Impact of SO2 on Arabidopsis thaliana transcriptome in wildtype and sulfite oxidase knockout plants analyzed by RNA deep sequencing
Impact of SO2 on Arabidopsis thaliana transcriptome in wildtype and sulfite oxidase knockout plants analyzed by RNA deep sequencing
Summary High concentrations of sulfur dioxide (SO2) as an air pollutant, and its derivative sulfite, cause abiotic stress that can lead to cell death. It is currently unknown to what extent plant fumigation triggers specific transcriptional responses. To address this question, and to test the hypothesis that sulfite oxidase (SO) is acting in SO2 detoxification, we compared Arabidopsis wildtype (WT) and SO knockout lines (SO‐KO) facing the impact of 600 nl l−1 SO2, using RNAseq to quantify absolute transcript abundances. These transcriptome data were correlated to sulfur metabolism‐related enzyme activities and metabolites obtained from identical samples in a previous study. SO‐KO plants exhibited remarkable and broad regulative responses at the mRNA level, especially in transcripts related to sulfur metabolism enzymes, but also in those related to stress response and senescence. Focusing on SO regulation, no alterations were detectable in the WT, whereas in SO‐KO plants we found up‐regulation of two splice variants of the SO gene, although this gene is not functional in this line. Our data provide evidence for the highly specific coregulation between SO and sulfur‐related enzymes like APS reductase, and suggest two novel candidates for involvement in SO2 detoxification: an apoplastic peroxidase, and defensins as putative cysteine mass storages.
- King Saud University Saudi Arabia
- Bielefeld University Germany
- Helmholtz Association of German Research Centres Germany
- University of Freiburg Germany
- Helmholtz Center for Information Security Germany
Arabidopsis knockout mutants, Arabidopsis, Defensins, Gene Knockout Techniques, sulfite, Gene Expression Regulation, Plant, Stress, Physiological, Sulfur Dioxide, Oxidoreductases Acting on Sulfur Group Donors, detoxification, sulfate assimilation, 580, Air Pollutants, Arabidopsis Proteins, Sequence Analysis, RNA, Sulfite Oxidase, High-Throughput Nucleotide Sequencing, sulfite oxidase (SO), Plants, Genetically Modified, Enzymes, SO2 fumigation, gene ontology, cluster analyses, Oxidoreductases, Transcriptome, RNA-deep-sequencing, Sulfur
Arabidopsis knockout mutants, Arabidopsis, Defensins, Gene Knockout Techniques, sulfite, Gene Expression Regulation, Plant, Stress, Physiological, Sulfur Dioxide, Oxidoreductases Acting on Sulfur Group Donors, detoxification, sulfate assimilation, 580, Air Pollutants, Arabidopsis Proteins, Sequence Analysis, RNA, Sulfite Oxidase, High-Throughput Nucleotide Sequencing, sulfite oxidase (SO), Plants, Genetically Modified, Enzymes, SO2 fumigation, gene ontology, cluster analyses, Oxidoreductases, Transcriptome, RNA-deep-sequencing, Sulfur
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