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Series GSE25443 Query DataSets for GSE25443
Status Public on May 08, 2014
Title Elucidation of Zymomonas mobilis physiology and stress responses by quantitative proteomics and transcriptomics
Organism Zymomonas mobilis subsp. mobilis ZM4 = ATCC 31821
Experiment type Expression profiling by array
Summary Zymomonas mobilis is an excellent ethanologenic bacterium. Biomass pretreatment and saccharification provides access to simple sugars, but also produces inhibitors such as acetate and furfural. Our previous work has identified and confirmed the genetic change of a 1.5-kb deletion in the sodium acetate tolerant Z. mobilis mutant (AcR) leading to constitutively elevated expression of a sodium proton antiporter encoding gene nhaA, which contributes to the sodium acetate tolerance of AcR mutant. In this study, we further investigated the responses of AcR and wild-type ZM4 to sodium acetate stress in minimum media using both transcriptomics and a metabolic labeling approach for quantitative proteomics the first time. Proteomic measurements at two time points identified about eight hundreds proteins, or about half of the predicted proteome. Extracellular metabolite analysis indicated AcR overcame the acetate stress quicker than ZM4 with a concomitant earlier ethanol production in AcR mutant, although the final ethanol yields and cell densities were similar between two strains. Transcriptomic samples were analyzed for four time points and revealed that the response of Z. mobilis to sodium acetate stress is dynamic, complex and involved about one-fifth of the total predicted genes from all different functional categories. The modest correlations between proteomic and transcriptomic data may suggest the involvement of posttranscriptional control. In addition, the transcriptomic data of forty-four microarrays from four experiments for ZM4 and AcR under different conditions were combined to identify strain-specific, media-responsive, growth phase-dependent, and treatment-responsive gene expression profiles. Together this study indicates that minimal medium has the most dramatic effect on gene expression compared to rich medium followed by growth phase, inhibitor, and strain background. Genes involved in protein biosynthesis, glycolysis and fermentation as well as ATP synthesis and stress response play key roles in Z. mobilis metabolism with consistently strong expression levels under different conditions.
 
Overall design A sixteen array study using total RNA recovered from wild-type cultures of Zymomonas mobilis subsp mobilis ZM4 and acetate-tolerant mutant AcR at different time points of 130, 148, 166, and 190h post-inoculation with 10g/L sodium acetate (NaAc) treatment were carried out to investigate the expression differences between ZM4 and AcR. Two biological replicates for treatment or control condition.
 
Contributor(s) YANG S, PAN C, Hurst GB, Dice L, Davison BH, Brown SD
Citation(s) 24904559
Submission date Nov 17, 2010
Last update date Aug 07, 2014
Contact name Shihui YANG
E-mail(s) [email protected]
Phone 3033847825
Organization name National Renewable Energy Lab
Department National Bioenergy Center
Street address 1617 Cole Blvd
City Golden
State/province CO
ZIP/Postal code 80401
Country USA
 
Platforms (1)
GPL11220 Zymomonas mobilis ZM4 6.7K (expr_HX4)
Samples (16)
GSM624446 AcR_MM_NaAc_F6_130h
GSM624447 AcR_MM_NaAc_F5_130h
GSM624448 ZM4_MM_NaAc_F3_130h
Relations
BioProject PRJNA133803

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE25443_RAW.tar 21.2 Mb (http)(custom) TAR (of TXT)
Processed data included within Sample table
Processed data provided as supplementary file

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