Department of Agricultural, Food and Nutritional Science, University of Alberta, Edmonton, AB, T6G 2P5, Canada.
Genome. 2021 May;64(5):547-566. doi: 10.1139/gen-2020-0062. Epub 2020 Nov 10.
Clubroot resistance in spring canola has been introgressed from different Brassica sources; however, molecular mechanism underlying this resistance, especially the involvement of long non-coding RNAs (lncRNAs), is yet to be understood. We identified 464 differentially expressed (DE) lncRNAs from the roots of clubroot-resistant canola, carrying resistance on chromosome BnaA03, and susceptible canola lines challenged with pathotype 3. Pathway enrichment analysis showed that most of the target genes regulated by these DE lncRNAs belonged to plant-pathogen interaction and hormone signaling, as well as primary and secondary metabolic pathways. Comparative analysis of these lncRNAs with 530 previously reported DE lncRNAs, identified using resistance located on BnaA08, detected 12 lncRNAs that showed a similar trend of upregulation in both types of resistant lines; these lncRNAs probably play a fundamental role in clubroot resistance. We identified SSR markers within 196 DE lncRNAs. Genotyping of two DH populations carrying resistance on BnaA03 identified a marker capable of detecting the resistance in 98% of the DH lines. To our knowledge, this is the first report of the identification of SSRs within lncRNAs responsive to infection, demonstrating the potential use of lncRNAs in the breeding of Brassica crops.
春油菜根肿病抗性由不同的芸薹属种源渐渗而来;然而,这种抗性的分子机制,特别是长非编码 RNA(lncRNA)的参与,仍有待了解。我们从携带 BnaA03 染色体抗性的根肿病抗性油菜和受 3 号生理小种挑战的易感油菜品系中鉴定出 464 个差异表达的(DE)lncRNA。途径富集分析表明,这些 DE lncRNA 调控的大多数靶基因属于植物-病原体互作和激素信号转导以及初级和次级代谢途径。将这些 lncRNA 与之前使用位于 BnaA08 的抗性鉴定的 530 个报告 DE lncRNA 进行比较分析,检测到 12 个在两种抗性品系中均表现出上调相似趋势的 lncRNA;这些 lncRNA 可能在根肿病抗性中发挥重要作用。我们在 196 个 DE lncRNA 中鉴定了 SSR 标记。携带 BnaA03 抗性的两个 DH 群体的基因型分析鉴定出一个标记,能够在 98%的 DH 系中检测到抗性。据我们所知,这是第一个鉴定到对 感染有响应的 lncRNA 内 SSR 的报告,表明 lncRNA 在芸薹属作物的育种中具有潜在的应用价值。