;48(3):2123-2132. doi: 10.1007/s11033-021-06216-0. Epub 2021 Feb 25.
Cymbidium geringii has high ornamental and economic importance. Its traits, including flower shape, size, and color, are highly sought by orchid breeders. Gaining insights into the molecular basis of C. geringi flower development would accelerate genetic improvement of other orchids. Methods and Results: Here, C. goeringii RNA was purified from normal and peloric mutant flowers, and cDNA libraries constructed for Illumina sequencing. We generated 329,156,782 clean reads, integrated them, and then assembled into 236,811 unigenes averaging 595 bp long. A total of 11,992 differentially expressed genes s, of which 6119 were upregulated and 5873 downregulated, were uncovered in peloric mutant flower buds relative to normal flower buds. Kyoto Encyclopedia of Genes and Genomes enrichment assessments posited that these differentially expressed genes are associated with "Photosynthesis", "Linoleic acid metabolism", as well as "Plant hormone signal transduction" cascades. The DEGs were designated to 12 remarkably enriched GO terms, and 16 cell wall associated GO terms. The expression level of 16 determined genes were verified using RT-qPCR. Conclusions: Our gene expression data may be used to study the regulatory mechanism of flower organ development in C. geringi.
建兰具有很高的观赏和经济价值。其花朵的形状、大小和颜色等特征深受兰花种植者的喜爱。深入了解建兰花发育的分子基础将加速其他兰花的遗传改良。方法和结果:本研究从正常和重瓣突变花朵中纯化建兰花 RNA,并构建 Illumina 测序的 cDNA 文库。我们生成了 329,156,782 条清洁reads,将它们整合,并组装成 236,811 条平均长度为 595bp 的 unigenes。与正常花蕾相比,重瓣突变花蕾中发现了 11,992 个差异表达基因,其中 6119 个上调,5873 个下调。京都基因与基因组百科全书富集评估表明,这些差异表达基因与“光合作用”、“亚油酸代谢”以及“植物激素信号转导”级联有关。差异表达基因被指定到 12 个显著富集的 GO 术语和 16 个细胞壁相关的 GO 术语。使用 RT-qPCR 验证了 16 个确定基因的表达水平。结论:我们的基因表达数据可用于研究建兰花朵器官发育的调控机制。