Detail information of Os12g0264500_circ_igg.2


General Information
CircRNA Name Os12g0264500_circ_igg.2
ID in PlantcircBase osa_circ_011051
Alias NA
Organism Oryza sativa
Position chr12: 9350855-9354007  JBrowse»
Reference genome IRGSP-1.0.38
Type   igg-circRNA
Identification method CIRCexplorer
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing Os12g0264500_circ_igg.1 Os12g0264500_circ_g.1 Os12g0264500_circ_g.2 Os12g0264500_circ_g.3 Os12g0264500_circ_g.4 Os12g0264500_circ_g.5 Os12g0264500_circ_g.6 Os12g0264500_circ_g.7 Os12g0264500_circ_g.8 Os12g0264500_circ_g.9 Os12g0264500_circ_g.10 Os12g0264500_circ_g.11 Os12g0264500_circ_g.12 Os12g0264500_circ_g.13 Os12g0264500_circ_g.14 Os12g0264500_circ_g.15 Os12g0264500_circ_g.16 Os12g0264500_circ_g.17 Os12g0264500_circ_g.18 Os12g0264500_circ_g.19 Os12g0264500_circ_g.20 Os12g0264500_circ_g.21 Os12g0264500_circ_g.22 Os12g0264500_circ_g.23 Os12g0264500_circ_g.24 Os12g0264500_circ_g.25 Os12g0264500_circ_g.26 Os12g0264500_circ_g.27
Support reads 1
Tissues root
Exon boundary   No-Yes
Splicing signals   GT-CT
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   CTCCGCGAAGGTCGATGAGCCGGTAGCTACAGAGAACAGTGACGCTGCTCCTGCTGAGGCATCT
GTAGATGCTGTGAACGGCAAGATTCCTCCTACCAAGatcgaaaaagagagaggaaaaatactac
ccgtcctctgcttctctctttctttctcttgctgtgttttcttcttcctccctactactcggtt
tctgtcag
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence ATCGAAAAAGAGAGAGGAAAAATACTACCCGTCCTCTGCTTCTCTCTTTCTTTCTCTTGCTGTG
TTTTCTTCTTCCTCCCTACTACTCGGTTTCTGTCAGATCTCCGGCGAGCATCGAGGAGGTAGAG
GCCGCCCCCGACACCAACGGCGGCGGCGAGGAAGCCAATCGGCCCCGCGTGGAAGGTGACGGCG
AAGGTGGATCTCCTCATCCCCCCCCGCCTCCCTCCTTCCCCGCGTGTTTTGCGCATAGGGTTTT
CTGTCTCACGGGATGATGCTTGTGTGTTTTCTAATTCATTCGGTGCTTGAATAATCCGCGAAGG
GTTTATAGTCCGTTTCATCTGATTGTGTTCTCTCTTTGAATCAGGTGTCGTGCAGAGCAACGAG
TCCTCCGCAAAGGTCGATGAGCCGCTGCTCCTGCTGAGGCATCTGTAGATGCTGTGAACGGCAA
GATTCCTCCTACCAAGGTTACTTCTTATTAGGGATGAAAACGGATCGAATACGGACGGAAACTA
GCTCTACCATATTCATTTTCATATTTTTTTCGGAATCGGAATCGGAAACCCCGGATACGAAAAC
AGAATCGAATATTGTCGAATACAGATAGGAGCGAATACAAAATGGAACGAATACGGTGACGAAT
ATTAATCGGAACAAAAACCCCTCAAACTAAGCATCACAAATCAACGAATATTTCCAAATTTTAG
TGTTAATAATTTTGCTATATCCAATTTTGTGGTTGAGGGTGACGGCATCTGCAAAAATCGACCT
TATTTTCTATGCGGCTCCTTAAGACTAGTTTATCGCACTCATATGAACTCCAAATTGGATGATT
CTTTTTTCTAAATGTTTGTAAAATCATGCTCTATTGTGTTAGTGTGTTCTTACTGCTATTATTT
TGGCCATATTTTTCTTGTGACTTTGTTTTATCAATTAAAATTTTGAATTTCAAAAAAATAACAA
CTTCAAATAATATTTTGAAGCGGTAAATAATTCCAGCTGAAAAAGTCATGAACATAAAAGTTGT
AGAACTCATCAAGAGCTACAACTTTTATTTTGATCATTTCTTCATCCGACAAAGCAGTAGTAAC
ATTGTTCACAAAATTTACATATCTCTCTTATAACTTATGAAACTATATGTGAGATATGTAAATT
TTGTAAACAATGTTACTATCGCTTTGTTGGATGAAGAAATGACCAAAATAAAAGTTATAGATCT
TGATGAGTTATACAACTTTGTTATTGATGACTTTTTTAGTTGAAATCATTTAGTATTTGAAAAT
GTTGTTTGAAGGTGTCATATTTTGAAATTCAAATTCAAACTGTTTAACAAAGTCACATAGAAAA
ATGACACAAACAAAAGTTGTAGATCTTGATGCGTTTTACAACTTTGTTGTTGACAGTTTTTTTC
ATTTGAAAACATTTAATACCCAAAAAATTATTTCAATTTCATATATTTTAAAATTCAAATTTTA
TATAGTTCAATAAAACTCGGATGGAAAAATTACCAAAATAAAAATGGTAGAAGTCAATGAGTTC
TACAACTTTGTTTTTTACAACTTTTTCATATGAGTTCATTTACTACGATAAAATTCGATTCAAA
GTTTTTCATTGGATTAAAGAAGGTGGGTCCCAACTGTAAGGGTCCTCCTCTTCCTTTTCTTTCC
CTTCTTCTCTTCCTCTTTCTCTCTCTTTCTTATCTCCTCTGCTCTCTTCTCCCCTTTCTTCGCG
ATTCTCCACGCCAGAGGGGGAGGGGCGGGCATGGCGCGCGGCGGGGTGGCGGCCTAGCACGGCG
GGGTGCCGGCCTGGCGCGGCGGGCGAGACGGCCGGCGCCCTCCCCCTCCCAAATCCAGCGGCGG
CGGGCTGGGCAGGGGCCGGTCGTGGCCGGGAGCGGCGCGGCGCGGCGTGAGCGGCGTGGCAGCG
GCTTGGGATCTCCGGCGGCTCCGACAACAACGATGGGAGGGGCAGATCTGGTGGCGGCGACGGC
GACGACGAGGACAAGGACGGCTGTGGAGGCTTCGAGCGACGTCGATAGCGACAACGAGGATGGC
GTCGCCGGCGGTGAGCTAGGGTTTCGGCATTTTCGAGATTTTTATTTTTTTTTTCGATTTTTGA
TGTGGCTGATTTGGATTTGGCTGTTGATTTTGATTCGGATATCCGGAAAAAAAGTCCGGATAGT
TTCCGACCGAATCCGAGTTCCGACGGATACCATCGCTACTGTATTCGAATCCGTTTCCGAGAAA
AACTATCCGAATTCGTATCCGAATCCGAAAATATCCGAAAAAAATCCGACCGAAGTGAATTCGG
AAATTATCCGTACCACTTTCATCCCGCAATGCTGCCGTGGTCCAGAACTTAGCGTGTTGGGGTT
CTCTTCCTGCTGCTTTGGCCACCTGGGAGGATGCTGACGTTGTTCGCACCAGATTTCCGGACGC
TGTCCCTTGGGGACAAGCTCCAATTCCAGGGGGGGCAACTGTTATGCCTATGCCGGATGAGCTA
CTGGCAACGACCGAAGGAGGTGTGTCGAACTGAAGACGTACTGCGAAAAGACGTTTTCGAGTGG
CTATAGCATATTGAGTCTATGTACTGATTTCTGACACTGGCTTGTGGGGCTAACGGTTGTTGAG
TCGGGTGTGTGGTGTATAAATCGCCAGCCCGTAGGCACGTGACATCTATCGAAAAAGAGAGGAA
AAATACTACCCGTCCTCTGCTTCTCTCTTTCTTTCTCTTGCTGTGTTTTCTTCTTCCTCCCTAC
TACTCGGTTTCTGTCAGATCTCCGGTGAGCATCGAGGAGGTAGAGGCCGCCCCCGACGCCAACG
GCGGCGGCGAGGAAGCCAATCGGCCCCGCGTGGAAGGCGACGGCGAAGGTGGATCTCCTCATCC
CCCCGCCTCCCTCCTTCCCCACATGTTTTGCGCATAGGGTTTTCCGTCTCACGGGATGATGCTT
ATGTGTTTTCTAATTCATTCGGTGCTTGAATAATCCGCGAAGGGTTTATAGTCCGTTTCATCTG
ATCGTGGTCTCTCTTTGAATCAGGTGTCTTGCAGAGCAACGAGTCCTCCGCGAAGGTCGATGAG
CCGGTAGCTACAGAGAACAGTGACGCTGCTCCTGCTGAGGCATCTGTAGATGCTGTGAACGGCA
AGATTCCTCCTACCAAG
Conservation Information
Conserved circRNAs NA
PMCS 0.099180127
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 Chu et al., 2017