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Conformational Changes in Three-Dimensional Chromatin Structure in Paulownia fortunei After Phytoplasma Infection

机译:植原体侵染后泡桐三维染色质结构的构象变化

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Higher-order chromatin structures play important roles in regulating multiple biological processes such as growth and development as well as biotic and abiotic stress response. However, little is known about three-dimensional chromatin structures in Paulownia or about whole-genome chromatin conformational changes that occur in response to Paulownia witches' broom (PaWB) disease. We used high-throughput chromosome conformation capture (Hi-C) to obtain genome-wide profiles of chromatin conformation in both healthy and phytoplasma-infected Paulownia fortunei genome. The heat map results indicated that the strongest interactions between chromosomes were in the telomeres. We confirmed that the main structural characteristics of A/B compartments, topologically associated domains, and chromatin loops were prominent in the Paulownia genome and were clearly altered in phytoplasma-infected plants. By combining chromatin immunoprecipitation sequencing, Hi-C signals, and RNA sequencing data, we inferred that the chromatin structure changed and the modification levels of three histones (H3K4me3/K9ac/K36me3) increased in phytoplasma-infected P. fortunei, which was associated with changes of transcriptional activity. We concluded that for epigenetic modifications, transcriptional activity might function in combination to shape chromatin packing in healthy and phytoplasm-infected Paulownia. Finally, 11 genes (e.g., RPN6, Sec61 subunit-a) that were commonly located at specific topologically associated domain boundaries, A/B compartment switching and specific loops, and had been associated with histone marks were identified and considered as closely related to PaWB stress. Our results provide new insights into the nexus between gene regulation and chromatin conformational alterations in nonmodel plants upon phytopathogen infection and plant disease resistance.
机译:高阶染色质结构在调节多种生物过程(如生长发育以及生物和非生物胁迫反应)中发挥重要作用。然而,人们对泡桐中的三维染色质结构或响应泡桐女巫扫帚 (PaWB) 病而发生的全基因组染色质构象变化知之甚少。我们使用高通量染色体构象捕获 (Hi-C) 来获得健康和植物原体感染的泡桐基因组中染色质构象的全基因组图谱。热图结果表明,染色体间相互作用最强的是端粒。我们证实,A/B区室、拓扑相关结构域和染色质环的主要结构特征在泡桐基因组中很突出,并且在植物原体感染的植物中明显改变。通过结合染色质免疫沉淀测序、Hi-C信号和RNA测序数据,我们推断,在植物原体感染的富松中,染色质结构发生变化,3种组蛋白(H3K4me3/K9ac/K36me3)的修饰水平增加,这与转录活性的变化有关。我们得出的结论是,对于表观遗传修饰,转录活性可能共同作用,以塑造健康和植物质感染的泡桐中的染色质堆积。最后,11 个基因(例如,RPN6,Sec61亚基-a)通常位于特定的拓扑相关结构域边界,A/B区室切换和特定环,并与组蛋白标记相关,并被鉴定并被认为与PaWB应激密切相关。我们的研究结果为植物病原体感染和植物抗病性后非模式植物的基因调控和染色质构象改变之间的联系提供了新的见解。

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