Specifically-expressed experiments

Gene ID Os09g0514400
Gene name
Functional description Protein farnesyltransferase/geranylgeranyltransferase type I alpha subunit (EC2.5.1.58) (EC 2.5.1.59) (CAAX farnesyltransferase alphasubunit) (Ras proteins prenyltransferase alpha)(FTase-alpha) (Type I protein geranyl-geranyltransferasealpha subunit) (GGTase-I-alpha); similar to At3g59380: FTA (FARNESYLTRANSFERASE A) (Ev=7e-4)

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
8.497.7GSM149411Rice Bala 0ppm Arsenate (Control) Rep3GSE4471Expression data from rice varieties Azucena and Bala grown in 0 and 1ppm arsenateLink to GEO
7.297.4GSM431930Root- +Fe-P biological rep2GSE17245Transcriptome analysis of iron and phosphorus interaction in rice seedlingsLink to GEO
7.297.4GSM431929Root- +Fe-P biological rep1GSE17245Transcriptome analysis of iron and phosphorus interaction in rice seedlingsLink to GEO
6.797.3GSM304677Unstable mutant line (1)GSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
6.197.1GSM302923seedling_rep2GSE11966Expression data from rice embryo,endosperm,root,leaf and seedlingLink to GEO
5.897.0GSM302922seedling_rep1GSE11966Expression data from rice embryo,endosperm,root,leaf and seedlingLink to GEO
5.796.9GSM431932Root- -Fe-P biological rep2GSE17245Transcriptome analysis of iron and phosphorus interaction in rice seedlingsLink to GEO
5.496.8GSM431931Root- -Fe-P biological rep1GSE17245Transcriptome analysis of iron and phosphorus interaction in rice seedlingsLink to GEO
5.196.6GSM304654Mutant stable line (1)GSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
5.196.6GSM304653Mutant stable lineGSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
5.096.6GSM304669Control for the stable mutant rice line (1)GSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
4.996.5GSM304671Unstable mutant lineGSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
4.996.5GSM149409Rice Azucena 0ppm Arsenate (Control) Rep3GSE4471Expression data from rice varieties Azucena and Bala grown in 0 and 1ppm arsenateLink to GEO
4.596.3GSM100439Rice Azucena 0ppm Arsenate (Control) Rep1GSE4471Expression data from rice varieties Azucena and Bala grown in 0 and 1ppm arsenateLink to GEO
4.596.3GSM100443Rice Bala 0ppm Arsenate (Control) Rep1GSE4471Expression data from rice varieties Azucena and Bala grown in 0 and 1ppm arsenateLink to GEO
4.396.1GSM304397Control for the stable transgenic rice line (1)GSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
4.296.0GSM154959Leaf_OsRR6-overexpressor_replicate 1GSE6720Gene expression in OsRR6-overexpression lineLink to GEO
4.296.0GSM304664Control for the stable mutant rice lineGSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO
4.095.9GSM100440Rice Azucena 0ppm Arsenate (Control) Rep2GSE4471Expression data from rice varieties Azucena and Bala grown in 0 and 1ppm arsenateLink to GEO
3.895.7GSM304395Control for the stable transgenic rice lineGSE12069Mycroarray analyses reveal that plant mutagenesis may induce more transcriptomic changes than transgene insertionLink to GEO



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