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亚洲玉米螟滞育过程中 H3K9me3、H3K27me3 修饰和 DNA 甲基化的全基因组图谱。

Genome-wide profiles of H3K9me3, H3K27me3 modifications, and DNA methylation during diapause of Asian corn borer ().

机构信息

Department of Entomology, MOA Key Lab of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, Beijing 100193, China.

Department of Entomology, MOA Key Lab of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, Beijing 100193, China

出版信息

Genome Res. 2024 Jun 25;34(5):725-739. doi: 10.1101/gr.278661.123.

Abstract

Diapause represents a crucial adaptive strategy used by insects to cope with changing environmental conditions. In North China, the Asian corn borer () enters a winter larval diapause stage. Although there is growing evidence implicating epigenetic mechanisms in diapause regulation, it remains unclear whether dynamic genome-wide profiles of epigenetic modifications exist during this process. By investigating multiple histone modifications, we have discovered the essential roles of H3K9me3 and H3K27me3 during diapause of the Asian corn borer. Building upon previous findings in vertebrates highlighting the connection between DNA methylation and repressive histone methylations, we have examined changes in the genome-wide profile of H3K9me3, H3K27me3, and DNA methylation at the nondiapause, prediapause, and diapause stages. Data analysis reveals significant alterations in these three modifications during diapause. Moreover, we observe a correlation between the H3K9me3 and H3K27me3 modification sites during diapause, whereas DNA modifications show little association with either H3K9me3 or H3K27me3. Integrative analysis of epigenome and expression data unveils the relationship between these epigenetic modifications and gene expression levels at corresponding diapause stages. Furthermore, by studying the function of histone modifications on genes known to be important in diapause, especially those involved in the juvenile pathway, we discover that the juvenile hormone pathway lies downstream from H3K9me3 and H3K27me3 histone modifications. Finally, the analysis of gene loci with modified modifications unreported in diapause uncovers novel pathways potentially crucial in diapause regulation. This study provides a valuable resource for future investigations aiming to elucidate the underlying mechanisms of diapause.

摘要

滞育是昆虫应对环境变化的一种关键适应策略。在中国北方,亚洲玉米螟()进入冬季幼虫滞育阶段。尽管越来越多的证据表明表观遗传机制在滞育调控中起作用,但在这个过程中是否存在动态的全基因组表观遗传修饰谱尚不清楚。通过研究多种组蛋白修饰,我们发现 H3K9me3 和 H3K27me3 在亚洲玉米螟滞育过程中发挥着重要作用。基于先前在脊椎动物中发现的 DNA 甲基化与抑制性组蛋白甲基化之间的联系,我们检查了 H3K9me3、H3K27me3 和 DNA 甲基化在非滞育、预滞育和滞育阶段的全基因组图谱的变化。数据分析显示,这三种修饰在滞育过程中都发生了显著变化。此外,我们观察到在滞育过程中 H3K9me3 和 H3K27me3 修饰位点之间存在相关性,而 DNA 修饰与 H3K9me3 或 H3K27me3 几乎没有关联。对表观基因组和表达数据的综合分析揭示了这些表观遗传修饰与相应滞育阶段基因表达水平之间的关系。此外,通过研究已知在滞育中重要的基因的组蛋白修饰功能,特别是那些参与幼虫途径的基因,我们发现保幼激素途径位于 H3K9me3 和 H3K27me3 组蛋白修饰的下游。最后,对具有修饰修饰的基因座的分析表明,在滞育中没有报道过的修饰途径可能在滞育调控中起关键作用。这项研究为未来阐明滞育的潜在机制提供了有价值的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84e9/11216315/823495b01b51/725f01.jpg

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