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用于分析工业微藻微拟球藻属中组蛋白修饰的染色质免疫沉淀优化方法

Optimized methods of chromatin immunoprecipitation for profiling histone modifications in industrial microalgae Nannochloropsis spp.

作者信息

Wei Li, Xu Jian

机构信息

Single-Cell Center, CAS Key Laboratory of Biofuels and Shandong Key Laboratory of Energy Genetics, Qingdao Institute of BioEnergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, Shandong, 266101, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

J Phycol. 2018 Jun;54(3):358-367. doi: 10.1111/jpy.12623. Epub 2018 Mar 13.

Abstract

Epigenetic factors such as histone modifications play integral roles in plant development and stress response, yet their implications in algae remain poorly understood. In the industrial oleaginous microalgae Nannochloropsis spp., the lack of an efficient methodology for chromatin immunoprecipitation (ChIP), which determines the specific genomic location of various histone modifications, has hindered probing the epigenetic basis of their photosynthetic carbon conversion and storage as oil. Here, a detailed ChIP protocol was developed for Nannochloropsis oceanica, which represents a reliable approach for the analysis of histone modifications, chromatin state, and transcription factor-binding sites at the epigenetic level. Using ChIP-qPCR, genes related to photosynthetic carbon fixation in this microalga were systematically assessed. Furthermore, a ChIP-Seq protocol was established and optimized, which generated a genome-wide profile of histone modification events, using histone mark H3K9Ac as an example. These results are the first step for appreciation of the chromatin landscape in industrial oleaginous microalgae and for epigenetics-based microalgal feedstock development.

摘要

表观遗传因素,如组蛋白修饰,在植物发育和应激反应中发挥着不可或缺的作用,然而它们在藻类中的作用仍知之甚少。在工业产油微藻微拟球藻属中,缺乏一种有效的染色质免疫沉淀(ChIP)方法,该方法可确定各种组蛋白修饰的特定基因组位置,这阻碍了对其光合碳转化和油脂储存的表观遗传基础的探究。在此,我们为海洋微拟球藻开发了一种详细的ChIP方案,这是一种在表观遗传水平上分析组蛋白修饰、染色质状态和转录因子结合位点的可靠方法。使用ChIP-qPCR,系统评估了该微藻中与光合碳固定相关的基因。此外,还建立并优化了ChIP-Seq方案,以组蛋白标记H3K9Ac为例,生成了全基因组范围的组蛋白修饰事件图谱。这些结果是了解工业产油微藻染色质景观以及基于表观遗传学的微藻原料开发的第一步。

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