Detail information of Os07g0658400_circ_g.33


General Information
CircRNA Name Os07g0658400_circ_g.33
ID in PlantcircBase osa_circ_035135
Alias NA
Organism Oryza sativa
Position chr7: 27732943-27735084  JBrowse»
Reference genome IRGSP-1.0.38
Type   e-circRNA
Identification method CIRCexplorer
Parent gene Os07g0658400
Parent gene annotation Ferredoxin-dependent glutamate synthase, Leaf senescence and nit
rogen remobilization (Os07t0658400-02)
Parent gene strand -
Alternative splicing Os07g0658400_circ_g.13 Os07g0658400_circ_g.14 Os07g0658400_circ_g.15 Os07g0658400_circ_g.16 Os07g0658400_circ_g.17 Os07g0658400_circ_g.18 Os07g0658400_circ_g.19 Os07g0658400_circ_g.20 Os07g0658400_circ_g.21 Os07g0658400_circ_g.22 Os07g0658400_circ_g.23 Os07g0658400_circ_g.24 Os07g0658400_circ_g.25 Os07g0658400_circ_g.26 Os07g0658400_circ_g.27 Os07g0658400_circ_g.28 Os07g0658400_circ_g.29 Os07g0658400_circ_g.30 Os07g0658400_circ_g.31 Os07g0658400_circ_g.32 Os07g0658400_circ_g.34 Os07g0658400_circ_g.35 Os07g0658400_circ_g.36 Os07g0658400_circ_g.37 Os07g0658400_circ_g.38 Os07g0658400_circ_g.39
Support reads 1
Tissues shoot, root
Exon boundary   Yes-Yes
Splicing signals   CT-AC
Number of exons covered Os07t0658400-02:5
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   CCTCAGGATATTTTATTGACAATGTAGGATGGTTCTTGTATGCCTCAGGAACGAGAATCATCAT
AGCTTCAGCAGGACTTCTGCCACTTCTTAGCAGTAAtgctggtgtctcaagaccgtttcattgt
ccatagcaacagatgactggaagttgacaggctttattgaacgtgtactttgctgcaaccagga
tccatagg
Assembled circRNA sequence   Yes
Full-length trsnacripts Transcript length: 506
Transcript exons: 27732943-27733088,27733182-27733274,27734189-27734285,27
734803-27734873,27734986-27735084
TGCTGGTGTCTCAAGACCGTTTCATTGTCCATAGCAACAGATGACTGGAAGTTGACAGGCTTTA
TTGAACGTGTACTTTGCTGCAACCAGGATCCATAGGGGTTCGCTGAAGCCACACTTTTCTTCAC
TTCTGTGTTTTCAAGCACCTGGCCAGTTTGTAGGTCAACCGTTATCATCATTCCAGGACCCAAT
CTTCCTTTCATTACTACCTTTGACTCATCCATTGGTATAACACCAACCTCAGATGCAACATAAA
CAAAATCATCAGATGTTCTCCAATAGCGTGCTGGGCGGAGACCATTTCGATCAAGACATGCTCC
TACTGTCCTTCCATCACTAAATAAGAGCAAAGCAGGTCCATCCCAAGCCTCCATTTGACCTTTA
TAGTAGTCATAGAAGTCGATTACCTCAGGATATTTTATTGACAATGTAGGATGGTTCTTGTATG
CCTCAGGAACGAGAATCATCATAGCTTCAGCAGGACTTCTGCCACTTCTTAGCAGTAA

Genomic sequence TGCTGGTGTCTCAAGACCGTTTCATTGTCCATAGCAACAGATGACTGGAAGTTGACAGGCTTTA
TTGAACGTGTACTTTGCTGCAACCAGGATCCATAGGGGTTCGCTGAAGCCACACTTTTCTTCAC
TTCTGTGTTTTCAAGCACCTAAGATGATTCATGAGGTTTAGCACATATATTTGAATTGTCTGGA
ATACTCAAAGCAAGAAAGGAAAATGGTTATTTCATTTCTATTCTAACCTGGCCAGTTTGTAGGT
CAACCGTTATCATCATTCCAGGACCCAATCTTCCTTTCATTACTACCTTTGACTCATCCATTGG
TATAACACCAACCTGTAGATTGTCATAAAAAAAAAAGCTAGTGATCAGTAAGAACCATACAATA
TAGAACTTTGGGGACTCCCACAGGGCATTTAAGAAAGTGATCCAAAGTAACTCCATCAAGTGTT
GCAGTATGGTGGCACAAGGTTAATATTTTATTGTCATGATTTTAAATATAATATATCGCATTTC
AACTGCTCAAAAGATAGTAAAAAATAGGGTAATAGAGTATGAATTGCCATCCAAAGAGTCGAAC
ATGATTTGGACTTAGCAAACTTAAGCATAAGTTGACTTAACAATTTCATGAAGCAACTCGTCTA
TCAAGAGCAGCAGTGATCATCTACGTAAACCAATTCTTCAAATTATGCATCCAGTAAGCCGTAA
TTAAATGCTCAATGGTGTATGCAATACTATATAAAAAGCTGCCGGTATAAGGAAGGTGTGAGGG
AAGCTTCTTTAAGACAGAGGAAAGGAAGAATAGCATGGCATCCATGTACCCTGCAAATGCTATT
TACTTCACTACAATTGAGGTACTGTGCATTTACTCTGCCAACTTAATTGCCATGTGGTATCATT
ATAGGATGATACCACACATGCATGGGCATAAAACATAACATCCTAATAGGAACGAAAACACTAA
CTTCGTAATTTTCTCCTAATCACCTGTTGTAGATGTCAGACCTACACTTTAGCAAATGGACACA
ATACTTACTCAATGATATCTGAACTCTGCGGTTTGGTATAGAAGGGTGTCAGTATATCTGCAAT
AAGTTATTGGCAGATAAACCAAATGCTCCAATTCAAGAATTTCAAAATGGAGATTTCACTATAC
ATGAGAATATCAATGTTTCTCTCTAATAACATTGTCACCGAACAATCAATTCTATACAGAAGAA
TAAAATTACCAGAACATCAAAAGGGCATACCTCAGATGCAACATAAACAAAATCATCAGATGTT
CTCCAATAGCGTGCTGGGCGGAGACCATTTCGATCAAGACATGCTCCTACTGTCCTTCCATCAC
TGCACGCAAGAATATACCAAATCGAACTTGTAAGCAGTGTCAATTCTGTTGCAGGATGCTCTAA
ATTGGAGAAGTATTGGAATATCTTATTCATGAAAACAGAAAGCATCCTCTATCATGGGGACTAG
TTCAGCAATATTTCAGTTCAGCAATATTTCATTATTATTTTAATATATGTTGTTATTTTGCATA
TATCAGTTTTGTCTCCTATATGGAATTTTATTGCTGTACCATGCTTCAATAGGTTTCTACAGCT
ACACTTAGATATCGTTTGCCAATACTTCTAATGACAGCATGTAGCCTTCTCTTATGATTTTATC
TTTCACAATAAATAGCTACTTGGTGCATCCTTATTTCTTGAATCAAGGTATATAAATTAGAAGG
AAGTCAAATCTGCTGATGCATGAGATGCCTTTGACCAAACTGTGCAAGAAAACTGTGCCTACAC
ATCATGAACTGACATAGCAAAAGAAAATAAATTAAATACCTAACAGATTAACACAAAAATGATT
TTACCTAAATAAGAGCAAAGCAGGTCCATCCCAAGCCTCCATTTGACCTTTATAGTAGTCATAG
AAGTCGATTACCTAATGCACAAATGAAGAGAACATTCACTTGAACAGAACTGCTTGCACTAGTT
AATATGTGAGGAATTTGATGCATACCCATGGCTTCTATATATACTAACGCATTCCATACCTCAG
GATATTTTATTGACAATGTAGGATGGTTCTTGTATGCCTCAGGAACGAGAATCATCATAGCTTC
AGCAGGACTTCTGCCACTTCTTAGCAGTAA
Conservation Information
Conserved circRNAs NA
PMCS 0.367349113
Functional Information
Coding potential Y
Potential coding position 27735050-27735077(-)
Potential amino acid sequence MMILVPEAYKNHPTLSIKYPEVIDFYDYYKGQMEAWDGPALLLFSDGRTVGACLDRNGLRPARY
WRTSDDFVYVASEVGVIPMDESKVVMKGRLGPGMMITVDLQTGQVLENTEVKKSVASANPYGSW
LQQSTRSIKPVNFQSSVAMDNETVLRHQHYC*(-)
Sponge-miRNAs NA
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Chu et al., 2017