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Species & Dataset

Experiment

  • Brassica campestris

  • Common name: Mustard, Pak choi

  • Family: Brassicaceae

  • Cultivar: Pak Choi (‘Jingguan’)

  • Tissue: Second leaves from the top

  • Ozone concentration: ​251.71 ± 8.15 ppb

  • Ozone exposure: 2 days (8 hours/day)

  • Sampling time: ​ End of exposure period

  • Platform: Illumina Hiseq 2500

  • Year of study: 2017

  • Location: China

Title: Transcriptomic analysis of Pak Choi under acute ozone exposure revealed regulatory mechanism against ozone stress

 

Summary: Ground-level ozone (O3) is one of the major air pollutants, which cause oxidative injury to plants. The physiological and biochemical mechanisms underlying the responses of plants to O3 stress have been well investigated. However, there are limited reports about the molecular basis of plant responses to O3. In this study, a comparative transcriptomic analysis of Pak Choi (Brassica campestris ssp. chinensis) exposed to different O3 concentrations was conducted for the first time. Seedlings of Pak Choi with five leaves were exposed to non-filtered air (NF, 31 ppb) or elevated O3 (E-O3, 252 ppb) for 2 days (8 h per day, from 9:00–17:00). Compared with plants in the NF, a total of 675 differentially expressed genes (DEGs) were identified in plants under E-O3, including 219 DEGs with decreasedexpressions and 456 DEGs with increased expressions. Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses revealed that O3 stress invoked multiple cellular defense pathways to mitigate the impaired cellular integrity and metabolism, including ‘glutathione metabolism’, ‘phenylpropanoid biosynthesis’, ‘sulfur metabolism’, ‘glucosinolate biosynthesis’, ‘cutin, suberine and wax biosynthesis’ and others. Transcription factors potentially involved in this cellular regulation were also found, such as AP2-ERF, WRKY, JAZ, MYB etc. Based on the RNA-Seq data and previous studies, a working model was proposed integrating O3 caused reactive oxygen burst, oxidation-reduction regulation, jasmonic acid and downstream functional genes for the regulation of cellular homeostasis after acute O3 stress. The present results provide a valuable insight into the molecular responses of Pak Choi to acute O3 stress and the specific DEGs revealed in this study could be used for further functional identification of key allelic genes determining the O3 sensitivity of Pak Choi.

 

Data repository: NCBI Sequence Read Archive (SRA) repository (Accession number SRP100739)

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Reference: Zhang, L., Xu, B., Wu, T., Wen, M.X., Fan, L.X., Feng, Z.Z. and Paoletti, E., 2017. Transcriptomic analysis of Pak Choi under acute ozone exposure revealed regulatory mechanism against ozone stress. BMC plant biology, 17(1), pp.1-15.

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Gene Identifier
AGI Gene Code
Uniprot ID
Bin Code
Bin Name
log2FC
p-value
FDR adjusted p-value
Functional annotation
Bra032303
AT1G29310
23.3.1.3.1
.Protein translocation.endoplasmic reticulum.co-translational insertion system.Sec61 subcomplex.subunit alpha
-0.93395
0.02522
1
-//-
Bra018299
AT1G64260
35.2
not assigned.not annotated
-0.93347
0.048756
1
-//-
Bra026068
AT1G16300
3.12.4
.Carbohydrate metabolism.plastidial glycolysis.glyceraldehyde 3-phosphate dehydrogenase
-0.92457
0.037473
1
-//-
Bra006315
AT5G15650
3.13.7.3
.Carbohydrate metabolism.nucleotide sugar biosynthesis.UDP-L-arabinose biosynthesis.UDP-L-arabinose mutase
-0.92029
0.024764
1
-//-
Bra035956
AT5G60850
15.5.1.5
.RNA biosynthesis.transcriptional regulation.C2C2 transcription factor superfamily.transcription factor (DOF)
-0.90949
0.046802
1
-//-
Bra037170
AT5G66450
Q6NQL6
5.2.2.4
.Lipid metabolism.glycerolipid biosynthesis.diacylglycerol.phosphatidate phosphatase (LPP-epsilon)
-0.90891
0.047222
1
sp|Q6NQL6|LPPE2_ARATH Lipid phosphate phosphatase epsilon 2, chloroplastic OS=Arabidopsis thaliana GN=LPPE2 PE=1 SV=1//1.76404e-103
Bra041032
AT4G14420
35.2
not assigned.not annotated
-0.89792
0.037099
1
-//-
Bra021354
AT3G03550
19.2.2.1.5.3.3
.Protein homeostasis.ubiquitin-proteasome system.ubiquitin-fold protein conjugation.ubiquitin conjugation (ubiquitylation).ubiquitin-ligase E3 activities.RING-domain E3 ligase activities.RING-H2-class E3 ligase
-0.89754
0.042429
1
-//-
Bra028425
AT5G39000
11.10.2.4.2
.Phytohormone action.signalling peptides.CRP (cysteine-rich-peptide) category.RALF/RALFL-peptide activity.RALF-peptide receptor (CrRLK1L)
-1.3438
0.0055043
1
-//-
Bra038935
AT4G23180
18.4.1.17
.Protein modification.phosphorylation.TKL protein kinase superfamily.protein kinase (DUF26)
-1.3402
0.012921
1
-//-
Bra027871
AT1G58340
Q96FL8
24.2.4.1.1
.Solute transport.carrier-mediated transport.MOP superfamily.MATE family.metabolite transporter (DTX)
-1.3361
0.041266
1
sp|Q96FL8|S47A1_HUMAN Multidrug and toxin extrusion protein 1 OS=Homo sapiens GN=SLC47A1 PE=1 SV=1//2.97342e-44
Bra007961
AT1G71100
3.9.2.1
.Carbohydrate metabolism.oxidative pentose phosphate pathway.non-oxidative phase.ribose 5-phosphate isomerase
-1.33
0.040184
1
-//-
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