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E-GEOD-49552 GSE49552 transcription profiling by array Synechocystis sp. PCC 6803

Transcriptomic response to long time ethanol production in the cyanobacterium Synechocystis sp. PCC6803

·发布 2013年8月6日 ·更新 2014年6月3日
16
样本数
16
实验数
1
芯片平台
实验描述

The production of biofuels in photosynthetic microalgae and cyanobacteria is considered a promising alternative to the generation of fuels from fossil resources. However, to be economically competitive, producer strains need to be established that synthesize the targeted product at high yield and over a long time. Engineering cyanobacteria to forced fuel producers should considerably interfere with overall cell homeostasis, which in turn might counteract productivity and sustainability of the process. Therefore, in-depth characterization of the cellular response upon long-term production is of high interest for the targeted improvement of a desired strain. Here we report the results of a monitoring experiment, in which the transcriptome-wide response to continuous ethanol production in the unicellular model cyanobacterium Synechocystis sp. PCC6803 was examined using high resolution microarrays. In two independent experiments, ethanol production rates of 0.0338% (v/v) EtOH d-1 ± 0.002 and 0.0303% (v/v) d-1 ± 0.002 were obtained over 18 consecutive days, measuring biological triplicates in fully automated photobioreactors. Ethanol production caused a significant (~40%) delay in biomass accumulation in the producer strains and the development of a bleaching phenotype. Absorption spectroscopy indicated in particular a down-regulation of light harvesting capacity. Microarray analyses performed at day 4, 7, 11 and 18 of the experiment revealed only three mRNAs with a strongly modified accumulation level throughout the course of the experiment. In addition to the overexpressed adhA (slr1192) gene, this was an about 4 fold reduction in cpcB (sll1577) and an about 3 to 6 fold increase in rps8 (sll1809) mRNA levels. Much weaker modifications of expression level or modifications restricted to day 18 of the experiment were observed for genes involved in carbon assimilation (Ribulose bisphosphate carboxylase and Glutamate decarboxylase). Molecular analysis of the reduced cpcB levels revealed a post-transcriptional operon discoordination in the cpcBA operon leaving a truncated mRNA cpcA* likely not competent for translation. Moreover, Western blots and zinc-enhanced bilin fluorescence blots confirmed a severe reduction in the amounts of both phycocyanin subunits, explaining the cause of the bleaching phenotype. We conclude that the changes in gene expression upon induction of long term ethanol production in Synechocystis sp. PCC6803 are highly specific. in particular we did not observe a comprehensive stress response contributing to a complex phenotype as might have been expected. Gene expression of Synechocystis sp. PCC 6803 WT (#621) and the isogenic ethanol producing strain #309 was monitored at 4, 7, 11 and 18 days after induction of ethanol production by copper depletion. Each condition was sampled in biological duplicates

芯片平台
A-GEOD-15867
Agilent-027432 Syn6803_expressions454_4-3probes(16 例)
样本属性
organism
Synechocystis sp. PCC 6803
strain or line
ethanol producer, wild type
实验信息
登记号
E-GEOD-49552
GEO 编号
GSE49552
实验类型
transcription profiling by array
物种
Synechocystis sp. PCC 6803
发布日期
2013年8月6日
更新日期
2014年6月3日
提交者
Wolfgang R Hess、 Lew Jakorew、 Ekaterina Kuchmina、 Jens Georg、 Annegret Wilde、 Thomas Abts、 Dennis Dienst、 Jens Georg、 Heike Enke、 Ulf Dühring
分析服务
分析服务

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