top of page

Species & Dataset

Experiment

Foliar Ozone Injury

  • Oryza sativa

  • Common name: Asian rice

  • Family: Poaceae

  • Cultivar: cv. Nipponbare; O. sativa L. japonica-type

  • Tissue: Third and fourth leaves of 2-week old rice plant

  • Ozone concentration: ​ 0.2 ppm

  • Ozone exposure: 24 hours

  • Sampling time: ​ 0, 6, 12 and 24 hrs after ozone treatment

  • Platform: DNA Microarray

  • Year of study: 2008

  • Location: Japan

Injury Rice.jpeg

Title: Integrated Transcriptomics, Proteomics, and Metabolomics analyses to survey ozone responses in the leaves of rice seedling

 

Summary: Ozone (O3), a serious air pollutant, is known to significantly reduce photosynthesis, growth, and yield and to cause foliar injury and senescence. Here, integrated transcriptomics, proteomics, and metabolomics approaches were applied to investigate the molecular responses of O3 in the leaves of 2-week-old rice (cv. Nipponbare) seedlings exposed to 0.2 ppm O3 for a period of 24 h. On the basis of the morphological alteration of O3-exposed rice leaves, transcript profiling of rice genes was performed in leaves exposed for 1, 12, and 24 h using rice DNA microarray chip. A total of 1535 non redundant genes showed altered expression of more than 5-fold over the control, representing 8 main functional categories. Genes involved in information storage and processing (10%) and cellular processing and signaling categories (24%) were highly represented within1h of O3 treatment; transcriptional factor and signal transduction, respectively, were the main subcategories. Genes categorized into information storage and processing (17, 23%), cellular processing and signaling (20, 16%) and metabolism (18, 19%) were mainly regulated at 12 and 24 h; their main subcategories were ribosomal protein, posttranslational modification, and signal transduction and secondary metabolites biosynthesis, respectively. Two dimensional gel electrophoresis-based proteomics analyses in combination with tandem mass spectrometer identified 23 differentially expressed protein spots (21 non redundant proteins) in leaves exposed to O3 for 24 h compared to respective control.Identified proteins were found to be involved in cellular processing and signaling (32%), photosynthesis (19%), and defense (14%). Capillary electrophoresis-mass spectrometry-based metabolomic profiling revealed accumulation of amino acids, gamma-aminobutyric acid, and glutathione in O3 exposed leaves until 24 h over control. This systematic survey showed that O3 triggers a chain reaction of altered gene, protein and metabolite expressions involved in multiple cellular processes in rice.

​

Reference: Cho, K., Shibato, J., Agrawal, G.K., Jung, Y.H., Kubo, A., Jwa, N.S., Tamogami, S., Satoh, K., Kikuchi, S., Higashi, T. and Kimura, S., 2008. Integrated transcriptomics, proteomics, and metabolomics analyses to survey ozone responses in the leaves of rice seedling. Journal of proteome research, 7(7), pp.2980-2998.

Gene Identifier
Gene Code
Uniprot ID
Bin Code
Bin Name
FoldChange (1hr)
FoldChange (12hr)
FoldChange (24hr)
Functional annotation
AK072710
LOC_Os08g04630
9.2.2
mitochondrial electron transport / ATP synthesis.NADH-DH.type II.external
NA
7.22
NA
A. thaliana At4g05020/T32N4_4 mRNA; putative NADH dehydrogenase
AK073929
#N/A
#N/A
#N/A
NA
NA
5.56
Z. mays inorganic pyrophosphatase (IPP) mRNA, complete cds.|PLN; pyrophosphatase
AK100884
LOC_Os05g26660
9.2.2
mitochondrial electron transport / ATP synthesis.NADH-DH.type II.external
NA
13.78
5.77
A. thaliana At4g05020/T32N4_4 mRNA, complete cds.|PLN
AK102815
LOC_Os02g32120
9.5
mitochondrial electron transport / ATP synthesis.cytochrome c reductase
NA
7.92
NA
Z. mays mitochondrial Rieske Fe-S protein of Ubiquinol-cytochrome c reductase mRNA
AK107376
LOC_Os04g51160
O82766
9.4
mitochondrial electron transport / ATP synthesis.alternative oxidase
30.66
22.95
8.79
O. sativa AOX1b mRNA for alternative oxidase, complete cds.|PLN
AK107567
LOC_Os05g37660
16.2
secondary metabolism.phenylpropanoids
8.89
NA
NA
A. thaliana AT5g01210/F7J8_190 mRNA, complete cds.|PLN; B561; Cytochrome b-561
AK061890
#N/A
#N/A
#N/A
NA
7.05
NA
O. sativa glucose-6-phosphate dehydrogenase (g6pdh) mRNA, complete cds.|PLN
AK064867
LOC_Os07g22350
7.1.1
OPP.oxidative PP.G6PD
6.55
NA
NA
N. tabacum mRNA for chloroplast glucose-6-phosphate dehydrogenase.|PLN
AK065920
LOC_Os06g02144
Q9LI00
7.1.3
OPP.oxidative PP.6-phosphogluconate dehydrogenase
20.80
54.06
27.44
O. sativa cytosolic 6-phosphogluconate dehydrogenase mRNA, complete cds.|PLN
AK067632
LOC_Os01g70170
7.2.2
OPP.non-reductive PP.transaldolase
NA
25.09
8.65
S. tuberosum transaldolase (PotTal1) mRNA, complete cds.|PLN
AK071592
LOC_Os11g29400
Q2R480
7.1.3
OPP.oxidative PP.6-phosphogluconate dehydrogenase
5.12
NA
NA
A. thaliana At5g41670/MBK23_20 mRNA, complete cds.|PLN; 6-phosphogluconate dehydrogenase
AK058788
LOC_Os07g05480
1.1.2.2
PS.lightreaction.photosystem I.PSI polypeptide subunits
NA
0.14
NA
H. vulgare chloroplast photosystem I PSK-I subunit mRNA, complete cds.|PLN
bottom of page