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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
Glyma08g22000
AT1G79900
Q9CA93
34.9
transport.metabolite transporters at the mitochondrial membrane
-0.5815
0.043412677
Transport
Glyma08g22880
AT1G15690
P31414
34.3
transport.amino acids
0.2471
0.029084575
Transport
Glyma08g23740
AT1G51610
Q8H1G3
34.12
transport.metal
0.1542
0.023522907
Transport
Glyma08g25410
AT1G54320
Q9SLK2
34.99
transport.misc
-0.1716
0.045593135
Transport
Glyma09g07930
AT5G20540
Q8GZ92
34.19.3
transport.Major Intrinsic Proteins.NIP
-0.3113
0.044150174
Transport
Glyma09g08730
AT1G31770
Q9C6W5
34.16
transport.ABC transporters and multidrug resistance systems
-0.6461
0.045984531
Transport
Glyma09g15150
AT1G16310
Q0WU02
34.12
transport.metal
-0.5289
0.035685185
Transport
Glyma09g16466
#N/A
#N/A
#N/A
0.2772
0.032959771
Transport
Glyma09g24820
AT4G00350
F4JH46
34.99
transport.misc
0.3711
0.047512698
Transport
Glyma09g38760
AT3G54900
Q84Y95
34.21
transport.calcium
0.1204
0.039718908
Transport
Glyma10g03460
AT3G51895
Q9SV13
34.6
transport.sulphate
-0.5982
0.030584617
Transport
Glyma10g24620
AT1G04690
O23016
34.15
transport.potassium
0.3552
0.049738891
Transport

Pod Tissue:

Gene Identifier
AGI Gene Code
Uniprot ID
Bin Code
Bin Name
FoldChange
FDR adjusted p-value
Functional annotation
Glyma18g14781
#N/A
#N/A
#N/A
-0.2603
0.045341064
Stress
Glyma18g15065
#N/A
#N/A
#N/A
0.5894
0.026114357
Stress
Glyma18g17600
AT1G10522
Q9XIK0
35.2
not assigned.unknown
-0.2408
0.027409397
Stress
Glyma18g18491
#N/A
#N/A
#N/A
0.1688
0.04982884
Stress
Glyma18g22256
#N/A
#N/A
#N/A
0.3964
0.025758025
Stress
Glyma18g25760
AT2G29050
Q0WQX7
27.3.67
RNA.regulation of transcription.putative transcription regulator
-0.2414
0.039056493
Stress
Glyma18g26710
#N/A
#N/A
#N/A
-0.4095
0.045403613
Stress
Glyma18g29100
AT2G22590
Q940V3
26.2
misc.UDP glucosyl and glucoronyl transferases
-0.4913
0.034046266
Stress
Glyma18g29160
AT5G09300
Q84JL2
13.2.4.1
amino acid metabolism.degradation.branched-chain group.shared
-0.1925
0.041677632
Stress
Glyma18g29380
AT2G22590
Q940V3
26.2
misc.UDP glucosyl and glucoronyl transferases
-0.4517
0.049078443
Stress
Glyma18g33210
AT3G25140
Q9LSG3
26.2
misc.UDP glucosyl and glucoronyl transferases
0.3672
0.043115433
Stress
Glyma18g35851
#N/A
#N/A
#N/A
0.6101
0.030343104
Stress
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