Detailed infomation of each circRNA
| General Information | |
|---|---|
| CircRNA Name | AT5G61410_circ_g.6 |
| ID in PlantcircBase | ath_circ_045193 |
| Alias | At_ciR2195, AT5G61410_C1 |
| Organism | Arabidpsis thaliana |
| Position | chr5: 24684409-24684818 JBrowse» |
| Reference genome | TAIR10.38 |
| Type | e-circRNA |
| Identification method | KNIFE, MapSplice, PcircRNA_finder, find_circ, CIRI-full, CIRI2 |
| Parent gene | AT5G61410 |
| Parent gene annotation |
RPE |
| Parent gene strand | - |
| Alternative splicing | AT5G61410_circ_g.1 AT5G61410_circ_g.2 AT5G61410_circ_g.3 AT5G61410_circ_g.4 AT5G61410_circ_g.5 AT5G61410_circ_g.7 AT5G61410_circ_g.8 AT5G61410_circ_g.9 AT5G61410_circ_g.10 AT5G61410_circ_g.11 AT5G61410_circ_g.12 AT5G61410_circ_g.13 AT5G61410_circ_g.14 |
| Support reads | 4/79 |
| Tissues | leaf/leaf, inflorescences |
| Exon boundary | Yes-Yes |
| Splicing signals | CT-AC |
| Number of exons covered | AT5G61410.2:3 AT5G61410.1:3 |
| Conservation Information | |
|---|---|
| Conserved circRNAs | NA |
| PMCS | 0.269001342 |
| Functional Information | |
|---|---|
| Coding potential | Y |
| Potential coding position |
24684741-24684411(-) 24684629-24684815(+) |
| Potential amino acid sequence |
MVDLVLIMSVNPGFGGQSFIESQVKKISDLRKMCAEKGVNPWIEVDGGVTPANAYKIKSLGAKA GVVLNPGTPLSAIEYVLDMVDLVLIMSVNPGFGGQSFIESQVKKISDLRKMCAEKGVNPWIEVD GGVTPANAYKIKSLGAKAGVVLNPGTPLSAIEYVLDMVDLVLIMSVNPGFGGQSFIESQVKKIS DLRKMCAEKGVNPWIEVDGGVTPANAYKIKSLGAKAGVVLNPGTPLSAIEYVLDMVDLVLIMSV NPGFGGQSFIESQVKKISDLRKMCAEKGVNPWIEVDGGVTPANAYK(-) MIKTRSTISKTYSIALNGVPGFRTTPALAPKLFILYAFAGVTPPSTSIHGFTPFSAHIFLKSEI FFTWLSIKLCPPKPGLTDMIKTRSTISKTYSIALNGVPGFRTTPALAPKLFILYAFAGVTPPST SIHGFTPFSAHIFLKSEIFFTWLSIKLCPPKPGLTDMIKTRSTISKTYSIALNGVPGFRTTPAL APKLFILYAFAGVTPPSTSIHGFTPFSAHIFLKSEIFFTWLSIKLCPPKPGLTDMIKTRSTISK TYSIALNGVPGFRTTPALAPKLF(+) |
| Sponge-miRNAs | NA |
| circRNA-miRNA-mRNA network | VISUALIZATION |
| Potential function description | response to drought stress |
| Other Information | |
|---|---|
| References | Ye et al., 2015;Chu et al., 2017;Liu et al., 2017;Zhang et al., 2019 |