Detail information of 3_circ_ag.12


General Information
CircRNA Name 3_circ_ag.12
ID in PlantcircBase ath_circ_021723
Alias NA
Organism Arabidpsis thaliana
Position chr3: 4819304-4822309  JBrowse»
Reference genome TAIR10.38
Type   ag-circRNA
Identification method CIRI
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing AT3G14415_circ_g.1 AT3G14415_circ_g.2 AT3G14415_circ_g.3 AT3G14415_circ_g.4 AT3G14415_circ_g.5 3_circ_ag.6 AT3G14415_circ_g.7 3_circ_ag.8 AT3G14415_circ_g.9 3_circ_ag.10 AT3G14415_circ_g.11 AT3G14415_circ_g.13 AT3G14415_circ_g.14 3_circ_ag.15 3_circ_ag.16 3_circ_ag.17 AT3G14415_circ_g.18 AT3G14415_circ_g.19 AT3G14415_circ_g.20 AT3G14415_circ_g.21 3_circ_ag.22 AT3G14415_circ_g.23 3_circ_ag.24 3_circ_ag.25 3_circ_ag.26 AT3G14415_circ_g.27 3_circ_igg.28 AT3G14420_circ_g.1 AT3G14420_circ_g.2 AT3G14420_circ_g.3 AT3G14420_circ_g.4 AT3G14420_circ_g.5 AT3G14420_circ_g.6 AT3G14420_circ_g.7 AT3G14420_circ_g.8 AT3G14420_circ_g.9 AT3G14420_circ_g.10 AT3G14420_circ_g.11 AT3G14420_circ_g.12 AT3G14420_circ_g.13 AT3G14420_circ_g.14 AT3G14420_circ_g.15
Support reads 11
Tissues aerial, inflorescences, seed
Exon boundary   Yes-Yes
Splicing signals   GT-AG
Number of exons covered NA
Experimental Information
Sanger sequencing for BSS   NA
PCR primers for BSS    NA
Sanger sequencing for FL    NA
PCR primers for FL    NA
Sequences
Splice junction sequence   CTAGAGACAAAGACTAAGGCTTGTTCTAACGACTCTGTTTGAAACTAATGTAGGGGAATATGCT
ACTGCTAGAGCTGCATCTGCAGCTGGAACTATCATGacactatcttcatgggctacttcaagtg
ttgaagaagttgcttccacagggccaggaatccgattcttccagctctatgtaagttgcttgat
gaacaatt
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence ACACTATCTTCATGGGCTACTTCAAGTGTTGAAGAAGTTGCTTCCACAGGGCCAGGAATCCGAT
TCTTCCAGCTCTATGTAAGTTGCTTGATGAACAATTCTGATATACCTGTGGTCACACGTGATGG
TTCACACGTTATGATTGTTCTGAGTAGGTATACAAGAACAGGAAGGTGGTTGAGCAGCTCGTGA
GAAGAGCCGAGAAAGCTGGGTTCAAAGCCATTGCTCTCACTGTAGACACCCCAAGGCTAGGTCG
CAGAGAGTCTGATATCAAGAACAGGTAAAGCCACATCAATTGAAATGTGATAAGAGTTGATTAG
ACTCGAATATGCAAACATATAGCTAAACAATTATAGAGTAACGATGTGTGTTCTTCTACTACAG
ATTCACTTTGCCTCCAAACCTGACATTGAAGAACTTTGAAGGTCTTGACCTTGGAAAGATGGAC
GAGGCAAGCATCGATCAGATAGTATCCATTACTTAAGTCTGAATAGTGTCAATGATCCACTTAA
AAACTAGCTTTAAAGCATACGGTTTGTTTCCTGATTATGTTCCTAAACTTGTTATGTTTCCACC
TGCAGGCCAATGACTCTGGCTTGGCTTCGTATGTTGCTGGTCAAATTGACCGTACCTTGAGCTG
GAAGGTAAGAGAATACAACAAATTTTCAGATACCACAGCAAAACCAAAAACTTGATTCAGATTG
CTCTAACTTTCATCTACAAAAACAGGATATCCAGTGGCTCCAAACAATCACCAACATGCCAATT
CTTGTCAAGGGTGTTCTTACAGGAGAGGATGGTGAGTTTCCATTTGCCAAACAAATAATTTCAA
CACTCTAGTGTCATAGAAATACCTGACAAGGTCAACTATTATTGTCCCCATGCAGCAAGGATAG
CGATTCAAGCTGGAGCAGCAGGGATCATTGTGTCAAATCATGGAGCTCGCCAGCTTGATTATGT
CCCAGCAACAATCTCAGCCCTTGAAGAGGTAGATCATTCTCGACTACAAACATAAATCTGTGTT
CTCGATAAGTATTTATGTACAAGCACATTAGCTTTGTTCTCTTGTGTTCAGGTTGTCAAAGCAA
CACAAGGACGAGTTCCTGTCTTCTTGGATGGTGGTGTTCGACGTGGCACTGATGTCTTCAAGGC
ACTTGCACTTGGAGCCTCTGGAATATTTGTAAGCATCACATCATATATCCATTCACCAGAAAGT
TGCTTAAAAACAGTAAATATTTAAAATGCCTTCTCAATCTCAGATTGGAAGACCAGTGGTTTTT
GCACTAGCTGCTGAAGGAGAAGCCGGAGTCAAAAAGGTGCTTCAAATGTTGCGTGATGAGTTCG
AGCTAACCATGGCACTAAGTGGGTGCCGGTCACTCAGTGAAATCACCCGTAACCACATTGTCAC
GGAATGGGACACTCCACGCCATTTGCCCAGGTTATAGAGAAGAAAAAAAAAACAGAGAACAGAA
ACAACACGGCACCAAAACGTATTCATATTCTGATTGATCACTTTGCTTCTACTCTGCTATATTT
ATATCTCGAAAAACTTGTTTCTCCCTATATCGGATCACAAAAACGTGCGTAGAGATTCTCTGTA
ATGCTATTTGGCTACATTTTACCTTTCCGTTTATTCTTATTGCTTGTACAATAGATGTTGATTC
CTACAATACCAATGAATACTAAAATCTGTTCCCGGAAAACTAGTATAGTCAGAAAATCTTACAT
TGCACCCAACTTCCACAATCCAAACACAGTTCAAATCTTATATTAACAGCAGCCAAAACCTCAC
AGAAACTAGCTACCAAAAGAGCACAAAAGAATACTATAGGAGAACTCAGATTAAGGAAAGACAG
GTTTGTGAGATTTACAATACCTTATTGAAGAAGAATGTAAGCGAATTCATCCTTCACTTTGTGC
TGGGCTAAGTATTGCATCGAAAAGCCCAAAATAATTTGGCTCACGAATTCGAAACTCTTGGATT
TATGCACTTTTCTGAAAAAAAAAGAAAAACGATTGGTTTACGAATTACTACTATTTTTCTACGA
GATTAAGAACGATAATATGTAAGAAAAATCTAAGACACACACCATCCATCAGATTTTTGTCCGT
ATCTCCTCATCAATTCTTCACCTCCAGCTTCTCATCCATATTTCTTTCTTTCCAATGCAAACAA
GTTTTCAACTGTTAAAAGATAAACCAAAAACTCACAAGCCAATTAATCTATCAGAAATATTTAA
CTTTTAACCAAATAAAAACGTTGAGATATATATAATATAAGCGTTCCTTACCACTCACACACTT
CATCTCTCCCCAGAGCTCTATTCCCATCAAGGTGTGTGAGATTCTCTGCTAAGACAAACCAAAA
ACCAGATTGTTTTGCGTTCATGGACATGTTCCTCTCTGGAGATTAGAATCGTAGCTATGACTAT
GTCTGAATTTCACAAGAGGTAGCTAACTCAGGCCTTTTTGCTCTTTTGACAGAAACACACTTCG
GAAGATGGAGATCACTAACGTTACCGAGTATGATGCAATCGCAAAGCAGAAGCTGCCTAAGATG
GTGTACGACTACTATGCATCTGGTGCAGAAGACCAATGGACTCTTCAAGAGAACAGAAACGCTT
TTGCAAGGATCCTGTGAGTTTTTCTTTTCTTTTCGTAAGACAAGAAATACTGTTTGTTATTGGT
TTTTACAATAGGTGTGATGCATACCTTGGGCTGTTTAATAGCTTTCGGCCTCGGATTCTGATTG
ATGTGAGCAAGATTGACATGACAACCACCGTCTTGGGGTTCAAGATCTCGATGCCCATCATGGT
TGCTCCAACTGCCATGCAAAAGATGGCTCACCCTGATGGTAAATACTGAGTTATGTAGAGACTA
GAGAGTGAAAACTTGTTTTAGTATCGCTAGAGACAAAGACTAAGGCTTGTTCTAACGACTCTGT
TTGAAACTAATGTAGGGGAATATGCTACTGCTAGAGCTGCATCTGCAGCTGGAACTATCATG
Conservation Information
Conserved circRNAs NA
PMCS 0.391647834
Functional Information
Coding potential N
Potential coding position NA
Potential amino acid sequence NA
Sponge-miRNAs NA
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Chu et al., 2017