Detail information of Csa1G616320_circ_g.1


General Information
CircRNA Name Csa1G616320_circ_g.1
ID in PlantcircBase csa_circ_000609
Alias Chr1:24451202_24455252
Organism Cucumis sativus
Position chrChr1: 24451202-24455252  JBrowse»
Reference genome Cucumis sativus v1.5
Type   e-circRNA
Identification method CIRI2
Parent gene Csa1G616320
Parent gene annotation NA
Parent gene strand +
Alternative splicing NA
Support reads NA
Tissues leaf,root
Exon boundary   Yes-No
Splicing signals   GT-AG
Number of exons covered Csa1G616320.1:4
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   AATAGATATATTGATTGGATTTAGGTGTCATATATGTCGGAAAAGGTTGCCTCCCGTCTGTCCC
CATCAAATGAATCAGAAGCCTGATATTTTGGATGAGgtcagagagttttattcaaacatccggt
ggtatgatgttgaaaatacccatcctcttcccacggttgaaaaggaattaagaaaatcaatcag
gcttttca
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence GTCAGAGAGTTTTATTCAAACATCCGGTGGTATGATGTTGAAAATACCCATCCTCTTCCCACGG
TTGAAAAGGAATTAAGAAAATCAATCAGGCTTTTCAAGAAGGTAATTGTGCGCCGTAAGTCTGT
TGAAGGGAACTTGGTAAAATATCTCCTTGACTTTGGAAAAAGAAGAGCTATTCCTGACATTGTT
AAAAAACATGGGGTTAAGCTTGAGGATTCCAGTAACGAGAGAAAGAGATATTGGTTAAATGAGA
CTTTTGTTCCTTTGCATCTGGTGAAGAATTTTGAGGAGAAAAGAGTTGCTCGCAGAGCAAATGA
GGTCAAACCCAAAATTGTGGAGTTGGGTATAGTGAAGTCCTCCCGGAAGAAGGGATTTGCATAT
TTGTTTTCAAGAGCAGATAAACTTGATTTATACCATTGTGGCCGCTGTAACAAAGTTGTGCCTG
TCAGGTATTTTATACTTATTATTGCTTGTTTACTTGGATGTGTTTTATAGCGTGGTATTGCAAT
TTAATCACTTCTCTAGTTTCCTCATTCTGGAAACACAGGACTTTTCTGAAGTCTGTTATGGTTA
TTTCTAGAATATTTCTTTTATAATTTTTCATTGAATGAATAAAGTTGCAAAAGATCCAGCAAGA
GGAAAACAGGCTCCAGACACTTCAGGCCAAAGAGCTACAAAACCGGTCCAATCAACACTATATG
AAATAAATAATTTGAAAGAGAACATGAGAAGAATCAACAAAGTTTGTACAATTTCAAATGTTTT
CCCACCATCTTTTAATATTCTGAATGATCTCTTACTTCTCCCCAAGCAATAAATCTATTGTTGA
AGAGCTCGAATAAAATCATTCCAAATAACTTTTACCTCATATTAGCACCAAGCAATTGGGATAG
AAGGCAAATTAGCATCTTTAGGGAGGCAGATGGAATTATACATCTCCTTTTTTCCTCTTTTGGT
GTTAAAAAGGAAACAAGATTTTTCATGTCAAGGCATAAGTATTTGGAAATTGAACATCAAACTA
AGAGGTCATGAGTTCAATCCATGGTAGCCACCTACCTAGAAATTAATTTTCTACGAGTTTCCTT
GACACCCAAATGTTGTAGAGTCAAGCAGATTTTTTCGTGAGATTGGTCGAGGTGGGCGTAAGCT
GGCCCGGACACTCACAGATATAAAATATATATATTTTTTCTTTGATTTAATGAAAAGACACTAA
CACTCAAAATGCAATGATATAAAGATAATACAATTAAACATCCGAAACAGATTTGTTATATAGT
CCCTTCTGAGTCTTTTTGGCTTTTATTCAACTCAATGCTACTTGGTGGTTTACTAATTTCTTGC
TAAATTCTTTTGTAATTATACCCTTCTAATGATTGATAACAATGAGTTTTGAAACGATCTATTT
CATAATTTTGTGGCTATTTGGCAACTGCTCAAGAAAAAAACAGTTATAGCCTTCTAATGATTGA
TAACAATGGGAAGACTCTTCTTTACTAGGTTTGTTGGGGAGGGATAATCTTCACCCCTTAGCCT
TAGGTTGTCCTTTTGTCTACTTTTTAATACAAGTATTTATTTTCTTAAACGATCATGGGTTGAC
CTAGTGGTAAAAAAGGAGATATATTCTCAATATCTAACTAAGAGGTCATGGGTTCAATCCATGG
TGGCCACCTACCTAGAAATTAATTTCCTACGAGTTTCCTTCACATCCAAATATTGTAGGGTTAA
GTGGGTTGTGCCGTGAGATTAGTTGAGGTGTGCGCAAGCTAGCCCAGACACTCATGGATATAAA
AAGAAAGTATTAAAAGAAAGGATAAGAGCACTTGTGTTATATAGTCTTGTGAGACCTCAACTAA
TTAAAGAAAATTTTAAGGTATTCTAAATGAAAAGAGACGATCGATCTAGTTGTCAGAAAGCAAT
ACTGAGTATATCTTTCACTATTTGATGATCAAAGTGGAATGGACTATGTATTTACTTTACCCGG
CTTGAAATGGGCCCATCGTCTGTAGTAATACATTATTATTGGTTTCTTCTCATGAGCATCTCTT
TTGTTTCATCTTATTCTTTTCTTTATAAGATTATGAGCTCCATTCATTATCACATTGTGATCTT
GTTCAACTGCTAGATTGATTTCAAGGTTTGTGCACATAGTAGGCTTTTGAGAATGAATGTAGAT
GATGATGAATTGATTACTTATATGCTGTAAATATGGACAATACCTTTAATGTCATTCGTACTAT
TATTCAGAGACGTATGTTCTGACTCTTTGTTTACTTGGTTTTCATGTATCTATATTCTTTCACT
TTACTGATTCTTTTTTCTTTGAACTGTATTGTAGGGAAGCTGTTAGTTGCAGATATTGTCAAGG
TACATGGGGTTTTTTCTTTTCTTAACCATTTTGTTTTTCTGCATTGGGAACCACAAGTCATTGA
GATGTTAATATCAGATTATATTACCAGGAGTTTTACCTTCTATTCTTCTCTACATTTAGCATTT
CAAGTGAGGATTCGGTTCTCTGTAGGTAATCAATATAGTACTTAGAAATCTCAGATCTCCTGCG
TAACTGAGGTTACCTGCTATTCCTAATTTGATAGGGAGATAATTATGGTTTTGTGTTCTACGTT
TGACATCCCACATAGAACTTGCCACACAAAAAACCTTACCTTCATAGAAGTTCTAACCTTCCGC
AAAGAAGTTTGGGGGAGGGAATGGGCAGAACATTCTTACTTGAATAATTGATGGGAAGGAACAA
AGAACATTGTGGTTTGAGCTATTGGGATACAAATTATGATATACAGCACATACAAGTTATTTGT
ATATGCTGCATTGAGAAAGGTTGTTCATAAAATAATGGCTGGGAAATAGTGCTTGTTGTGGGTT
GGTTTGTTATTTTTGTTTTCTTTCTTTCGCCTGACAAGTTCTAGTTCATCTCCCTCAGAAAAAG
AATCCAGATAATTAGAAGAAAATGTACGTTTTCTTTGATGACTAGGGAGTCCATTGAAGTAAAG
CATGATTATTGCTACGCTTGCTCATCTACAAGTTGAATGCCTAATTACTCACCAAAACTAAGAA
TACAGATCAAATTTGTTTGGAAAGTTAATCTTTTTGAATCTTTATTTTAAGTTTAATTCCTAAT
TATTCTTATTATGCTTTCAGGAATTTTTCACAAAAAGCATGTCAAGAAGTATGTGGAATCCGTT
GCAGCAAAATGTACATATACCTGCCACAGTTGTTGGGATGGTATATCTGTGAAGTCTAATGGAA
AAAGAGGGAAAAGTGGTGTAAAAGGAGGGAAGTTGCACATGGTGAAAGGTAAAAGACCTAGTGA
TCAACGTGCACTGCGATTGAAAAACAGAAAAAAAGCATTGAGGGCTGGAAAACAAGCACAGACA
CAAAACAATTCCAAAGTTCCGACAGGTATCCCTCTACGTCGTTCAGCAAGACAAGCTAAACACT
CATCGCTTCAAAAGAAAAAGCAAGATAAAAAGGTTGGAGGAAGTGTCAAAAGGAAAAAGATGAA
GTCCAGGAAGGGAACACCAAAAAAACGTAAAAGAGAGACTTCTTTGCAGAAGAAAAGGACTCTG
GCGTGCCATAGCTTCTGGCTTAATGGTCTCTTCCTTTCTAGGAAGCCTGGTGACGAACGAGTGA
CACACTTCAGGGAGAAAAAGCTTCTTCTTCTAACTCCGAGGATTTCTGTGAACCATGATAAAGC
AAAATGCAATCTTTGTTCTGAAACAGAACATGCATCTGGTTTGAATTATATTGCTTGTCAAAAT
TGTGGAGGTAATTGATTTTCTCCTTCCGCTCCTCTCTCATATTGGCTAATATTTTAACACGAAT
TTTCTTGCCTTTTACGGAAGTAGTGTGGAAGCATTGGACTAATATGTTTTACCTCTTTGTGTGT
CATGCAGCGTGGTTTCATGGAGATGCTTTTGGACTTGATCAGACTAAAATAGATATATTGATTG
GATTTAGGTGTCATATATGTCGGAAAAGGTTGCCTCCCGTCTGTCCCCATCAAATGAATCAGAA
GCCTGATATTTTGGATGAG
Conservation Information
Conserved circRNAs NA
PMCS 0.8427698
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 Zhu et al., 2019