State Key Laboratory of Crop Genetics and Germplasm Enhancement, Key Laboratory of Landscaping, Ministry of Agriculture and Rural Affairs, College of Horticulture, Nanjing Agricultural University, Nanjing, 210095, China.
Henan Key Laboratory of Tea Comprehensive utilization in South Henan, Xinyang Agriculture and Forestry University, Xinyang, 464000, China.
BMC Plant Biol. 2022 Nov 5;22(1):515. doi: 10.1186/s12870-022-03889-y.
Chrysanthemum seticuspe has emerged as a model plant species of cultivated chrysanthemums, especially for studies involving diploid and self-compatible pure lines (Gojo-0). Its genome was sequenced and assembled into chromosomes. However, the genome annotation of C. seticuspe still needs to be improved to elucidate the complex regulatory networks in this species.
In addition to the 74,259 mRNAs annotated in the C. seticuspe genome, we identified 18,265 novel mRNAs, 51,425 novel lncRNAs, 501 novel miRNAs and 22,065 novel siRNAs. Two C-class genes and YABBY family genes were highly expressed in disc florets, while B-class genes were highly expressed in ray florets. A WGCNA was performed to identify the hub lncRNAs and mRNAs in ray floret- and disc floret-specific modules, and CDM19, BBX22, HTH, HSP70 and several lncRNAs were identified. ceRNA and lncNAT networks related to flower development were also constructed, and we found a latent functional lncNAT-mRNA combination, LXLOC_026470 and MIF2.
The annotations of mRNAs, lncRNAs and small RNAs in the C. seticuspe genome have been improved. The expression profiles of flower development-related genes, ceRNA networks and lncNAT networks were identified, laying a foundation for elucidating the regulatory mechanisms underlying disc floret and ray floret formation.
野菊已成为栽培菊花的模式植物物种,特别是对于涉及二倍体和自交亲和纯系(Gojo-0)的研究。其基因组已被测序并组装成染色体。然而,野菊的基因组注释仍需改进,以阐明该物种中复杂的调控网络。
除了在野菊基因组中注释的 74259 个 mRNAs 外,我们还鉴定了 18265 个新的 mRNAs、51425 个新的 lncRNAs、501 个新的 miRNAs 和 22065 个新的 siRNAs。两个 C 类基因和 YABBY 家族基因在盘花中高度表达,而 B 类基因在舌花中高度表达。进行 WGCNA 以鉴定舌状花和盘状花特异性模块中的关键 lncRNAs 和 mRNAs,并鉴定了 CDM19、BBX22、HTH、HSP70 和几个 lncRNAs。还构建了与花发育相关的 ceRNA 和 lncNAT 网络,我们发现了一个潜在的功能 lncNAT-mRNA 组合,LXLOC_026470 和 MIF2。
野菊基因组中 mRNAs、lncRNAs 和小 RNA 的注释得到了改进。鉴定了与花发育相关基因、ceRNA 网络和 lncNAT 网络的表达谱,为阐明盘状花和舌状花形成的调控机制奠定了基础。