Co-expression analysis

Gene ID At4g18090
Gene name unknown protein
Module size 15 genes
NF 0.50
%ile 70.8



Co-expression network

pink confeito: Transcription factor, green bicone: Binding protein, red cone: Enzyme protein, blue sphere: Other protein
large node: VF over 0.50, middle node: over 0.25, small node: below 0.25



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. O.I. H.G. S.X. Other DB
0.6075.71.00At4g18090827534unknown proteinF:molecular_function unknown;P:biological_process unknown;C:cellular_component unknown;OPO.I.H.G.S.X.
0.6982.90.87At4g11590826764F-box family proteinF:molecular_function unknown;P:biological_process unknown;C:cellular_component unknown;PO.I.H.G.S.X.
0.6579.60.89At1g43680840955-F:molecular_function unknown;P:biological_process unknown;C:cellular_component unknown;PO.I.H.G.S.X.
0.6478.90.87At2g34880818053MEE27 (maternal effect embryo arrest 27)F:transcription factor activity;P:embryonic development ending in seed dormancy, pollen development, regulation of transcription;C:nucleus;MFPOO.I.H.G.S.X.
0.6176.70.88At2g32310817792-F:molecular_function unknown;P:biological_process unknown;C:cellular_component unknown;POMFO.I.H.G.S.X.
0.5570.60.86At3g20850821633proline-rich family proteinF:molecular_function unknown;P:biological_process unknown;C:endomembrane system;MPBOFVAO.I.H.G.S.X.
0.5267.40.86At3g29380822598transcription factor IIB (TFIIB) family proteinF:protein binding, RNA polymerase II transcription factor activity, transcription regulator activity, zinc ion binding, translation initiation factor activity;P:response to cadmium ion;C:transcription factor complex, nucleus;OAMFPVO.I.H.G.S.X.
0.5065.30.88At1g46840841118F-box family proteinF:molecular_function unknown;P:biological_process unknown;C:membrane;PO.I.H.G.S.X.
0.4862.50.87At2g37910818367cation/hydrogen exchanger, putative (CHX21)F:monovalent cation:proton antiporter activity;P:cation transport;C:endomembrane system;PO.I.H.G.S.X.
0.4457.20.87At3g58280824997-F:molecular_function unknown;P:biological_process unknown;C:cellular_component unknown;POBO.I.H.G.S.X.
0.4253.90.86At4g20900827838MS5 (MALE-STERILE 5)ms5 mutants are male sterile, pollen tetrads undergo an extra round of division after meiosis II without chromosome replication, resulting in chromosome abnormalities. Gene product has some similarity to SCP1, a rat synaptonemal complex protein.O.I.H.G.S.X.
0.4050.80.85At3g57960824965emsy N terminus domain-containing protein / ENT domain-containing proteinF:molecular_function unknown;P:biological_process unknown;C:cellular_component unknown;PO.I.H.G.S.X.
0.3846.70.87At2g23100816842DC1 domain-containing proteinF:protein binding, zinc ion binding;P:unknown;C:chloroplast;PMOFBVAO.I.H.G.S.X.
0.3745.00.87At1g70110843347lectin protein kinase family proteinF:carbohydrate binding, kinase activity;P:protein amino acid phosphorylation;C:endomembrane system;MPOBFVAO.I.H.G.S.X.
0.3235.70.86At1g10710837614-Computational predictions suggested the presence of a small cysteine-rich protein beginning in intron 9 (Silverstein 2007), but subsequent analysis revealed that this region contains a tenth exon for the At1g10710 gene.O.I.H.G.S.X.

Click More genes

Link to AtGenExpress Visualization Tool



Specific experiments for the module

Std2 GX %ile GSM ID Assay name GSE ID Experiment title Link to GEO
124.799.9GSM205428met1-3_leaf_fourth-selfed generation_rep01GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
96.999.9GSM205430met1-3_leaf_fourth-selfed generation_rep02GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
87.599.9GSM205426met1-3_leaf_second-selfed generation_rep02GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
80.599.9GSM205364met1-3_leaf_second-selfed generation_rep01GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
63.499.8GSM143306High_Na_seg_pool_tsu_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
57.399.8GSM143302Ts_genomic_hyb_1GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
54.599.8GSM253646Low_Mo_seg_pool_Ler_col_F2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
53.399.8GSM143300Ts_genomic_hyb_3GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
52.999.8GSM253647Col-0 3GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
52.799.8GSM143308Tsu_genomic_hyb_3GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
52.399.8GSM253649Col-0-2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
51.699.8GSM143307Low_Na_seg_pool_tsu_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
51.599.8GSM143309Tsu_genomic_hyb_2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
51.299.8GSM143298Low_Na_seg_pool_ts_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
51.199.8GSM253645High_Mo_seg_pool_Ler_col_F2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
48.299.8GSM143299High_Na_seg_pool_ts_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
47.899.8GSM143310Tsu_genomic_hyb_1GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
44.599.8GSM253652Ler 2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
42.299.8GSM143301Ts_genomic_hyb_2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
41.999.8GSM205435Col_ leaf_ wildtype_rep02GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
41.899.8GSM253648Col-0-1GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
40.599.8GSM253650Ler 3GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
39.399.8GSM253651Ler 1GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
35.299.7GSM10453WT Mature Green Seed 2GSE680Transcript Profiling of Arabidopsis Plant Life CycleLink to GEO
32.899.7GSM128661Underwood_1-14_Cor-5x10e7-10h_Rep2_ATH1GSE5520Genome-wide transcriptional analysis of the compatible A. thaliana-P. syringae pv. tomato DC3000 interactionLink to GEO
26.899.7GSM205432Col_ leaf_ wildtype_rep01GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
24.499.6GSM184556Whole roots 2hr KNO3 treated then incubated in protoplast-generating solution minus enzymes, biological rep2GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
22.999.6GSM184537Whole roots 2hr KCl control treated then frozen, biological rep1GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
20.999.6E-MEXP-739-raw-cel-1099467321
14.899.4GSM226530LCOLUMELLASBGSE8934A high resolution organ expression map reveals novel expression patterns and predicts cellular functionLink to GEO
14.499.4GSM10451WT Mature Green Seed 1GSE680Transcript Profiling of Arabidopsis Plant Life CycleLink to GEO
13.799.4GSM142852MG001_ATH1_A5-Torres-2N3GSE6176Impact of Type III effectors on plant defense responsesLink to GEO
13.399.4GSM128662Underwood_1-15_Cor-5x10e7-10h_Rep3_ATH1GSE5520Genome-wide transcriptional analysis of the compatible A. thaliana-P. syringae pv. tomato DC3000 interactionLink to GEO
12.599.3GSM133731Buchanan-Wollaston_A-3-bwoll-C0S_SLDGSE5727The effects of mutants in stress response pathways on gene expression during senescenceLink to GEO
11.599.3GSM184551Whole roots 2hr KCl control treated then incubated in protoplast-generating solution minus enzymes, biological rep1GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
11.399.3GSM133732Buchanan-Wollaston_A-4-bwoll-C5S_SLDGSE5727The effects of mutants in stress response pathways on gene expression during senescenceLink to GEO
10.199.2GSM184891Arabidopsis, root cells, epidermis and lateral root cap, standard conditions, replicate 3GSE7641Expression analysis of root cell-types after treatment with saltLink to GEO
10.199.2GSM133738Buchanan-Wollaston_A-10-bwoll-Co2_SLDGSE5727The effects of mutants in stress response pathways on gene expression during senescenceLink to GEO
10.099.2GSM128719Pieterse_1-5_avrPstDC3000-12h_Rep1_ATH1GSE5525Transcriptome changes of Arabidopsis during pathogen and insect attackLink to GEO
9.699.1E-MEXP-739-raw-cel-1099467339
8.999.0GSM133737Buchanan-Wollaston_A-9-bwoll-Co1_SLDGSE5727The effects of mutants in stress response pathways on gene expression during senescenceLink to GEO
8.799.0GSM131321AtGen_6-3421_Saltstress-Roots-6.0h_Rep1GSE5623AtGenExpress: Stress Treatments (Salt stress)Link to GEO
8.799.0E-MEXP-739-raw-cel-1099467330
8.699.0GSM128720Pieterse_1-6_avrPstDC3000-24h_Rep1_ATH1GSE5525Transcriptome changes of Arabidopsis during pathogen and insect attackLink to GEO

Biological processes inferred to relate to the module

SFGenesGO IDProcess NameLink to AmiGO
0.0651GO:0009556The process by which the microsporocyte undergoes meiosis, giving rise to four haploid microspores.Link to AmiGO
0.0221GO:0009555The process whose specific outcome is the progression of the pollen grain over time, from its formation to the mature structure. The process begins with the meiosis of the microsporocyte to form four haploid microspores. The nucleus of each microspore then divides by mitosis to form a two-celled organism, the pollen grain, that contains a tube cell as well as a smaller generative cell. The pollen grain is surrounded by an elaborate cell wall. In some species, the generative cell immediately divides again to give a pair of sperm cells. In most flowering plants, however this division takes place later, in the tube that develops when a pollen grain germinates.Link to AmiGO
0.0201GO:0006812The directed movement of cations, atoms or small molecules with a net positive charge, into, out of, within or between cells.Link to AmiGO

KEGG PATHWAY inferred to related to the module

SFGenesKEGG IDPathway nameLink to KEGG
0.042103022Basal transcription factorsLink to KEGG PATHWAY

Inter-species module comparison

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



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