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Species & Dataset
Experiment
Foliar ozone injury
  • Quercus rubra

  • Common name: Northern red oak

  • Family: Fagaceae

  • Cultivar: Quercus rubra L.

  • Tissue: Shoot leaves

  • Ozone concentration: < 10 ppb (control), 150 ppb, 225 ppb, and 300 ppb

  • Ozone exposure: 28 days (8 hrs/day)

  • Sampling time: 3 time points (7 h, 14 days, 28 days) after stress initiation

  • Platform: HiSeq 2500 (Illumina)

  • Year of study: 2020

  • Location: USA

Injury pic.jpg

Title: Transcriptome profiles of Quercus rubra responding to increased O3 stress

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Summary: Climate plays an essential role in forest health, and climate change may increase forest productivity losses due to abiotic and biotic stress. Increased temperature leads to the increased formation of ozone (O3). Ozone is formed by the interaction of sunlight, molecular oxygen and by the reactions of chemicals commonly found in industrial and automobile emissions such as nitrogen oxides and volatile organic compounds. Although it is well known that productivity of Northern red oak (Quercus rubra) (NRO), an ecologically and economically important species in the forests of eastern North America, is reduced by exposure to O3, limited information is available on its responses to exogenous stimuli at the level of gene expression. RNA sequencing yielded more than 323 million high-quality raw sequence reads. De novo assembly generated 52,662 unigenes, of which more than 42,000 sequences could be annotated through homology-based searches. A total of 4140 differential expressed genes (DEGs) were detected in response to O3 stress, as compared to their respective controls. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses of the O3-response DEGs revealed perturbation of several biological pathways including energy, lipid, amino acid, carbohydrate and terpenoid metabolism as well as plant-pathogen interaction.This study provides the first reference transcriptome for NRO and initial insights into the genomic responses of NRO to O3. Gene expression profiling reveals altered primary and secondary metabolism of NRO seedlings, including known defense responses such as terpenoid biosynthesis.

 

Data repository: SRA (Bioproject accession PRJNA273270)

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Reference: Lane, T., Best, T., Zembower, N., Davitt, J., Henry, N., Xu, Y., Koch, J., Liang, H., McGraw, J., Schuster, S. and Shim, D., 2016. The green ash transcriptome and identification of genes responding to abiotic and biotic stresses. BMC genomics, 17(1), pp.1-16.

Gene identifier
Bin Code
Bin Name
log FoldChange
FDR adjusted p-value
Functional annotation
Quercus_rubra_120313_comp23087_c1_seq1
28.1
DNA.synthesis/chromatin structure
1.246210037
0.037791845
"probable mediator of RNA polymerase II transcription subunit 26c";Ontology_id "GO:0005634,GO:0003677,GO:0008135,GO:0006139";
Quercus_rubra_120313_comp26846_c0_seq1
#N/A
3.139953246
0.037791845
"pterin-4-alpha-carbinolamine dehydratase";Ontology_id "GO:0003824,GO:0009058,GO:0009536,GO:0009987";Enzyme_code "EC:4.2.1.96";Enzyme_name "4a-hydroxytetrahydrobiopterin dehydratase";
Quercus_rubra_120313_comp28185_c0_seq1
#N/A
2.66938012
0.037791845
"---NA---";
Quercus_rubra_120313_comp29073_c0_seq6
#N/A
1.969422981
0.037791845
"---NA---";
Quercus_rubra_120313_comp29848_c0_seq2
#N/A
6.221115946
0.037791845
"PREDICTED: uncharacterized protein LOC104817135";
Quercus_rubra_120313_comp31414_c0_seq4
26.9
misc.glutathione S transferases
1.058920608
0.037791845
"glutathione S-transferase zeta class-like isoform X1";Ontology_id "GO:0009072,GO:0005515,GO:0005737,GO:0004364";Enzyme_code "EC:2.5.1.18";Enzyme_name "Glutathione transferase";
Quercus_rubra_120313_comp31472_c0_seq3
23
nucleotide metabolism
1.623186928
0.037791845
"heat shock 70 kDa 17";Ontology_id "GO:0000166,GO:0003824,GO:0016020,GO:0008152,GO:0005783,GO:0005794,GO:0005773,GO:0009536";Enzyme_code "EC:1.3.1.74";Enzyme_name "2-alkenal reductase (NAD(P)(+))";
Quercus_rubra_120313_comp41631_c0_seq1
#N/A
2.0733552
0.037791845
"---NA---";
Quercus_rubra_120313_comp24445_c0_seq3
13.1.5.3.2
amino acid metabolism.synthesis.serine-glycine-cysteine group.cysteine.SAT
1.372899562
0.039347533
"serine acetyltransferase chloroplastic-like";Ontology_id "GO:0009001,GO:0005737,GO:0006535";Enzyme_code "EC:2.3.1.30";Enzyme_name "Serine O-acetyltransferase";
Quercus_rubra_120313_comp30441_c0_seq3
#N/A
1.21284443
0.039347533
"root phototropism 2";Ontology_id "GO:0009606,GO:0009628,GO:0004871";
Quercus_rubra_120313_comp31362_c0_seq1
12.1.1
N-metabolism.nitrate metabolism.NR
1.560480175
0.039347533
"nitrate reductase [NAD(P)H]-like";Ontology_id "GO:0050464,GO:0050463,GO:0030151,GO:0055114,GO:0006809,GO:0009703,GO:0043546,GO:0020037,GO:0042128";Enzyme_code "EC:1.7.1.2,EC:1.7.1.1,EC:1.7.1.3,EC:1.7.99.4";Enzyme_name "Nitrate reductase (NAD(P)H),Nitrate reductase (NADH),Nitrate reductase (NADPH),Nitrate reductase";
Quercus_rubra_120313_comp15761_c0_seq1
#N/A
1.421245756
0.041137797
"---NA---";
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