CoexViewer
Coexpression detail for AT3G59870 and GCP1
Both axes are relative gene expression values in base-2 logarithm against the averaged expression levels of each gene.
Note: Samples whose contribution is more than 10 are outputted.
Species | Symbol | Function* | Entrez Gene ID* | Other ID | Selected probe | Expression level (percentile) | coex z ath-u.c4-0 | coex z ath-r.c6-0 | coex z ath-m.c9-0 | coex z ath-m.c4-1_notissue | coex z ath-m.c4-2_tis | coex z ath-m.c4-2_str | coex z ath-m.c4-2_hor | coex z ath-m.c4-2_bio | coex z ath-m.c4-2_lig | coex z ath-e.c1-0 |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
ath | AT3G59870 | uncharacterized protein | 825157 | At3g59870 | 0.54 | 6.55 | 7.46 | 3.86 | 419.50 | 2.18 | 1.70 | 2.16 | 2.04 | 0.23 | 6.29 | |
ath | GCP1 | glycoprotease 1 | 819135 | At2g45270 | 0.54 |
coex z = 7.4595 |
Both axes are relative gene expression values in base-2 logarithm against the averaged expression levels of each gene.
Sample contribution score* | 825157 (z-scored expression) |
819135 (z-scored expression) |
Experiment ID | Sample ID | Source Name in annotation |
---|---|---|---|---|---|
48.4 | -7.3 | -6.6 | SRP102178 | SRR5360842 | A high temperature RNA-seq dataset for studies of gene expression variation in the MAGIC line resource of Arabidopsis thaliana |
21.6 | -4.4 | -4.9 | ERP106238 | ERR2245583 | PORCUPINE (PCP) regulates development in response to temperature variations through alternative splicing in Arabidopsis |
20.9 | -4.8 | -4.4 | SRP345854 | SRR16934641 | Phytochrome B regulates reactive oxygen signaling during stress in plants. |
19.4 | -4.5 | -4.3 | SRP278468 | SRR12495354 | Autophagy mutants show delayed chloroplast development during de-etiolation in carbon limiting conditions |
18.4 | -4.2 | -4.4 | SRP139506 | SRR6982866 | Cell type identity determines transcriptomic immune responses in Arabidopsis thaliana roots |
18.1 | -7.8 | -2.3 | SRP100938 | SRR5304680 | During development, the Sku6 mutant roots engage different genes than wild type Col-0 roots, either on the ground or in spaceflight. |
17.5 | -4.9 | -3.6 | SRP297585 | SRR13239294 | mRNA profiling of Trihelix transcription factor ASIL mutants at the late heart stage embryos |
17.2 | 4.2 | 4.1 | SRP277946 | SRR12470193 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
17.1 | 3.9 | 4.3 | SRP277946 | SRR12470184 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
15.8 | -4.1 | -3.8 | ERP106738 | ERR2286776 | Effects of FT on FD during the transition to flowering at the SAM in Arabidopsis thaliana |
15.1 | -3.9 | -3.9 | SRP100933 | SRR5304255 | Gene expression profiling of the Arabidopsis Mediator MED5 mutant ref4-3 and suppressors thereof |
15.1 | 3.6 | 4.1 | SRP277946 | SRR12470192 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
14.9 | -3.9 | -3.8 | SRP132955 | SRR6739821 | Salicylic acid inhibits transcriptional repression activities of its receptors to promote defense gene expression |
14.9 | -3.6 | -4.1 | SRP095347 | SRR5120336 | Genetic influences on gene expression in Arabidopsis thaliana |
14.2 | 4.5 | 3.1 | SRP325022 | SRR14877257 | Transcriptional activation of auxin biosynthesis drives developmental reprogramming of differentiated cells |
14.2 | -2.6 | -5.4 | SRP101274 | SRR5308642 | During development, the Sku5 mutant roots engage different genes than wild type WS roots, either on the ground or in spaceflight. |
13.9 | -3.9 | -3.5 | SRP119072 | SRR6113965 | Nucleo-cytoplasmic partitioning of ARF proteins controls auxin responses in Arabidopsis thaliana |
13.1 | -4.0 | -3.2 | SRP169564 | SRR8206413 | Transcriptome profiling of Arabidopsis roots upon lateral root induction upon shy2-2 or slr-1 expression |
12.8 | -2.5 | -5.0 | ERP115370 | ERR3333443 | Arabidopsis tissue atlas |
12.7 | -2.4 | -5.4 | SRP285380 | SRR12712251 | Plant roots employ cell-layer specific programs to respond to pathogenic and beneficial microbes |
12.4 | -3.5 | -3.6 | ERP116123 | ERR3414875 | Specific functions for Mediator complex subunits from different modules in the transcriptional response of Arabidopsis thaliana to abiotic stress |
12.3 | -3.4 | -3.6 | SRP150217 | SRR7289571 | Widespread inter-individual gene expression variability in Arabidopsis thaliana |
12.1 | 3.5 | 3.4 | SRP310860 | SRR13977116 | Spider mite egg extract modifies Arabidopsis response to future infestations |
12.1 | -6.2 | -2.0 | SRP100712 | SRR5285650 | Plant development on ISS differes from the development on the ground and is influenced by the genetic background. |
11.8 | -4.1 | -2.9 | SRP274404 | SRR12356831 | Exchange of molecular and cellular information: a hybrid model that integrates stem cell divisions and key regulatory interactions [w5C6] |
11.8 | 3.5 | 3.4 | SRP037984 | SRR1170682 | Arabidopsis thaliana strain:Columbia-0 Transcriptome or Gene expression |
11.7 | -4.1 | -2.8 | SRP285119 | SRR12698780 | Time of day prioritizes the pool of translating mRNAs in response to heat stress |
11.3 | -3.9 | -2.9 | SRP365413 | SRR18441257 | Profiling of bulk and ribosome associated mRNA of Arabidopsis roots upon lateral root induction upon TOR activity inhibition with AZD8055 [dataset2] |
11.3 | -3.3 | -3.5 | SRP253504 | SRR11359544 | Time-lapse RNA-seq analysis to study the gene networks in cell fate transition in de novo root regeneration from detached Arabidospis leaves |
11.0 | -3.4 | -3.3 | SRP050945 | SRR1696859 | Gibberellin and Strigolactone signaling interplay in Arabidopsis thaliana |
10.9 | 3.4 | 3.2 | SRP051763 | SRR1744361 | Hybrid Mimics and Hybrid Vigor in Arabidopsis (F4 data) |
10.9 | -4.9 | -2.3 | SRP103817 | SRR5444399 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
10.9 | -3.4 | -3.2 | SRP065994 | SRR2932460 | Identification of plant vacuolar transporters mediating phosphate storage |
10.9 | -3.6 | -3.0 | SRP249854 | SRR11103165 | A dynamic pattern of local auxin sources is required for root regeneration |
10.8 | -3.5 | -3.1 | SRP150217 | SRR7289570 | Widespread inter-individual gene expression variability in Arabidopsis thaliana |
10.6 | -3.2 | -3.3 | SRP101641 | SRR5330626 | Chloroplast signalling gates thermotolerance in Arabidopsis |
10.6 | -2.8 | -3.8 | SRP150217 | SRR7289598 | Widespread inter-individual gene expression variability in Arabidopsis thaliana |
10.6 | -3.5 | -3.0 | SRP165731 | SRR8054398 | The embryonic transcriptome of Arabidopsis thaliana |
10.5 | 3.5 | 3.0 | SRP277946 | SRR12469632 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.5 | -3.2 | -3.3 | SRP117360 | SRR6030903 | The Arabidopsis transcription factor TCP5 during petal and inflorescence development |
10.5 | 3.1 | 3.4 | SRP277946 | SRR12470188 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.5 | 3.0 | 3.4 | SRP277946 | SRR12470194 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.5 | -3.3 | -3.2 | SRP073724 | SRR3419765 | Study of primary transcriptional changes induced by EDS1/PAD4 in Arabidopsis using an estradiol-inducible system |
10.4 | -3.4 | -3.1 | SRP251246 | SRR11213957 | Role of MPK4 in pathogen-associated molecular pattern-triggered alternative splicing in Arabidopsis |
10.3 | 3.3 | 3.1 | SRP254177 | SRR11429303 | Time course of brassinolide treatment on Arabidopsis seedlings |
10.3 | 3.2 | 3.2 | SRP189792 | SRR8800692 | Role of AtMLKLs in response to powdery mildew fungus |
10.3 | -3.1 | -3.4 | SRP272650 | SRR12272429 | Transcriptome analysis of TPR1/TPL mutant lines during Pst AvrRps4- triggered immunity |
10.2 | 3.2 | 3.2 | SRP029957 | SRR988015 | Arabidopsis thaliana strain:Columbia-0 Transcriptome or Gene expression |
10.1 | -3.1 | -3.3 | SRP361288 | SRR18124836 | Specific CBF transcription factors and cold-responsive genes fine-tune the early triggering response after acquisition of cold priming and memory |
The preparation time of this page was 2.2 [sec].