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Species & Dataset

Experiment

Foliar Ozone Injury

  • Glycine max

  • Common name: Soybean

  • Family: Fabaceae

  • Cultivar: Glycine max L.

  • Tissue: Seed coat

  • Ozone concentration: Ambient ozone (50.6 nL L−1)                   Elevated ozone (69.7 nL L−1 ± 1.3 nL L−1)

  • Ozone exposure: Throughout the  experiment (8 hours/day)

  • Platform: Hiseq 2000 (Illumina)

  • Year of study: 2017

  • Location: Urbana, USA

Glycine INJURY.jpeg

Title: Physiological and transcriptomic responses in the seed coat of field-grown soybean (Glycine max L. Merr.) to abiotic stress

 

Summary: Understanding how intensification of abiotic stress due to global climate change affects crop yields is important for continued agricultural productivity. Coupling genomic technologies with physiological crop responses in a dynamic field environment is an effective approach to dissect the mechanisms underpinning crop responses to abiotic stress. Soybean (Glycine max L. Merr. cv. Pioneer 93B15) was grown in natural production environments with projected changes to environmental conditions predicted for the end of the century, including decreased precipitation, increased tropospheric ozone concentrations ([O3]), or increased temperature.  All three environmental stresses significantly decreased leaf-level photosynthesis and stomatal conductance, leading to significant losses in seed yield. This was driven by a significant decrease in the number of pods per node for all abiotic stress treatments. To understand the underlying transcriptomic response involved in the yield response to environmental stress, RNA-Sequencing analysis was performed on the soybean seed coat, a tissue that plays an essential role in regulating carbon and nitrogen transport to developing seeds. Gene expression analysis revealed 49, 148 and 1,576 differentially expressed genes in the soybean seed coat in response to drought, elevated [O3] and elevated temperature, respectively. Elevated [O3] and drought did not elicit substantive transcriptional changes in the soybean seed coat. However, this may be due to the timing of sampling and does not preclude impacts of those stresses on different tissues or different stages in seed coat development. Expression of genes involved in DNA replication and metabolic processes were enriched in the seed coat under high temperate stress, suggesting that the timing of events that are important for cell division and proper seed development were altered in a stressful growth environment.

 

Data repository: Small Read Archive (http://www.ncbi.nlm.nih.gov/sra), SRA089043, BioProject number PRJNA207354.

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Reference: Leisner, C.P., Yendrek, C.R. and Ainsworth, E.A., 2017. Physiological and transcriptomic responses in the seed coat of field-grown soybean (Glycine max L. Merr.) to abiotic stress. BMC plant biology, 17(1), pp.1-11.

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Gene Identifier
AGI Gene Code
Uniprot ID
Bin Code
Bin Name
logFoldChange
p-value
FDR adjusted p-value
Functional Annotation
Glyma02g39370
AT2G30070
O22397
34.15
transport.potassium
-0.840673397
0.000209628
0.080302655
potassium transporter 1
Glyma10g26740
0
35.2
not assigned.unknown
1.462971436
0.000210489
0.080302655
Bifunctional inhibitor/lipid-transfer protein/seed storage 2S albumin superfamily protein
Glyma15g42050
AT1G79580
Q9MA17
33.99
development.unspecified
-2.825562596
0.000216576
0.080374645
NAC (No Apical Meristem) domain transcriptional regulator superfamily protein
Glyma17g09310
AT5G26660
Q8LPH6
27.3.25
RNA.regulation of transcription.MYB domain transcription factor family
-0.807034969
0.000217171
0.080374645
myb domain protein 86
Glyma19g32070
AT5G13630
Q9FNB0
19.10
tetrapyrrole synthesis.magnesium chelatase
-0.667664049
0.000217779
0.080374645
magnesium-chelatase subunit chlH, chloroplast, putative / Mg-protoporphyrin IX chelatase, putative (CHLH)
Glyma06g36590
AT5G53870
Q9FN39
26.19
misc.plastocyanin-like
-1.737059521
0.000228173
0.082638179
early nodulin-like protein 1
Glyma04g40580
AT5G54160
Q9FK25
16.2.1.9
secondary metabolism.phenylpropanoids.lignin biosynthesis.COMT
-0.793335672
0.00022878
0.082638179
O-methyltransferase 1
Glyma09g41000
AT5G01930
Q9LZV3
10.6.2
cell wall.degradation.mannan-xylose-arabinose-fucose
-0.840212589
0.000240322
0.085039577
Glycosyl hydrolase superfamily protein
Glyma04g37391
#N/A
#N/A
#N/A
1.305448334
0.000243067
0.085039577
Squamosa promoter-binding protein-like (SBP domain) transcription factor family protein
Glyma08g08200
AT5G13170
Q9FY94
33.99
development.unspecified
-1.002550435
0.000243967
0.085039577
senescence-associated gene 29
Glyma02g00440
AT3G63410
Q9LY74
16.1.3.3
secondary metabolism.isoprenoids.tocopherol biosynthesis.MPBQ/MSBQ methyltransferase
0.721375861
0.00024658
0.085039577
S-adenosyl-L-methionine-dependent methyltransferases superfamily protein
Glyma15g41130
AT3G12830
Q9LTV3
17.2.3
hormone metabolism.auxin.induced-regulated-responsive-activated
1.043409475
0.000247951
0.085039577
SAUR-like auxin-responsive protein family
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