Detail information of Zm00001d026337_circ_g.2


General Information
CircRNA Name Zm00001d026337_circ_g.2
ID in PlantcircBase zma_circ_003245
Alias circ08
Organism Zea mays
Position chr10: 143791990-143795447  JBrowse»
Reference genome AGPv4.38
Type   ue-circRNA
Identification method KNIFE
Parent gene Zm00001d026337
Parent gene annotation Starch synthase IIIb-1
Parent gene strand -
Alternative splicing Zm00001d026337_circ_g.1
Support reads NA
Tissues seedling leaves
Exon boundary   No-Yes
Splicing signals   CT-TA
Number of exons covered Zm00001d026337_T018:2
Zm00001d026337_T012:6
Zm00001d026337_T009:6
Zm00001d026337_T007:6
Zm00001d026337_T014:6
Zm00001d026337_T020:6
Zm00001d026337_T011:6
Zm00001d026337_T013:6
Zm00001d026337_T017:6
Zm00001d026337_T021:4
Zm00001d026337_T004:6
Zm00001d026337_T015:6
Zm00001d026337_T006:6
Zm00001d026337_T019:6
Zm00001d026337_T008:5
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   CAGTGAGATTGCTGTAACCAGAATCATTCCTCAAACCTGAACTTGATACCATGCATCGAACGAG
CCCGCCTCTCGTAAATCTGCTGCACCTTACGACAGAcactgcttaggattaaacaatcatactt
cggcagaataacctcaactttatggcctaaatcctgaacagctcgtgaaaggcttgtaacaaca
tcaccaag
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence CACTGCTTAGGATTAAACAATCATACTTCGGCAGAATAACCTCAACTTTATGGCCTAAATCCTG
AACAGCTCGTGAAAGGCTTGTAACAACATCACCAAGGCCTCCAACCTGTGTTGATTGATATTGG
TAGTTGTCAAGTAGTATCATCATTTGTGTCACAAAATATAAAATGTAAATCTACCTTTGCGATA
GGAGCCATTTCCACTGCAATGTGCACAATATGCATTGGAGGTTCCCTTGCAACCGAATCAGACA
CAGGAATATGATAATCCATCCCATTCCTATTGTCATATCTTCCACCTTCTTCCGACTCAGAGAA
AACAAAGTCCATCATATATGCATCCAGGGGAACACTGACTGGGAAAAAACAAACAAATAAATTA
GAGAGAACTCAGAGAAGGACATCAGTAAACATTGACCAATATTGGCAACAGTGATTCAACAATG
TGATGAACATGAATTCAAAAGGTTTGAGGAAAATAAAAGTCTGTTTTAGTTTTAGCTCGATAAC
ATATGCACATGCCTACAATATCCCTTCTGATAACCAGGGAAGATGCGAGTATTAGATCACATAT
TTACTTGTTTGTATTTCCTCATAGTTCAGGACTGCGGAGGGTTCCATACATGTGTACAAATAGA
TTGCTTGTATATTTGGCCCTTACGATTATCACAATACACACACACACATATTATTGGCTCTTAG
AGCTACTGTTAACAGTGAGGAGTTTGAAGTGCTGAAGAGTTTTCAAACCCTAGATTTATAGAGA
CATATCCAATACCAAAATATACCAACTAGTTCAACCATACAGGATAGATTACACAAGTAGCTTA
GGGTAAAAAAATACTTTTGAAGGCCACCTAGAAATACTTGATAGATAGTAATATTAATTATATA
AAAATTTGTCCATGAAAAAGTTGCAATATGTTGTATTTTTTGCACACCTGTTGTTCGTAAGTGT
GAACTATTCTCAGCCTTTACCATCTTCTGTGGTGGTAAGGGACCACTTGGATGAGTCCAACGGT
TAAAGGAACCTCTGAACCAAACCTCTGACTTTCCATTCAGCACTGTGTTAGAAGGATTATAAAG
AACGTCCACAGTGGTTCCTGCACGTACTTCGAGTGGCTCAGTATACACAATATGTTTTTGTGAG
AGCAGAAACGCTCTCATAGTCTTTTCCTTCATCTCAGCCTTCATTTTTGCAGATCTCTCAGCCT
ATTGGGGGAAACAAAGCAACAATGAATTCGCCTTTATTGACAGTTCTGTAGTTGAAAGAGTGCC
AAAAGGATTGCTTCTTTCTTGTTTGATAAGTATCAAGGTTACTAGGTACAACTAAGCATTGCTC
CTAGTATATATAAAGTCTATTATGAGCTAACCTTTATTCTTTCGGCACTCTCCCTTTCTCTTCT
CTCTTGTTGAAGCCTTGTAAAGATCCTATGTTCTTCTTCCACCCAAAAGATATCATCCGATATG
TTATTAGGAACGATGGCATGAAAATCCTGCCTTCCATTGTTATCATAATTCCATGCATTCCCAG
GTGGTCCATCAGCAAAAACCCAATCCAACACCAATGCCCTTTCAGGTAATGTAACTATATACAT
GTCATGAAGTCAAAAGTAAGATTTATGCATAACAGACAAAAGAGCAACTAAACTCCAAAGATCA
AGCAAATGACAGATCTTCAGATTCATTCATGAGATAAGTATGTACTTAAAGATACAACCTTCAG
TAGGTAACTTATAGGCATAAGGATTTCAGGCTACCATACCTCTTTTATGCATTCAACAATTTGT
AAATGAATAGAAAGGGTAACATAAATCCTAAGGTACGAAAAAAGTAACTATGTGTACCTTCTAC
ATACCACCAATCGCCTTCCTTTTCATGAGATTTGACAAGTCTTTCAGCTATTGAGAGTCCATCA
ATCCAGTTGTTATAACCTCCATGCATCCAAATCTCAGTGTTATGCATTAGTGATCTCGAGCTTC
TATTATAGTACAATCTAACTCTGTCTCCTCCTCTGTAGGTGTTAGGTTCTATGTACCATAAGTT
CTCAGCATATCTGCTAGCCGAACTCAACATCTGGCGCAATTTCTCTTTCTTCATCTCGACCTCA
GACCTTGCTTGTGCCCTGTCAGCTTCCATCGCGGCCCTTTCTTCCTCTCTCCTGTGCCGCTCCT
CAGCTTGTCTTTTCCTTTCAGCTTCTTCTGCAGCAAGCCTCTCGAGTTCCTTTCGCTTTTCTTC
AACCAAGAAGTCCTCAAATGAGTGTTCATCTATGTCACTTTCTATTTCCAGGAAAAAATCGTTG
TGATTGTTATTTTCATAGACAGTGTCACCGTTAAAGAATACAAAGTCTAGTCTGTATGCCTGCT
TGGGAATGTAGAGCTTGCAGCACCACCAATCCCCTCTTAATTCGCTTCTATGCATTGTTTCAGT
GAAACGGTTCCATCTCCAACCATTGAATGCTCCTTTTACAAAAACGTCGGACTCACTAGCTAAG
GCCGACATGCTGCGGTTTAAGTAAAGATCAATCATCGAATCAGCCTTCACTACTTCAGGGAAAA
CAAAACAGTTGTTCCCAGTCGAATAATTCTCATCAGCAAGCTCTTGAAGCCTCCTCAGTAGCAC
TTCTGGATCATCTTCAGATACCGGAAGCTCTTCATCTGCGTCTGTACTTATCCCGACATCATCT
TCTAACGAGACAGCTTGCCCTTCCTCATTCTCGCTGCTTGCCTTTCCTGCTGCTGATTCAGTAA
AATCCTTATGACCCACAACGGCCTCAGCAAATAGCCTGCCTTTTGTTGGTGCATCAACAATTGA
ACTGCCATGTTCCTCAGAACCAGTTATTGGTTCGTGCTGGCCGTGAAAACCGCCAACTGATTCG
TTTTGTCCAGCAACACTTGCAAGTGACGAAGGTTCAGGTTTGGAACTTACTAGAGCACTTATTT
TACCACGGTACTCATCAAGTTGCCGGTCGATTGAGTCATCATCCATGGACGCGGAAGGCAACGC
TGAAGATTGATTTTGGTCAGCCTCTTCTTCGGTACCAGCTCCGTCCCTTTCTGCGCCACTTAAA
ATGTCTCCTGTCATGTAAACCTGAGACGATTCTTCAGCAGTACTTGCCTGCTCTGCTGCCTCGC
CATAGAGTGACCCATTGGCTCTGCTGAAATCACCTTCATTGTTCCTGCTCTGTTCTATCTTCTT
CGTACTGGATTCAGCAGTAGGTCTCGAAGCATACCCTCCAGAGGCAACGCCCTTGCTCTTAGAA
GTCGATGCCCTCCTCGGATTCCTCTTGGGATAATCTGAGTAACGCAATGTCAGGAAGAAAGAAA
AAACAAGAAACATGAGCTAAGCAGTAGGAGCAGTGAGATTGCTGTAACCAGAATCATTCCTCAA
ACCTGAACTTGATACCATGCATCGAACGAGCCCGCCTCTCGTAAATCTGCTGCACCTTACGACA
GA
Conservation Information
Conserved circRNAs NA
PMCS 0.006122636
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 Chen et al., 2017b