Co-expression analysis

Gene ID Os07g0526400
Gene name
Homology with ArabidopsisSimilar to At3g21920: pollen coat receptor kinase, putative (HF=4e+0)
Module size 7 genes
NF 0.06
%ile 4.4

Co-expressed genes

Click gene/probe ID to show a list of genes that are co-expressed with the gene.

VF %ile CC Gene ID Repr. ID Gene name Func.EvAGI codeArabidopsis gene name O.I. H.G. S.X. Other DB
0.4355.40.67Os07g0526400BI806666-Chalcone synthase (EC 2.3.1.74)(Naringenin-chalcone synthase)4e+0At3g21920pollen coat receptor kinase, putativeO.I.H.G.S.X.
0.3134.50.67Os02g0719600AK070415.1-SAM dependent carboxyl methyltransferase familyprotein8e-1At5g01900WRKY62O.I.H.G.S.X.
0.1611.30.67Os12g0559200BM421235-Lipoxygenase (EC 1.13.11.12)2e+0At5g57750zinc finger (C3HC4-type RING finger) family proteinO.I.H.G.S.X.
0.105.70.69Os01g0117600AK065867.1--3e-4At3g07070protein kinase family proteinO.I.H.G.S.X.
0.063.00.68Os06g0725200AK065261.1-Lipolytic enzyme, G-D-S-L family protein2e-1At5g66370unknown proteinO.I.H.G.S.X.
0.021.00.67Os12g0283400AK110798.1-Glutelin family protein2e+0At2g23550MES6 (METHYL ESTERASE 6)O.I.H.G.S.X.
0.021.00.68Os09g0517100AK100778.1-Disease resistance protein family protein5e-1At1g75550glycine-rich proteinO.I.H.G.S.X.

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Specific experiments for the module

Std2 GX %ile GSM ID Assay name GSE ID Experiment title Link to GEO
74.099.9GSM422672DroughtGSE16865Heterologous microarrays for the study of drought stress in MusaLink to GEO
14.798.6GSM377070Genomic DNA - 45 day old leaf sample - mutant d1GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
13.798.5GSM377077Genomic DNA - 45 day old leaf sample - mutant g6489GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
12.998.4GSM377078Genomic DNA - 45 day old leaf sample - mutant g6603GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
12.398.3GSM377075Genomic DNA - 45 day old leaf sample - mutant g650GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
12.098.3GSM377071Genomic DNA - 45 day old leaf sample - mutant d256GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
11.398.2GSM377085Genomic DNA - 45 day old leaf sample - mutant f2045GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
11.198.2GSM377084Genomic DNA - 45 day old leaf sample - mutant f1856GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
10.498.1GSM377076Genomic DNA - 45 day old leaf sample - mutant g6485GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
10.498.1GSM377081Genomic DNA - 45 day old leaf sample - mutant g7534GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO

Biological processes inferred to relate to the module

SFGenesGO IDProcess NameLink to AmiGO
0.0831GO:0006633The chemical reactions and pathways resulting in the formation of a fatty acid, any of the aliphatic monocarboxylic acids that can be liberated by hydrolysis from naturally occurring fats and oils. Fatty acids are predominantly straight-chain acids of 4 to 24 carbon atoms, which may be saturated or unsaturated; branched fatty acids and hydroxy fatty acids also occur, and very long chain acids of over 30 carbons are found in waxes.Link to AmiGO
0.0151GO:0009058The chemical reactions and pathways resulting in the formation of substances; typically the energy-requiring part of metabolism in which simpler substances are transformed into more complex ones.Link to AmiGO

Inter-species module comparison

Select a plant to compare co-expressed genes between species.
Arabidopsis_thaliana
Glycine_max
Hordeum_vulgare
Populus_trichocarpa
Triticum_aestivum
Vitis_vinifera
Zea_mays



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