Species & Dataset
Experiment
Foliar Ozone Injury
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Fraxinus pennsylvanica
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Common name: Green ash
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Family: Oleaceae
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Cultivar: Arabidopsis thaliana (ecotype Ws-0)
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Tissue: Shoot leaves
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Ozone concentration: <10 ppb ozone as control, 80 ppb, 125 ppb, and 225 ppb
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Ozone exposure: 28 days (8 hrs/day)
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Sampling time: 3 time points (7 hr, 14 days, 28 days) after stress initiation
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Platform: RNA-seq
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Year of study: 2020
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Location: USA

Title: The green ash transcriptome and identification of genes responding to abiotic and biotic stresses
Summary: To develop a set of transcriptome sequences to support research on environmental stress responses in green ash (Fraxinus pennsylvanica), we undertook deep RNA sequencing of green ash tissues under various stress treatments. The treatments, including emerald ash borer (EAB) feeding, heat, drought, cold and ozone, were selected to mimic the increasing threats of climate change and invasive pests faced by green ash across its native habitat. We report the generation and assembly of RNA sequences from 55 green ash samples into 107,611 putative unique transcripts (PUTs). 52,899 open reading frames were identified. Functional annotation of the PUTs by comparison to the Uniprot protein database identified matches for 63 % of transcripts and for 98 % of transcripts with ORFs. Further functional annotation identified conserved protein domains and assigned gene ontology terms to the PUTs. Examination of transcript expression across different RNA libraries revealed that expression patterns clustered based on tissues regardless of stress treatment. The transcripts from stress treatments were further examined to identify differential expression. Tens to hundreds of differentially expressed PUTs were identified for each stress treatment. A set of 109 PUTs were found to be consistently up or down regulated across three or more different stress treatments, representing basal stress response candidate genes in green ash. In addition, 1956 simple sequence repeats were identified in the PUTs, of which we identified 465 high quality DNA markers and designed flanking PCR primers. North American native ash trees have suffered extensive mortality due to EAB infestation, creating a need to breed or select for resistant green ash genotypes. Stress from climate change is an additional concern for longevity of native ash populations. The use of genomics could accelerate management efforts. The green ash transcriptome we have developed provides important sequence information, genetic markers and stress-response candidate genes.
Data repository: http://www.ag.arizona.edu/microarray/
Reference: Soltani, N., Best, T., Grace, D., Nelms, C., Shumaker, K., Romero-Severson, J., Moses, D., Schuster, S., Staton, M., Carlson, J. and Gwinn, K., 2020. Transcriptome profiles of Quercus rubra responding to increased O 3 stress. BMC genomics, 21(1), pp.1-18.
Gene Identifier | AGI Gene Code | Uniprot ID | log2FC | p-value | FDR adjusted p-value | Functional annotation |
|---|---|---|---|---|---|---|
Fraxinus_pennsylvanica_120313_comp60506_c0_seq2 | AT3G11820 | Q9ZSD4 | 3.520386814 | 0.000298758 | 0.008467054 | Syntaxin-121 OS=Arabidopsis thaliana GN=SYP121 PE=1 SV=1 |
Fraxinus_pennsylvanica_120313_comp63296_c0_seq2 | A6YIH8 | 2.701521097 | 0.00030042 | 0.008467054 | Premnaspirodiene oxygenase OS=Hyoscyamus muticus GN=CYP71D55 PE=1 SV=1 | |
Fraxinus_pennsylvanica_120313_comp60909_c0_seq2 | AT4G31970 | O49394 | 2.921506915 | 0.00030231 | 0.008494255 | Cytochrome P450 82C2 OS=Arabidopsis thaliana GN=CYP82C2 PE=2 SV=2 |
Fraxinus_pennsylvanica_120313_comp64771_c0_seq3 | AT4G08850 | Q8VZG8 | 7.066001337 | 0.000313254 | 0.008774923 | Probable LRR receptor-like serine/threonine-protein kinase At4g08850 OS=Arabidopsis thaliana GN=At4g08850 PE=2 SV=3 |
Fraxinus_pennsylvanica_120313_comp61758_c0_seq43 | 6.401822413 | 0.000320598 | 0.008953361 | |||
Fraxinus_pennsylvanica_120313_comp60056_c1_seq1 | AT1G62300 | Q9C519 | -2.160574008 | 0.000322032 | 0.008966144 | WRKY transcription factor 6 OS=Arabidopsis thaliana GN=WRKY6 PE=1 SV=1 |
Fraxinus_pennsylvanica_120313_comp49541_c0_seq1 | AT3G01520 | Q8LGG8 | -0.431651264 | 0.000327893 | 0.009101742 | Universal stress protein A-like protein OS=Arabidopsis thaliana GN=At3g01520 PE=1 SV=2 |
Fraxinus_pennsylvanica_120313_comp35873_c0_seq1 | P30956 | -0.911304781 | 0.000330646 | 0.009150531 | 50S ribosomal protein L28, chloroplastic OS=Nicotiana tabacum GN=RPL28 PE=1 SV=1 | |
Fraxinus_pennsylvanica_120313_comp25812_c0_seq1 | P12333 | -0.880201954 | 0.000332749 | 0.009153583 | Chlorophyll a-b binding protein, chloroplastic OS=Spinacia oleracea PE=1 SV=1 | |
Fraxinus_pennsylvanica_120313_comp66107_c0_seq2 | AT3G51550 | Q9SCZ4 | 1.744589038 | 0.000332256 | 0.009153583 | Receptor-like protein kinase FERONIA OS=Arabidopsis thaliana GN=FER PE=1 SV=1 |
Fraxinus_pennsylvanica_120313_comp58209_c0_seq1 | AT3G17840 | Q9LVI6 | 5.069020996 | 0.000335158 | 0.009192333 | Probable inactive receptor kinase RLK902 OS=Arabidopsis thaliana GN=RLK902 PE=1 SV=1 |
Fraxinus_pennsylvanica_120313_comp63638_c0_seq1 | Q6SJV8 | -0.639182502 | 0.000339767 | 0.009291001 | Magnesium-protoporphyrin IX monomethyl ester [oxidative] cyclase, chloroplastic OS=Gossypium hirsutum GN=CRD1 PE=2 SV=2 |