Detail information of 4_circ_ag.6


General Information
CircRNA Name 4_circ_ag.6
ID in PlantcircBase ath_circ_033220
Alias NA
Organism Arabidpsis thaliana
Position chr4: 13859190-13863033  JBrowse»
Reference genome TAIR10.38
Type   ag-circRNA
Identification method CIRI
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing 4_circ_ag.11 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 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 2
Tissues inflorescences
Exon boundary   Yes-No
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   CGATTTCATCATCCTTGGAGTTTGTATATGGAGATAACCCGAATGCAAATATACTAAGCCCTAT
GGATCCTTTCTGCGTACTCTGCACCATCATAATGAActtgtactttagtttatacaactttgaa
gcagaggcatgagctagcaatatgttatggcctgcaatatatggttctgtagaagaatttccag
tagaacaa
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence CTTGTACTTTAGTTTATACAACTTTGAAGCAGAGGCATGAGCTAGCAATATGTTATGGCCTGCA
ATATATGGTTCTGTAGAAGAATTTCCAGTAGAACAATTGACGAATTTATTAGGAGAACAATGTC
CAGGCGGCGCGGTTCCTTGGTCATAAGAACCAATGGCGAAAATTGTAGCTTCGTTTATTGTAGT
CCATAACTTCACATCCTCCCCAAACTCTCTGAAGCATACATCTGCATAAGCAGTGAAGTCTTCT
CTGCAATATAAAAAACAAACAACATTTTTTTACTTACAATTCATATAATTAAAAAATGACATTG
TTAGAGCAGAATCTTTTGTATCCTTTACATGATTTTGCGGTTGATCCATCCGCCGTACTCATCT
TCAAGAGACTGAGGAAGATCATAGTGGTAAAGTGTAACATGTGGTTCGATTCCTGTTAATAGTT
TTGCCAAAAAATTATATTTAGAAGTTATGAATTGGCTATAGTTGCGATTATATATAAAGACCAA
AACCTCACCATGGCTTTTTAGGTCTTTGATGAGATTGTTGTAAAACAATAGTCCTTTTGGATTA
ATGAGTCCTCTTCCATCTGTCACAAAGACAACAAGAGTTTAAGAGGTCAGAAACAATAACATCG
TTACTTGCAAATAAAGAAACAAGGAAGAGGCGTAACTAGGTATAAGTCTTGACCAGGAGATAGA
GAATCTGAATGATTCTAAGCCCATTGTTGCCATCAGCTTAACATCTTCCTGCCAAAGTAACAAC
AACATTGAATTTGAGAAAACAGAGTCAGAGACTTACGACAACTTAAAAGTAAAGGGCAAAGAAG
AGAGAGAGAGGAACCTTGTATTTGTGATACCCATCAGATGTTACATCTCCATTACCTGTATCGT
CTGCAAGTTTTGAAGAAGAATATATGAGAAATTTTCCAATATAAACCCTCTAATAATGACTCAT
AATTTGAACCGCAGAGTAGTAACCTATGATATGAACTACACAAAGATACATGAATCTTTAATAA
TCCCTAGCCAGAACTTATGTTCTATTCGTAAATTGTTCACAAAAACAAAAACTCAAACAAAAAC
AAAAATATATTTACAAGAGTTGGAGAAAGTATCCCAGACACTAGGAGTTCTTCCATCTTCAGCA
ACAGCTCCTTCCCACTATTTCCACAAATTCCCCAACATAGACAAAAGAAACTCGATTTTATAGA
CAACACAACTAAGATGAAGAACAGAGAAGCAGAGTCGAACCTGATAAGCAGAAGTGGCGGCTCC
GAAGAGGAAATCCTTTGGAAAACTGTTTCTGGTAAAGGCATCACTGTAGCTTGTTGCCAAGAGG
ATGACCAGAAAAATGAAAAGTAGAGAGAAATGTTTCATTTTTATTTTGCGCCTTTCGTTTTAGT
GTAGAGTTTTGAAGATTTGGTTTTCAAGAAAAAATAATAATAAAAAATGAAGGTGTTTGGAGTT
CTCTTGACCGTAGCAAAACTGCGCAAGTGATCGATCTTTTTCTCTATGTGACAAATATATATAT
GTGAAGAAGAAAGATTCAAGAAATATCTCTTTTCGGTTTCCTTGTGATGTGACCGACATATATT
TCCACTTATATTATGTACACTACAATCATAAATTTGTTCTCACATGTGGATGTGGTTCCATGCG
AGGGGAGCGACCAATCACTATAACTGATGATGTTAATTATTGGCCCAAATAGGCCCAAACATTT
CATAACGTAAGGCCTATACGTTTGACCCAACAACGACAAAATTTACAAAATTCTCGGCAAATTA
TGATTATTATAGGTTTCGGATTCATACGGCGTTTTATTCTTTATTCTAAAGTTGGGAAGCTCCT
TTGGTAGCTTGGATATCTTTTTTTTTCCTAATGAAGGGTAAGTCGCTTGGATATCTTGCGTTGT
GAATTCAAAATCATATTATAAAATTCATCTCTAATCTTTTCTAACATTAGTATGACGGATATAC
ATCAAAGTTACGTTTATTATAAGCTGATTCTGAGCGGTCTATCACTATAGCTTGTATTTTCTTT
TCTGATAAAAGATCTTCTATTTATCACTTATAGCTTGTTGTCAAAACTATGACCAGAAAAATGG
AAAAAAGAGACATAAGATTCATTTCCATTTTTCCTCCTTTAGTCTGAGTTCAAGAGAATATAAT
TAAAGGGTTTTAGTGGTTTTCTTGGACCATTAAAAAGAAAAGTACATATCAAGTGACCGATCTT
TTCTATTCATTCTTCTTCCACTCACAAAACGCGACAAATATACATGTGAAGAAGGCAATAGAAA
TGTATCTTCTTTTATTTTTCGGTGTAAGTGTAATCTTTGTGATGTGACTGACATAAATTTCCAA
TGCAACTCTATCTCTATGTACTGGAAATTTAAGTTGTTAATGTCTTTGTGACTTTTGTGGTTGT
GTTCGAATGCCGTTATCTAGTTTTTATCTTCAAGAATCTATGCAACATTTATTGGTCTCAAAAG
TTACATCTTTTTTTCTATGCAATTCTTATAAATTCATTTTGCCAAGTCACTGAGATTTTTCTTT
GTATAGATGAAATAAACCAAATAAGGATCCTTTGGTTAAATATATTACAATGAAGAAGAGCCAG
AGATGTTGCTCTGCAACTGAATAGTATCTTGAGTAGCAACATCAATTGTACCATTGAGGAAACC
AGTGTACCAAGAAGCAGAGAGCTTTGGAGTCCTCTTGCGACCAGGATCGCTGAAATTCACATAG
TACATTCCGAAGCTGGTCGTATATCCACTCAGTAACTCATACAAATCAATCATCGACCATACAA
AGTAACCTCTCGTGTCCGATCCATTCCTGATCAGTAAGTAAAACTGGAATTAGACCATGAATCA
TAATGTAGTAATATGAGGACTAAAAGATGCAGAAGGAGAATCATACTTGATGGCATTGAGCATA
GCACCAATGTAAGCTTGAATGAATTCAATTCTTTGTGTGTCTTGTAATGTCGAGTCGCGTCCCA
TCGGCATACCTGTTTTTATATTTAAAAAATTGCAAGTTGAAGAATCTTAAAGAACAAGAAAGTG
TGCTTTCAAGCAGACACAACAGAGTAAGAAAACAAAAGAGAATGAAGTGTTGTACCATTTTCAA
GAATATAGATTGGAGGATTGTTATAGCTCTGCTTTATATACTCAAGAATACCTTCAAGACCCCA
TGGAGTAGCCTCCCACTTCAAGAAAAACAATTGATTCAAGAAGAGCTTTTGGCAAAAAATATAT
ATGTATTATGCAAATTTGCAGGACCTTACCAGAAGAAATGAAGAATTCGCAGCGGCTGTCCAAA
GAAGAAGAACTATTAGTTTTAAGAATTGATCAGAAGCATTTTTCTATTGGTTAATGATGAAAGA
AAACTAATCTTACAAATCATATATACTCCCATGTCTTTAAAGAAGCCTTCATTCATGCTGGGAA
AGATAGAAGGTGAGGGTTTGTTTGTGACATAAAATGTCGTGTAGTGAATAATTCCTATAAAGTC
AGATGATCCTTTAAGTTGCTCTGACTCTTCCTCCGAAAACACCGGTAATCTCGATCCAACAGTT
CTCTTCATTTCATCCGGATAGTCTCCAAATACCAAAGGCTTCAACATCCTGAATTATCATTTTA
GTCTTCAGATTTTGTCCGCAAGTTATTGAAACACAGAGAAAGAAAGCTTTCTTTTTGCTCACCA
GCCATAGAAGAAAGCTTTAGCTCTTTGAGTTGCGATTTCATCATCCTTGGAGTTTGTATATGGA
GATAACCCGAATGCAAATATACTAAGCCCTATGGATCCTTTCTGCGTACTCTGCACCATCATAA
TGAA
Conservation Information
Conserved circRNAs NA
PMCS 0.357204307
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