Detail information of 4_circ_ag.5


General Information
CircRNA Name 4_circ_ag.5
ID in PlantcircBase ath_circ_032302
Alias NA
Organism Arabidpsis thaliana
Position chr4: 12172631-12175980  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.2 4_circ_ag.3 4_circ_ag.4 AT4G23180_circ_g.1 AT4G23180_circ_g.2 AT4G23190_circ_g.1 AT4G23190_circ_g.2 AT4G23190_circ_g.3 4_circ_ag.4 AT4G23220_circ_g.1 4_circ_ag.2 4_circ_ag.3 AT4G23250_circ_g.1 4_circ_ag.2 AT4G23250_circ_g.3 4_circ_ag.4 AT4G23270_circ_g.1 AT4G23270_circ_g.2 AT4G23270_circ_g.3 AT4G23270_circ_g.4 4_circ_ag.6 4_circ_ag.7 4_circ_ag.8 AT4G23300_circ_g.1 AT4G23300_circ_g.2 AT4G23320_circ_g.1
Support reads 81
Tissues root, whole_plant
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   AGGCTCACTTCAGTTTGATTTTAAGGCAATTGTGGCAGCAACGGATATCTTTTTGCCGATTAAC
AAGCTTGGTCAAGGTGGTTTCGGCGAAGTTTACAAGggtacattgagtagtggactacaagttg
cggtgaagagactatcgaagacatcaggacaaggtgaaaaagagtttgaaaacgaagttgttgt
tgttgcaa
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence GGTACATTGAGTAGTGGACTACAAGTTGCGGTGAAGAGACTATCGAAGACATCAGGACAAGGTG
AAAAAGAGTTTGAAAACGAAGTTGTTGTTGTTGCAAAGCTCCAACATAGAAATTTGGTAAAGCT
GCTTGGTTATTGTTTGGAAGGAGAAGAAAAAATACTTGTCTACGAGTTTGTGCCCAACAAGAGC
CTTGATCACTTCCTCTTTGGTCAGTTAAATTTAGTACGTAGCCAAGATATCTTCAAATTGTATG
CCATTCTTTGTTCTTAACATTTGAAATACGCTGTACAGACTCTACGATGAAAATGAAGCTAGAC
TGGACAAGAAGGTACAAGATCATAGGAGGAATTGCTAGAGGAATTCTTTATCTTCATCAAGATT
CACGACTCACAATTATACATCGAGACCTCAAAGCAGGGAACATCCTCTTGGATGATGATATGAA
TCCTAAAATTGCAGATTTTGGAATGGCGAGAATATTTGGGATGGACCAAACAGAAGCCATGACA
AGAAGAGTAGTTGGAACTTAGTAAGTATTGCTCTTGCCACTTTTTTTTCATCAATAGACCGTAA
TACGTTTCAATCAACTAAAAAAAATAAGAATTATGGCAGTGGATACATGTCTCCCGAGTATGCG
ATGTACGGCCAATTCTCCATGAAATCAGATGTGTACAGTTTTGGCGTCTTAGTACTTGAGATTA
TAAGCGGCATGAAGAATAGTAGTCTCTATCAAATGGATGAAAGTGTTGGCAACTTGGTTACATA
TGTGAGTATAAAGCCTTAAAACTTCTAATTTCTTTTTGCTTTATTTAAAAACGTGACCAAAGTC
TAAATTATTAAAATGTTCAATAGACTTGGAGACTATGGAGCAATGGGTCGCCATCAGAGCTTGT
AGATCCGTCATTTGGAGATAATTATCAAACAAGCGAAATTACTAGGTGCATCCATATCGCTTTA
CTATGTGTTCAGGAAGATGCTGAAGATCGTCCAACCATGTCATCGATAGTTCAAATGCTCACTA
CTAGCTTGATCGCTCTCGCTGAGCCTAGACCACCTGGATTTTTCTTCCGAAGCAAGCAGGAACA
AGCAGGTCCATCTATTGATTCATCTACGCATTGTTCAGTCGACGAAGCTTCCATTACTCGTGTA
ACTCCTCGTTGAAGACAAAACTATTCGTTAATCTAAACATTTGTGATATATGATTTTAGACTAT
TAAGATCGACAGTGAACAAAAATTCATGTAAGTTAAACTGGTTTTATTGTTTATTTTCTTTATA
AATTCTTTAATTAACAAGTATTCATTTCAGTGGTCAAAGCATCAACAATAGAACAACAACTGAA
CAAGGAATATGAGCTAGAAAAGTCACTGGAGGACGATTAAGAATCTTGACGGTCGTCCTCAAAC
TACTCATCCAAGAAGCGATCTACACCCATCTATAAAATAGTGATTCTTTAAACTTCCCTTGAGA
TCTCGTTTGTTACTTGTTTGATTTCGTACATCAATAATGATCAAGCTAGATTTGATTTTTCTCC
ACAAATAAGAAGCACATTGAGTTAAATTTTATGTTGTAAACTTAAAATGCTATTTTTCAGTTCT
GTAAGAATTTCTTTGGGAGAAGCTTCAATTATAACGTAAAGACAAGACTATTTTTGAACTTTGA
AGTACTCTCCTCACGCTGATTTTTCATGCTCTCATAAATGATAAATATGACAACTCCACGAAAA
AAATATGTATATAGGATTAGCAAATTTAGAGAGAAAAAGAGAGAAAATTAAACTTGGAAATGTG
TAAATCAATGAGTTTTGACGAGGAATTAAAGTTTTTTTAAAAAGAGCAAATTACTGACAAATAA
TTTATCGTTATACAGAAATCGTTAACTCTTTTCTTTTGGTAAGGCTATAAATAGTAACTTAAAC
TTCTCTCTTTGTTTGAAAGAACTAGCTATTGTTTTGACATTACAAACTAAAATTAAATAAAACC
GGCGTTTACCATGACTTTCTTTGATTGACTTATAGCCGTCAGAAGAGTATGAACCATCCTCAAT
TTCGCGTTAATATACATACAGAGATTCATGATCTAAAACTCCAAATCAAGGAAAAGGAAGCATG
TCTTCTCTGATCTGTTTCATTTTCCTTTTCCTTTTCTCATTCATCACTAGCTTCACAGCTTCTG
CTCAAAATCCTTTTTACCTATATCATAATTGTTCTATCACGACAACTTACTCAAGTAACAGCAC
TTACTCCACCAATCTCAAAACCCTTTTGTCCTCTCTCTCTTCTCGTAACGCCTCTTACTCCACC
GGATTCCAAAACGCCACTGCGGGACAAGCCCCCGACATGGTCACCGGACTTTTCCTCTGCCGCG
GAAACGTCTCACCTGAAGTTTGCCGTAGCTGCATCGCCTTGTCTGTTAACGAATCGTTAAGTCG
GTGTCCAAATGAGAGAGAAGCCGTGTTCTATTACGAGCAGTGTATGCTCAGATACTCTAACCGG
AATATACTATCCACTCTAAACACCGATGGAGGAGTGTTCATGCAGAACGCTAGGAATCCTATAT
CAGTCAAACAAGATCGGTTCAGAGATTTGGTCTTGAACCCCATGAACTTAGCTGCCATTGAAGC
CGCGAGGAGTATCAAAAGATTCGCTGTGACAAAATTTGATTTAAATGCATTACAGAGTTTGTAC
GGAATGGTTCAGTGCACTCCTGACCTTACGGAACAAGACTGCTTAGACTGCCTACAACAAAGCA
TCAATCAAGTAACCTATGACAAAATTGGGGGAAGAACTTTTTTGCCGAGCTGTACGTCAAGATA
CGATAATTACGAGTTTTACAACGAATTCAACGTTGGTACACCTCAAGATTCATCACCACGACCT
GGTCTGAACAGTCGCTTTCCTTTGACTACATATTTTCAACACAACTTTCATATAAGAATTTTGC
TAACACAAAGTTGTTATTATGATACAGGAAAAGGCGGAAACTCCTCTGTCATAGTTATTGCTGT
TGTTGTTCCAATCACTGTCCTTTTTCTTCTATTCGTAGCTTTTTTTAGTGTCCGCCGCGCTAAG
AGAAAAAAGACGATTGGAGCGATACCGTTGTTTAAAGTAAAGAGAAAAGAGACGGAAGTCACGG
AACCACCTGCTGAAAGTAGAATACTCTTATAATGAATAGTCTCTGATGTATTCTTCTTATAATG
AATTAAACTGTTTAAGTTGTAGCTACAGATGGGGATGATATTACGACTGCAGGCTCACTTCAGT
TTGATTTTAAGGCAATTGTGGCAGCAACGGATATCTTTTTGCCGATTAACAAGCTTGGTCAAGG
TGGTTTCGGCGAAGTTTACAAG
Conservation Information
Conserved circRNAs NA
PMCS 0.696903257
Functional Information
Coding potential N
Potential coding position NA
Potential amino acid sequence NA
Sponge-miRNAs ath-miR860
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Chu et al., 2017