Detail information of Os10g0151800_circ_g.2


General Information
CircRNA Name Os10g0151800_circ_g.2
ID in PlantcircBase osa_circ_006234
Alias NA
Organism Oryza sativa
Position chr10: 3116453-3118462  JBrowse»
Reference genome IRGSP-1.0.38
Type   ue-circRNA
Identification method CIRCexplorer
Parent gene Os10g0151800
Parent gene annotation Similar to predicted protein. (Os10t0151800-01)
Parent gene strand -
Alternative splicing Os10g0151800_circ_g.1 Os10g0151800_circ_g.3
Support reads 1
Tissues shoot
Exon boundary   Yes-Yes
Splicing signals   CT-AC
Number of exons covered Os10t0151800-01:5
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   ACCCGTCGTCGTCGTCCATGATGTCGTCGTCCCCCTCCAGGTCCACCTGCTCCTCCGGCTCCTC
CGACTGCTGCCGATCCGCCATCCCAAAACCCTAACCcatcaatttcatacttttcgcttccttt
aactgccttcaatgcacttgatctttcagcaaaatgaacaaacccaaaatctctcttattccca
gccttagc
Assembled circRNA sequence   Yes
Full-length trsnacripts Transcript length: 1075
Transcript exons: 3116453-3116657,3117340-3117525,3117607-3117747,3117834-
3117950,3118037-3118462
CATCAATTTCATACTTTTCGCTTCCTTTAACTGCCTTCAATGCACTTGATCTTTCAGCAAAATG
AACAAACCCAAAATCTCTCTTATTCCCAGCCTTAGCAGGCGGTAAAACGACTTTTGTGACCTCT
CCATGAATTTCAAAGATCTCCTTAATCTTCTCTTTAGAAGCATTCTCTGGTAAGTTCTTCACAT
ATATAGTCTTCACCTGGGCAGCTGCAGAAGAAGAATCTGATGATGATGAACCCTTAGGTTCAGC
CCAGCTGACGGTCAACTGGCTACCATCAACCTTAAAGTTTGGTGCTGACAATTTCTGCTTGGCA
TAGTCTGCACAAGCATGGTTATAATACTCAACAAAGAGGAACCCACGGTTACGGCTTGGATCAT
GTAAATCCTTGAACATCTCAATGTTCACAACACCTGGGCCCTTCCCCTGGATTATGTTTCTCAG
CTCGTCCTCACTCAACCCCTTGGGTACATTGCCAACAAATAGCCTGTGCTTTGCCTGTGACAAT
GAGCACCGCAGTGTCCTCCCCTTGTGTTCTTTGTCATGCAGATCCTCAATAGCACGCTGAGCCC
CATCCTTGCCGGTGAAGGTGACAAATGCGAATCCTTTGTTCTCCTTCGTCTCTTTATCCTTCAT
CAACCTCACCTCAGAAATTTCGCCAAACGCCTCGCATAGCTCATGGAGGTCATCCTCGGTGGTG
TCACGTGGGAGACCACCGATGAACACCTCCGAGCCCTGAGGCGGCAGAGCGAGCAACTCGTCCC
ATTTCCTCTTCTCCTCCTCGTCCTCGGGCCCGGCATCGCCGCCAACCTTGTCCATCACATCGGC
GCCTCCTTCGCCACCCGCGGCGGGATCCCCACCCGCACCCCCCGGCCCTTCCGCGTCTTCCCGA
CGGCCGTCGCCCTCCCCCTGCCTCTCATCGGGATCCTCCTCCTCCGGGTCGTCGGAGTCCTCGC
GGCGGTGGCGGCGGTACCCGTCGTCGTCGTCCATGATGTCGTCGTCCCCCTCCAGGTCCACCTG
CTCCTCCGGCTCCTCCGACTGCTGCCGATCCGCCATCCCAAAACCCTAACC

Genomic sequence CATCAATTTCATACTTTTCGCTTCCTTTAACTGCCTTCAATGCACTTGATCTTTCAGCAAAATG
AACAAACCCAAAATCTCTCTTATTCCCAGCCTTAGCAGGCGGTAAAACGACTTTTGTGACCTCT
CCATGAATTTCAAAGATCTCCTTAATCTTCTCTTTAGAAGCATTCTCTGGTAAGTTCTTCACAT
ATATAGTCTTCACCTGTAAAAGAAAAGGCCAATCAGACAAATGTTCCTAGGGCTCAACAAAACA
AAATTATATGACATTTCCAAGCTAATTATCTCTATGAATATAAAAAAATCAACAAGCTAAGGGT
GCCTTGTACGAATAGGACAATCCATCCATAACAGAAACAACCTTGCACAGGTTGAGCCAGCGGG
CAGTGGTATTGAATGAGTAGAATAACTTCCAAGTCAAACACTCAATCTAACTAGTATTTCAGAT
TGCTTTAATCTACATACAACAAAGTGTCAGATTGCTTTAATCTACATACAACAAAGTGTTGTCA
GTTATACAATCCTTAAAGTGCCATGTAGAAACTAAAATCATGATGCAGCTGCATCCTGGAAATA
CATCAATAAAATGATGGTTATTTTGGTTCAACAATGGTAATCAGTAGTTCCAGATAACAAAAAC
TAATGTGAATGAGAAATGATTAACATAAGAATTACAAAATATTTCATGTTTCTTTGATCATTTG
CCAGTTCCTTTAGCAAATTATGGCACAAAAGAAACAAATCCAATTCCTCTTTTACAAGTGAGTT
ACCCCAATAAAATAGCAATATAAACAGTTTTTTTTCCCAAGGGACCCTAGTTCAATTTGCAGAG
CTGCAGTGCATCCGTTGAGCATAGAAAGCGCTGACTTTTCATTTACAGTGTATACCTGGGCAGC
TGCAGAAGAAGAATCTGATGATGATGAACCCTTAGGTTCAGCCCAGCTGACGGTCAACTGGCTA
CCATCAACCTTAAAGTTTGGTGCTGACAATTTCTGCTTGGCATAGTCTGCACAAGCATGGTTAT
AATACTCAACAAAGAGGAACCCACGGTTACGGCTTGGATCATGTAAATCCTGCAGGACCAAAAC
AAGGTCTCAATTAGCAAATTCGGGGCCTTCCTAGTGCAAAGTACAACCATGAAATCACAGACAC
ACCTTGAACATCTCAATGTTCACAACACCTGGGCCCTTCCCCTGGATTATGTTTCTCAGCTCGT
CCTCACTCAACCCCTTGGGTACATTGCCAACAAATAGCCTGTGCTTTGCCTGTGACAATGAGCA
CCGCAGTGTCCTCCCCTGCACCACGGACCATACCATCCAACATAAGTGCACCATACGTGATGCA
ATTAGAACCTCTGTGGCAACCCAGAGAGCCACAATACCTTGTGTTCTTTGTCATGCAGATCCTC
AATAGCACGCTGAGCCCCATCCTTGCCGGTGAAGGTGACAAATGCGAATCCTTTGTTCTCCTTC
GTCTCTTTATCCTTCATCAACCTCACCTGTTGTCATCCAGAGCTTCAGGTTATTGCACTATGTG
TTACAGGGATGCAAAAATTACTGGAAAAGCCTTAGATCATTCAGATACCTCAGAAATTTCGCCA
AACGCCTCGCATAGCTCATGGAGGTCATCCTCGGTGGTGTCACGTGGGAGACCACCGATGAACA
CCTCCGAGCCCTGAGGCGGCAGAGCGAGCAACTCGTCCCATTTCCTCTTCTCCTCCTCGTCCTC
GGGCCCGGCATCGCCGCCAACCTTGTCCATCACATCGGCGCCTCCTTCGCCACCCGCGGCGGGA
TCCCCACCCGCACCCCCCGGCCCTTCCGCGTCTTCCCGACGGCCGTCGCCCTCCCCCTGCCTCT
CATCGGGATCCTCCTCCTCCGGGTCGTCGGAGTCCTCGCGGCGGTGGCGGCGGTACCCGTCGTC
GTCGTCCATGATGTCGTCGTCCCCCTCCAGGTCCACCTGCTCCTCCGGCTCCTCCGACTGCTGC
CGATCCGCCATCCCAAAACCCTAACC
Conservation Information
Conserved circRNAs NA
PMCS 0.379010692
Functional Information
Coding potential Y
Potential coding position 3118071-3116479(+)
3118449-3118310(-)
Potential amino acid sequence MEVILGGVTWETTDEHLRALRRQSEQLVPFPLLLLVLGPGIAANLVHHIGASFATRGGIPTRTP
RPFRVFPTAVALPLPLIGILLLRVVGVLAAVAAVPVVVVHDVVVPLQVHLLLRLLRLLPIRHPK
TLTHQFHTFRFL*(+)
MADRQQSEEPEEQVDLEGDDDIMDDDDGYRRHRREDSDDPEEEDPDERQGEGDGRREDAEGPGG
AGGDPAAGGEGGADVMDKVGGDAGPEDEEEKRKWDELLALPPQGSEVFIGGLPRDTTEDDLHEL
CEAFGEISEVRLMKDKETKENKGFAFVTFTGKDGAQRAIEDLHDKEHKGRTLRCSLSQAKHRLF
VGNVPKGLSEDELRNIIQGKGPGVVNIEMFKDLHDPSRNRGFLFVEYYNHACADYAKQKLSAPN
FKVDGSQLTVSWAEPKGSSSSDSSSAAAQVKTIYVKNLPENASKEKIKEIFEIHGEVTKVVLPP
AKAGNKRDFGFVHFAERSSALKAVKGSEKYEIDGLGFWDGGSAAVGGAGGAGGPGGGRRHHGRR
RRVPPPPPRGLRRPGGGGSR*(-)
Sponge-miRNAs NA
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Chu et al., 2017