Detail information of 2_circ_ag.8


General Information
CircRNA Name 2_circ_ag.8
ID in PlantcircBase ath_circ_013533
Alias Ath_circ_FC1220, Ath_circ_FC1221
Organism Arabidpsis thaliana
Position chr2: 7481133-7484749  JBrowse»
Reference genome TAIR10.38
Type   ag-circRNA
Identification method CIRI, find_circ
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing AT2G17190_circ_g.1 AT2G17190_circ_g.2 AT2G17190_circ_g.3 2_circ_ag.4 AT2G17190_circ_g.5 2_circ_ag.6 2_circ_ag.7 AT2G17200_circ_g.1 AT2G17200_circ_g.2
Support reads 5
Tissues root, whole_plant
Exon boundary   Yes-Yes
Splicing signals   CT-AC
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   ACACTAGGTGCAGTGGTTTGGCTTGCGGCCGGAGCAGGAGGTGGTGCTGAAGAAGGTGCAGAGC
CTCTAACCATATGAATGGTGTGATCAGCCTGCAAACcatagctgaggagagtctgatcgtcttt
gaggatacgtcccttgtaaatcaaacgctgctgatttgccggcacatcgctgttctgcgcaatt
aactcttt
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence CATAGCTGAGGAGAGTCTGATCGTCTTTGAGGATACGTCCCTTGTAAATCAAACGCTGCTGATT
TGCCGGCACATCGCTGTTCTGCGCAATTAACTCTTTGAAAGACTCCACCGTGGAATCGAGGCTC
GTCGTCACACTAAATTTCGTGCCATTGGAGCATCTGACGTTCACGGCAACAGCTACGCCTTCAG
CAGTCAGCGGCTGCCTCGAATCTGCTTCACCACCCATTCTAATTTCAGATCCTAGTTCAACAAA
TCGCGAAATTGATCGGAGAATCAAAAGCTCTAAACCTAGAAGAAAAAATCGTAGAAGAAGATTT
GAGGAGACTCGAAGCTCTAATAAGTCGGTTCTGAAGATTTCTTGAGGAAAGGGATATAAATTAT
TTTTGGTCGAATAACAAATGAGACTGCAGAAAATTAAAGAGTTATTTGGCCCCGAACGGCCAAT
TAAATGAGAATCCAGAAATGACTTGCGCTTCAGAGAACGTATCGACGACTCTTACTGGGTAAGA
TTGGGCCGGGTCGGGTCTAAATTGAGGCATTTGGTATATAGTTCAGGAAGGAATTGGCTGTAAC
TTGAATCTAATTGAAGATGATGAATCAACTAATTGGATATTCCTTTGCAACATGCCACTTCTCT
CTTTGGGCAATTTGGTTTAACCTTTGAACCGGATCAGAAGGAACCAAAAATTTAATGGGTTCAA
TTTCACTTTGATGTCTATAAACATTTACAGATGTTGTATGTTGTAACAACTTGAAATAAGTTAT
CAAAGATAAACACCCAAGATATATAGGTTTAAGGGTAGTTAAAGACGAAGAGTGACCACTGATA
ACAAATACCGTATTGATGCGGCTTTTCTATCAACAAAGTTCACGATCCTATCATATATAAATTT
TTATGAATTCGATGAATATATCATTACTGAAAAACACACATTCAAGCTGTTTATTCTATAACTG
AGAAGCCAGATGGAGAGACATCAGTTCATGAACCTGTATGCTACTGTCCGATACTCCCCAAGAG
TCGTTCTACAGCAGCGTTAACGTTACCATTGGTTGCAAGCAACGCCCTAATGTTCTCTGCTCTG
TCATAGAATCCCATTTCCTGCAACTGTTGCAATTGAGTAGCGTACCGCTCTTCAGGAGGAACTG
GAATCAAACAGACAAGTTTCAGTGGAACCATCACAACAGATGCGTAAGCTAAAAAAAATTTGTA
GTCTCTAACCATTGGATTGGTTCGTGCCACTCAGGCCGCCAGCACCAAGACTGCCAAACATATT
CATCAATAAATCCAGCCCCCCGTTATTTCCTGTCCCCATCAGTATTGTCATTCTACTATTAACT
TGTATACGATACAATATCTGCTAAAATAAAACATACATGAAAGCAAAGAGAACTAAAGAGTAGC
TGCTATACTACGTAACATAACTAAACCCTTTATACTACTGTAGAATAAATACATATAATATCTT
TAAGAGTACCTGTGGCAGCACCAGTTTGCCCCGCATCCCTACAGAGAAGATAGATTTGGGAACA
TGAATGCGGATTGATGAAAATCAAAATATGGAGATTAACACACATAGCTTATGCTAAAAGGCAT
AATCAAAAACAAACAAAATGTTATGAGCCCTATTCAAGTGTATTCCAACGATTAAAATGCTTTA
TTTATAGCCTCTTTGATAGATGTTACTAGTGATCAGCCCAGTAAATCATACAAGAGTTGCTGCA
TTAGTCATGGTTCAATCCTTTTCTTATTATAGAGATCGTTCACAACCAATCTTTTTAGCTAGTT
ACAACATTGTCTAAACACTAAACAACCCAAAAAACAATATGTAAAGGACATGTAAATGCTCAAC
TTTGTTTAAGCAAATCCAAACAACGAAGGGTTTTAACAAAACTTACTGGCTGGCTGTATTTCTA
TTCTGAGATAGTGATTGCTGTAGAGTCATCATTTGCTGAAGACCAAAAAACAATAGAAAACATT
AGGTTTAAGAAACTTCTTTACTTTGTCCCAAAAAAAAAAAAGAAAAGAAACTTCTTTACTTGAA
AATAGCTTAGATACAAAGAAATGTTTCTTTTGAGAGACTACCATGTTAAAAATTCATATGCATA
CAGACAATAGGGGACAAACTAACCTGCATCATCTCCGGAGAACTAAACTGACGAAGGAAATCTG
GGTTCTGCATCATTTCCCTCAACTGAGGATTCGAATCTAGCATGCTTCGGAGTTGTGGGTTAAG
ACTCATAAGCTGGAATCAAGGGAAAACAATTAATATATGTTCACAATGGTAAAAGGCTCTTAAG
TTCAGATCATTCTAGGCCTACCTGATTCATGTATTGTGGATTGGAAAATACGCTTTGCATCATC
TGCGATATGGCTGGGTTTTGCAATAACTGGCTCAATTGAGAAGCATCTGGAGTCGCACCAAGAG
GTGAATCCGCTCCAAGCATACCGAGTCCACCAAGGCCTCCAAGGCTTCCAAGACCACCAAGGCC
ACCAAGTCCAGGGCTCCTCGCATCCCCACCAACATTTGTCCTTCCAGGGGCAGTTGTCTGACCT
GTCAAGTAGCCCACAATATGTTCAATTATATTTAGTGTATTATGAGTAAATGTTAAATTAGAAA
CAATAAGCCAAGAAAATCATATGCAAAAACTACACATAACAACAAATTGTGGTAACTACACTAA
CTCACCAATTTACTATACACAATATTGTTCCTGAAGCAGAGCAGTGAACAGTAACGTCCATTTC
TTATAAACAAGCCACTTTTTCATTTATAAAATATTACTGCATCCTTCAAAAGACAAATAAAATC
GACAGGAGATTAGAAGATGAAAATGCAGTTACTTACCACCTGTAGCACCCCAAGGATTAGGAAG
TGGATTTGCATTCGGAATAGTCCCCGTTCCAGCATTTGGTGTCGAAGAATTATTAGAAGCATCA
CTTCCTTGCGTAGTGACCCCCTGGTTTCCCAACAGAGCAGCAAATGGATTGGAGCCTGTATTGT
TTCCAGCATTCCCGGACATAGTGGTAGCATTCATTAACGGTTCCTGGACATTTTCATACATACG
CCTAAGCATGTTAAATCCCTCAGGCATAGACTCAATATTACTCATAGCCCTATCAGTATTCCGC
ATCATTTCACGCATAAGCTCTGGGTTTCTTGCCGCTTCTAGAGTTTGACGAAGGATGCTTGGGT
CATTGAGCACATGACCAAGCTCAGGATTGCGATCTACAAGCTCACGCATTTGAGGGTTATTCAT
AATCATACTCCTCATAAACTCTGGGTTGTTCATAAGGTTCTGGATGGCTGGAGTATTCATCATA
TCTCTAATCATGTTAGGGTTTTGAGCTAGTTGTTGCTGTGTCTGCACAAGATCCGGAAGACCAG
CTCCAAATAACCCAGACATAGCATTTCCACCACCCAGAGGATTAAATCCAAGCCCAGGGAACAA
AGATTCCCCAGGACTCGCTCCTCCTAGATTCGAGCTATTATCTGAACCAACCCCTCGAGTAACA
CTAGGTGCAGTGGTTTGGCTTGCGGCCGGAGCAGGAGGTGGTGCTGAAGAAGGTGCAGAGCCTC
TAACCATATGAATGGTGTGATCAGCCTGCAAAC
Conservation Information
Conserved circRNAs NA
PMCS 0.872820218
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;Chen et al., 2017a