Detail information of 1_circ_ag.4


General Information
CircRNA Name 1_circ_ag.4
ID in PlantcircBase ath_circ_002641
Alias Ath_circ_FC0354
Organism Arabidpsis thaliana
Position chr1: 5221827-5225534  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.3 1_circ_ag.4 AT1G15165_circ_g.1 AT1G15165_circ_g.2 1_circ_ag.3 1_circ_ag.5 1_circ_ag.6
Support reads 6
Tissues leaf, inflorescences
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   TCTTGGGTTGCAGCCTGGAGTGGTGGTCATATGAACTCATAATATTACTCTCTGGTCTCTTACC
CAACCCACAGCTGGAGACTTCTGTGCTCTCTGTCTGtcttcagacaatttcaacaatgtattcg
ataccactagcaatcgcggctgcagcaaggttagagctttagtcacactatgcagtacataaat
actgaagc
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence TCTTCAGACAATTTCAACAATGTATTCGATACCACTAGCAATCGCGGCTGCAGCAAGGTTAGAG
CTTTAGTCACACTATGCAGTACATAAATACTGAAGCATATTTTCTGCTCATGACAAGGAATCAT
ATGGTTTCATATTCATAAGCGGATGTTTATTTCTTGTGCAGCACAAGAATCTCAAATGAATTAG
GTGCTGGAAACTCTCGAGCAGCACATATCGTGGTCTATGCGGCAATGTCTCTTGCAGTTATTGA
TGCATTGATAGTTAGTATGTCTCTACTAATCGGCAGGAATCTTTTCGGGCACATTTTCAGCAGT
GACAAGGAAACTATCGACTATGTTGCAAAGATGGCTCCATTGGTCTCTATTTCTCTCATGCTTG
ACGCTTTACAAGGGGTCCTCTCAGGTCTGAGACTTGTTCTTCTTTCTTTACTCACACACAAGTT
CTTGTCGGATATTGTTTACTCTTTTCCTCCACATAGTGCAAAGACACTTCATGTTCTGTGTTTT
GTCCTGTGTCAAAAGCTATCCCAAAAATATACTCTTTTCTACCACGCCTAATTGTCTTTTGATG
GTTTGCAGGTATTGCAAGGGGATGCGGATGGCAACATATAGGAGCTTACATAAACTTAGGAGCT
TTCTATCTCTGGGGGATACCCATTGCTGCATCTTTAGCCTTCTGGATTCATCTGAAAGGTGTTG
GCCTTTGGATTGGAATCCAAGCCGGTGCCGTTCTGCAAACGCTTCTGCTTGCTCTTGTCACGGG
CTGTACAAACTGGGAAAGCCAGGTCCTACTTCTTTTTCGTTCTTTTCTTCTTCATGACTAGTTT
CTCTTGTGAAATAAACATACAGATCTTGAATTGGATGCATGTTTGAACTGTAGGCCGATAAAGC
GAGGAATCGAATGGCTTTGGCCTATGGAACATAAGGCGCTGCAGAACAGCACTTACAGAATCAG
ATCTCCGCGTCTGAAGATATAGGGACCTGATGATCCTTCGGTTTTACCATTTTGTTAGTAGTCA
AATTGCTGTACTGTATGTTACTTTTGGACTAGTGGTAGCCGCAAGTAATATTGCATGGTTTTCC
AAAAAGGAGCCTTTTCTCTGTTCTCAACAACAAAGAATAATGAACAGATTCACTGGACTGTGAG
CTTGACCATACAAGCAGAGACCAAGAAGTGGTGGTATTGATGGAGCTGCTACAACCACCACATA
TCTCCAAATTGACAGCATCTGATTTCCTGTCACTAGTCCCACTTCTCACAAGAGTAACTGAATT
ACTCGAACCTGTTAAAGTTATCAAACCAATTTTAATGATCAATCTTGGGGCAAGGCTTTAAAAG
GCACCCTCAGTGTCAATTAGAAACATAACATAGAGTTTCTACTGAGTCTTGGGGCAAGAGCTGT
CCATCAGTGATACATTCCTCAATACAGACATGTTCATAAGTCTGTCCAGAAGCAAAAAATGATT
ACCTACTCTCCATGGGCTTATATAGTTAATAGAACTAAACTTTGATAGTTGACACCAAATGCAT
GAACACGATCTTCATTAGAACCTTGACCAGTGAGGGAACATGGTGTTGGACACTAAGAGTCATA
TATCATCCAAAATTCCACTTCAGAATAGAATGGAGTATTTTCTCATGAGGTATGACAAATAATT
GATTCCTTCCGGTTGTCTTCTCCCACACGTGCCTTGTGAATGAGTTCTTTAAAGCACGTTGCTG
TCACTGCAAGTTGTCAAATTTCGTCAACTGTTGCAACCGTGCAATCATCCGATCACCAACTTCC
TTCTCTGATATGGATCAAGCAACAATGTCCAAATCTGAACAAATCACATATCAAAATTAGAATT
GCAACAAGGAACTACCAGAGACCAATTTATAAATTCAGAAGCAAATATACACGAGGGCATAATT
AATCAAACTGGCTGCAAGAGACTTATAAACCCTGAACAGTTGCTAATATCGCATGGAGGACATT
GTTGCTAGCTCAACTGGGTCTCAGATGATGTCTGTTTCAGTAAAAAGTAACACATAACTGCATT
TTATCAATGGCCATAACACACAACTTTAACAAAGCATAGAGAACAAGACCATAAAAACATAAAT
TACATCAAAGAACAAGAACAGAAATCTAAAAACAAAGCAAGAAGGAGCGATCACACTTCAAATA
AACCAATGAGGTAGTGGACAAAGCCCTCACCTAATTCCAGATCAAACCGGCGGAGATGACGGGT
GAGGGGAAGTCAGCGCAGGATAAACATGGGAGGGAGAGAGATAGTGGCTAAATTCCACATGGGT
GACAGAGGGCGCCAAAGTATGACTTACTTGGAGTGATTTGGATAGAAAATGGTGACACGTGGAC
ACTCAAGATATCATTTTTATCTTTTTCCCAACCACTTGTGAGCTGTGTAGGAGAGAAGTAATGA
ACATATAAGCAAAAACAAATGTTGTTACAAAAACAAGTCCCCACCACATTTACTACTACTAGTT
TGACAAACATAAACACATTTCCCTTATTAACATTTCTTGTTAACCACACAAAGTTAATAAGTAA
CCCAAGTTTATACAGTTTTAAAACATTCTCTCTATCTCCCTCCGGCTAGGCTGTAGCTGTTCGC
CATGGGAGACGCAGAGAGCACCTCCAAAACTAGCTTGCTGCTCCCGGTGGAAAGAGTTGAAAAC
GTGACATGGAGAGATCTGCGAGATGGATTATTCACCGCAGAACTCAAGAGGCTTATCTGCTTTG
CCGCTCCTATGGCGGCTGTTGTTATCGCTCAGTTCATGTTGCAGATCATCTCAATGGTGATGGT
TGGTCACCTCGGAAATCTCTCCCTCGCTAGTGCCTCTCTCGCCTCCTCCTTCTGCAACGTCACC
GGCTTCAGCTTCATCGTCTGTTTTCTCTTCCTTCTCTCCTCTTTATCTCTATCTATTACTAGTT
ATCAAATTGCATCCCCTCATTACTTGATTAGTTGATTGTTACTTTTTGATGCTAGGTAGGATTG
TCATGTGCCTTAGATACTTTGAGTGGTCAAGCTTATGGAGCTAAGCTATATCGGAAAGTAGGAG
TTCAGACTTACACAGCAATGTTCTGTCTTGCATTAGTATGTCTCCCTCTCACTCTCATATGGTT
AAACATGGAAACGCTTCTTGTATTCCTTGGCCAAGATCCTTCTATTGCTCACGAAGCCGGCAGA
TATGCTGCTTGCCTCATCCCAGGACTGTTTGCTTACGCTGTTCTACAGCCTCTCACTCGCTACT
TCCAAAACCAGAGCATGATTACACCTCTCCTCATCACCTCTTGTTTTGTGTTCTGTCTCCATGT
TCCTCTCTGCTGGCTTTTGGTTTATAAGTCAGGGCTTGGTAATCTTGGAGGAGCCTTAGCTCTC
AGTTTTTCGAACTGTCTTTATACCATTATCCTTGGATCTTTAATGTGCTTCTCCTCTGCCTGTT
CTGAGACACGCGCACCGCTCTCCATGGAGATATTTGACGGCATTGGAGAGTTCTTCAGATATGC
TCTTCCTTCTGCGGCTATGATTTGGTACTTCATTTTTCTCGGTGCCTTTTCACTTCTCAATGCC
TTCACATTTTGGTTAAAAACTCTTTCTTGGGTTGCAGCCTGGAGTGGTGGTCATATGAACTCAT
AATATTACTCTCTGGTCTCTTACCCAACCCACAGCTGGAGACTTCTGTGCTCTCTGTCTG
Conservation Information
Conserved circRNAs NA
PMCS 0.346369854
Functional Information
Coding potential N
Potential coding position NA
Potential amino acid sequence NA
Sponge-miRNAs ath-miR846-3p
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Chu et al., 2017;Chen et al., 2017a