Detail information of 2_circ_ag.2


General Information
CircRNA Name 2_circ_ag.2
ID in PlantcircBase ath_circ_018722
Alias At_ciR21
Organism Arabidpsis thaliana
Position chr2: 19063565-19067224  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 2_circ_ag.6 2_circ_ag.7 2_circ_ag.8 2_circ_ag.9 AT2G46440_circ_g.1 AT2G46450_circ_g.1 AT2G46450_circ_g.2
Support reads 495/16
Tissues leaf/leaf, aerial, inflorescences, seed
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   AAACCTGGAGACAAGCAACTCTGCAGGGGAGATTTTCTTTGCTATCATCATATGTGTCTCTGGT
TTACTCTTGTTTGCTGTGCTCATTGGAAACGTTCAGaagtacttgcaatcatctacgactagag
tagatgaaatggaagagaaaaagagagacacagaaaaatggatgtcctatcgggagataccaga
gtatttga
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence AAGTACTTGCAATCATCTACGACTAGAGTAGATGAAATGGAAGAGAAAAAGAGAGACACAGAAA
AATGGATGTCCTATCGGGAGATACCAGAGTATTTGAAGGAACGCATTAGGAGATTTGAAGATTA
CAAATGGAGAAGAACCAAAGGCACCGAAGAGGAAGCTCTTCTTCGTAGTCTTCCAAAAGACCTC
AGACTCGAAACCAAACGCTATCTTTTTCTCAAGTTGCTCAAAAAGGTAACCTTTTATTTTGTCC
CATCATAACTTAACCAACTCCTCTTGAATTCACTGTTTTGTTTTGTTTCAGGTGCCTTTGCTCC
AAGCTATGGATGATCAGTTACTAGATGCTCTATGTGCTCGTCTCAAAACGGTTCATTATACAGA
GAAGAGTTACATTGTGCGTGAAGGTGAACCAGTGGAGGATATGTTGTTTATAATGAGAGGAAAT
TTAATCAGCACCACTACTTATGGTGGCAGAACTGGTTTCTTCAATTCTGTTGACTTAATTGCTG
GTGATTCCTGTGGAGATCTTCTCACTTGGGCATTATATTCTCTTAGTTCCCAGTTCCCTATCTC
TAGTAGAACCGTTCAAGCGTTGACAGAAGTCGAAGGCTTTGTTATCTCAGCTGATGATCTCAAG
TTTGTCGCTACTCAGTATCGTCGCCTCCATAGCAAGCAACTCCAACACATGTTCAGGTAATATT
TTCAATTGAAAAAATGCATGTTGAGTTAATCATATTGGATAATGATGACATATCGTATACCTAT
CTCGTTTCTCAAGTTACCTTCAACATAATAACCCAAAATCTTTTTATCACCTACCTTGTATCTT
GTTTCTCAAGTTACCTTTAATATTATAATCTAAACAACTTTTTGTCTCCAGGTTTTATTCATTG
CAATGGCAGACATGGGCAGCATGTTTTATACAAGCAGCATGGAAGAGACATTGTAGAAGGAAGC
TCTCAAAGGCTTTACGTGAAGAAGAAGGCAAACTACATAACACTCTTCAGAACGATGATTCAGG
AGGCAATAAACTTAACTTAGGTGCTGCGATTTATGCGTAGAGGTTTGCTTCTCATGCTCTGAGG
AATCTAAGAGCAAATGCAGCAGCCCGAAATTCTAGATTCCCACACATGTTAATTTTGTTGCCTC
AGAAACCAGCCGATCCTTAGTTTCCTATGGATGAAACCTAGTTTTGTATAGTTGTTGACTCTAT
CTCTCTGTAATGTGATCGCTAGTGATTTCTTGCAAATAACTTTTGTGTAAACCAGTAAAGATAT
TTTTATGTGAAATAATAATCAATAGGAAAATTTCTTATAGAGTTTAGTAAAAAAACAATTTTAA
TGGAGACGTTTTAGCGAATACTCACCACCTCAACCACTGTAAATGTTTTGTTATCCAAAAACTT
CTAATTCCTAAGCTTTTAACTTTTAAAGCATCTCTCGTTAAACAATTTGTATTTTTTTGCAAAA
CAAAAATAAAACGCTGTATTTTTAAATTAGAATCCTTAAGGTTGGGTATTTTTAAGTGAATCAA
AAATTCCAACCAAAGTAATGGAACTAAATAACTGTTTTTTATTAGAAAACTGAATACGTACATA
TACCAAAGTACATAATAAAACTAGTTCTATTATTGATATATATAAATTAAACACAGATTTAGAT
TATATTTAAACACATAGCTAAGATTGTTTACTAGAGAGACTTAATTAGGTCTCTCTATTGGTGG
TCTAGCTTGGCTTCACTCTCGAATTGAAGAGGAACAACGTGTTTGTTTAGTCTTTTTAGGACTT
ACAATTACGTCTCTGTTGTTTAGTAACGATGGCAAATAAAAATAATGATTTAGTATATTTGAAC
ATGGTCCCAAATGGGCAAGTTGTAAAAAGAAGACAAGTAGAGAAAATTCAAAATTGGATTTCGT
GGATATTATTGTAAGTTGCAGGGAAAAAAGAGTGAGACTGCCCCACCGTAGACTAAAATGATTT
AGCTTACCACTCTCACTCTGCATCCACAGTTTAATAATTACCCCTTTAATATTTTAATCATTAT
TTTAGTAGACCAAAACTGTTTAGTGTTGAAACTTGTGCATCCACATGAGTGTTGGTTAAAGGTT
GAGAACATCGATTTGCCAACCATATCTCACAGCCACAGCCATTTTTATTCTCTCTCGGTCTCTC
TTCTCAGTCTCTCACTACCACAGCCTTAAGTTCGAGAAGACCGAAGTGGACTTCATTTTCTTGT
ACGGGAATTAAAATATTGCAGATTGACGACATATACTAACATGAATCATCGGAGGAGTAAATTT
GCCAGGTACTTCTTCGAAGTTTTGATTAACTACTATTTCATATTTGGTTGTGATAGTGATCATT
GTTGATACAGGATAGATAGTATGGGAGTTGATGGAAAATTGAAAAGTGTTAGAGGACGCTTGAA
GAAGGTTTACGGGAAGATGAAAACACTCGAAAACTGGAGGAAGACCGTCTTGTTAGCTTGCGTG
GTTGCTTTGGCTATTGATCCTTTGTTTCTGTTTATCCCTTTGATTGATTCTCAGAGATTTTGCT
TCACTTTCGACAAGACACTTGTAGCAGTAGTTTGTGTCATTCGTACTTTTATTGACACGTTCTA
TGTGATTCACATCATTTATTATCTTATAACCGAGACCATTGCTCCTCGTTCTCAAGCATCTTTG
AGAGGCGAGATTGTCGTGCATTCTAAGGCTACACTGAAAACACGTCTCCTCTTTCACTTCATTG
TTGACATTATCTCTGTTCTCCCCATTCCTCAGGTATTGTTCCCTTCGTTTGTGTGTGCATGACA
TCTACTTTTCCATGCTTTTTATTAGAGATGTACATGCGTAATTATAGGTGGTGGTTCTCACTCT
CATACCACTGTCTGCGTCGCTGGTGTCAGAGAGAATACTGAAATGGATTATACTTAGTCAATAT
GTACCAAGAATCATTCGTATGTATCCGCTTTATAAAGAAGTGACAAGAGCCTTTGGTACGGTAG
CAGAATCAAAGTGGGCTGGAGCTGCTTTAAACTTATTCCTTTACATGCTGCACAGTTATGTAAG
TCTTTGCTCTTGATCCCACTTCCCACCCACTGTTGTTGTTGTTGATGGATGGCTACTATGTATA
TAGGTGTTTGGGGCTTTTTGGTACTTGAGTTCAATAGAAAGGAAAAGCAAATGTTGGCGTGCCG
CGTGTGCTAGGACATCCGACTGCAATCTCACGGTCACGGATCTGCTTTGTAAACGAGCTGGCAG
TGACAACATTCGATTCCTCAACACTTCATGCCCATTAATCGACCCTGCCCAAATCACAAACTCC
ACAGACTTCGACTTTGGTATGTATATTGATGCATTGAAGTCAGGGGTGCTAGAGGTGAAACCAA
AGGATTTTCCCAGGAAATTCGTCTATTGCTTTTGGTGGGGTCTCCGTAATATTAGGTAATAAAT
TGTATTATGCTAAACTCTCTGCCGTGAGATCTGACGACTGACCCATAGTAAGACATATATCAAT
CCATTTGTTAGATTAATCCACTCTACAGTGCTTTGGGCCAAAACCTGGAGACAAGCAACTCTGC
AGGGGAGATTTTCTTTGCTATCATCATATGTGTCTCTGGTTTACTCTTGTTTGCTGTGCTCATT
GGAAACGTTCAG
Conservation Information
Conserved circRNAs NA
PMCS 0.738692872
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