Co-expression analysis

Gene ID At3g22990
Gene name LFR (LEAF AND FLOWER RELATED)
Module size 20 genes
NF 0.50
%ile 70.0



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
0.5974.71.00At3g22990821873LFR (LEAF AND FLOWER RELATED)Armadillo-repeat containing protein. Involved in leaf and flower development. Located in nucleus. Broadly expressed throughout vegetative and floral tissues.O.I.H.G.S.X.
0.6781.60.94At4g11790826785Ran-binding protein 1 domain-containing protein / RanBP1 domain-containing proteinF:molecular_function unknown;P:intracellular transport;C:cellular_component unknown;OMBFPVAO.I.H.G.S.X.
0.6478.90.94At4g37210829875tetratricopeptide repeat (TPR)-containing proteinF:binding;P:biological_process unknown;C:cellular_component unknown;MFOPBVAO.I.H.G.S.X.
0.6277.30.94At3g04610819619FLK (flowering locus KH domain)F:RNA binding, nucleic acid binding;P:positive regulation of flower development;C:nucleus;MOPFVBO.I.H.G.S.X.
0.5673.00.94At5g63110836431HDA6 (HISTONE DEACETYLASE 6)RPD3-like histone deacetylase. HDA6 mutations specifically increase the expression of auxin-responsive transgenes, suggesting a role in transgene silencing.O.I.H.G.S.X.
0.5570.60.95At1g18450838425ATARP4Encodes a gene similar to actin-related proteins in other organisms. Member of nuclear ARP family of genes. Component of chromatin remodeling complexes, involved in chromatin-mediated gene regulation. Phenotype of the arp4-1 mutant allele revealed partial sterility due to defects in anther development. Targeting the distinct, 3' UTR of AtARP4 transcripts with RNA interference caused a drastic reduction in the level of AtARP4 protein expression, and resulted in strong pleiotropic phenotypes such as altered organization of plant organs, early flowering, delayed flower senescence and high levels of sterility. Western blot analysis and immunolabelling demonstrated a clear correlation between reductions in the level of AtARP4 expression and severity of the phenotypes.O.I.H.G.S.X.
0.5570.60.94At1g52380841668Ran-binding protein 1 domain-containing protein / RanBP1 domain-containing proteinF:molecular_function unknown;P:intracellular transport;C:cytosol, nucleus;MFOPBVO.I.H.G.S.X.
0.5368.60.94At1g61010842393CPSF73-I (CLEAVAGE AND POLYADENYLATION SPECIFICITY FACTOR 73-I)F:protein binding;P:mRNA polyadenylation;C:mRNA cleavage and polyadenylation specificity factor complex, nucleus;BOMAFPVO.I.H.G.S.X.
0.5166.30.94At1g26370839179RNA helicase, putativeF:in 6 functions;P:biological_process unknown;C:chloroplast;MBOFVPAO.I.H.G.S.X.
0.5065.30.94At1g73720843707transducin family protein / WD-40 repeat family proteinF:nucleotide binding;P:biological_process unknown;C:CUL4 RING ubiquitin ligase complex;MFOBPAVO.I.H.G.S.X.
0.5065.30.94At5g42920834304unknown proteinF:molecular_function unknown;P:biological_process unknown;C:cellular_component unknown;MFPOO.I.H.G.S.X.
0.5065.30.94At5g64960836620CDKC2 (Cyclin dependent kinase group C 2)Encodes CDKC;2, part of a CDKC kinase complex that is targeted by Cauliflower mosaic virus (CaMV) for transcriptional activation of viral genes. Also regulates plant growth and development. Co-localizes with spliceosomal components in a manner dependent on the transcriptional status of the cells and on CDKC2-kinase activity. Expression of CDKC2 modifies the location of spliceosomal components.O.I.H.G.S.X.
0.4963.50.94At1g54610841903protein kinase family proteinF:protein serine/threonine kinase activity, protein tyrosine kinase activity, protein kinase activity, kinase activity, ATP binding;P:protein amino acid phosphorylation, N-terminal protein myristoylation;C:plasma membrane;MPOFBVAO.I.H.G.S.X.
0.4761.20.95At1g55150841958DEAD box RNA helicase, putative (RH20)F:helicase activity, ATP-dependent helicase activity, ATP binding, nucleic acid binding;P:unknown;C:cellular_component unknown;BOMFPAVO.I.H.G.S.X.
0.4659.80.94At4g30890829213UBP24 (UBIQUITIN-SPECIFIC PROTEASE 24)Encodes a ubiquitin-specific protease.O.I.H.G.S.X.
0.4457.20.94At3g61240825296DEAD/DEAH box helicase, putative (RH12)F:helicase activity, ATP-dependent helicase activity, ATP binding, nucleic acid binding;P:unknown;C:unknown;OBMFPAVO.I.H.G.S.X.
0.4152.40.94At1g09760837505U2A' (U2 small nuclear ribonucleoprotein A)F:protein binding;P:nuclear mRNA splicing, via spliceosome, response to cold;C:in 6 components;MBOFPVO.I.H.G.S.X.
0.4152.40.94At3g51310824294VPS35C (VPS35 HOMOLOG C)Homolog of yeast retromer subunit VPS35. Part of a retromer-like protein complex involved in endosome to lysosome protein transport.O.I.H.G.S.X.
0.4050.80.94At5g27540832814MIRO1 (Miro-related GTP-ase 1)Encodes a protein with similarity to GTPases that is localized to the mitochondrion. Involved in embryogenesis, pollen tube growth and required for mitochondrial development.O.I.H.G.S.X.
0.3235.70.94At1g80930844433MIF4G domain-containing protein / MA3 domain-containing proteinF:protein binding, RNA binding, binding;P:translation, RNA metabolic process;C:cytosol, nucleus;MOFBPVAO.I.H.G.S.X.

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Link to AtGenExpress Visualization Tool



Specific experiments for the module

Std2 GX %ile GSM ID Assay name GSE ID Experiment title Link to GEO
68.899.9GSM143308Tsu_genomic_hyb_3GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
63.999.8GSM143309Tsu_genomic_hyb_2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
63.799.8GSM253651Ler 1GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
63.599.8GSM143301Ts_genomic_hyb_2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
60.899.8GSM143310Tsu_genomic_hyb_1GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
60.299.8GSM253646Low_Mo_seg_pool_Ler_col_F2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
60.299.8GSM253645High_Mo_seg_pool_Ler_col_F2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
59.799.8GSM143306High_Na_seg_pool_tsu_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
57.499.8GSM143307Low_Na_seg_pool_tsu_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
56.599.8GSM143298Low_Na_seg_pool_ts_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
54.899.8GSM253649Col-0-2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
54.799.8GSM143302Ts_genomic_hyb_1GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
54.699.8GSM253650Ler 3GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
54.299.8GSM253652Ler 2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
52.499.8GSM253647Col-0 3GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
51.199.8GSM143300Ts_genomic_hyb_3GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
49.899.8GSM143299High_Na_seg_pool_ts_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
48.699.8GSM184556Whole roots 2hr KNO3 treated then incubated in protoplast-generating solution minus enzymes, biological rep2GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
46.899.8GSM253648Col-0-1GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
28.199.7GSM205435Col_ leaf_ wildtype_rep02GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
22.499.6GSM205432Col_ leaf_ wildtype_rep01GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
18.799.5GSM184923Arabidopsis, root cells, protophloem, 140 mM NaCl, replicate 2GSE7641Expression analysis of root cell-types after treatment with saltLink to GEO
18.299.5GSM184551Whole roots 2hr KCl control treated then incubated in protoplast-generating solution minus enzymes, biological rep1GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
16.299.5GSM133962Fukuda_1-7_6A_Rep1_ATH1GSE5748In vitro tracheary element transdifferentiation of Col-0 suspension cells.Link to GEO
15.699.5GSM133963Fukuda_1-8_6B_Rep2_ATH1GSE5748In vitro tracheary element transdifferentiation of Col-0 suspension cells.Link to GEO
12.899.3GSM142623MC002_ATH1_A1.1-dubos-wtxGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
12.399.3GSM142625MC002_ATH1_A1.3-dubos-wtxGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
12.399.3GSM142624MC002_ATH1_A1.2-dubos-wtxGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
12.299.3GSM142641MC002_ATH1_A7.1-dubos-wLhGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
10.899.2GSM142642MC002_ATH1_A7.2-dubos-wLhGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
10.399.2GSM142646MC002_ATH1_A8.3-dubos-aihGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
10.399.2GSM142643MC002_ATH1_A7.3-dubos-wLhGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
10.299.2GSM184497Endodermis&Pericycle root cells 2hr transitory KNO3 treated, biological rep1GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
9.899.1GSM142644MC002_ATH1_A8.1-dubos-aihGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
9.799.1GSM142631MC002_ATH1_A3.3-dubos-6kxGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
9.699.1GSM142629MC002_ATH1_A3.1-dubos-6kxGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
9.599.1E-ATMX-35-raw-cel-1574334832
9.499.1GSM142630MC002_ATH1_A3.2-dubos-6kxGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
9.099.1E-ATMX-35-raw-cel-1574334816

Biological processes inferred to relate to the module

SFGenesGO IDProcess NameLink to AmiGO
0.1432GO:0046907The directed movement of substances within a cell.Link to AmiGO
0.0911GO:0050792Any process that modulates the rate or extent of the viral life cycle, the set of processes by which a virus reproduces and spreads among hosts.Link to AmiGO
0.0831GO:0006378The enzymatic addition of a sequence of 40-200 adenylyl residues at the 3' end of a eukaryotic mRNA primary transcript.Link to AmiGO

KEGG PATHWAY inferred to related to the module

SFGenesKEGG IDPathway nameLink to KEGG
0.029103018RNA degradationLink 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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