三角褐指藻
生物
染色质
组蛋白
表观遗传学
表观遗传学
组蛋白密码
组蛋白修饰酶
染色质重塑
遗传学
核小体
计算生物学
进化生物学
细胞生物学
基因
DNA甲基化
基因表达
硅藻
生态学
作者
Alaguraj Veluchamy,Achal Rastogi,Xin Lin,Bérangère Lombard,Omer Murik,Y. Thomas,Florent Dingli,Máximo Rivarola,Sandra Ott,Xinyue Liu,Yezhou Sun,Pablo D. Rabinowicz,James McCarthy,Andrew E. Allen,Damarys Loew,Chris Bowler,Leı̈la Tirichine
出处
期刊:GenomeBiology.com (London. Print)
[Springer Science+Business Media]
日期:2015-05-19
卷期号:16 (1)
被引量:100
标识
DOI:10.1186/s13059-015-0671-8
摘要
Nucleosomes are the building blocks of chromatin where gene regulation takes place. Chromatin landscapes have been profiled for several species, providing insights into the fundamental mechanisms of chromatin-mediated transcriptional regulation of gene expression. However, knowledge is missing for several major and deep-branching eukaryotic groups, such as the Stramenopiles, which include the diatoms. Diatoms are highly diverse and ubiquitous species of phytoplankton that play a key role in global biogeochemical cycles. Dissecting chromatin-mediated regulation of genes in diatoms will help understand the ecological success of these organisms in contemporary oceans.Here, we use high resolution mass spectrometry to identify a full repertoire of post-translational modifications on histones of the marine diatom Phaeodactylum tricornutum, including eight novel modifications. We map five histone marks coupled with expression data and show that P. tricornutum displays both unique and broadly conserved chromatin features, reflecting the chimeric nature of its genome. Combinatorial analysis of histone marks and DNA methylation demonstrates the presence of an epigenetic code defining activating or repressive chromatin states. We further profile three specific histone marks under conditions of nitrate depletion and show that the histone code is dynamic and targets specific sets of genes.This study is the first genome-wide characterization of the histone code from a stramenopile and a marine phytoplankton. The work represents an important initial step for understanding the evolutionary history of chromatin and how epigenetic modifications affect gene expression in response to environmental cues in marine environments.
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