Detail information of GLYMA_17G039000_circ_ag.1


General Information
CircRNA Name GLYMA_17G039000_circ_ag.1
ID in PlantcircBase gma_circ_009450
Alias circRNA1075
Organism Glycine max
Position chr17: 2892595-2896362  JBrowse»
Reference genome v2.0.38
Type   ag-circRNA
Identification method CIRI, CIRCexplorer
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing GLYMA_17G039000_circ_ag.2 GLYMA_17G039000_circ_ag.3 GLYMA_17G039000_circ_ag.4 GLYMA_17G039100_circ_g.1
Support reads NA
Tissues pod
Exon boundary   NA-NA
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   AAGTTGCCTGCGAAACATGCACCAAAACCAACTTGGTCATGGTCTTCGGAGAAATCACGACCAA
GGCCAACGTTGACTACGAGAAGATAGTGCGTGACACcctgacaagctctgtgaccaaatctctg
atgctgtcctcgacgcttgcctcgaacaggacccagacagcaaggttgcctgcgaaacatgcac
caaaacca
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence CCTGACAAGCTCTGTGACCAAATCTCTGATGCTGTCCTCGACGCTTGCCTCGAACAGGACCCAG
ACAGCAAGGTTGCCTGCGAAACATGCACCAAAACCAACTTGGTCATGGTCTTCGGAGAAATCAC
GACCAAGGCCAATGTTGACTACGAGAAGATAGTGCGTGACACCTGCAGGAACATCGGCTTTGTC
TCAAACGATGTGGGACTGGATGCCGACAACTGCAAGGTCCTCGTCAACATTGAGCAGCAGAGCC
CTGATATTGCTCAGGGTGTACACGGCCACCTCACCAAAAAACCTGAAGAAATTGGTGCTGGTGA
CCAGGGTCACATGTTTGGCTATGCCACTGATGAAACCCCTGAATTGATGCCATTGAGCCATGTT
CTTGCAACAAAACTCGGTGCTCGTCTCACCGAGGTTCGCAAGAACGGTACCTGCCCTTGGCTGA
GGCCTGATGGGAAGACCCAAGTGACCGTTGAGTATTACAATGACAATGGTGCCAGGGTTCCGGT
TCGTGTCCACACCGTGCTAATCTCCACCCAACACGACGAGACTGTCACCAATGACGAAATTGCT
GCTGACCTCAAAGAGCATGTGATCAAGCCTGTGATCCCAGAGAAGTACCTTGATGAGAAGACCA
TTTTCCACTTGAACCCTTCAGGCCGTTTTGTCATTGGTGGCCCTCATGGCGATGCTGGTCTCAC
CGGCCGCAAGATCATTATCGATACTTATGGAGGATGGGGTGCTCATGGTGGTGGTGCTTTCTCC
GGCAAGGACCCTACCAAGGTTGATAGGAGTGGTGCTTACATTGTGAGACAGGCTGCTAAGAGCA
TTGTGGCAAGTGGACTTGCCAGAAGGTGCATTGTGCAAGTGTCTTATGCCATTGGTGTGCCTGA
GCCTTTGTCTGTGTTTGTTGACACCTATGGCACTGGAAAGATCCCTGACAAGGAGATCCTTAAC
ATTGTGAAGGAGAACTTTGATTTCAGGCCTGGTATGATCTCCATCAACCTTGATCTCAAGAGGG
GTGGAAATAACAGGTTTTTGAAGACTGCTGCATATGGACACTTTGGAAGAGAGGACCCTGACTT
CACATGGGAAGTGATCAAGCCACTCAAGTGGGAGGAGGCCTAAGGCCATTCATTCCTCACCGCT
GTGTGCTGGGAGTTTTTTGAGCTTTGCCCTTATCATATCTATAATTTGTTTCATTTATTTTACT
TAATTCGTGTGTGCTTCTCACTTTCTCTTCCTCCTCTCCATTCTATTTTGTTTCTTCTATCCTC
ATATGTAATTTTTTTACATGATCAATTAAACGTGATACAAAATTATTCTTAATTAGCACGTGTC
CTTGTTTCTAGTCCCTTTACTTTTGAATGTCTATGTCTACACATACATATAGGACGTTTTACTT
TTATATGTGTGTCAGCTTGGTTGGAATTCTGTGGTATCCGTTTATCAGTTAGTTCAGGTGCACA
CAAATGCGACAATTAGTTGGTAAAACTGCAAGAGATTTTGCAAATATCATACAAATAATAACAA
TAAATAGTTTGTCGTTTTCATGCTGCTGGTTTGATCTTCGCAGTTCACACTGATCAAACTAAAC
AACGGTGTTTGGTAATATTCAACCTTCTCTCTTTCAAACCTTACTACTAACCTCGTGCGTTGGG
TAACATTAGGCTTCCAACTTATCTGTTTTCTTTGCCATAACTTGTTGCCAAAGAGTGTTTGTTC
ATAATAAGTGTTGGAGATATAAGAGTGTTGGAAAAGTTTATTTGCCATAACTTGTTGCCATAAA
GAGTTGAAGTAACCTCTTGATAGGAAAATGGCTCAAGACAAGCTGTGAATAGAAGTCAGAAAAC
AAGCAAATGAAGTAGAGTAAGTGGAATAAACAAAGTCCAATAGTTTAGTGAACTTATAATCATG
TTGAGAATGAGAAGGATCCACCCTCACAAAAAAGGTTATTGCCTAATTAATAGTAGGGATTGAA
GAAGTATCAATAATCAATAAGAGGGACATTTGGATTGACACAAACTATTAGTATAAAAAAAAAA
TGTAAAACTAAATGGACAACAATCTAAGAAAGCGAGTATGTGTTGTACTCGGAAAACATAACAT
AATGTGATTTTGATTGTGGAAACTGAAAACAATAACATTTAAGTTTTATTTATCTCTTTGCCTA
ACAATTTTTTTAATTACTTTTTTTATAGTTTTTATGATGAAGATAATTAATATTTTTTACAAAT
ATTATATTTTCCTTTTTACCATCTTTGAAGATAATTGCTTTTTTTTCCAATTTAGACAAATATT
TGAGTATCAATGATATTCCTTTTTAATCCATTATTGCAATTTAAAAGACCATCAATGATTACAT
TTTCAATCAAATGACTTTATTAGTCTTCACTTTACATCGATTTAAATCAAACTAATAATTTTGT
ATGGACTAAATCTCTGAACATTTTTATATTTACAACATATTTTAACATTTATTAAATAATTAGT
ATTTAATACTATTAGTAGAATAATGGGAGTAGCAGGAGGGAGGCACTGAGAGAATAGAGATGGC
ATGGAAGTAAGCAATCAAGTCAAAATCAGAGTTGGCCAACCCCAAAGGCTGTAGTAGGTAAGCA
TGGCCCATTTTAGTTTTTACATTCATCTCTCATTTTCACCTCAACGGTTCAGATTCAATCTGAC
TCCCCGATCTCAGCCGTGGATTCAAATGCCACCTCAGGCACATGCAATTCCAAATGGATGAACC
TAACCCACAATCTAATCTTGTTACTTAGGGGCTTTTCCGTCATTAAATGACACCACCTACCCCC
TTCTCCCTATAAATGGCAACTCAATGCCCCCCTTAGAACTCGCAGCGCTTGATTTGAGGCCAGG
CAAGCCCCACTCAACCACCACACCTCTCCTCGTTCACGCTACCCCTTTCTGCTCTTCTTCTACC
TTTCAAGGTACTCTTCTTTCCCTCTGTTGCTGCAACCTTCTCTTTCTTTAAGATTGCCTCAATT
TCGGATCTTGCACCTCTGGGTTGCTTTGCTTTGCTTTTTCCTCTACTGGGTTGATTTCTGTTTC
CCTAAACCGGTTTAGACGAATGTGAACACTACTTCTTTTGTTTAATTACTCTGGAATACGTGTT
AGGCTTTCAGATCTAGTTGAAATCGTATTGCACTTTTAGGGGGAGTTTGGATTTCTAATAAGAA
ATTGACCTTTTGCTGAGAATTGGTTCGGTGATTAGAGGGTTTCCGTAAATTTTTGAAGTTTTAC
ATGCTTGTATCTGTTTATTTTTGTTTCTCACATCTATTATTGTTAGGTGAAGGAAATTATGTAT
TGAGAGTCTGTCTGATACTAAATATAAACACCTCAATAGGGGCTCTAACACTGATTTTATCATT
TGCTGCTTGTGTGTATGGTTAAAGAAAGGCAATTGTGTTTTAATTTTCTGCAAGCTTTCGTTTG
CTGAATTTTATGCATATATTTTCCTCCCTTTTGTGAACTTCCTTTTTGTAGTTCTAATTCCATT
TTTGGTGTCTGCAGTTTTAAAAGTATAAAGATGGCAGAGACATTCCTATTTACCTCAGAGTCGG
TGAACGAGGGACACCCTGACAAGCTCTGCGACCAAATCTCCGATGCTGTCCTCGACGCTTGCCT
CGAGCAGGACCCAGACAGCAAAGTTGCCTGCGAAACATGCACCAAAACCAACTTGGTCATGGTC
TTCGGAGAAATCACGACCAAGGCCAACGTTGACTACGAGAAGATAGTGCGTGACAC
Conservation Information
Conserved circRNAs NA
PMCS 0.281503583
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