Detail information of 1_circ_ag.5


General Information
CircRNA Name 1_circ_ag.5
ID in PlantcircBase ath_circ_000255
Alias NA
Organism Arabidpsis thaliana
Position chr1: 454170-456646  JBrowse»
Reference genome TAIR10.38
Type   ag-circRNA
Identification method find_circ
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing 1_circ_ag.36 AT1G02090_circ_g.1 AT1G02090_circ_g.2 AT1G02090_circ_g.3 AT1G02090_circ_g.4 AT1G02100_circ_g.1 AT1G02100_circ_g.2 AT1G02110_circ_g.1 AT1G02120_circ_g.1 AT1G02120_circ_g.2 AT1G02120_circ_g.3 AT1G02120_circ_g.4 AT1G02120_circ_g.5 AT1G02120_circ_g.6 AT1G02120_circ_g.7 AT1G02120_circ_g.8 AT1G02120_circ_g.9 AT1G02130_circ_g.1 AT1G02130_circ_g.2 AT1G02130_circ_g.3 AT1G02140_circ_g.1 AT1G02145_circ_g.1 AT1G02145_circ_g.2 AT1G02145_circ_g.3 AT1G02145_circ_g.4 AT1G02145_circ_g.5 AT1G02145_circ_g.6 AT1G02145_circ_g.7 AT1G02145_circ_g.8 AT1G02145_circ_g.9 AT1G02170_circ_g.1 AT1G02170_circ_g.2 AT1G02190_circ_g.1 1_circ_ag.2 AT1G02190_circ_g.3 AT1G02190_circ_g.4 AT1G02190_circ_g.5 AT1G02205_circ_g.1 AT1G02205_circ_g.2 AT1G02205_circ_g.3 AT1G02205_circ_g.4 AT1G02205_circ_g.5 1_circ_igg.1 AT1G02280_circ_g.1 AT1G02300_circ_g.1 1_circ_ag.2 AT1G02300_circ_g.3 1_circ_ag.4 AT1G02300_circ_g.6 AT1G02300_circ_g.7 1_circ_ag.8 AT1G02300_circ_g.9 1_circ_ag.10 1_circ_ag.11 1_circ_ag.12 AT1G02305_circ_g.1 AT1G02305_circ_g.2 AT1G02305_circ_g.3 AT1G02305_circ_g.4 AT1G02305_circ_g.5 AT1G02305_circ_g.6 AT1G02305_circ_g.7
Support reads 6
Tissues whole_plant
Exon boundary   No-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   GGTGTGCCTATTGTAAGCCATGATATATCTTTGAAGCTTCCAAAAGAATTTGATGCTAGAACCG
CTTGGTCACAGTGCACCAGTATTGGAAGGATCTTAGatcaggtgaaacatcatttcatttgagt
gggttatatattgaacaatgtgttactctggtcgacgataactttatggttttggtttcttttg
ggtcattg
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence ATCAGGTGAAACATCATTTCATTTGAGTGGGTTATATATTGAACAATGTGTTACTCTGGTCGAC
GATAACTTTATGGTTTTGGTTTCTTTTGGGTCATTGTGGTTCTTGCTGGGCATTTGGTGCTGTT
GAATCACTGTCCGACAGGTTCTGCATCAAATATAACTTGGTAACACAACTTTCTCCATCAAGCC
AAGATTGACGATTGCTACAGCTTTTTAATGTAATTGCTCTTCTTCCCTTGCAGAATGTTTCCTT
ATCTGCCAATGATGTCATAGCATGTTGTGGATTACTTTGCGGTTTTGGTTGTAATGGTGGTTTC
CCAATGGGTGCATGGTTGTACTTTAAGTACCACGGTGTAGTAACCCAAGAGGTAAATTCTCAGC
AAAGAACAAATAATAATGGCAATGTGGTCAAAGTGTATTGAACTTTTGTAATGCTGTTGGTTCT
TCAGTGTGATCCATACTTTGACAATACTGGTTGCTCTCACCCGGGATGTGAACCCACTTACCCT
ACACCAAAATGTGAGAGGAAATGTGTAAGCAGAAACCAGCTATGGGGTGAATCAAAACACTATG
GTGTCGGCGCATACAGAATCAATCCTGACCCTCAAGACATTATGGCTGAGGTTTACAAGAATGG
ACCTGTCGAGGTTGCTTTTACCGTTTACGAGGTAATGAAAAAGATTTTTGATTGATCAAACCAT
ATTGATTATATCTTGGTGAAGTCCACATTTTCATGTATCTTTTTGTTCTTCAGGACTTTGCACA
TTACAAATCAGGAGTATACAAGTACATAACGGGTACTAAGATTGGAGGTCATGCAGTTAAGCTC
ATTGGCTGGGGAACTTCTGATGACGGCGAAGATTATTGGGTATGAATTCTCTGGATTTTGATTC
AGATCAAGCTGAAAAAGTAATAACATTTTCTTGTTCGTTGTTGCAGTTGCTTGCAAATCAATGG
AACCGAAGCTGGGGTGATGTAAGTTCTTCTTTTCTCCAATCAAAACTTTTAAATTAGACCTTCC
AAGTAAACAAAAGCACAGAACCTGAGATAGAAAATGTGAAAATCTCAGGATGGTTACTTCAAGA
TCAGGAGAGGAACGAACGAATGTGGCATTGAACAGAGTGTTGTAGCTGGTTTACCTTCAGAGAA
GAACGTATTTAAAGGTATTACCACTTCAGATGATCTTCTGGTTTCCTCAGTCTAAACAAGACGA
TGTGTCCCTACTTCTGTAATATATCATTTGCAACTGTGTTGTAAGTTTAATATACCATTGAAAG
AATCACCTTCAATCAAAACAAAAGTATGTATAGCTTCTGTTAATATTCAATTTTACATGTTACC
ATGCAAGAGGACTGTTACAGTGTTTATTTGGTTTTGGTAAATTATAGCCACCTAAAAGTAACGC
CTTAATTAATCATTTTAAATTATGATTAACAATCAAGTAAGTGGAACAAATCAACGGTCAGGAT
CTTATCCTCGCAGTAATATGATCTGTCATTCTCTAACTAAAAAGATAAGCCTCTCTCTGTCTCT
TCCTAGAAAAGAAAACTTTGTACCTTTTCCAAAGTCTAAGCAAATCATTGTTTTTGATTACTGG
AACTCGTTGAGGGATTGAGAAAAAAATAATCAGAAGAGAAAGATCCATGGCTGATAATTGTATC
AGACTTCTTCACTCAGCCTCTGTTTTCTTCTGTTTAGGGCTTCTAATTTCATCCTTCAACTTGT
TGCAGGTACTTGAACCTTCATAATCTGTGTTTGAAATTGCTTACGAATATTTATGCATGTTAGT
GCTTTCTTCTAGTTACGATCTGTTTCGTAGCCTTCTCGGGTTTTTCTGGGTTTGATCATGTTTG
CTTATTTGTTGGACTCTTGAAGCTAGAAGTTTTAAAAAAAAAAATCGAAATTTTCTGGGTCTTA
ATCGAATCAATGAACGGGAAACATATTTGTGATATCAGAATTGTTTAAAGTTTTAAACTTTTGA
AGCTGGGTTGTCTCTTAATCTCAGGGTATTGCAGCTGAAAATCTTTCCAAGCAGAAACTGACCT
CATGGATTCTTCAGGTTTTGATCTTAATCCACCCAATTTTCTGTTTTGTTTTCGTCTCTTTTAG
ATTGCCTAAGCGTTGATGATCAACTTTTGCAGAATGAGATTGTAAAGGAAGTCAATGAGAATCC
AAACGCTGGATGGAAAGCTTCTTTCAATGATCGGTTTGCAAACGCCACTGTGAGTTTCTGATTA
CCTCCACCATTCCTTACATATATCCTATCAATGCTTATCACTGTTCCTGAAAACTTGTGTTTTT
GTGAATCTATGTGTAGGTTGCAGAGTTTAAGCGCCTTCTTGGTGTTAAACCAACACCAAAGACG
GAATTTTTGGGTGTGCCTATTGTAAGCCATGATATATCTTTGAAGCTTCCAAAAGAATTTGATG
CTAGAACCGCTTGGTCACAGTGCACCAGTATTGGAAGGATCTTAG
Conservation Information
Conserved circRNAs NA
PMCS 0.556119039
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