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海洋模式硅藻中H3K36me3和H3K27Ac的全染色体分布及特征分析

Chromosome-Wide Distribution and Characterization of H3K36me3 and H3K27Ac in the Marine Model Diatom .

作者信息

Wu Yue, Tirichine Leila

机构信息

Nantes Université, CNRS, US2B, UMR 6286, F-44000 Nantes, France.

出版信息

Plants (Basel). 2023 Aug 2;12(15):2852. doi: 10.3390/plants12152852.

Abstract

Histone methylation and acetylation play a crucial role in response to developmental cues and environmental changes. Previously, we employed mass spectrometry to identify histone modifications such as H3K27ac and H3K36me3 in the model diatom , which have been shown to be important for transcriptional activation in animal and plant species. To further investigate their evolutionary implications, we utilized chromatin immunoprecipitation followed by deep sequencing (ChIP-Seq) and explored their genome-wide distribution in . Our study aimed to determine their role in transcriptional regulation of genes and transposable elements (TEs) and their co-occurrence with other histone marks. Our results revealed that H3K27ac and H3K36me3 were predominantly localized in promoters and genic regions indicating a high conservation pattern with studies of the same marks in plants and animals. Furthermore, we report the diversity of genes encoding H3 lysine 36 (H3K36) trimethylation-specific methyltransferase in microalgae leveraging diverse sequencing resources including the Marine Microbial Eukaryote Transcriptome Sequencing Project database (MMETSP). Our study expands the repertoire of epigenetic marks in a model microalga and provides valuable insights into the evolutionary context of epigenetic-mediated gene regulation. These findings shed light on the intricate interplay between histone modifications and gene expression in microalgae, contributing to our understanding of the broader epigenetic landscape in eukaryotic organisms.

摘要

组蛋白甲基化和乙酰化在响应发育线索和环境变化中起着关键作用。此前,我们利用质谱法在模式硅藻中鉴定了诸如H3K27ac和H3K36me3等组蛋白修饰,这些修饰已被证明在动植物物种的转录激活中很重要。为了进一步研究它们的进化意义,我们采用了染色质免疫沉淀结合深度测序(ChIP-Seq)技术,并探究了它们在[具体物种]全基因组中的分布。我们的研究旨在确定它们在基因和转座元件(TEs)转录调控中的作用以及它们与其他组蛋白标记的共现情况。我们的结果表明,H3K27ac和H3K36me3主要定位于启动子和基因区域,这表明与在植物和动物中对相同标记的研究具有高度保守模式。此外,我们利用包括海洋微生物真核生物转录组测序项目数据库(MMETSP)在内的多种测序资源,报道了微藻中编码H3赖氨酸36(H3K36)三甲基化特异性甲基转移酶的基因多样性。我们的研究扩展了模式微藻中表观遗传标记的种类,并为表观遗传介导的基因调控的进化背景提供了有价值的见解。这些发现揭示了微藻中组蛋白修饰与基因表达之间的复杂相互作用,有助于我们理解真核生物中更广泛的表观遗传格局。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d1b/10421102/da834321a20d/plants-12-02852-g001.jpg

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