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DNA甲基化动态变化在塑造水稻不同根型起始的独特转录组图谱中起着关键作用。

DNA methylation dynamics play crucial roles in shaping the distinct transcriptomic profiles for different root-type initiation in rice.

作者信息

Jiang Wei, Zhou Zhou, Li Xiaoying, Zhao Yu, Zhou Shaoli

机构信息

National Key Laboratory of Crop Genetic Improvement, Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, China.

出版信息

Genome Biol. 2025 Apr 17;26(1):99. doi: 10.1186/s13059-025-03571-0.

Abstract

BACKGROUND

Monocots possess a fibrous root system comprising an embryonic root, crown roots, and lateral roots. The distinct cellular origins highlight the diversity of the initiation mechanism. To date, the distinct initiation mechanisms have been poorly studied. In this study, we conduct a comprehensive transcriptome and DNA methylome assay of these root types during their initiation.

RESULTS

Our findings indicate significant divergence in transcriptome regulation trajectories with apparent transcriptional activation in post-embryonic root initials (crown root and lateral root) contrasted by suppression in embryonic root generation. Additionally, CHH methylation is dynamically and differentially regulated across the initiation stages of the various root types, and is significantly associated with the short transposon element within the promoter regions of functional genes, which plays crucial roles in determining the genes' spatiotemporal transcription. Moreover, our work reveals that the activation of DNA glycosylase 702 (DNG702) and repression of Domains Rearranged Methyltransferase 2 (DRM2) play important roles in the erasure of CHH methylation and activation of functional genes during the processes, such as a novel identified key regulatory bZip65, thus directly impacting the initiation of post-embryonic roots in rice.

CONCLUSIONS

Our extensive analysis delineates the landscapes of spatiotemporal transcriptomes and DNA methylomes during the initiation of the three root types in rice, shedding light on the pivotal role of CHH methylation in the spatiotemporal regulation of various key genes, ensuring the successful initiation of distinct root types in rice.

摘要

背景

单子叶植物具有由胚根、冠根和侧根组成的须根系。不同的细胞起源突出了起始机制的多样性。迄今为止,对不同的起始机制研究较少。在本研究中,我们对这些根类型起始过程进行了全面的转录组和DNA甲基化组分析。

结果

我们的研究结果表明,转录组调控轨迹存在显著差异,胚后根原基(冠根和侧根)中存在明显的转录激活,而胚根生成过程中则受到抑制。此外,CHH甲基化在不同根类型的起始阶段受到动态和差异调控,并且与功能基因启动子区域内的短转座子元件显著相关,这在决定基因的时空转录中起关键作用。此外,我们的研究表明,DNA糖基化酶702(DNG702)的激活和结构域重排甲基转移酶2(DRM2)的抑制在这些过程中对CHH甲基化的消除和功能基因的激活起重要作用,例如一个新鉴定的关键调控因子bZip65,从而直接影响水稻胚后根的起始。

结论

我们的广泛分析描绘了水稻三种根类型起始过程中的时空转录组和DNA甲基化组图谱,揭示了CHH甲基化在各种关键基因时空调控中的关键作用,确保了水稻不同根类型的成功起始。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ed4/12004658/ac6d73c55ca2/13059_2025_3571_Fig1_HTML.jpg

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