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Species & Dataset
Experiment
Foliar ozone injury
  • Glycine max

  • Common name: Soybean

  • Family: Fabaceae

  • Cultivar: Glycine max L. Merr. cv. 93B15; Pioneer Hi-Breed

  • Tissue: Flower and Pod

  • Ozone concentration: Ambient ozone (<20 ppb)

  •  Elevated ozone (150 ppb)

  • Ozone exposure: Throughout the experiment period

  • Sampling time: Full bloom and full pod stage

  • Platform: RNA-seq

  • Year of study: 2014

  • Location: Urbana, USA

Glycine INJURY.jpeg

Title: Distinct transcriptional profiles of ozone stress in soybean (Glycine max) flowers and pods.

 

Summary: Tropospheric ozone (O3) is a secondary air pollutant and anthropogenic greenhouse gas. Concentrations of tropospheric O3 ([O3] have more than doubled since the Industrial Revolution, and are high enough to damage plant productivity. Soybean (Glycine max L. Merr.) is the world’s most important legume crop and is sensitive to O3. Current ground-level [O3] are estimated to reduce global soybean yields by 6% to 16%. In order to understand transcriptional mechanisms of yield loss in soybean, we examined the transcriptome of soybean flower and pod tissues exposed to elevated [O3] using RNA-Sequencing.  Elevated [O3] elicited a strong transcriptional response in flower and pod tissues, with increased expression of genes involved in signaling in both tissues. Flower tissues also responded to elevated [O3] by increasing expression of genes encoding matrix metalloproteinases (MMPs). MMPs are zinc- and calcium-dependent endopeptidases that have roles in programmed cell death, senescence and stress response in plants. Pod tissues responded to elevated [O3] by increasing expression of xyloglucan endotransglucosylase/hydrolase genes, which may be involved with increased pod dehiscence in elevated [O3]. This study established that gene expression in reproductive tissues of soybean are impacted by elevated [O3], and flowers and pods have distinct transcriptomic responses to elevated [O3].

 

Data repository: Small Read Archive (http://www.ncbi.nlm.nih.gov/sra), SRP035871, BioProject number PRJNA236472.

Reference: Leisner, C.P., Ming, R. and Ainsworth, E.A., 2014. Distinct transcriptional profiles of ozone stress in soybean (Glycine max) flowers and pods. BMC plant biology, 14(1), pp.1-13.

Flower Tissue:

Gene Identifier
AGI Gene Code
Uniprot ID
Bin Code
Bin Name
FoldChange
FDR-adjusted p-value
Functional annotation
Glyma19g26500
AT3G27020
Q6R3K6
34.13
transport.peptides and oligopeptides
-0.4209
0.040059822
Transport
Glyma19g30320
AT3G56950
Q9M1K3
34.19.4
transport.Major Intrinsic Proteins.SIP
-0.4262
0.036580377
Transport
Glyma19g31760
AT3G10290
Q9SS40
34.8
transport.metabolite transporters at the envelope membrane
0.3861
0.038526332
Transport
Glyma19g39060
AT3G11900
Q9SF09
34.3
transport.amino acids
-0.112
0.046226778
Transport
Glyma19g45260
AT4G13420
Q9M7K4
34.15
transport.potassium
0.5006
0.040059822
Transport
Glyma20g02660
AT1G76430
Q9S735
34.7
transport.phosphate
-0.4792
0.04669918
Transport
Glyma20g06210
AT1G05300
O23039
34.12
transport.metal
0.825
0.038373414
Transport
Glyma20g12110
AT2G28070
Q9ZUU9
34.16
transport.ABC transporters and multidrug resistance systems
0.1948
0.03456449
Transport
Glyma20g22200
AT1G59740
Q93VV5
34.13
transport.peptides and oligopeptides
0.2344
0.033763286
Transport
Glyma20g32200
AT3G10350
A1L4Y1
34.18.1
transport.unspecified anions.arsenite-transporting ATPase
0.1515
0.02278244
Transport
Glyma20g32580
AT1G31770
Q9C6W5
34.16
transport.ABC transporters and multidrug resistance systems
-0.8488
0.029084575
Transport
Glyma20g33730
AT1G14140
Q9XI74
34.9
transport.metabolite transporters at the mitochondrial membrane
0.2529
0.046352955
Transport

Pod Tissue:

Gene Identifier
AGI Gene Code
Uniprot ID
Bin Code
Bin Name
FoldChange
FDR adjusted p-value
Functional annotation
Glyma20g32090
AT4G14145
A0JPW4
35.2
not assigned.unknown
-0.3974
0.047674264
Transport
Glyma20g32200
AT3G10350
A1L4Y1
34.18.1
transport.unspecified anions.arsenite-transporting ATPase
-0.2437
0.012078607
Transport
Glyma20g32230
AT3G10360
Q9SS47
35.2
not assigned.unknown
-0.2108
0.04959272
Transport
Glyma20g32370
AT3G10380
Q93YU5
31.4
cell.vesicle transport
0.1711
0.026082664
Transport
Glyma20g32910
AT3G52240
35.2
not assigned.unknown
0.2215
0.027483092
Transport
Glyma20g33270
AT2G21390
Q9SJT9
31.4
cell.vesicle transport
0.1468
0.038653668
Transport
Glyma20g35120
AT1G04430
Q940J9
20.2.3
stress.abiotic.drought/salt
0.6185
0.044535986
Transport
Glyma20g36233
#N/A
#N/A
#N/A
1.0151
0.025758025
Transport
Glyma20g36340
AT3G04260
F4J3M2
28.1
DNA.synthesis/chromatin structure
-0.2862
0.036272759
Transport
Glyma20g37330
AT1G08720
Q9FPR3
29.4
protein.postranslational modification
0.1044
0.036077302
Transport
Glyma20g37440
AT3G05130
Q9MAA6
35.2
not assigned.unknown
-0.5768
0.036077302
Transport
Glyma20g38440
AT1G75270
Q9FRL8
21.2.1
redox.ascorbate and glutathione.ascorbate
-0.2731
0.041927982
Transport
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