Detail information of GLYMA_09G052200_circ_igg.1


General Information
CircRNA Name GLYMA_09G052200_circ_igg.1
ID in PlantcircBase gma_circ_006450
Alias gma-circRNA1315
Organism Glycine max
Position chr9: 4539986-4543636  JBrowse»
Reference genome v2.0.38
Type   igg-circRNA
Identification method find_circ
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing GLYMA_09G052200_circ_g.1 GLYMA_09G052200_circ_g.2
Support reads NA
Tissues flower bud
Exon boundary   NA-NA
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   TTGGCTTTATGAGGATGAGAAGGGTATGAAACATGGGCCTCATTCTATTAACGAATTGATTTCC
TGGAACCGTCATGGATATCTGAAAGATTCAACAGTGcaaaaatctgatccctaatctctgtttt
tgctctggactctcccaatacccacccaattgaaaaattgaaatccccttttttgcgttagacg
aaggaaac
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence CAAAAATCTGATCCCTAATCTCTGTTTTTGCTCTGGACTCTCCCAATACCCACCCAATTGAAAA
ATTGAAATCCCCTTTTTTGCGTTAGACGAAGGAAACGTATTAACCCAAACCCTAGAACCACCAC
CAGATCAAAACCAACGCGATTGCGCGATCAAAAGGTCTGTGTTCTCTCTCGATCCTCGCGAAAC
CCGCTTTTTCGCTCACCCTTTCTTCATCTTCCTCCATTTGTCGTACGTGCGCATCGTGAATTTT
CTTATTTATTTATTTATCCATTGATCAATCAGAACAAAGGGTGAGTGAATAGTATACCGAATAT
AGGGGAGTTTGCAATAATGTGCGAAAAGGTGGTGCGATTAATTTATAGGTAGATTGTTGTTCCG
TTTACGATTCTGCTCGTCTTTTTCTGTGTTTCGTTAGAAGGTCTTAATGTTAAGTGGCAGTTAT
GTATTGTGCTTGCATTCCAAAAGAGGCGGGCTGAAAGGTTAAGGAAGTAAATAGTAATGTTACA
ATTGCATTTATGTCATTTATGACCCGAAGCTCTAATTCTATTATATGCAACAGTATCATTTTTA
TCAGTTTATTATAGCATAGAGGCAAAGTTGTCCCTTTTCCATCAAATGGGGATCAATTGTTGAG
CTCCAAATTCATCGTCTGATATTCCTATTGGTCTATTGTTATGTGTTGGTTATTATGATATAAA
TTGTCCATGTTTCTGTTTTTGTTGGTACGTGGACGCCTAAATGTCATGGAGCATAGTTGATGTG
TTTCTCTAATATGTGCTGACATTTGTCATTAACTATGAAATATTGAAATGTAACAATTACTGAT
TACTGGTTACTGATGCATGTGTATGATGTGTTGCTAATAAAAAACATCAATTTTGTAGCAACTC
TACCTGAGCTAGCAAGAGGAGTGGAAGGAGTATCTTAGATCCATTGCCACAACTGCCACACCAA
GGTAATCTGAACAGTGAAACATTTGTTATATTCAATCCCCCTTTTTCTGTTAGGCTTGCTACAG
TGAAGGGAATTAGAAGTTTCTAATCTTATTGATCAATGTTGTTAAAATTGAGATCTTACATGGG
ATCTGGAGGGGATGAGAGATCATAAATCTAAGGATCATAACAAGGATAGTAAGTTTATCCCAAA
AGATGCAAAATTTATACATAAAGATCCAGATGCGATAAAAATGACATGATTAAGGAAAATATCT
TGTAAAGTAAATTAAACTTATACTGAAGATTTATATTCATAGATTCATAAGTCATAACTAACAG
TAGTTCCAAAAGAACTCATAATAAATTACAGAGAACACAAAAACATAATTAACTCATAATTAGC
CAGCCTAAATGTCTAGAACAAATCGTGCAAGCGTTTCATATTAAGGCAGGACACACAACTGCAC
AAGTCAACAATAAAATAAGAGTTTCAGATTTAAGAAGTGTAGGAGAATTGAAGAACAGAGACTA
GAATGCAAGGCAGTAGAAAACAGAGACTGAACAAAACATGATTGAGGTGAAGTGGACTCAAGAA
CAGAGGCACAACAAGAGAAGAACAAAATGTACCTATGATTGAGGTCCAAGTTCAGACAAAGAAA
AAACCCTAGATAAAGAATTGGACATGAAGAAGCACAAAGAAGAAAACCCTAGATGAAGGAAAAC
TGTGGGAGAGTGATCATAAACAGAAGCCATCATTTTTTTTATGACCTGGATCGTGTAGAAACAT
ACGGGTTTCAAACTGAAACCTGAGTACCTGACCCAAAGTCCTGTTTGTGGATGATCAACATGGA
ATTTGAAACACAACATTTCATGATGAAGATTGCAAGTTAGTGCAATCTAGAGCGTGCTTCAATC
CTGCTTCAGATTCACCACAATTTTGAGGTGAAAAATCACAAGATTGTGCAATCCTGTGATCATC
CTCGCAATTTTCACACCATTGTTAGTAAGTAGTGGTAGTATAAGGTAGAAGATTATTTTATATT
TAATATTTTCTCTGTATGTTTGCTCCGCTGGTTCTTTACAACTATGTATTTTTAATTATGAGTT
ATAAAGTGAATTCTTATTATGCCATACTAATATGTTGGAACTTTGAAAGAAACGAAATTTGGCT
TATTTACTCTCATCAAATAGTTTGGTTCTGTTGCATCTCAAGCTGATAGCTGTTTCATATGATT
CAAATGCTTACATTTTTTACTTTTATTTGTTGTTTTTTTTTTATATATATATGTACCACTTTAG
AACTTTCACATTACTTTGTGTATTTTTAATTTGGTTGAGTCCTCTTTTGGTGCCCCAGAATTTT
CTATTGGGAAAGGTTCATGGTCTTCTCAACTGTCTTTCTCCATGAAGATGACACCTTTTTTTCT
AGAAAAAGGCCAAGAGTGTCAGATCTTGGACATCAAGATATAGATTTACATGCAGATGCAGGAA
GTTCCAGTGATATTTCCTTGTTCTCGCATCAAGATATAGAAAGGTCTTCAATTTTTGTAGGCAT
TATTACATGATATTTTGAGTTGTTCGTTCTGTCATGTTGACATTTATCTGGTTGAATGAGTTAA
TCAAAACTGTTGCCATTCATAACTTGTTAAATATGCTTTGTCGTTCACATCACTGGAAAGCATG
AAAGACATTGGTTGCATCTCTTCTAATAAATTATTTTATATTTTAAAAACATGAAAGACGCAGA
AAGATGATGACAATTGGATGGGAATTAAATCAATATTAAAGATATAGCATTTCCATATGATAAT
AAAACTGCTACTGAATTAATGCCCTTTTTTATTCTTGAGATATTAACCTGTGAAAAACCTTACC
TCCCATTCTTTTCGTATGAAATTCTCTTATTTGCTTGAATGTTTCGGTAGGTGCAGGGGTACTG
GTGATGTTCCCTCTTCCAGCAATACTGATGATAAAGTTGATCCAGATTCTGGAGTGGAGATGAG
CTGCCCGTCAAATGTTAAGAGTGGCTATGTCCCTGTGTGTTCTACCACAGGGCATATTTCACAC
ATGGACCAGAGTTTCTGTGGCTATGTGCAACAACCTGCTTTTGTGAGTGGATGGATGTATGTGA
ATGAAAATGGGCAAATGTGTGGTCCCTATATTAAGGAACAGTTATATGAGGGCCTAACTACTGG
TTTCTTGCCATCTGAGCTTCCTGTGTATCCAGTGATTAATGGCACACTAATGAGCCCTGTACCA
CTGAATTACTTCAAGCAGTTCCCTGATCATGTTTCCACTGGGTTTGCATATCTGAGTATGGGTT
TCTCAGGCACAAGGGTGCCAACAATGGCAGCATATGAGCAAGATAGGTCTTTTGAGCATGCTGC
TCCTCTGGCTGTTAATCCTGATTCACAGCCAGTTTCACAGTCACATGTCAATTACTGCATTAAG
GAATCCAATCACGTAAATTCAAACTCAGAGGCATTCAAAAGTTTAATATCTTGTCAGATGGTAG
TGCAATATCTGCTCTTTGTTTTGTCATGTAGAAGTCAGTTTGACATACAATGACAGTGTGTCTT
ATTGCTTGTTTCAGTTAGGTGTAGAATGCTGTTGGCTTTATGAGGATGAGAAGGGTATGAAACA
TGGGCCTCATTCTATTAACGAATTGATTTCCTGGAACCGTCATGGATATCTGAAAGATTCAACA
GTG
Conservation Information
Conserved circRNAs NA
PMCS 0.014995892
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 Chen et al., 2018