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点状念珠藻在稳定状态下含异形胞的固氮培养物中以及在厚壁孢子和藻殖段分化过程中单个时间点的全球基因表达模式。

Global gene expression patterns of Nostoc punctiforme in steady-state dinitrogen-grown heterocyst-containing cultures and at single time points during the differentiation of akinetes and hormogonia.

作者信息

Campbell Elsie L, Summers Michael L, Christman Harry, Martin Miriam E, Meeks John C

机构信息

Section of Microbiology, University of California, Davis, CA 95616, USA.

出版信息

J Bacteriol. 2007 Jul;189(14):5247-56. doi: 10.1128/JB.00360-07. Epub 2007 May 4.

Abstract

The vegetative cells of the filamentous cyanobacterium Nostoc punctiforme can differentiate into three mutually exclusive cell types: nitrogen-fixing heterocysts, spore-like akinetes, and motile hormogomium filaments. A DNA microarray consisting of 6,893 N. punctiforme genes was used to identify the global transcription patterns at single time points in the three developmental states, compared to those in ammonium-grown time zero cultures. Analysis of ammonium-grown cultures yielded a transcriptome of 2,935 genes, which is nearly twice the size of a soluble proteome. The NH(4)(+)-grown transcriptome was enriched in genes encoding core metabolic functions. A steady-state N(2)-grown (heterocyst-containing) culture showed differential transcription of 495 genes, 373 of which were up-regulated. The majority of the up-regulated genes were predicted from studies of heterocyst differentiation and N(2) fixation; other genes are candidates for more detailed genetic analysis. Three days into the developmental process, akinetes showed a similar number of differentially expressed genes (497 genes), which were equally up- and down-regulated. The down-regulated genes were enriched in core metabolic functions, consistent with entry into a nongrowth state. There were relatively few adaptive genes up-regulated in 3-day akinetes, and there was little overlap with putative heterocyst developmental genes. There were 1,827 differentially transcribed genes in 24-h hormogonia, which was nearly fivefold greater than the number in akinete-forming or N(2)-fixing cultures. The majority of the up-regulated adaptive genes were genes encoding proteins for signal transduction and transcriptional regulation, which is characteristic of a motile filament that is poised to sense and respond to the environment. The greatest fraction of the 883 down-regulated genes was involved in core metabolism, also consistent with entry into a nongrowth state. The differentiation of heterocysts (steady state, N(2) grown), akinetes, and hormogonia appears to involve the up-regulation of genes distinct for each state.

摘要

丝状蓝细菌点状念珠藻的营养细胞可分化为三种相互排斥的细胞类型

固氮异形胞、孢子状厚壁孢子和可运动的藻殖段丝体。利用一个由6893个点状念珠藻基因组成的DNA微阵列,来鉴定这三种发育状态下单个时间点的全局转录模式,并与铵培养的零时间培养物中的转录模式进行比较。对铵培养物的分析产生了一个由2935个基因组成的转录组,其大小几乎是可溶性蛋白质组的两倍。铵生长的转录组富含编码核心代谢功能的基因。稳定态氮气生长(含异形胞)的培养物显示495个基因的差异转录,其中373个基因上调。大多数上调基因是根据异形胞分化和固氮研究预测的;其他基因是更详细遗传分析的候选基因。在发育过程的第三天,厚壁孢子显示出相似数量的差异表达基因(497个基因),这些基因上调和下调的数量相等。下调基因富含核心代谢功能,这与进入非生长状态一致。在3天的厚壁孢子中上调的适应性基因相对较少,与假定的异形胞发育基因几乎没有重叠。在24小时的藻殖段中有1827个差异转录基因,这几乎是形成厚壁孢子或固氮培养物中基因数量的五倍。大多数上调的适应性基因是编码信号转导和转录调节蛋白的基因,这是一个准备感知和响应环境的可运动丝体的特征。883个下调基因中最大比例的基因参与核心代谢,这也与进入非生长状态一致。异形胞(稳定态,氮气生长)、厚壁孢子和藻殖段的分化似乎涉及每种状态特有的基因上调。

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