Gene ID | Os05g0301500 |
Gene name | |
Homology with Arabidopsis | Similar to At1g76400: ribophorin I family protein (HF=7e-5) |
Module size | 7 genes |
NF | 0.69 |
%ile | 92.3 |
VF | %ile | CC | Gene ID | Repr. ID | Gene name | Func. | Ev | AGI code | Arabidopsis gene name | O.I. | H.G. | S.X. | Other DB |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
0.46 | 60.9 | 0.98 | Os05g0301500 | AK067027.1 | - | Ribophorin I (Fragment) | 7e-5 | At1g76400 | ribophorin I family protein | O.I. | H.G. | S.X. | |
0.86 | 96.4 | 0.98 | Os07g0209000 | AK058399.1 | - | Dolichyl-di-phosphooligosaccharide-proteinglycotransferase (Oligosaccharyltransferase)-like | 1e-24 | At5g66680 | DGL1 | O.I. | H.G. | S.X. | |
0.80 | 94.6 | 0.98 | Os05g0147400 | AK062146.1 | - | T-complex protein 1, zeta subunit (TCP-1-zeta)(CCT-zeta) (CCT-zeta- 1) | 6e-67 | At5g16070 | chaperonin, putative | O.I. | H.G. | S.X. | |
0.77 | 93.1 | 0.98 | Os02g0332200 | AK067672.1 | - | T-complex protein 1 delta subunit | 2e-29 | At3g18190 | chaperonin, putative | O.I. | H.G. | S.X. | |
0.67 | 87.2 | 0.98 | Os06g0538000 | AK069949.1 | - | Chaperonin Cpn60/TCP-1 family protein | 5e-83 | At5g26360 | chaperonin, putative | O.I. | H.G. | S.X. | |
0.53 | 71.3 | 0.98 | Os06g0562600 | AK067114.1 | - | T-complex protein 1, epsilon subunit(TCP-1-epsilon) (CCT-epsilon) (TCP-K36) | 2e-88 | At1g24510 | T-complex protein 1 epsilon subunit, putative / TCP-1-epsilon, putative / chaperonin, putative | O.I. | H.G. | S.X. | |
0.50 | 68.0 | 0.98 | Os08g0207000 | AK058705.1 | - | 40S ribosomal protein S11 (S18) (YS12) (RP41) | 4e-60 | At3g48930 | EMB1080 (embryo defective 1080) | O.I. | H.G. | S.X. |
Std2 GX | %ile | GSM ID | Assay name | GSE ID | Experiment title | Link to GEO |
---|---|---|---|---|---|---|
13.9 | 98.5 | GSM422676 | Control | GSE16865 | Heterologous microarrays for the study of drought stress in Musa | ![]() |
11.9 | 98.3 | GSM377075 | Genomic DNA - 45 day old leaf sample - mutant g650 | GSE15071 | Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarrays | ![]() |
11.8 | 98.3 | GSM377072 | Genomic DNA - 45 day old leaf sample - mutant d1137 | GSE15071 | Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarrays | ![]() |
11.7 | 98.2 | GSM377073 | Genomic DNA - 45 day old leaf sample - mutant d2943 | GSE15071 | Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarrays | ![]() |
11.3 | 98.2 | GSM377070 | Genomic DNA - 45 day old leaf sample - mutant d1 | GSE15071 | Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarrays | ![]() |
9.9 | 98.0 | GSM377085 | Genomic DNA - 45 day old leaf sample - mutant f2045 | GSE15071 | Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarrays | ![]() |
9.7 | 98.0 | GSM377084 | Genomic DNA - 45 day old leaf sample - mutant f1856 | GSE15071 | Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarrays | ![]() |
9.5 | 97.9 | GSM377074 | Genomic DNA - 45 day old leaf sample - mutant g282 | GSE15071 | Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarrays | ![]() |
9.3 | 97.9 | GSM377080 | Genomic DNA - 45 day old leaf sample - mutant g6728 | GSE15071 | Detection of genomic deletions in rice by genomic DNA hybridization to oligonucleotide microarrays | ![]() |
9.2 | 97.9 | GSM195224 | Suspension cell | GSE7951 | Genome-wide gene expression profiling of rice stigma | ![]() |
SF | Genes | GO ID | Process Name | Link to AmiGO |
---|---|---|---|---|
0.250 | 1 | GO:0018279 | The posttranslational glycosylation of protein via the N4 atom of peptidyl-asparagine forming N4-glycosyl-L-asparagine; the most common form is N-acetylglucosaminyl asparagine; N-acetylgalactosaminyl asparagine also occurs; this modification typically occurs in extracellular peptides with an N-X-(ST) motif. Partial modification has been observed to occur with cysteine, rather than serine or threonine, in the third position; secondary structure features are important, and proline in the second or fourth positions inhibits modification. | ![]() |
0.048 | 2 | GO:0006457 | The process of assisting in the covalent and noncovalent assembly of single chain polypeptides or multisubunit complexes into the correct tertiary structure. | ![]() |
Arabidopsis_thaliana |
Glycine_max |
Hordeum_vulgare |
Populus_trichocarpa |
Triticum_aestivum |
Vitis_vinifera |
Zea_mays |
Back to the CoP portal site
Back to the KAGIANA project homepage