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热带珊瑚呈现出一种不寻常的染色质结构,并且在白化时表现出组蛋白H3剪切可塑性。

The tropical coral displays an unusual chromatin structure and shows histone H3 clipping plasticity upon bleaching.

作者信息

Roquis David, Cosseau Céline, Brener Raffalli Kelly, Romans Pascal, Masanet Patrick, Mitta Guillaume, Grunau Christoph, Vidal-Dupiol Jeremie

机构信息

Agroscope, Nyon, 1260, Switzerland.

IHPE, Univ. Montpellier, CNRS, Ifremer, Univ. Perpignan Via Domitia, Montpellier, France.

出版信息

Wellcome Open Res. 2022 Jan 25;6:195. doi: 10.12688/wellcomeopenres.17058.2. eCollection 2021.

Abstract

is a hermatypic coral with strong ecological importance. Anthropogenic disturbances and global warming are major threats that can induce coral bleaching, the disruption of the mutualistic symbiosis between the coral host and its endosymbiotic algae. Previous works have shown that somaclonal colonies display different levels of survival depending on the environmental conditions they previously faced. Epigenetic mechanisms are good candidates to explain this phenomenon. However, almost no work had been published on the epigenome, especially on histone modifications. In this study, we aim at providing the first insight into chromatin structure of this species. We aligned the amino acid sequence of core histones with histone sequences from various phyla. We developed a centri-filtration on sucrose gradient to separate chromatin from the host and the symbiont. The presence of histone H3 protein and specific histone modifications were then detected by western blot performed on histone extraction done from bleached and healthy corals. Finally, micrococcal nuclease (MNase) digestions were undertaken to study nucleosomal organization. The centri-filtration enabled coral chromatin isolation with less than 2% of contamination by endosymbiont material. Histone sequences alignments with other species show that displays on average ~90% of sequence similarities with mice and ~96% with other corals. H3 detection by western blot showed that H3 is clipped in healthy corals while it appeared to be intact in bleached corals. MNase treatment failed to provide the usual mononucleosomal digestion, a feature shared with some cnidarian, but not all; suggesting an unusual chromatin structure. These results provide a first insight into the chromatin, nucleosome and histone structure of . The unusual patterns highlighted in this study and partly shared with other cnidarian will need to be further studied to better understand its role in corals.

摘要

是一种具有重要生态意义的造礁珊瑚。人为干扰和全球变暖是导致珊瑚白化的主要威胁,珊瑚白化会破坏珊瑚宿主与其内共生藻类之间的互利共生关系。先前的研究表明,体细胞克隆群体的存活水平因它们之前所面临的环境条件而异。表观遗传机制很可能是解释这一现象的原因。然而,几乎没有关于表观基因组的研究发表,尤其是关于组蛋白修饰的研究。在本研究中,我们旨在首次深入了解该物种的染色质结构。我们将核心组蛋白的氨基酸序列与来自不同门类的组蛋白序列进行比对。我们开发了一种蔗糖梯度离心过滤法,以从宿主和共生体中分离染色质。然后,通过对漂白珊瑚和健康珊瑚提取的组蛋白进行蛋白质免疫印迹法,检测组蛋白H3的存在和特定的组蛋白修饰。最后,进行微球菌核酸酶(MNase)消化以研究核小体组织。离心过滤能够分离出珊瑚染色质,其受内共生体物质的污染不到2%。与其他物种的组蛋白序列比对显示,与小鼠的序列相似度平均约为90%,与其他珊瑚的序列相似度约为96%。蛋白质免疫印迹法检测H3表明,在健康珊瑚中H3被剪切,而在漂白珊瑚中它似乎是完整的。MNase处理未能产生常见的单核小体消化,这是一些刺胞动物共有的特征,但并非所有刺胞动物都有;这表明染色质结构异常。这些结果首次深入了解了该物种的染色质、核小体和组蛋白结构。本研究中突出显示的异常模式以及部分与其他刺胞动物共有的模式,需要进一步研究以更好地理解其在珊瑚中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c79/8889081/e99034502c04/wellcomeopenres-6-19483-g0000.jpg

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