Std2 GX | %ile | GSM ID | Assay name | GSE ID | Experiment title | Link to GEO |
187.8 | 100.0 | GSM205435 | Col_ leaf_ wildtype_rep02 | GSE8279 | Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG Methylation |  |
67.5 | 99.8 | GSM143309 | Tsu_genomic_hyb_2 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
67.0 | 99.8 | GSM253646 | Low_Mo_seg_pool_Ler_col_F2 | GSE10039 | Low_Mo_Arabidopsis_mapping_MOT1 |  |
57.7 | 99.8 | GSM143308 | Tsu_genomic_hyb_3 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
56.4 | 99.8 | GSM253645 | High_Mo_seg_pool_Ler_col_F2 | GSE10039 | Low_Mo_Arabidopsis_mapping_MOT1 |  |
52.4 | 99.8 | GSM143307 | Low_Na_seg_pool_tsu_col_F2 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
50.1 | 99.8 | GSM143310 | Tsu_genomic_hyb_1 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
46.5 | 99.8 | GSM143306 | High_Na_seg_pool_tsu_col_F2 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
44.4 | 99.8 | GSM205364 | met1-3_leaf_second-selfed generation_rep01 | GSE8279 | Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG Methylation |  |
42.7 | 99.8 | GSM184551 | Whole roots 2hr KCl control treated then incubated in protoplast-generating solution minus enzymes, biological rep1 | GSE7631 | Cell-specific nitrogen responses in the Arabidopsis root |  |
38.7 | 99.8 | GSM253647 | Col-0 3 | GSE10039 | Low_Mo_Arabidopsis_mapping_MOT1 |  |
34.9 | 99.7 | GSM253648 | Col-0-1 | GSE10039 | Low_Mo_Arabidopsis_mapping_MOT1 |  |
34.3 | 99.7 | GSM253649 | Col-0-2 | GSE10039 | Low_Mo_Arabidopsis_mapping_MOT1 |  |
31.3 | 99.7 | GSM184497 | Endodermis&Pericycle root cells 2hr transitory KNO3 treated, biological rep1 | GSE7631 | Cell-specific nitrogen responses in the Arabidopsis root |  |
27.5 | 99.7 | GSM143298 | Low_Na_seg_pool_ts_col_F2 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
27.2 | 99.7 | GSM205426 | met1-3_leaf_second-selfed generation_rep02 | GSE8279 | Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG Methylation |  |
27.1 | 99.7 | GSM253650 | Ler 3 | GSE10039 | Low_Mo_Arabidopsis_mapping_MOT1 |  |
25.7 | 99.7 | GSM253651 | Ler 1 | GSE10039 | Low_Mo_Arabidopsis_mapping_MOT1 |  |
22.9 | 99.6 | GSM143302 | Ts_genomic_hyb_1 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
22.3 | 99.6 | GSM143301 | Ts_genomic_hyb_2 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
22.2 | 99.6 | GSM253652 | Ler 2 | GSE10039 | Low_Mo_Arabidopsis_mapping_MOT1 |  |
21.7 | 99.6 | GSM143299 | High_Na_seg_pool_ts_col_F2 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
18.9 | 99.5 | GSM258000 | Phloem exudate_2 | GSE10247 | Transcriptome analysis of the Arabidopsis phloem |  |
15.8 | 99.5 | GSM133779 | Lindsey_1-5_globular-basal_Rep2_ATH1 | GSE5730 | Transcriptional profiling of laser-capture micro-dissected embryonic tissues |  |
15.7 | 99.5 | GSM143300 | Ts_genomic_hyb_3 | GSE6203 | Rus_etal_High_Na_Arabidopsis_accessions_mapping_HKT1 |  |
13.6 | 99.4 | ArrayExpress | E-TABM-126-raw-cel-1242543305 | - | - | - |
13.4 | 99.4 | GSM226530 | LCOLUMELLASB | GSE8934 | A high resolution organ expression map reveals novel expression patterns and predicts cellular function |  |
13.4 | 99.4 | GSM133778 | Lindsey_1-2_globular-apical_Rep2_ATH1 | GSE5730 | Transcriptional profiling of laser-capture micro-dissected embryonic tissues |  |
12.9 | 99.3 | GSM205430 | met1-3_leaf_fourth-selfed generation_rep02 | GSE8279 | Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG Methylation |  |
12.0 | 99.3 | GSM184537 | Whole roots 2hr KCl control treated then frozen, biological rep1 | GSE7631 | Cell-specific nitrogen responses in the Arabidopsis root |  |
10.1 | 99.2 | GSM133760 | Lindsey_1-12_heart-stage-root_Rep3_ATH1 | GSE5730 | Transcriptional profiling of laser-capture micro-dissected embryonic tissues |  |
9.2 | 99.1 | GSM226544 | Slice2JW | GSE8934 | A high resolution organ expression map reveals novel expression patterns and predicts cellular function |  |