Unknown,Transcriptomics,Genomics,Proteomics

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Expression data from ozone-treated wild-type and G-protein null mutant Arabidopsis lines


ABSTRACT: Ozone pollution decreases plant growth and yield worldwide. Some of the effects are genetically-mediated and are reported to involve G-protein signaling pathways. Effects of ozone on gene expression were examined in wild-type and G-protein null mutants to determine affected genes and to determine differential responses that may help define affected pathways. We used microarrays to examine changes in gene expression in response to ozone exposure and identified distinct classes of up- and down-regulated genes in wild-type and G-protein null mutant genotypes. Columbia wild-type and G-protein null mutant gpa1-4/agb1-2 plants were exposed to 5 or 125 ppb ozone in controlled environment chambers for two days. Leaves were sampled after 3 h and 2 d of exposure to examine early and late gene expression changes.

ORGANISM(S): Arabidopsis thaliana

SUBMITTER: Fitzgerald Booker 

PROVIDER: E-GEOD-34667 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Minimal influence of G-protein null mutations on ozone-induced changes in gene expression, foliar injury, gas exchange and peroxidase activity in Arabidopsis thaliana L.

Booker Fitzgerald F   Burkey Kent K   Morgan Patrick P   Fiscus Edwin E   Jones Alan A  

Plant, cell & environment 20111115 4


Ozone (O(3)) uptake by plants leads to an increase in reactive oxygen species (ROS) in the intercellular space of leaves and induces signalling processes reported to involve the membrane-bound heterotrimeric G-protein complex. Therefore, potential G-protein-mediated response mechanisms to O(3) were compared between Arabidopsis thaliana L. lines with null mutations in the α- and β-subunits (gpa1-4, agb1-2 and gpa1-4/agb1-2) and Col-0 wild-type plants. Plants were treated with a range of O(3) conc  ...[more]

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