Detail information of GLYMA_14G147700_circ_g.1


General Information
CircRNA Name GLYMA_14G147700_circ_g.1
ID in PlantcircBase gma_circ_009252
Alias circRNA4386
Organism Glycine max
Position chr14: 31495854-31499493  JBrowse»
Reference genome v2.0.38
Type   e-circRNA
Identification method CIRI, CIRCexplorer
Parent gene GLYMA_14G147700
Parent gene annotation hypothetical protein
Parent gene strand -
Alternative splicing NA
Support reads NA
Tissues pod
Exon boundary   No-Yes
Splicing signals   CT-AC
Number of exons covered KRH16307:4
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   TTGCAATTCTCCTCCTCATTTCCTCCGCATCTGTCGTTGGTGTCAGCCTCAGATCAAACCCAGC
TTCTGCCCCTAAAGGCTGGACGTTCATCACAAACCCctgaattcccttcatgaacacaatatct
tttaagtgctgcaagcaaaaagtcacaggagttaaaaaaaaaactagagtaacagttcatgtgg
aatgaaat
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence CTGAATTCCCTTCATGAACACAATATCTTTTAAGTGCTGCAAGCAAAAAGTCACAGGAGTTAAA
AAAAAAACTAGAGTAACAGTTCATGTGGAATGAAATGAGAATTGCATAATAATAAAGAATCGAA
AGAATTGTTTCAACCTCATTGTGGTCATGAAGCAAGATGGGAGTATTCTTCATTGGGGAGAAAC
TGAGCACAGGAATTCCTTTCTGTTTGAGGTATCGAGCATTAGTTGTGGATGCAAGAATTTCAGG
CCTTGAAAGTTTTTCTCCAATAGATGATATAGCTTACTTGAAATCTGACCACCGTGGATAGGAA
TCATTGGTTGCGGTCATTAATAGGCGTCCAATGTAGTCTCTAAGGGGTCCTTTCTCTATAATCA
GCCAATTTTGGTTGCCCAAAAACAAGACAAAAAAATTACAGTCAAGAAATTAATGGAAAAGATG
ACGGCGTTATGTTTTAACAACAGAGTGACAACTGATACTATAAAGGAATAGAACAAGACCTCAT
AGAATAAAAGAGCTTACAAGCTCTTGTACTATCCATGGTATTCAATCCCAAATAGCACTACAGA
GTGGCTAAGCCTGAAAACCCTATAGTAAGATAATGGGTAGTGGGATGGTTGCAATTCAAAAGTT
GAGACGCACATTATATACTTTATATTACACAAACATATATATGCTGATTTTTTTTTAAAAAAAT
GCCTAAAATTAAAGACATTCATGATGAATGATAAAAAATTAGAATTTGACACATGTTGTCAATA
ACAACAATCAATATCAGGAATCAAATAAGTTCAAGCCTCTAAAACTTAAAGCAACTAAGTATTC
AAATTCAACTGGGAATACAGTAGCCAATTAGAAATAAAATAAATAAATAAATAAATTGTATGAG
TCACTAATCTATGAGTAAATAGATTGTACGCATGTATATTTACTATTGCAAAAATAGCCTATTT
TAATGTTGAGATTTTCCAGCACTAGTAAAGTCTTTTAATGTTGAAGTAGCTTTAAAAACCTCCA
ACGGTGACAGTGACACTGTGATGCATATCTATCTTTTTCTAAAGAGTCTCCTGTATTGTGTATG
TAATCACCATCTAATGATTTATGCCTCATTTTTTGTAGTTTGATATCAGCATCAAGTTGTTTTT
CTTGGATCATTGTCCCATATCCCATATCCCATTTATTGCAAGGACCTTGTAAATTTATGTGAAG
CAAGATATTGAACGAATGAAAACCAATATATATTCCCTTGTAGCATTCAACCGGTTCATCTTAG
ATTGTGATATAGCAACATGTGCTACAATTCCATTCAGCCAAAGAACTAGTAATTGTTTGAGATC
ACACTTTTCTTGAAGCCTCTGGTGATTGTGGAGTTTCTGAGCCTGAAGTAAACCACTAATCATT
AGCATCCATTATCACTGCATCTTCTTGAACTGCAGCCATAAAGGCCTTTATACAGGTGAAAAAT
TACAAACCGCTCATATATATTCTAATTGCTTCATCCTCATTTTCCATACATCAGTTATCCTATT
GAAAGCATCCACAGCAGAGACAACACCCACAATAGCTTTATTTATCTTCATTTAGAAGCACCTT
ATTAATTGTTCCCCCTGGTGCTGGTAAGGCAAGATAATCCAATTGCAAGGTATAGGAATTGAGT
CCCATTTTAGAAGTATGGGACTTGGGTGTGGGGTTTAGAAGGCATCGGGCTCTTCAATTATAAT
GGCTAGCTCTTGTTAATTTTGATGTGGTTCTCCCAAGGGTTTTATCAAATGGTATCAGAGTTTT
GCACCATGTCTCTCAATTGCAAAGCAATGTGGTTCGCTGTGCACTAACCCTTTTTGACTAGTCT
CACATGGACTGATGGACATTGCAATGTTCTTGTGCGAATGGTATCACGAAGAAGAGAAAATAAG
GAATTTGCAGCAAAGGACCAAATGAAAGAGAGAGAACAACCAAGGGAAGCAATGGTAACTGGGG
TTTGAGACAAGAGGGGATAGAATACAACAAACTAACATAGGCTGGCAGCAGGATGCTAGAAAAC
ACCAGAAATACTACTAGAGAAGGGTGGGTTGGTGTGATTTGTTTAGATGAAAGAGTGTTTCATG
GCGGGAAAATTAGGAAAAATAATGTTTTTCCCTACGCTCTAGAAGGGAGGAGAGATAACAATTT
TTGTCCTTGAAAAACCTCTAAACAATGGTGTTACAGGGGGTTGAAAAGGGTTTTTGAAACACCT
CACGCCCATAGAGGTTGGCTGTGAACTAGCATTTGGACTAGTCCTAGACAAACACTACAATGCA
AGCACCACCACCTGCACCGCTCATTTGCAGCATAGAGACATGGTAAGAAGCTCTAATACCAATT
ATTAAGACCCTGGGGAGAACTACACCACAAAAGCAAGCCATTGTAGTTGGAGAACTCAAGGTTA
AGGCCTAATAAACCCTACATTAGAATGCCAAACTTTCATTGTGATACTCAACTCTCACACCTTG
CAATATGATCCTAACAATAATCTGAGATACATTAAAGATATTGCGACATTCTAATACTTTGTAA
CAAGCGTGATGCTAAGTGAACTTTGGTTTAGGGGAGGGGAGTTAGAATATTAATATTACTATTG
ATGTTAGGAGTGTTATTGGGCTAAGCTTGTACCAGTTGTACTATGCTCGCATTTGACTTAAATT
CTTAGTATAAATATTAAATACAAGTATGAAGTTTAATTAGTGTTTTGTATCACAGCATCACACA
CGTACACATCTTCTCTTTTCTACCCAAATTCAGTCCAATTCTTAAATTTCAATATGGTGCATCC
AGAATCAAGACTGAAACCAAAAAAGAAAATCTATTAATATAGTACTCAAAAGCCATAAAGACAT
AAGTGCAGACAATTCTTTGCAGGGTGTAAATCAACCAGCAGATCTCCCAACCCCATAGGCAGTC
AATCAATTCCAACAGACACAAATTCAGTAAAATCAGAATTTCTTCAATTTCAACAGAGAAGGCT
TATAGTAATAGTCATATACATACATATTGTAATCTAATAGAATTAAAACTTTACAACATGCATA
AAAAATGCTTATTAACAAACCTTCCAAACATCTTAGTTGTTAGAAATGCAATCCCTAGGCTGTG
GTTTATTGTTAATCGATTTGTTGTACTAACCAACCAGTCTCTTGGAAGATTATGTAGCAATGAT
AATCAGTCATGCTATAGTGCTAGTTGAGTATCTGTCGTTTAGATGGATCTTTAGTATCATAGAC
ATAAAATAAAAAAGCTATACAGAAGGAATGGAATTGTAAATATATAGCAAATGTGCTCATACTC
TGTTATCATAAACGACAGGGATGTAAAACAATCTAAGACTACAGTACCAGACTCAGTCAGTAGC
ACCCAAGCAAGGAGAATCCAAAATCCTACTTGAACAAAAAATGCAGCCAATGACAACATACTGG
ATAAATGCCTGAAACTAACAGCAACATTTCCCATTAAAAATCTCACCTCATATGACATATTCCT
AACAGCCGGCGCCCATTCCTTTGCAATTCTCCTCCTCATTTCCTCCGCATCTGTCGTTGGTGTC
AGCCTCAGATCAAACCCAGCTTCTGCCCCTAAAGGCTGGACGTTCATCACAAACCC
Conservation Information
Conserved circRNAs NA
PMCS 0.028930888
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 Ma et al., 2021a