Detail information of 4_circ_ag.11


General Information
CircRNA Name 4_circ_ag.11
ID in PlantcircBase ath_circ_033212
Alias At_ciR501
Organism Arabidpsis thaliana
Position chr4: 13858220-13862031  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 4_circ_ag.12 4_circ_ag.13 AT4G27820_circ_g.1 4_circ_ag.2 AT4G27820_circ_g.3 AT4G27820_circ_g.4 4_circ_ag.5 4_circ_ag.6 AT4G27820_circ_g.7 4_circ_ag.8 AT4G27820_circ_g.9 4_circ_ag.10 4_circ_ag.11 4_circ_ag.12 4_circ_ag.13 AT4G27830_circ_g.1
Support reads 9/14
Tissues leaf/root, leaf, inflorescences
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   ATTCACATAGTACATTCCGAAGCTGGTCGTATATCCACTCAGTAACTCATACAAATCAATCATC
GACCATACAAAGTAACCTCTCGTGTCCGATCCATTCttcattgcgttgagtacagcgtcaatgt
aagcttgaatgtattcaattctttgtgtgtcttgtagtgtcgaatcgcgtaccatcggcatacc
tgtatttt
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence TTCATTGCGTTGAGTACAGCGTCAATGTAAGCTTGAATGTATTCAATTCTTTGTGTGTCTTGTA
GTGTCGAATCGCGTACCATCGGCATACCTGTATTTTATTTTATTATAATTGCAAGTTGAAGAAT
CTTAAAGAACAAGAAAGTGTGCTTTCAAGCAGACAAAGCAGAGTAAGAAAACAAAAAAGAATGA
AGTGTTGTACCATTTTCAAGAATATAGACTGGAGGATTGTTATAGCTCTGCTTTATATACTCAA
GAATACCTTCAAGACCCCATGGAGTAGCCTCCCACTTCAAAAAAAGCAACTGAGTTAGGAAAAT
CACGAGATTCAAGAATATAAATGTGCTATGCAGATTTGCATGACCTTACCACAAGAAATGAAGA
ATTCCCAGTGGCTATCCAAAGAAGAAGAATTCTTAGTTAAAAGAGTTCATCAGAAGCATTTTTA
TACTGGTTAATGATGAAAAAAACACTAATCTTACGAATTATATATACTCCCATGTCTTTAAAGA
AGCCTTCACCCATGCTGGGAAAGAGAGAAGCTGAAGGTTGGTGGTTTGTGACATAGAATGTTGT
GTAATGAATAATTCCTATAAAGTCAGATGATCCTTTAACTTGCTCTGACTCTTCCTCTGAGAAA
ACTGGTAATCTCGATCCCACAGTTTTCTTCATTTCATCCGGATAGTCTCCAAATACCAAAGGCT
TCAACATCCTGAATTTTCATAGTGATCTTCAGATTTTTTCCTCAAGTTATTGAAACATAGAAAG
AAAGTTTTTTTTCTCACCAGCCATATAAGAAAGTTTTAGCTCTTTGAGTTGCGATTTCATCATC
CTTGGAGTTTGTATATGGAGATAACCCGAATGCAAATATACTAAGCCCTATGGATCCTTTCTGC
TTACTCTGCACCATCATAATGAACTACGATCATACGAGGTTCAGGTTTTAAGAGCAAAAAATGT
GTGTATATACCTTGTACTTTAGTTTATACAACTTTGAAGCAGAGGCATGAGCTAGCAATATGTT
ATGGCCTGCAATATATGGTTCTGTAGAAGAATTTCCAGTAGAACAATTGACGAATTTATTAGGA
GAACAATGTCCAGGCGGCGCGGTTCCTTGGTCATAAGAACCAATGGCGAAAATTGTAGCTTCGT
TTATTGTAGTCCATAACTTCACATCCTCCCCAAACTCTCTGAAGCATACATCTGCATAAGCAGT
GAAGTCTTCTCTGCAATATAAAAAACAAACAACATTTTTTTACTTACAATTCATATAATTAAAA
AATGACATTGTTAGAGCAGAATCTTTTGTATCCTTTACATGATTTTGCGGTTGATCCATCCGCC
GTACTCATCTTCAAGAGACTGAGGAAGATCATAGTGGTAAAGTGTAACATGTGGTTCGATTCCT
GTTAATAGTTTTGCCAAAAAATTATATTTAGAAGTTATGAATTGGCTATAGTTGCGATTATATA
TAAAGACCAAAACCTCACCATGGCTTTTTAGGTCTTTGATGAGATTGTTGTAAAACAATAGTCC
TTTTGGATTAATGAGTCCTCTTCCATCTGTCACAAAGACAACAAGAGTTTAAGAGGTCAGAAAC
AATAACATCGTTACTTGCAAATAAAGAAACAAGGAAGAGGCGTAACTAGGTATAAGTCTTGACC
AGGAGATAGAGAATCTGAATGATTCTAAGCCCATTGTTGCCATCAGCTTAACATCTTCCTGCCA
AAGTAACAACAACATTGAATTTGAGAAAACAGAGTCAGAGACTTACGACAACTTAAAAGTAAAG
GGCAAAGAAGAGAGAGAGAGGAACCTTGTATTTGTGATACCCATCAGATGTTACATCTCCATTA
CCTGTATCGTCTGCAAGTTTTGAAGAAGAATATATGAGAAATTTTCCAATATAAACCCTCTAAT
AATGACTCATAATTTGAACCGCAGAGTAGTAACCTATGATATGAACTACACAAAGATACATGAA
TCTTTAATAATCCCTAGCCAGAACTTATGTTCTATTCGTAAATTGTTCACAAAAACAAAAACTC
AAACAAAAACAAAAATATATTTACAAGAGTTGGAGAAAGTATCCCAGACACTAGGAGTTCTTCC
ATCTTCAGCAACAGCTCCTTCCCACTATTTCCACAAATTCCCCAACATAGACAAAAGAAACTCG
ATTTTATAGACAACACAACTAAGATGAAGAACAGAGAAGCAGAGTCGAACCTGATAAGCAGAAG
TGGCGGCTCCGAAGAGGAAATCCTTTGGAAAACTGTTTCTGGTAAAGGCATCACTGTAGCTTGT
TGCCAAGAGGATGACCAGAAAAATGAAAAGTAGAGAGAAATGTTTCATTTTTATTTTGCGCCTT
TCGTTTTAGTGTAGAGTTTTGAAGATTTGGTTTTCAAGAAAAAATAATAATAAAAAATGAAGGT
GTTTGGAGTTCTCTTGACCGTAGCAAAACTGCGCAAGTGATCGATCTTTTTCTCTATGTGACAA
ATATATATATGTGAAGAAGAAAGATTCAAGAAATATCTCTTTTCGGTTTCCTTGTGATGTGACC
GACATATATTTCCACTTATATTATGTACACTACAATCATAAATTTGTTCTCACATGTGGATGTG
GTTCCATGCGAGGGGAGCGACCAATCACTATAACTGATGATGTTAATTATTGGCCCAAATAGGC
CCAAACATTTCATAACGTAAGGCCTATACGTTTGACCCAACAACGACAAAATTTACAAAATTCT
CGGCAAATTATGATTATTATAGGTTTCGGATTCATACGGCGTTTTATTCTTTATTCTAAAGTTG
GGAAGCTCCTTTGGTAGCTTGGATATCTTTTTTTTTCCTAATGAAGGGTAAGTCGCTTGGATAT
CTTGCGTTGTGAATTCAAAATCATATTATAAAATTCATCTCTAATCTTTTCTAACATTAGTATG
ACGGATATACATCAAAGTTACGTTTATTATAAGCTGATTCTGAGCGGTCTATCACTATAGCTTG
TATTTTCTTTTCTGATAAAAGATCTTCTATTTATCACTTATAGCTTGTTGTCAAAACTATGACC
AGAAAAATGGAAAAAAGAGACATAAGATTCATTTCCATTTTTCCTCCTTTAGTCTGAGTTCAAG
AGAATATAATTAAAGGGTTTTAGTGGTTTTCTTGGACCATTAAAAAGAAAAGTACATATCAAGT
GACCGATCTTTTCTATTCATTCTTCTTCCACTCACAAAACGCGACAAATATACATGTGAAGAAG
GCAATAGAAATGTATCTTCTTTTATTTTTCGGTGTAAGTGTAATCTTTGTGATGTGACTGACAT
AAATTTCCAATGCAACTCTATCTCTATGTACTGGAAATTTAAGTTGTTAATGTCTTTGTGACTT
TTGTGGTTGTGTTCGAATGCCGTTATCTAGTTTTTATCTTCAAGAATCTATGCAACATTTATTG
GTCTCAAAAGTTACATCTTTTTTTCTATGCAATTCTTATAAATTCATTTTGCCAAGTCACTGAG
ATTTTTCTTTGTATAGATGAAATAAACCAAATAAGGATCCTTTGGTTAAATATATTACAATGAA
GAAGAGCCAGAGATGTTGCTCTGCAACTGAATAGTATCTTGAGTAGCAACATCAATTGTACCAT
TGAGGAAACCAGTGTACCAAGAAGCAGAGAGCTTTGGAGTCCTCTTGCGACCAGGATCGCTGAA
ATTCACATAGTACATTCCGAAGCTGGTCGTATATCCACTCAGTAACTCATACAAATCAATCATC
GACCATACAAAGTAACCTCTCGTGTCCGATCCATTC
Conservation Information
Conserved circRNAs NA
PMCS 0.494820043
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 Ye et al., 2015;Chu et al., 2017