Detail information of GLYMA_20G248800_circ_g.1


General Information
CircRNA Name GLYMA_20G248800_circ_g.1
ID in PlantcircBase gma_circ_007833
Alias gma-circRNA2835
Organism Glycine max
Position chr20: 47776996-47780584  JBrowse»
Reference genome v2.0.38
Type   e-circRNA
Identification method find_circ
Parent gene GLYMA_20G248800
Parent gene annotation hypothetical protein
Parent gene strand +
Alternative splicing GLYMA_20G248800_circ_g.2
Support reads NA
Tissues flower bud
Exon boundary   Yes-Yes
Splicing signals   GT-AG
Number of exons covered KRG93119:6
KRG93118:6
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   TTATATATTTTCAGCTTATATTATAATGAATGACAGTCCATGCTTTTGATGTGTAGGAGCTATC
ACATGGCTTGATTCTGTTACTAATCATCCTTTGAAGaatcattttcaaaaatcattggaagtca
gcatggcattgtgtctgggactcgagaaaattctctctacaatgctatctgggcggctcaggca
cttcttcg
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence AATCATTTTCAAAAATCATTGGAAGTCAGCATGGCATTGTGTCTGGGACTCGAGAAAATTCTCT
CTACAATGCTATCTGGGCGGCTCAGGCACTTCTTCGTAAAGGGTAATATATAGGCTATGGGAAG
ATACTCACATTACTTACTGTCATTTCTACATGATTATTGGTAACTAATAATGGGAAACATTTAT
ACCAGGTCAGCAAAGACAGTTGACAAACGTATACTTTTGTTCACAAATGATGATGATCCTTTTG
GGAGTATCAAAGGGGCAGTAAAATCAGATATGACAAGAATGACACTGCAGAGAGCTAAAGTACC
AATTTGTATATGATTTAGTTTATAGTATAGATGGTAAAACCATAGAGTTTGAAGGATGCTAGTA
GTTCATAATTACTTTTTTTTGGTTTGTGAAGGATGCACAGGATCTTGGCATTTCTATTGAACTT
CTTCCCTTGAGTCACCCTGATGAGGTGTTCAATGTATCTCAATTCTATGCTGTATGTCTACACA
CCTTTGACATATATTTGTTATGCTCCCCCCTCCCCCCATTTCTTCTGTTAATTGATACTAATTA
TATGATTTATTCATGCTTACTTATCAATTGTATGTCTTTTAGGATTTGATTGGGTTGGAAGGAG
ATGATCTTGTAGACTTTATGCCATCAGCAGGAAAGAAGTATGGCATCCTATTTATGATATTCTC
CGACTTAATTTTCCCATGTTATTGAAATGGGGTGACTAGTTATACCCTTTGGAGTTTGACTTAT
ATGCTGCCGAAACGTTAAGTTTCAGGCACATAAATTGTTTAGTAGGTGTAGTGAGCTTAAACTT
GTTCCTTTTTTTTGTCTATATTAAGTTTTTACTTTTCATAAGAATATTTTTATAAAATACATAG
ATGCCAGTAAATGCTCCAAAGCATTTGCATAAAATGGTTCTGATATGTCTTTTTGGTTGCAACA
CATCTATGTTGGAGTTGGATAGTTAAAATAACTTGTGCTGAATATATAAAATAAAAAGGAATCC
TTTAATTTTAGACACTCTAAGAGTAGAATAAAAGGCCCTGGATGGAACCAATGCAACAGCAGGG
TTGGTACAGTTCCTAGGCATTGTGGTTTTGTTTTCAGTCAGTATTAAAAACTTGCAGATATTCT
TCTTAATTTAAGGTTGGGGCTTTGGGTTTTGGGCTTTAGTTTTAGGGGGGTTCATGTGTGAGAG
GGTCCTGGCATATATTGTGATTCAATATTGTAATGATCAGTTTGTGACTTGTATATCAAATATA
AGTCAGAAGAGATATATGGTGATATGATAGGAGTTGGTAATAGGAGTTGAGAGCAGATTTATGG
GAATTCTGCACTGGCCAAGGCATTGAACTCAGGCCGAGGGGAGCCTAACCAATTTGCAACCCAC
TACCATGACCCTGTCCCTACATAGAGCACATTCCTACTGTAAAACATGGGTCAAACTCCATCAC
AACAACTGTGACCAGTAGTGTAGAGAGTAGTAAATTGTGTGGTCCAAACTGGTGTTCGGAACGA
CACTTGAGTCATGTATATCGGAAGGAAAAGAAGCAGATGACAAGGAGAATGCAGAGGGTGAAGG
AGCAGAAAAACAGAAGGAGGATATAAAACCGGAGTTAGTGGTGATGCAATATGACCTCTTGAAT
AGGCTTTACTCAGCCAAATACTCTGAAATTGCGAGTAGTGGCAAATTGGATCGTAGTAGTGATG
GTTGACAGCTGAGCCAGTCATAGCTTCATCCGAATTATTTAGCAGTGGCACTGAAGTTACCAGT
CGAGGAGACTCCTGAGTTTACAGTTAGATTGGGGGTTGGACATTAGAAGTCAAGTGGGCTTTGT
AGGCAACTGGGTTTGTAACTGGATGGGATTACAGTGTCAAAGATTTTTTCACCTATTTCCTTTG
GTCGGTGTGGACATCATATTGGGAATTTTGTGGCTGGAGAAGTTGGGATATATGAAGGTAAATT
GGAAGGCTCTCATAAGTCACAATGACCTTTGATCAGCATGGTAGGCATGTGCGGCTTATATGGG
ATCCTTGTTAAGACAGGAACAAGGTATCTCCCAATGCCTTACTAAGGGAACAACAACAAGAAAG
TTTTATCCTACCAGTTGAGGTCGGCTACATGGATCTCCCTACGACATTCGGCACGGTTAAAAAC
CAAAGGTATAAATAGAAAAATTTGACATCTAATATCAATTAATTCTAACCCATAATTTGCTTGT
GCTATATCCCAAATTTTATGGTGTGCATTCACTATCTGAGAAGTTAGATCAGCCTATTTCCCCA
CTATTATGACAGAAATCAGTTGCCCATCTCACAAAAGAATGAAATTTAAAAGCTGGTAGACGAG
ATGCTGCAAGCAGGGATAATAAGGCCTACCAGACACAGACGTGCAGCAGAGAATATCCCATCAG
AAAAGTCACTCACTAGAAAATAAAGGGGCACAACTGCTGGAGAACACTGTTCTTGGGTTTTAAG
TGGACATAGATACGTTTTTACAAATTGGCTTAAAGGCCCAAACTACCCATATACATTAGCAAAT
AAGATGATAGAATCTCATGTTAGGTAGTTTAGACATGTGTGGAAAAGAACTATAGAAGTCCTAG
TAAGGAGAGTAGATCCTATAGAGGATAATGAAATAATTAGACTTAGATGTAGAAAAAACTATCA
GCCAAACCATTAAGAAAGATTCAGGTTCAAATGATTTGTTGTTTATTCAATGGGCATGATTTAT
GACAAGACATTTATGACACTATTTGATCCACATAACCAATCTTACCTAGTAGGGAAAGGCTTTT
GTTGTCTTTTTCTTTTTCTTAAAACATTAGGGGACTAATTTATTGGGATACTTCTATACAATTG
GCATGCATTGGTCTCTTTTCTATATTTTACTTAGTTTTCCCAATCAAAGAGGTGAAATTCATTA
ATGTGAACCACATATTACAGTGGAAGCAGACTCTGTTTCTCAATCATTTTAAGGATGAACATGT
GTTACTGCTTGAAATCATTACTTCATTGAATAAAACAGCTCATATTTTTGTACCATTGTTTATT
TCTATTGCATGGGGATTATGATGTTGAGCAACTATGATTAAGAGGTCTAAACCAGGGCAAGTAG
TTAATATTGGATTAAAATTATAAGTAGTGTTTTTTTTAACACAATTCATTTTAAGTCAGTTTTT
TTTTTTTTTTAATTTTGTATTTCAATTTCAGATTGGAGGATATGAAAGATCAGTTAAGAAAGCG
CATGTTTACCAAGCGCATAGTCAAAAGACTTAAGTTCATGATAGTTAATGGGATATCAATAGAA
CTGAATTCTTATGCTTTAATTCGTCCCACCGTCCCAGGTAAGCATTTTGTCACTTTCTAGCTTT
TAGCAGCTTTTATTTTGCAAAATTCATTTTCATCCGTATGACCTTTGCAAGATTTTTCCTTGGT
CCCTTTTAAGTTTTTAACAGAGAAAATTATAACTTATATATTTTCAGCTTATATTATAATGAAT
GACAGTCCATGCTTTTGATGTGTAGGAGCTATCACATGGCTTGATTCTGTTACTAATCATCCTT
TGAAG
Conservation Information
Conserved circRNAs NA
PMCS 0.11356724
Functional Information
Coding potential Y
Potential coding position 47777282-47777269(+)
47777003-47780341(-)
Potential amino acid sequence MTRMTLQRAKDAQDLGISIELLPLSHPDEVFNVSQFYADLIGLEGDDLVDFMPSAGKKLEDMKD
QLRKRMFTKRIVKRLKFMIVNGISIELNSYALIRPTVPGAITWLDSVTNHPLKNHFQKSLEVSM
ALCLGLEKILSTMLSGRLRHFFVKGQQRQLTNVYFCSQMMMILLGVSKGQ*(+)
MILQRMISNRIKPCDSSWDGGTN*(-)
Sponge-miRNAs NA
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Chen et al., 2018