Expression viewer
Gene annotation for TPS-CIN
Expression pattern of TPS-CIN
Normalized expression (Base-2 logarithm) |
Experiment ID | Sample ID | Source Name in annotation |
---|---|---|---|
14.0 | SRP277946 | SRR12470184 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
12.7 | SRP277946 | SRR12470188 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
12.6 | SRP108880 | SRR6333615 | Spatial control of gene expression by miR319-regulated TCP transcription factors in leaf development |
12.1 | SRP193460 | SRR8944877 | Selective egg cell polyspermy bypasses the triploid block |
12.0 | SRP112501 | SRR5831044 | Combining chemical and genetic approaches to increase drought resistance in plants |
11.9 | SRP154321 | SRR7536122 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [Timecourse] |
11.8 | SRP103817 | SRR5444377 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
11.8 | SRP103817 | SRR5444445 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
11.7 | SRP051592 | SRR1736211 | A mechanistic linkage between low CO2 and evolution of C4 photosynthesis |
11.7 | SRP091641 | SRR4426608 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
11.7 | SRP091641 | SRR4426668 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
11.7 | SRP277946 | SRR12470191 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
11.5 | ERP115370 | ERR3333409 | Arabidopsis tissue atlas |
11.5 | SRP154323 | SRR7536266 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [DPI] |
11.4 | SRP100064 | SRR5263235 | Genetic Dissection of the Spaceflight Transcriptome Responses in Plants: are some responses unnecessary? |
11.4 | SRP277946 | SRR12470185 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
11.3 | SRP277946 | SRR12470189 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
11.3 | ERP115370 | ERR3333396 | Arabidopsis tissue atlas |
11.3 | SRP100064 | SRR5263229 | Genetic Dissection of the Spaceflight Transcriptome Responses in Plants: are some responses unnecessary? |
11.2 | SRP277946 | SRR12470201 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
11.1 | SRP266133 | SRR11934597 | Two unequally redundant 'helper' immune receptor families mediate Arabidopsis intracellular 'sensor' immune receptor functions |
11.1 | SRP126574 | SRR6369500 | Transcriptional Regulation of Nitrogen and Nitrogen-Related Metabolism in Arabidopsis |
11.1 | SRP082532 | SRR4048217 | WRKY transcription factors in early MAMP-triggered immunity (RNA-Seq) |
11.0 | SRP100064 | SRR5263230 | Genetic Dissection of the Spaceflight Transcriptome Responses in Plants: are some responses unnecessary? |
11.0 | SRP371011 | SRR18808287 | Dynamics of mRNA fate during light stress and recovery: from transcription to stability and translation |
10.9 | SRP277943 | SRR12469378 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of a community of commensal bacteria [RST] |
10.9 | SRP100064 | SRR5263231 | Genetic Dissection of the Spaceflight Transcriptome Responses in Plants: are some responses unnecessary? |
10.8 | SRP154321 | SRR7535963 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [Timecourse] |
10.8 | SRP154321 | SRR7535985 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [Timecourse] |
10.8 | SRP154321 | SRR7535993 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [Timecourse] |
10.8 | SRP154321 | SRR7536002 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [Timecourse] |
10.8 | SRP154321 | SRR7536026 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [Timecourse] |
10.8 | SRP277946 | SRR12470190 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.8 | SRP091641 | SRR4426611 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.8 | SRP091641 | SRR4426680 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.8 | SRP091641 | SRR4426770 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.8 | SRP091641 | SRR4426803 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.8 | SRP091641 | SRR4426964 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.8 | SRP095347 | SRR5120374 | Genetic influences on gene expression in Arabidopsis thaliana |
10.8 | SRP125388 | SRR6312367 | Transcriptome dynamics at Arabidopsis graft junctions reveal an intertissue recognition mechanism that activates vascular regeneration |
10.7 | SRP125388 | SRR6312378 | Transcriptome dynamics at Arabidopsis graft junctions reveal an intertissue recognition mechanism that activates vascular regeneration |
10.7 | ERP115370 | ERR3333408 | Arabidopsis tissue atlas |
10.6 | SRP107870 | SRR5588571 | Cis-regulated alternative splicing divergence and its potential contribution to environmental responses in Arabidopsis. |
10.5 | SRP277946 | SRR12470193 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.5 | SRP299921 | SRR13338328 | Transcriptome profiles of different light-signaling mutants |
10.4 | SRP125388 | SRR6312377 | Transcriptome dynamics at Arabidopsis graft junctions reveal an intertissue recognition mechanism that activates vascular regeneration |
10.4 | SRP125388 | SRR6312368 | Transcriptome dynamics at Arabidopsis graft junctions reveal an intertissue recognition mechanism that activates vascular regeneration |
10.4 | SRP126574 | SRR6369380 | Transcriptional Regulation of Nitrogen and Nitrogen-Related Metabolism in Arabidopsis |
10.4 | SRP154323 | SRR7536187 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [DPI] |
10.4 | SRP154323 | SRR7536188 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [DPI] |
10.4 | SRP154323 | SRR7536213 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [DPI] |
10.4 | SRP154323 | SRR7536220 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [DPI] |
10.4 | SRP154323 | SRR7536255 | Identification and characterization of a core set of ROS wave-associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light [DPI] |
10.4 | SRP218723 | SRR9995098 | Plant 22-nt siRNAs mediate translational repression and stress adaptation |
10.4 | SRP218723 | SRR9995099 | Plant 22-nt siRNAs mediate translational repression and stress adaptation |
10.4 | SRP277946 | SRR12470192 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.3 | SRP371011 | SRR18808231 | Dynamics of mRNA fate during light stress and recovery: from transcription to stability and translation |
10.3 | SRP100064 | SRR5263234 | Genetic Dissection of the Spaceflight Transcriptome Responses in Plants: are some responses unnecessary? |
10.3 | SRP095347 | SRR5120429 | Genetic influences on gene expression in Arabidopsis thaliana |
10.3 | SRP277946 | SRR12470187 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.2 | SRP346154 | SRR16948974 | Plants grow in lunar regolith |
10.2 | SRP050945 | SRR1696858 | Gibberellin and Strigolactone signaling interplay in Arabidopsis thaliana |
10.2 | SRP351690 | SRR17281225 | Somatic DNA demethylation generates tissue-specific methylation states and impacts flowering time [RNA-seq] |
10.2 | SRP361288 | SRR18124824 | Specific CBF transcription factors and cold-responsive genes fine-tune the early triggering response after acquisition of cold priming and memory |
10.2 | SRP187719 | SRR8689389 | Transcriptomic analysis of pip5k1 pip5k2 mutant and wild type plants before or after inoculation with powdery mildew Erysiphe cichoracearum |
10.2 | SRP100064 | SRR5263232 | Genetic Dissection of the Spaceflight Transcriptome Responses in Plants: are some responses unnecessary? |
10.2 | SRP100064 | SRR5263228 | Genetic Dissection of the Spaceflight Transcriptome Responses in Plants: are some responses unnecessary? |
10.1 | ERP115136 | ERR3310290 | RNA-seq of circadian timeseries sampling (LL2-3) of 13-14 day old Arabidopsis thaliana Col-0 (24 h to 68 h, sampled every 4 h) |
10.1 | SRP091641 | SRR4426517 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.1 | SRP091641 | SRR4426538 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.1 | SRP091641 | SRR4426768 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.1 | SRP091641 | SRR4426790 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.1 | SRP091641 | SRR4426809 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.1 | SRP091641 | SRR4426849 | Time-resolved transcriptome analysis with genetic perturbations reveals a critical time window for effective plant immunity |
10.1 | SRP306748 | SRR13724767 | The role of ATXR6 expression in modulating genome stability and transposable element repression in Arabidopsis [RNA-seq_9_12] |
10.1 | SRP277946 | SRR12470202 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.0 | SRP277946 | SRR12470194 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.0 | SRP126574 | SRR6369494 | Transcriptional Regulation of Nitrogen and Nitrogen-Related Metabolism in Arabidopsis |
10.0 | SRP193460 | SRR8944856 | Selective egg cell polyspermy bypasses the triploid block |
10.0 | SRP193460 | SRR8944858 | Selective egg cell polyspermy bypasses the triploid block |
10.0 | SRP193460 | SRR8944865 | Selective egg cell polyspermy bypasses the triploid block |
10.0 | SRP193460 | SRR8944868 | Selective egg cell polyspermy bypasses the triploid block |
10.0 | SRP193460 | SRR8944884 | Selective egg cell polyspermy bypasses the triploid block |
10.0 | SRP193460 | SRR8944905 | Selective egg cell polyspermy bypasses the triploid block |
10.0 | SRP193460 | SRR8944907 | Selective egg cell polyspermy bypasses the triploid block |
10.0 | SRP193460 | SRR8944880 | Selective egg cell polyspermy bypasses the triploid block |
10.0 | SRP277946 | SRR12470183 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
10.0 | SRP126574 | SRR6369396 | Transcriptional Regulation of Nitrogen and Nitrogen-Related Metabolism in Arabidopsis |
9.9 | SRP277946 | SRR12470208 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
9.9 | SRP279325 | SRR12546055 | Coordination of microbe-host homeostasis via a crosstalk with plant innate immunity |
9.9 | SRP095010 | SRR5100676 | Regulatory inversion in NAC networks steers the timing of age-dependent cell death in plants [RNA-Seq] |
9.9 | SRP136269 | SRR6880723 | Cold priming and triggering of Arabidopsis accessions |
9.9 | SRP136269 | SRR6880730 | Cold priming and triggering of Arabidopsis accessions |
9.8 | SRP277946 | SRR12470180 | RNA-seq of Arabidopsis thaliana roots exposed to the MAMP flg22 in the presence of individual commensal bacteria [MAE] |
9.8 | SRP103817 | SRR5444373 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
9.8 | SRP103817 | SRR5444376 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
9.8 | SRP103817 | SRR5444379 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
9.8 | SRP103817 | SRR5444386 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
9.8 | SRP103817 | SRR5444393 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
9.8 | SRP103817 | SRR5444446 | Signature of coevolution between determinants of defense and life span in Arabidopsis thaliana |
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