Co-expression analysis

Gene ID Os06g0707700
Gene name
Homology with ArabidopsisSimilar to At4g37220: stress-responsive protein, putative (HF=1e+0)
Module size 8 genes
NF 0.42
%ile 52.0

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
0.7189.60.85Os06g0707700AK100720.1-Disease resistance protein family protein1e+0At4g37220stress-responsive protein, putativeO.I.H.G.S.X.
0.5978.00.89Os12g01290009640.m00264-Eukaryotic protein of unknown function DUF872family protein3e-1At5g65350histone H3O.I.H.G.S.X.
0.5371.30.89Os02g0704800BM420590-Ornithine carbamoyltransferase OOCT1 (EC 2.1.3.3)2e+0At1g52680late embryogenesis abundant protein-related / LEA protein-relatedO.I.H.G.S.X.
0.5269.60.86Os07g06104009635.m04199--6e+0At4g2589060S acidic ribosomal protein P3 (RPP3A)O.I.H.G.S.X.
0.3846.90.90Os08g01294009636.m00269--4e+0At1g22520unknown proteinO.I.H.G.S.X.
0.3644.00.86Os12g0199100AK065572.1-Disease resistance protein family protein2e+0At5g49590unknown proteinO.I.H.G.S.X.
0.3541.70.87Os04g0380200AK104769.1-Conserved hypothetical protein1e-1At3g27210unknown proteinO.I.H.G.S.X.
0.2117.90.86Os09g0101100AK120565.1--5e-1At3g07425unknown 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
20.899.2GSM377070Genomic DNA - 45 day old leaf sample - mutant d1GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
17.398.9GSM377075Genomic DNA - 45 day old leaf sample - mutant g650GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
17.298.8GSM377073Genomic DNA - 45 day old leaf sample - mutant d2943GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
16.898.8GSM377084Genomic DNA - 45 day old leaf sample - mutant f1856GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
16.898.8GSM377076Genomic DNA - 45 day old leaf sample - mutant g6485GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
16.398.8GSM377077Genomic DNA - 45 day old leaf sample - mutant g6489GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
14.598.6GSM377082Genomic DNA - 45 day old leaf sample - mutant g9799GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
13.498.5GSM377072Genomic DNA - 45 day old leaf sample - mutant d1137GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
13.398.4GSM377071Genomic DNA - 45 day old leaf sample - mutant d256GSE15071Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarraysLink to GEO
12.398.3GSM377080Genomic DNA - 45 day old leaf sample - mutant g6728GSE15071Detection 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
0.0121GO:0006915A form of programmed cell death that begins when a cell receives internal or external signals that trigger the activity of proteolytic caspases, proceeds through a series of characteristic stages typically including rounding-up of the cell, retraction of pseudopodes, reduction of cellular volume (pyknosis), chromatin condensation, nuclear fragmentation (karyorrhexis), and plasma membrane blebbing (but maintenance of its integrity until the final stages of the process), and ends with the death of the cell.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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