Specifically-expressed experiments

Gene ID Os10g0464400
Gene name
Functional description Riboflavin kinase / FAD synthetase family protein; similar to At4g21470: ATFMN/FHY (riboflavin kinase/FMN hydrolase) (Ev=3e-22)

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
3.995.8GSM207563Mudanjiang8 OsWRKY13 Overexpressing D11UM7-2 rep2GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
3.895.7GSM207562Mudanjiang8 OsWRKY13 Overexpressing D11UM7-2 rep1GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
3.895.7GSM207564Mudanjiang8 OsWRKY13 Overexpressing D11UM7-2 rep3GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
3.895.7GSM207560Mudanjiang8 OsWRKY13 Overexpressing D11UM1-1 rep3GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
3.795.6GSM207565Mudanjiang8 wild type control rep1GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
3.395.1GSM207566Mudanjiang8 wild type control rep2GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
3.294.9GSM207567Mudanjiang8 wild type control rep3GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
3.294.9GSM35713314-day-old seedling, rep 2GSE14275Expression data for heat shock in rice seedlingsLink to GEO
3.194.8GSM207559Mudanjiang8 OsWRKY13 Overexpressing D11UM1-1 rep2GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
2.693.8GSM207558Mudanjiang8 OsWRKY13 Overexpressing D11UM1-1 rep1GSE8380Rice Gene Network Inferred from Expression Profiling of Plants Overexpressing OsWRKY13Link to GEO
2.693.8GSM304669Control for the stable mutant rice line (1)GSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
2.593.6GSM116400Seedling_IAA treated_rep2GSE5167Rice seedling hormone treatmentLink to GEO
2.593.6GSM116399Seedling_IAA treated_rep1GSE5167Rice seedling hormone treatmentLink to GEO
2.593.6GSM116401Seedling_BAP treated_rep1GSE5167Rice seedling hormone treatmentLink to GEO
2.493.3GSM116195Seedling_Control_rep1GSE5167Rice seedling hormone treatmentLink to GEO
2.493.3GSM267999Green leaves in F9G RILs from parents linesGSE10872Molecular characterization and genetic analysis reveal SA0420 as an early senescing rice mutant with pleotropic Link to GEO
2.493.3GSM1592617-day-old Seedling, biological rep 3GSE6901Expression data for stress treatment in rice seedlingsLink to GEO
2.393.0GSM304653Mutant stable lineGSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
2.393.0GSM304394Stable transgenic rice line (1)GSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
2.393.0GSM304654Mutant stable line (1)GSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO



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