Co-expression analysis

Gene ID At5g24770
Gene name VSP2 (VEGETATIVE STORAGE PROTEIN 2)
Module size 11 genes
NF 0.35
%ile 47.6



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
0.6982.91.00At5g24770832546VSP2 (VEGETATIVE STORAGE PROTEIN 2)Has acid phosphatase activity dependent on the presence of divalent cations (Mg2+, Co2+, Zn2+, Mn2+) and anti-insect activity. Insects fed with the protein show a retarded development. Induced in response to abscisic acid, jasmonic acid, salt, water deficiency and wounding.O.I.H.G.S.X.
0.4862.50.73At1g52030841632MBP2 (MYROSINASE-BINDING PROTEIN 2)Similar to myrosinase binding proteins which may be involved in metabolizing glucosinolates and forming defense compounds to protect against herbivory. Also similar to lectins and other agglutinating factors. Expressed only in flowers.O.I.H.G.S.X.
0.3745.00.70At1g24070839019ATCSLA10encodes a gene similar to cellulose synthaseO.I.H.G.S.X.
0.3745.00.65At2g33810817948SPL3 (SQUAMOSA PROMOTER BINDING PROTEIN-LIKE 3)Encodes a member of the SPL (squamosa-promoter binding protein-like)gene family, a novel gene family encoding DNA binding proteins and putative transcription factors. Contains the SBP-box, which encodes the SBP-domain, required and sufficient for interaction with DNA. It binds DNA, may directly regulate AP1, and is involved in regulation of flowering and vegetative phase change. Its temporal expression is regulated by the microRNA miR156. The target site for the microRNA is in the 3'UTR.O.I.H.G.S.X.
0.3541.60.67At5g20740832197invertase/pectin methylesterase inhibitor family proteinF:enzyme inhibitor activity, pectinesterase inhibitor activity, pectinesterase activity;P:biological_process unknown;C:endomembrane system;PO.I.H.G.S.X.
0.3235.70.65At3g15270820758SPL5 (SQUAMOSA PROMOTER BINDING PROTEIN-LIKE 5)Encodes a member of the SPL (squamosa-promoter binding protein-like)gene family, a novel gene family encoding DNA binding proteins and putative transcription factors. Contains the SBP-box, which encodes the SBP-domain, required and sufficient for interaction with DNA. It is involved in regulation of flowering and vegetative phase change. Its temporal expression is regulated by the microRNA miR156. The target site for the microRNA is in the 3'UTR.O.I.H.G.S.X.
0.3133.80.66At2g42200818820SPL9 (SQUAMOSA PROMOTER BINDING PROTEIN-LIKE 9)Encodes a putative transcriptional regulator that is involved in the vegetative to reproductive phase transition. Expresssion is regulated by MIR156b.O.I.H.G.S.X.
0.2726.20.66At3g06160819790transcriptional factor B3 family proteinF:transcription factor activity, DNA binding;P:regulation of transcription, DNA-dependent;C:unknown;POO.I.H.G.S.X.
0.2217.50.69At1g52410841671TSA1 (TSK-ASSOCIATING PROTEIN 1)Contains a novel calcium-binding repeat sequence. Binds TSK in vitro. Localizes to small cytoplasmic vesicles in interphase cells. In cells synchronized for cell division, TSA1 and TSK relocalize to ends of spindle microtubules that are ahead of separating chromatids during metaphase and anaphase of mitosis. May be involved in mitosis together with TSK. Expressed preferentially in the flower and shoot apex. Can form multimers.O.I.H.G.S.X.
0.2115.80.68At1g27360839625squamosa promoter-binding protein-like 11 (SPL11)F:transcription factor activity, DNA binding;P:regulation of transcription;C:nucleus;PO.I.H.G.S.X.
0.2115.80.69At3g18850821418LPAT5F:acyltransferase activity;P:metabolic process;C:unknown;MBOFPVO.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
76.599.9GSM143310Tsu_genomic_hyb_1GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
76.599.9GSM184904Arabidopsis, root cells, protophloem, standard conditions, replicate 1GSE7641Expression analysis of root cell-types after treatment with saltLink to GEO
73.499.9GSM143298Low_Na_seg_pool_ts_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
59.599.8GSM143307Low_Na_seg_pool_tsu_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
59.499.8GSM143309Tsu_genomic_hyb_2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
52.599.8GSM184923Arabidopsis, root cells, protophloem, 140 mM NaCl, replicate 2GSE7641Expression analysis of root cell-types after treatment with saltLink to GEO
52.399.8GSM143299High_Na_seg_pool_ts_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
51.599.8GSM143306High_Na_seg_pool_tsu_col_F2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
50.099.8GSM143308Tsu_genomic_hyb_3GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
47.099.8GSM205435Col_ leaf_ wildtype_rep02GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
44.499.8GSM143301Ts_genomic_hyb_2GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
44.199.8GSM143300Ts_genomic_hyb_3GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
42.199.8GSM253649Col-0-2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
38.999.8GSM253647Col-0 3GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
36.399.7GSM253645High_Mo_seg_pool_Ler_col_F2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
34.199.7GSM184551Whole roots 2hr KCl control treated then incubated in protoplast-generating solution minus enzymes, biological rep1GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
32.999.7GSM253648Col-0-1GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
29.699.7GSM253646Low_Mo_seg_pool_Ler_col_F2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
29.099.7GSM143302Ts_genomic_hyb_1GSE6203Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1Link to GEO
28.899.7E-MEXP-1592-raw-cel-1617526952
26.899.7E-MEXP-1592-raw-cel-1617526920
25.199.6E-MEXP-1592-raw-cel-1617526888
23.099.6E-MEXP-1592-raw-cel-1617526856
22.899.6GSM253650Ler 3GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
22.099.6E-MEXP-1592-raw-cel-1617526824
21.499.6GSM253652Ler 2GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
21.299.6GSM253651Ler 1GSE10039Low_Mo_Arabidopsis_mapping_MOT1Link to GEO
20.899.6GSM184905Arabidopsis, root cells, protophloem, standard conditions, replicate 2GSE7641Expression analysis of root cell-types after treatment with saltLink to GEO
19.199.6E-MEXP-1592-raw-cel-1617526976
18.299.5GSM133762Lindsey_1-14_torpedo-root_Rep1_ATH1GSE5730Transcriptional profiling of laser-capture micro-dissected embryonic tissuesLink to GEO
18.099.5E-MEXP-1592-raw-cel-1617526848
17.399.5GSM184906Arabidopsis, root cells, protophloem, standard conditions, replicate 3GSE7641Expression analysis of root cell-types after treatment with saltLink to GEO
17.299.5E-MEXP-1592-raw-cel-1617526816
17.099.5E-MEXP-1592-raw-cel-1617526984
16.899.5GSM184922Arabidopsis, root cells, protophloem, 140 mM NaCl, replicate 1GSE7641Expression analysis of root cell-types after treatment with saltLink to GEO
16.199.5GSM131329AtGen_6-3621_Saltstress-Roots-24.0h_Rep1GSE5623AtGenExpress: Stress Treatments (Salt stress)Link to GEO
16.199.5GSM184556Whole roots 2hr KNO3 treated then incubated in protoplast-generating solution minus enzymes, biological rep2GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
16.099.5GSM311288Laser capture microdissected (LCM) embryo proper at the linear-cotyledon stage, biological replicate 2GSE12403Expression data from Arabidopsis seed compartments at the linear-cotyledon stageLink to GEO
15.999.5E-MEXP-1592-raw-cel-1617526944
15.099.4E-MEXP-1592-raw-cel-1617526880
14.899.4GSM131576ATGE_31_A2GSE5632AtGenExpress: Developmental series (flowers and pollen)Link to GEO
14.299.4GSM131577ATGE_31_B2GSE5632AtGenExpress: Developmental series (flowers and pollen)Link to GEO
13.999.4GSM133957Fukuda_1-2_0B_Rep2_ATH1GSE5748In vitro tracheary element transdifferentiation of Col-0 suspension cells.Link to GEO
13.599.4GSM131578ATGE_31_C2GSE5632AtGenExpress: Developmental series (flowers and pollen)Link to GEO
13.099.4GSM311287Laser capture microdissected (LCM) embryo proper at the linear-cotyledon stage, biological replicate 1GSE12403Expression data from Arabidopsis seed compartments at the linear-cotyledon stageLink to GEO
12.399.3GSM205426met1-3_leaf_second-selfed generation_rep02GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
11.999.3GSM205364met1-3_leaf_second-selfed generation_rep01GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
11.899.3E-TABM-63-raw-cel-681137087
11.799.3E-MEXP-509-raw-cel-829148525
11.699.3E-MEXP-509-raw-cel-829148456
11.699.3E-MEXP-1592-raw-cel-1617526912
10.899.2E-MEXP-509-raw-cel-829148597
10.699.2E-TABM-63-raw-cel-681137160
10.099.2GSM131326AtGen_6-3522_Saltstress-Roots-12.0h_Rep2GSE5623AtGenExpress: Stress Treatments (Salt stress)Link to GEO
9.899.1GSM205432Col_ leaf_ wildtype_rep01GSE8279Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG MethylationLink to GEO
9.899.1GSM311281Laser capture microdissected (LCM) chalazal seed coat at the pre-globular stage, biological replicate 1GSE12402Expression data from Arabidopsis seed compartments at the pre-globular stageLink to GEO
9.899.1E-MEXP-509-raw-cel-829148348
9.799.1E-MEXP-509-raw-cel-829148808
9.499.1GSM133964Fukuda_1-9_8A_Rep1_ATH1GSE5748In vitro tracheary element transdifferentiation of Col-0 suspension cells.Link to GEO
9.399.1GSM311282Laser capture microdissected (LCM) chalazal seed coat at the pre-globular stage, biological replicate 2GSE12402Expression data from Arabidopsis seed compartments at the pre-globular stageLink to GEO
9.399.1E-MEXP-509-raw-cel-829148420
9.299.1GSM131330AtGen_6-3622_Saltstress-Roots-24.0h_Rep2GSE5623AtGenExpress: Stress Treatments (Salt stress)Link to GEO
9.299.1GSM133966Fukuda_1-11_10A_Rep1_ATH1GSE5748In vitro tracheary element transdifferentiation of Col-0 suspension cells.Link to GEO
9.199.1GSM47019Ler 9GSE2473Small RNA biogenesis mutantsLink to GEO
9.099.1GSM189112HSP90_Reduced_RNAi-A3_Biological_Replicate_2_Technical_Replicate_1GSE7796Phenotypic Diversity and Altered Environmental Plasticity in Arabidopsis thaliana with Reduced HSP90 LevelsLink to GEO
8.999.0GSM133967Fukuda_1-12_10B_Rep2_ATH1GSE5748In vitro tracheary element transdifferentiation of Col-0 suspension cells.Link to GEO
8.999.0GSM142631MC002_ATH1_A3.3-dubos-6kxGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO
8.899.0GSM133965Fukuda_1-10_8B_Rep2_ATH1GSE5748In vitro tracheary element transdifferentiation of Col-0 suspension cells.Link to GEO
8.699.0GSM142624MC002_ATH1_A1.2-dubos-wtxGSE6151The mechanisms involved in the interplay between dormancy and secondary growth in ArabidopsisLink to GEO

Biological processes inferred to relate to the module

SFGenesGO IDProcess NameLink to AmiGO
0.2672GO:0010321Any process that modulates the frequency, rate or extent of vegetative phase change. Vegetative phase change is the set of post-embryonic processes involved in the transition of a plant from a juvenile phase of vegetative development to an adult phase of vegetative development.Link to AmiGO
0.1181GO:0010229The process whose specific outcome is the progression of an inflorescence over time, from its formation to the mature structure.Link to AmiGO
0.1051GO:0002213A response to protect an organism from a directly detected or perceived external threat from an insect or insects to that organism.Link to AmiGO

KEGG PATHWAY inferred to related to the module

SFGenesKEGG IDPathway nameLink to KEGG

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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