Detail information of TRIAE_CS42_U_TGACv1_641861_AA2105970_circ_igg.1


General Information
CircRNA Name TRIAE_CS42_U_TGACv1_641861_AA2105970_circ_igg.1
ID in PlantcircBase tae_circ_000127
Alias circRNA811
Organism Triticum aestivum
Position chrTGACv1_scaffold_641861_U: 21877-25926  JBrowse»
Reference genome TGACv1.38
Type   igg-circRNA
Identification method find_circ
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing NA
Support reads NA
Tissues root
Exon boundary   NA-NA
Splicing signals   CT-TA
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   ACTTTAGGACATGGTATGATGACGAGGACATGGTATTGGCAGTTACTGCTTTCGACAACTGACA
TCGCCGCGTAGATAAGAGGTGCAAAAGAAGTTGGTCcctgaaaggttcaaatgtggaacaattt
gtcggtatctgtcaagaacctcctcaaaaccacgacaaggacggttttcttggtaaaagctgaa
gaccgaat
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence CCTGAAAGGTTCAAATGTGGAACAATTTGTCGGTATCTGTCAAGAACCTCCTCAAAACCACGAC
AAGGACGGTTTTCTTGGTAAAAGCTGAAGACCGAATGATCATGTGTAGAAGCTACAGGTTGAAT
TGCATTTCATCAAGTCATGGAAGAGGTGCCAAATTCCTTGTAAGAAAGTTAAAATGGAAAAGCC
AAAAACAGTGAGTGAATACTTACCATCACCAAACCCAAAGCATGGTATCAAGTTATCATCATCA
AAAGGTGATAGTGTTCGCCCAATTATAGAGATGGCTTGCTCATATGGATTTGGGGTGCCACTAA
TGGCATGCAGAGATTTTCTTCCAAAGGAATGCCTACCTACAGAAATTCAGAAGAATACTTTTCC
AGTTAAATGACAGGGACCTTGTTGGGTAAAACAGCAGACCTGACGTGACAGTGACAAGGAAGTA
ACATTACCTGACCATTCATTGCTTTTGGTGAAGTCAATACCGAGAATCAGATTTGATGATTCAA
GGCCAGCTTCCCTCAACGCAGCAACGACCTTCATATGTTGGAATAGTGCCAAATTACTTATTTG
GTGTAGAGAATGCAAACGCATGGCGACATGATGTGGATATGATATATTTACTTATTTTGAAACG
GAATAGAGGTAGCTGAAAGCACTCAAACAAGGTTTGCTGTAGGCAACAATACAGCAGGGAAATT
TGTGGCTCGCAGACACAGTTTATGTTATGCAGATTTGGGCATGTAGCATACGGGGAAAACAGAT
TATACCCTGCCAGGATTTGACATTTCTCAATGTTTATCGAGAAGACTGTGCCGAAGATTGAATA
ACAGAGACGCATAATTTGAGCAATGCCCTGAGGTTTTAATAATAACTAAGCAAATACTAGAGTA
ATAAGCCGGGTGATGGCCTCTGCCTTATTTATTTATTGTGCAGTAAAATTTTTTGCTCAAGAAG
CAGCAGCAGGATTCAGAGCAAACAGAGTAGCAGAGAAGCCTGTCAACACTTGATAACAGGCATG
AGAAAAGGATAGCACAATGGTTGCTTGTGACTCACCTCATCCACTGAGCTGTAGTTGTCTGCTA
TGAACTTGGGCTGCCGGTCCCTGGAACCCACGTTGTCGTGATGGTGCCCATGCTTGTGGTGAGC
CCTCTCGCCCCACATTGTCTGCCGGCGACGACCTGCAGAAATTTTGCCTTCGCGTCAGCAACCT
AGATCGACGCAGTATGCAAAAAATGTTACTGGCCAGTAGGAGTATACGCCAGGGAATCCGCGCG
TGGTGCGACAGGAATAGCAACATGGTGGACTGAATCTAGATCCGTCCCAGTAAAACAACAGCCG
GCAGAGCGTCAGTTTAGGCGGTTGCAGAGTTGCGGTGCGCCGGCTGACGGACGGATTCGCCGGG
CCGGGCAGCGAAGCAAGCAAGCAAGCAAGCATGAGGGGAACGGCTGGCGCGGGTGATGCGTGCG
GTGCGGGCCATGGAATGGATCGCGGCCACAGCGTCAGGTAAGGGGCTCCGTCGGTGATGAATCG
ATGGATCGGCGCCAGGTAGCTACCGTCGGGCCGAATCGGCCGGAGCCCCTCCCCCGCCCCGCCC
GCCAGAGCAGGGGCCGAGTCCCGCCACCGGCGAAGCGGGCCGCGGGGGCGAGGAATTCGGCCCC
TGAGGAGGAGGCGGAGAGGGAGGGGGTAAATTCACGGGGGGAGAGGCAGGGGAGGGGAGCGTAC
CAGCGCCGACCGGAGGGCTGGACCGTGGCGACGACGACGGTGACGGACGGCGACGGGGAAGACG
GCGCGGCGACGGACCCCTTGCTGCCTGCTTGCTTGCTGGATGGGATCGAGGAAGCGTGCGTGCG
TGCGTGCGTGCGTGAAGGTGAAGCAGAGAGAGAGGGTCCGCCGAAAAGGACTTCACTCCATTCT
TTCCTTTTTCTTCTTTCTTTTTTTTATTCGTTTCAGTAGTTTTCCAGCCTGACCTCAGCGCTAG
CTATAAAAGGTTACTGTAACATACGTTCACTCGCTCACGCTTCCATGTCAACAACTCTTATATA
AAAGAAAATGAGTTAAATACAGTAGGGGTGCCTCAAGTTGTTCCACGCGGTCAGTTTGATGACT
ACAGTTATAAAATACATGAAACTGATGCTCGAACTTGTCTGGCTGTGCAAATACGGTGCCTCAT
TTTGTATCCGGGCGTACGCTATGCCGGCATGGTGTGACAGCGTGGCGGTGGCGGCCCACATGTA
AGTGGCTGAGAGCATGGGAGGAGCTGGGTAGCCCGCGCGTGAGGGATTGCCTCATATTTTATTT
AATCACGTATGAAAGCCAACAGTAAAAATAAATTACATGATTTAGAATCCATGCTGAGATCTCA
CGGTCGCAGATTGCATTTTAAGCACGGGCTATCCACCACGCAAAAATATGCACAGTGGGCTTTC
ATAAGGTCGAATTATATATACAGCGTTGCTGTGCAAAACGTAACTTTGGAGCACGGGCATATTG
TGCCTGTTTCTCTTAAGTTCAGATAATCGGATTTTTACAACTCAAAAAAAATCAAAAATCTTTT
ATACGTGCACACATAGAAGTGTAATATATTGTGCGAACTTTCATCAAAATTCACGTTTGAATGT
GAGAGATACAAAAAAGATACACACATGCAAAATTTTGCTTGTTATTTGGCTGGAAATTTGTCTT
TATTGCAGGGCATAATATAACATATAATTTCGTACGAAATTTTGCACATGCATACGTTTCTGGT
GTGAAAAAAAAGCTGAACTTTTAAGTGACAGTTTCTAACCTTTAAAACAAACATGCCCAGTGGC
CACCGTGCTCCGAAAGTCCACTTTGGCTGCTATGTACCTCTTCAAGCTATTCTTTTATATATGG
TACTCGTTTGGGCCCACACAAGTTTTATTTTTATTTTTCAAGTTGGTGCTTATTTTTTGTCTTT
GATATTGTTTTTACCTTTTGAAAGAAGAAATGCAAGAAAAAGTTACAACTGCCATAAACTTAAA
AGAAAGCGCTAATGCATTTCATGTTTTTGGAAAATGTTTCACATGTATTCAAAAGTTATAACAT
GTTTTAGAAATTCATCAGGTTCAATAAGTTTTAGAATATGTTCATCGAGTATCAAAAAATTGCT
GTGTAAAATTATCCTTACAATTCTACAAACACGGTTGACATGTTTTGATACATTTCTAGAATTT
AATATTATTACACAGTAATTTTCATATATGTTGAATAATTTCAAAAAATACAACGTTGTCACTT
TTTTAATAGTTCTGTATTTCAGAAATACAACGAAGATACACCATAATCATGTATCCTTCTGGTC
CGGAATGAATATATATATGTTTACACAATAATTTTAAATATTTGTTGAAATTTTTAAATCCACA
TAAATTTTTGAAAAAAGTTAATTTTACCTCTTCAAAGTACACAATGAAAAGATAAAAAGTAAAT
AAAAATGCACAGTAACTACATATCAATAATTATTGTATTTTCTATATGGGAAATTTGCGTGTCA
TAAAACTAAACAGGAACTTGGAAAAAAGTAAATAAAATAAAACCAATGGATTACGCATCAGAAA
AATTGCAAAGCAACACGTGGAATTGGTCTACATAATTTTCTAGCTATTACTTGTACATGCCGGA
TAGTTTGCCCACGTGGGCAGATCGTGACGTTTAGTAGCCTGGAGGTGCAGGTTCTAAACACCGT
CATGGATTTTTTTTTCATGTTCTTCCTCTCTAGCATACACTGTATTTGAGGGCTTTCCTATATG
ATTAAAATACAAGGGATGTTTCTGCAAAATAATTCCTCCCCGCACGTATCCACTTACATGTGGG
CCACTGCCATGTTGGCACTTCACGTGGGCAGGGCGTATGTTTGAATACGGAAGGAGGCACCGTA
TTTGCACGACTGGACAAGTTCGGGCACTAGTTTTATGTATTTTGCAACTTTAGGACATGGTATG
ATGACGAGGACATGGTATTGGCAGTTACTGCTTTCGACAACTGACATCGCCGCGTAGATAAGAG
GTGCAAAAGAAGTTGGTC
Conservation Information
Conserved circRNAs NA
PMCS 0.124204788
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 Ren et al., 2018