Transcriptomic and Epigenomic Assessment Reveals Epigenetic Regulation of WRKY Genes in Response to Magnaporthe oryzae Infection in Rice.

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Current Genomics Pub Date : 2022-07-05 DOI:10.2174/1389202923666220510195910
Yan Xu, Yuanxin Miao, Xuejun Tian, Qihai Wang, Yongfeng Hu, Qiong Luo
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引用次数: 2

Abstract

Background: Histone acetylations acting as active hallmarks for gene transcription is involved in regulating numerous developmental and stress-responsive gene expression. Methods: The data from chromatin immunoprecipitation sequencing (ChIP-seq) was performed by using histone H3 lysine 9 acetylation (H3K9ac) antibody, and RNA sequencing (RNA-seq) utilizing rice seedlings inoculated by Magnaporthe oryzae (M. oryzae) were integrated. Results: RNA-seq data revealed that 422, 460 and 466 genes were up-regulated at 12h, 24h and 48h after inoculation. ChIP-seq data showed that 60%-80% of blast up-regulated genes at different time points were marked with H3K9ac, which was prone to be enriched in both TSS and gene body region. However, the H3K9ac level at a rather small proportion of the up-regulated genes was elevated after M. oryzae inoculation. We found that seven WRKY genes induced by rice blast fungus harbor H3K9ac. For different WRKY genes, blast fungus induction led to the increase of H3K9ac in distinct regions, including promoter, TSS or gene body, indicating that histone acetylation may play diverse roles in the activation of defense-related genes. By searching DNA-binding motifs of transcription factors in the promoter of genes with increased H3K9ac after M. oryzae infection, we found that ERF family protein-binding motifs were enriched with high -log P-value (>20), including ERF1, DEAR3, DREB2C, RAP2.6, RRTF1_3ARY, all of which contain GCC-box (GCCGCC). Conclusion: In this study, we revealed that the vast majority of genes induced by fungus M. oryzae were marked with H3K9ac preferring both TSS and gene body regions. However, H3K9ac enrichment was increased, responding to M. oryzae inoculation only at a low proportion of these genes, including several WRKY genes. Besides, for different genes, the increment of H3K9ac occurred in different regions. Finally, ERF proteins that have been proved to bind GCC-box might be one of the potential transcription factors for recruiting histone acetyltransferases to deposit histone acetylation at defense-related genes in rice.

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转录组学和表观基因组学分析揭示WRKY基因在水稻稻瘟病菌侵染中的表观遗传调控作用。
背景:组蛋白乙酰化作为基因转录的活性标志,参与调节许多发育和应激反应性基因的表达。方法:利用组蛋白H3赖氨酸9乙酰化(H3K9ac)抗体对染色质免疫沉淀测序(ChIP-seq)数据进行测序,并利用接种水稻Magnaporthe oryzae (M. oryzae)的水稻幼苗进行RNA测序(RNA-seq)整合。结果:RNA-seq数据显示,422、460和466个基因在接种后12h、24h和48h上调。ChIP-seq数据显示,在不同时间点的blast上调基因中,60%-80%标记有H3K9ac,且H3K9ac在TSS和基因体区域均容易富集。然而,接种m.o ryzae后,一小部分上调基因的H3K9ac水平升高。稻瘟病菌H3K9ac诱导的WRKY基因有7个。对于不同的WRKY基因,blast fungus induction导致不同区域H3K9ac的升高,包括启动子、TSS或基因体,说明组蛋白乙酰化可能在防御相关基因的激活中发挥了不同的作用。通过搜索m.o ryzae感染后H3K9ac升高基因启动子转录因子的dna结合基序,我们发现ERF家族蛋白结合基序富集高对数p值(>20),包括ERF1、DEAR3、DREB2C、RAP2.6、RRTF1_3ARY,它们都含有GCC-box (GCCGCC)。结论:在本研究中,我们发现绝大多数真菌m.o ryzae诱导的基因都标记有H3K9ac,它们既倾向于TSS区,也倾向于基因体区。然而,H3K9ac的富集增加,仅对M. oryzae接种的这些基因中的一小部分有反应,包括几个WRKY基因。此外,对于不同的基因,H3K9ac的增加发生在不同的区域。最后,ERF蛋白已被证实与GCC-box结合,可能是水稻防御相关基因中募集组蛋白乙酰转移酶沉积组蛋白乙酰化的潜在转录因子之一。
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来源期刊
Current Genomics
Current Genomics 生物-生化与分子生物学
CiteScore
5.20
自引率
0.00%
发文量
29
审稿时长
>0 weeks
期刊介绍: Current Genomics is a peer-reviewed journal that provides essential reading about the latest and most important developments in genome science and related fields of research. Systems biology, systems modeling, machine learning, network inference, bioinformatics, computational biology, epigenetics, single cell genomics, extracellular vesicles, quantitative biology, and synthetic biology for the study of evolution, development, maintenance, aging and that of human health, human diseases, clinical genomics and precision medicine are topics of particular interest. The journal covers plant genomics. The journal will not consider articles dealing with breeding and livestock. Current Genomics publishes three types of articles including: i) Research papers from internationally-recognized experts reporting on new and original data generated at the genome scale level. Position papers dealing with new or challenging methodological approaches, whether experimental or mathematical, are greatly welcome in this section. ii) Authoritative and comprehensive full-length or mini reviews from widely recognized experts, covering the latest developments in genome science and related fields of research such as systems biology, statistics and machine learning, quantitative biology, and precision medicine. Proposals for mini-hot topics (2-3 review papers) and full hot topics (6-8 review papers) guest edited by internationally-recognized experts are welcome in this section. Hot topic proposals should not contain original data and they should contain articles originating from at least 2 different countries. iii) Opinion papers from internationally recognized experts addressing contemporary questions and issues in the field of genome science and systems biology and basic and clinical research practices.
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