Detail information of Chr3_circ_ig.15


General Information
CircRNA Name Chr3_circ_ig.15
ID in PlantcircBase csa_circ_001430
Alias Chr3:5495002_5499062
Organism Cucumis sativus
Position chrChr3: 5495002-5499062  JBrowse»
Reference genome Cucumis sativus v1.5
Type   ag-circRNA
Identification method Find_circ
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing Chr3_circ_ig.12 Chr3_circ_ig.13 Csa3G110620_circ_g.2 Chr3_circ_ig.14 Chr3_circ_ig.16 Chr3_circ_ig.17
Support reads NA
Tissues leaf
Exon boundary   NA-NA
Splicing signals   CT-AC
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   AACCTCCTCAGGTGTTTTCACTGGTGGGATGGCGTCTGTCTGCTTTACCTCACCAATTACCTTT
TTGAAATTTGGTTGATTGACCAATGTCCAGAAGTACctctcaacgtggggaaactcagaagtaa
agcttttagtcaatatatagttgaatcccaaatagagattgcatgtcagaatgatatcagctag
tgtcacgg
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence CTCTCAACGTGGGGAAACTCAGAAGTAAAGCTTTTAGTCAATATATAGTTGAATCCCAAATAGA
GATTGCATGTCAGAATGATATCAGCTAGTGTCACGGAGTGTCCAACGAGGAATGTGTTTGAAGC
AAGGTAGGAGTTCAAAGCACCGAAAGATCGTTTTAGAGCAGCATCAGCGGTTTCCTCTACCTTC
ATGAAGAGAATAATACCAAAGAAATAATTCATTCATAGGTATCAAAGGAATACTTACATGGTTT
GAAAAGTGAATGAAAATGGATATATATATATATAATAAAAGAAATAAAGTGAAAAGAAAGAAAA
ACTTCTTTGCAATCCAACTCACTTCTTTTATTAATGCCCACAGATAAAGAATACAAAAGAAGAA
AATAAACCTCAACCATTAACATCCACTTTCAACCACAACTCAAAACAGAAATAAGAAAAAAGAA
ATCCAACTTACACCCGGATGGAAAGCAGCATATCCAAATCTAGGCCTCAACTTAGTTGACACAG
GAATATCAATTTCAAACGTGGAAAAATCAATCCATTGTTCAACATGTCCCTGAAAAGAATAGAA
ACGAAAGAATTGATTAGCAAACAGTTCCTTTCTAATTGAAGAAAAGGGAAGAATCATAATCAAA
ACCAATTAAGAAAACGGATCTTTACACAATCAATGGAAGAAGAGCCAAATAAACCACTGTCCTT
CAAGCGAGCAACTGAACCATTTAGAGAGAAAAAAACATTAGCATAAAATAAAAACAAAAGGAAG
AAGATTTCCATTTTAACTCATCTCCCCAGTTATCAAGACTCTCCTAAGGAGAAACATGAAATAG
TAATTACCATAGCGAGCTATAGCATTGCTCTCAAAGATAGCACCATCTGGTGTTTCCAGAACAG
GAACCTACAATATCAAACATTATTTTAGAATATTCAAGCGCATATCAGTTGTAAACACTATCTC
TCACACAGTCAGATTAACAGGCATCACCCGTAATATATGTTTACCTTCCCAATAGGATTCATTT
TCAGATATTCAGGACTCTTGTTGGTCACGCCCATGGTAAAATCTTGGGAAAGATCAACCTTGAC
ACCATTGTACTCCGCAGCTATTAAAGCCTTGTAAGCATTTTTGTTAGTCTTCCAAGAATGCAAG
ACCTGCAAAATCAATACACATATACATCAAAGAACAAAATTACATTAGACCAGAAATCATCCAT
TTCTCCTATGCAACTTAACAAACGAGTAATCAGACATTAAATTTATGTCCGTGCAATCGGAACA
TAAATCAATAGGCTATAGCATGCAAGAAGCAATAAATGGCATGGATAACTAAGTTGAACATAAT
TCTAAAAAACTCCATCCATCACAGTACAAAAAAGAAGCAAGGATAAACACCAATCGTCAATAAT
GTAAATCAAATCAACTAATTCTTCAATCCTCCTACGCAATTCAACGTCAAAAACTTAAGAATTG
CAAAAAGTAGAGAAATTAAGGAAATGCGGCGGACATAAAAGAGTAATACTTTCGAAGATCGATT
ACTAAATTCCTCCAAAACTACTCAAACACACTGTAAAAACATGGGATCCGGAATAAGTAGACGA
AAATAAATCCAGTGGTTCAGAAATAAAATCGGCAGAAAAGAAAAAGAGCATAAAAAGATGGAGA
GCGGAAGTAATGAGAGAGACTCACGAGAGCCATCGGTTCGCGGAAGAAACGTTTCGCTCAAAAA
TCAGATCTGAATAAATAGGAAAGAAAACACAAGAGTTAGGAAGTGGAATAAGAGAATTAGTGAT
GATAAGGAAGAGATTGAAGGTGGAGAGAATGATAGAGATGAAAGAAAGGGGAATAAGAAGAGGA
TGAAGATGAGAAAAAGGTAGAAGGAGAGAGACCTGTGAGAGGGCGAGCGTTGTTCCGAGAGCAG
GAAATGTGTTGGGAAGAGAGAGAGAATATAAGGAGTGAGGGAATTAGGGTTTTGTAAAGGGTTT
TTTTATATTATTATTATTTATTATTTATTTGTTTTATTTAATGCATGGCCCAAATTGAGAAGAA
ATATGAGTTTTGACCCAAATCTTTGAAAATTAGGTTTTTTTTTTTTAATTTTAATTTTAACATT
TATTGAAGTGCAAAATTGGGCACCAAAAACCACTGTGTTCTCGTACACATGCACAATGGGTTTT
ACCTCTCTCTCTCTCTTTCTCTCTCTCTCCCCCTCCCCTTTTATCACTCTATCAAACTACTTTT
TGCTTTGCTTTCCAGCGTCTCATAAGATTTTGGGCAAACCAAGAAGAAGAAGAAAATCATCGCT
ATAGACCACAAACAAGAAGGGAAAAGAAAAGAATAGAAAATCTCCAACTTCACTCATCCATGCC
AAACTCAATTACCAATACTTTTTAAGAAAATGAAGCATTTTTCATTTTAAGAAAGGTTCTTCTA
GATTGATTGGATTTCATCTCATGTTTGATATAGACACAACTAAATTTTAAGATTACTCATTACT
AACATATATTTGTGCTTTTACTCTTACTTAATTCATTGAAACGTGAATGACGAGGGAATAACTT
ATGGAAAAATAATATATTTCAAATTTTCATTTTTTTTATAACAAAACTCCTTAAAATAAAATTT
TTTAAAAAAAAACTAGCTTTCAAAACTGTTTTCTTTAAGGTAAAAGCTCATTGAAATTGATATT
TACTAAGAGTCCTTATTATTCTCAAATTACTATTGAAAGAAGTTGGTCGACAAATAATTGAAAG
ATGGTGAAAACATCACCATAAAAATCAAAGAAAAGGAAATCAATGATGGCTCTTACACGCTTGA
ATGAATACAAAGAACTTAAATTTAACTATGTTATTTTTAGTTTTTCATGCAAGTTAACATTTAA
AAACTCAAGGAATTATTTAGAGTTAATTAAGTATTTAGCTTAAATAAACTTATTTTATAAAATG
ATTTTTATTTAATAATTACATAAAAGTGAACATGTACAAGTTGCTATACATTTTAAAATGGGAA
AAGGTCAATCCATACTAATATGTTGCTAATTATAAAGGGTGACAATCAGACCTATTTGAAAGGC
TTTCCAAATATAAATATGATTTGATTACGATGGAGAATCGAGGCTGTTTACTTATCTGCTGGTA
TCTTTGTCCCCATAATGTTATCTTCGTTATATCAATCGATAATGGTATTCGTAACAAAAATCTA
TTTGAAATGAAGGCAGAAAACAAAATCTGACTAAAAAAAAGTCCACAGAAACATTTCTCTCAAA
GTTAACTCTCTAATGTCCCCCAATAATAATTAAAAGTTTTGCGCTATTTCTCACTTAAAGCATT
TGGCGTCCAAAAGAGCTTCACCCTCAAATGGTTCCTGATCTTCAATCATTTGGCTCACCCTCTC
CTTCTGGGCTTCATCCGAGATATCCACCTTCTTCCACTCGTACAGCTCCATATCATAGCACTCA
TCAAGCACAAATTGTGGGATTTCTTTTCCACGGAAAAGCCATAGTCCTGATAAGATCACAAGCA
TATTTCCAAGTGCGTACTTCCTAGCAATATCCATTCTCTGGAGGAATCCACCAACTTTGTTCAA
AGTCACAAATGAAACAGTATTCTCGTCGTTGTATTTGTAGTCACAGAACCAAAGGGAGTAACCT
TCTGGGTCATACATGTCCCAGAATCCTGCATTTCGTAAAACATATGGCCATAGAATAATTCAGT
TTAACCATCCTTTCTCTAAAAGAATTCAAACAGCTAATGAGGCTGACGAATGGCCATACCTTTG
ATTGCAACCTCACGGAAGTTAGTCTTAGTGTTCGAGTAGAGACGTTTCCACTCATCCAAAATCA
TCGAACTAGGAGGAAGCAAGTCAAGAGGGTTTTTGGCCTTGGGCTTTGGTGCCTCCTCAGCAGG
TGCTGCAGGCTTCTCTTCTTGTTTCTTGGGCTCAGCCTTTGCTTTGGCAGCTGCTGCAACCTCC
TCAGGTGTTTTCACTGGTGGGATGGCGTCTGTCTGCTTTACCTCACCAATTACCTTTTTGAAAT
TTGGTTGATTGACCAATGTCCAGAAGTAC
Conservation Information
Conserved circRNAs NA
PMCS 0.878112405
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 He et al., 2020