Institute of Paulownia, Henan Agricultural University, Zhengzhou 450002, China.
College of Forestry, Henan Agricultural University, Zhengzhou 450002, China.
Genes (Basel). 2023 Mar 11;14(3):696. doi: 10.3390/genes14030696.
Paulownia witches' broom (PaWB), caused by phytoplasmas, is the most devastating infectious disease of Paulownia. Although a few MADS-box transcription factors have been reported to be involved in the formation of PaWB, there has been little investigation into all of the MADS-box gene family in Paulownia. The objective of this study is to identify the MADS-box gene family in on a genome-wide scale and explore their response to PaWB infection. Bioinformatics software were used for identification, characterization, subcellular localization, phylogenetic analysis, the prediction of conserved motifs, gene structures, cis-elements, and protein-protein interaction network construction. The tissue expression profiling of PfMADS-box genes was analyzed by quantitative real-time polymerase chain reaction (qRT-PCR). Transcriptome data and the protein interaction network prediction were combined to screen the genes associated with PaWB formation. We identified 89 MADS-box genes in the genome and categorized them into 14 subfamilies. The comprehensive analysis showed that segment duplication events had significant effects on the evolution of the PfMADS-box gene family; the motif distribution of proteins in the same subfamily are similar; development-related, phytohormone-responsive, and stress-related cis-elements were enriched in the promoter regions. The tissue expression pattern of PfMADS-box genes suggested that they underwent subfunctional differentiation. Three genes, , , and , might be related to the occurrence of PaWB. These results will provide a valuable resource to explore the potential functions of PfMADS-box genes and lay a solid foundation for understanding the roles of PfMADS-box genes in paulownia-phytoplasma interactions.
泡桐丛枝病(PaWB)由植原体引起,是泡桐最具破坏性的传染性疾病。尽管已有报道称少数 MADS 框转录因子参与了 PaWB 的形成,但对泡桐全 MADS 框基因家族的研究甚少。本研究旨在从全基因组水平鉴定泡桐 MADS 框基因家族,并探讨其对 PaWB 感染的响应。利用生物信息学软件对 MADS 框基因进行鉴定、特征分析、亚细胞定位、系统进化分析、保守基序预测、基因结构、顺式作用元件和蛋白质-蛋白质相互作用网络构建。通过定量实时聚合酶链反应(qRT-PCR)分析 PfMADS 框基因的组织表达谱。结合转录组数据和蛋白质相互作用网络预测,筛选与 PaWB 形成相关的基因。我们在 基因组中鉴定出 89 个 MADS 框基因,并将其分为 14 个亚家族。综合分析表明,片段重复事件对 PfMADS 框基因家族的进化有显著影响;同一亚家族蛋白的基序分布相似;发育相关、植物激素响应和应激相关顺式元件在启动子区域富集。PfMADS 框基因的组织表达模式表明它们经历了亚功能分化。三个基因 、 、 和 可能与 PaWB 的发生有关。这些结果将为探索 PfMADS 框基因的潜在功能提供有价值的资源,并为理解 PfMADS 框基因在泡桐-植原体互作中的作用奠定基础。