Specifically-expressed experiments

Gene ID At2g21160
Gene name translocon-associated protein alpha (TRAP alpha) family protein
Functional description F:unknown;P:biological_process unknown;C:chloroplast thylakoid membrane, endoplasmic reticulum, plasma membrane, vacuole;MPFO

Click GSM ID or Assay name to show a list of genes that are specifically expressed in the GSM.

Std2 GX %ile GSM ID Assay name GSE ID Experiment title Link to GEO
14.299.4GSM133981Birnbaum_1-11_StageII-4_Rep4_ATH1GSE5749A gene expression map of the Arabidopsis rootLink to GEO
12.099.3GSM252669Regenerating Stump of Root Tip Cut at 130 mm first and then Recut after 0 hrs Taking 70 mm of Stump (4dpg) rep3GSE9996Organ regeneration in plants is independent of stem cell niche activityLink to GEO
10.999.2GSM133980Birnbaum_1-10_StageII-3_Rep3_ATH1GSE5749A gene expression map of the Arabidopsis rootLink to GEO
10.799.2GSM252692Section of Root from 270 mm to 340 mm harvested immediately rep3GSE9996Organ regeneration in plants is independent of stem cell niche activityLink to GEO
10.599.2GSM265428Arabidopsis, root, longitudinal zone 2, -Fe conditions, rep 1GSE10497Expression analysis of root developmental zones after iron deficiency (-Fe) treatmentLink to GEO
10.499.2GSM252691Section of Root from 270 mm to 340 mm harvested immediately rep2GSE9996Organ regeneration in plants is independent of stem cell niche activityLink to GEO
10.399.2GSM184841Arabidopsis, root, longitudinal zone 2, standard conditions, NaCl, replicate 1GSE7639Expression analysis of root developmental zones after treatment with saltLink to GEO
9.999.1GSM266665Arabidopsis, root cells, epidermis and lateral root cap, -Fe, replicate 4GSE10501Expression analysis of root cell-types after iron deficiency (-Fe) treatmentLink to GEO
9.699.1GSM252690Section of Root from 270 mm to 340 mm harvested immediately rep1GSE9996Organ regeneration in plants is independent of stem cell niche activityLink to GEO
9.099.1GSM226535L5SBGSE8934A high resolution organ expression map reveals novel expression patterns and predicts cellular functionLink to GEO
8.699.0GSM226534L4SBGSE8934A high resolution organ expression map reveals novel expression patterns and predicts cellular functionLink to GEO
8.499.0GSM133978Birnbaum_1-8_StageII-1_Rep1_ATH1GSE5749A gene expression map of the Arabidopsis rootLink to GEO
8.399.0GSM265420Arabidopsis, root, longitudinal zone 2, standard conditions, rep 1GSE10497Expression analysis of root developmental zones after iron deficiency (-Fe) treatmentLink to GEO
7.998.9GSM184534Protoplasted root cells 2hr continuous KNO3 treated, biological rep1GSE7631Cell-specific nitrogen responses in the Arabidopsis rootLink to GEO
7.898.9GSM184901Arabidopsis, root cells, stele, standard conditions, replicate 1GSE7641Expression analysis of root cell-types after treatment with saltLink to GEO
7.898.9GSM265421Arabidopsis, root, longitudinal zone 2, standard conditions, rep 2GSE10497Expression analysis of root developmental zones after iron deficiency (-Fe) treatmentLink to GEO
7.898.9GSM226546Slice4JWGSE8934A high resolution organ expression map reveals novel expression patterns and predicts cellular functionLink to GEO
7.798.9GSM133979Birnbaum_1-9_StageII-2_Rep2_ATH1GSE5749A gene expression map of the Arabidopsis rootLink to GEO
7.698.9GSM226545Slice3JWGSE8934A high resolution organ expression map reveals novel expression patterns and predicts cellular functionLink to GEO
7.698.9GSM184842Arabidopsis, root, longitudinal zone 2, standard conditions, NaCl, replicate 2GSE7639Expression analysis of root developmental zones after treatment with saltLink to GEO



Back to the CoP portal site

Back to the KAGIANA project homepage