Detailed infomation of each circRNA
| General Information | |
|---|---|
| CircRNA Name | Zm00001d025003_circ_g.3 |
| ID in PlantcircBase | zma_circ_010262 |
| Alias | Zm10circ00032, GRMZM2G007721_C2 |
| Organism | Zea mays |
| Position | chr10: 99123962-99126404 JBrowse» |
| Reference genome | AGPv4.38 |
| Type | e-circRNA |
| Identification method | CIRI2 |
| Parent gene | Zm00001d025003 |
| Parent gene annotation |
Putative glycosyl transferase family 28 protein |
| Parent gene strand | + |
| Alternative splicing | Zm00001d025003_circ_g.1 Zm00001d025003_circ_g.2 Zm00001d025003_circ_g.4 |
| Support reads | NA |
| Tissues | leaf, endosperm |
| Exon boundary | Yes-Yes |
| Splicing signals | GT-AG |
| Number of exons covered | Zm00001d025003_T001:5 Zm00001d025003_T003:4 Zm00001d025003_T004:5 Zm00001d025003_T002:5 |
| Conservation Information | |
|---|---|
| Conserved circRNAs | NA |
| PMCS | 0.16935727 |
| Functional Information | |
|---|---|
| Coding potential | Y |
| Potential coding position |
99123987-99126401(+) 99126203-99123986(+) |
| Potential amino acid sequence |
MIWLGIRDMINEFRKKKLKLRPVTYLSGSQGSGNDIPHGYIWSPHLVPKPKDWGPKIDVVGFCF LDLASNYVPPEPLVEWLEAGDKPIYVGFGSLPVQDPQKMTEIIVKALEITGQRGIINKGWGGLG TLSEPKDFVYLLDNCPHDWLFLHCKAVVHHGGAGTTAAGLKAALSYQIVDSMIWLGIRDMINEF RKKKLKLRPVTYLSGSQGSGNDIPHGYIWSPHLVPKPKDWGPKIDVVGFCFLDLASNYVPPEPL VEWLEAGDKPIYVGFGSLPVQDPQKMTEIIVKALEITGQRGIINKGWGGLGTLSEPKDFVYLLD NCPHDWLFLHCKAVVHHGGAGTTAAGLKAALSYQIVDSMIWLGIRDMINEFRKKKLKLRPVTYL SGSQGSGNDIPHGYIWSPHLVPKPKDWGPKIDVVGFCFLDLASNYVPPEPLVEWLEAGDKPIYV GFGSLPVQDPQKMTEIIVKALEITGQRGIINKGWGGLGTLSEPKDFVYLLDNCPHDWLFLHCKA VVHHGGAGTTAAGLKAALSYQIVDSMIWLGIRDMINEFRKKKLKLRPVTYLSGSQGSGNDIPHG YIWSPHLVPKPKDWGPKIDVVGFCFLDLASNYVPPEPLVEWLEAGDKPIYVGFGSLPVQDPQKM TEIIVKALEITGQRGIINKGWGGLGTLSEPKDFVYLLDNCPHDWLFLHCKAVVHHGGAGTTAAG LKAA(+) MTGFFCTAKQWCIMVVLERQPQVLKQRFLIKLWTP*(+) |
| Sponge-miRNAs | NA |
| circRNA-miRNA-mRNA network | VISUALIZATION |
| Potential function description | responsive to drought stress |
| Other Information | |
|---|---|
| References | Han et al., 2020;Zhang et al., 2019 |