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对形成异形胞的蓝藻鱼腥藻PCC 7120菌株中氮剥夺反应的全基因组表达分析。

Genome-wide expression analysis of the responses to nitrogen deprivation in the heterocyst-forming cyanobacterium Anabaena sp. strain PCC 7120.

作者信息

Ehira Shigeki, Ohmori Masayuki, Sato Naoki

机构信息

Department of Molecular Biology, Faculty of Science, Saitama University, 255 Shimo-Ohkubo, Sakura-ku, Saitama City, Saitama 338-8570, Japan.

出版信息

DNA Res. 2003 Jun 30;10(3):97-113. doi: 10.1093/dnares/10.3.97.

Abstract

A heterocyst is a terminally differentiated cell of cyanobacteria which is specialized in dinitrogen fixation. Heterocyst differentiation in Anabaena sp. strain PCC 7120 is triggered by deprivation of combined nitrogen in the medium. Although various genes that are upregulated during heterocyst differentiation have been reported, most studies to date were limited to individual or a small number of genes. We prepared microarrays in collaboration with other members of the Anabaena Genome Project. Here we report on the genome-wide expression analysis of the responses to nitrogen deprivation in Anabaena. Many unidentified genes, as well as previously known genes, were found to be upregulated by nitrogen deprivation at various time points. Three main profiles of gene expression were found: genes expressed transiently at an early stage (1-3 hr) of nitrogen deprivation, genes expressed transiently at a later stage (8 hr), and genes expressed when heterocysts are formed (24 hr). We also noted that many of the upregulated genes were physically clustered to form 'expressed islands' on the chromosome. Namely, large, continuous genomic regions containing many genes were upregulated in a coordinated manner. This suggests a mechanism of global regulation of gene expression that involves chromosomal structure, which is reminiscent of eukaryotic chromatin remodelling. The possible implications of this global regulation are discussed.

摘要

异形胞是蓝细菌中终末分化的细胞,专门用于固氮。鱼腥藻PCC 7120菌株中的异形胞分化是由培养基中化合态氮的缺乏引发的。尽管已经报道了在异形胞分化过程中上调的各种基因,但迄今为止,大多数研究仅限于单个或少数几个基因。我们与鱼腥藻基因组计划的其他成员合作制备了微阵列。在此,我们报告了鱼腥藻对氮缺乏反应的全基因组表达分析。发现在不同时间点,许多未鉴定的基因以及先前已知的基因都因氮缺乏而上调。发现了三种主要的基因表达模式:在氮缺乏早期(1 - 3小时)瞬时表达的基因、在后期(8小时)瞬时表达的基因以及在异形胞形成时(24小时)表达的基因。我们还注意到,许多上调的基因在染色体上物理聚集形成“表达岛”。也就是说,包含许多基因的大的连续基因组区域以协调的方式上调。这表明存在一种涉及染色体结构的基因表达全局调控机制,这让人联想到真核染色质重塑。本文讨论了这种全局调控的可能意义。

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