Detail information of Csa3G829010_circ_g.1


General Information
CircRNA Name Csa3G829010_circ_g.1
ID in PlantcircBase csa_circ_002085
Alias Chr3:33067092_33069403
Organism Cucumis sativus
Position chrChr3: 33067092-33069403  JBrowse»
Reference genome Cucumis sativus v1.5
Type   e-circRNA
Identification method CIRI2
Parent gene Csa3G829010
Parent gene annotation NA
Parent gene strand +
Alternative splicing NA
Support reads NA
Tissues leaf,root
Exon boundary   Yes-Yes
Splicing signals   GT-AG
Number of exons covered Csa3G829010.1:4
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   TGCCCAATTTTTATCACATATTGACCTGCTGGAAACCACAAATCCAAGAGTTATTGCTCTCAGC
AAATTTCTTCCCTCCATACCTTCTCCCAAACAGATGaatctttgtgggtacttggaatgtggcc
gggagatcgccgatcggaagcttggcagtcgacttagatgattggctcaacctcaaagatgctg
cagatttg
Assembled circRNA sequence   Yes
Full-length trsnacripts Transcript length: 1186
Transcript exons: 33067092-33067202,33067303-33067923,33068542-33068805,33
069214-33069403
AATCTTTGTGGGTACTTGGAATGTGGCCGGGAGATCGCCGATCGGAAGCTTGGCAGTCGACTTA
GATGATTGGCTCAACCTCAAAGATGCTGCAGATTTGTACGTTCTTGGGTTTCAAGAGATTGTAC
CGTTAAAAACAAGGACAGTGGTCGGAGCAGAGGACACAACCAAAGCAACAAACTGGAACTTACT
GATTGGAAAAATTTTGAACGACAAATATGGATGCCCATGGCTAACGCCAATGATGATGAATGAA
GCCACCGGGGACGGGGACTACACAAGAAACACAAACCTTAACAGACCAATGAGATTCCCCGGCG
GAGATCAAACTCCGATCAAATTCCAGGGCAGAATTCCGGCGAACAGGGTAATGGGAGGGAGCAG
ATACGTGTTGTTGGCAAGCAAGAAGATGGTGGGAGTGTTTATAAGCGTATGGATAAGAAGAGAT
TTGGTGAGAAAATATTACATATCGAATGTGAAGGTTTGTTCAGTGGCCTGTGGAATAATGGGCT
ATTTAGGGAATAAAGGGTCGGTTGCGGTGAGTATGTCAATTGAAGGGACAAGTTTTTGCTTCGT
GGCGGCACATTTGGCTTCCGGCGAGAAAAAGGGGGACGAGCGGCGGAGAAACCACCAGGTGTCG
GAGATATTCCGGCGAACATTTTTCGCCAGATCGCCTAAAGATGATGAGTATCCAAATCCACATC
ATCCTCCTCTCACCATCTTAGGACATGATCAAATATTTTGGTTTGGGGATCTGAACTATAGGCT
GTATTTAGAGGACAGTTTTGCAAGGCAGTTGATTAAGAAACAAGACTGGGAAGCATTGCAAGAG
TTTGATCAGCTACGGAAAGAACAAGAAGCTGGTGGAGTATTTCAAGGATGGAGAGAAGGGAATA
TAGAGTTTGCCCCTACTTACAAGTATTCTTCATCAAATTGCAATCGCTATTCAGGTGGTCCTCT
AAGAAGGACAGGAGAGAAGCAAAGAACTCCAGCATGGTGTGACAGAATTCTATGGTATGGAAAA
GGAGTGAGGCAACTCTCCTATTTCAGAAGTGAAAGTAAGTTCTCTGATCACAGACCAGTCTCTG
CCCAATTTTTATCACATATTGACCTGCTGGAAACCACAAATCCAAGAGTTATTGCTCTCAGCAA
ATTTCTTCCCTCCATACCTTCTCCCAAACAGATG

Genomic sequence AATCTTTGTGGGTACTTGGAATGTGGCCGGGAGATCGCCGATCGGAAGCTTGGCAGTCGACTTA
GATGATTGGCTCAACCTCAAAGATGCTGCAGATTTGTACGTTCTTGGGTATGTTTAGATCCAAA
AAAAAGGCAACTAGAACTCTTTTTTCAACAATTGGGCACTAAATTTGAAATTGGGTTTGTTTTT
CTCTGTTTTTGGAGCGAAGGTTTCAAGAGATTGTACCGTTAAAAACAAGGACAGTGGTCGGAGC
AGAGGACACAACCAAAGCAACAAACTGGAACTTACTGATTGGAAAAATTTTGAACGACAAATAT
GGATGCCCATGGCTAACGCCAATGATGATGAATGAAGCCACCGGGGACGGGGACTACACAAGAA
ACACAAACCTTAACAGACCAATGAGATTCCCCGGCGGAGATCAAACTCCGATCAAATTCCAGGG
CAGAATTCCGGCGAACAGGGTAATGGGAGGGAGCAGATACGTGTTGTTGGCAAGCAAGAAGATG
GTGGGAGTGTTTATAAGCGTATGGATAAGAAGAGATTTGGTGAGAAAATATTACATATCGAATG
TGAAGGTTTGTTCAGTGGCCTGTGGAATAATGGGCTATTTAGGGAATAAAGGGTCGGTTGCGGT
GAGTATGTCAATTGAAGGGACAAGTTTTTGCTTCGTGGCGGCACATTTGGCTTCCGGCGAGAAA
AAGGGGGACGAGCGGCGGAGAAACCACCAGGTGTCGGAGATATTCCGGCGAACATTTTTCGCCA
GATCGCCTAAAGATGATGAGTATCCAAATCCACATCATCCTCCTCTCACCATCTTAGGACATGA
GTAAGTGGGTGTTTTTAATTTCTTTGTCGTCGCTATTAAATGAAAAAGGCCAATGTTACAGTTA
TTGTACACAGTCGTTGTACGCCAAACATAATTTTTCTTCAGATTTAAGTCAATTTTGGAGAAGT
GCAGAGATTTAAGTTCTAGTATAGTTAATTAAATTTTAGATTAAATTACCGATCTGTCCTTGTA
GTTTGGAATAAAAAAATTTATGAGTTTTGTAAAGTTTTAATTTAATTTCTATTGCTTTAATAAA
TCTCAATTGTTTCTAAATTGAGATATGACACAAACCAGGGAGAGTAAATTGATAATTTGATTAG
TTTGACTAGTTAAGTAGGTAGAACTACAATCATACATACTATGATATTATATTAAATTAAAGTT
TTCAGAATTAGAATACAAATAACGGTGGAGAGTAGGAAAAAGTATAATAGAAGAAAAAGGAAAG
GCTTTTTTTAGAAAACATGCTACTTTGTAAAAGAAAGCGTACAAAAAGTAGAGTAGTTAACTGA
ATGCAGAGATAGAATGTTGTTTTAGCATAGGAAAGCAATAAAGTGTTTATGATGAAAAGTTAAA
ATTGACGTAAAATTTGGATTTGTGTGCTGTGGTGTGGAACAGTCAAATATTTTGGTTTGGGGAT
CTGAACTATAGGCTGTATTTAGAGGACAGTTTTGCAAGGCAGTTGATTAAGAAACAAGACTGGG
AAGCATTGCAAGAGTTTGATCAGCTACGGAAAGAACAAGAAGCTGGTGGAGTATTTCAAGGATG
GAGAGAAGGGAATATAGAGTTTGCCCCTACTTACAAGTATTCTTCATCAAATTGCAATCGCTAT
TCAGGTGGTCCTCTAAGAAGGACAGGAGAGAAGCAAAGAACTCCAGCATGGTACTTATTTCATC
CAAAAATACTCTCTCTCTCTCTCTCTCTTCCTGTGTAAAAGCATGTGAAGTTTTAGGTAGAGGG
TCCTAGACTAGAGGGTCCATGAAGTCCTACAGTTTTCAATTAATTTCCAAGAAATTGGAAAACA
AACAAACAAACATAGAAACAGAGAGATAATTGAAGTTCTTTCTTCTCTGCCTCTTTCCTTTATG
AGATGAAATAATAGAGTATAGGGTCCTTGAGTTTCATTCTAATTTCCCAGTAAAAAAAGAAAAA
AAGAGAGGAAGCTTTAATGAATGCAAGTTATTTACGCTCCCATCTCTTGGAGGGTCCTCCTAGA
ATTTTGGATTAATTTCCAAGAAATGGAAGAAAAATCAGAGAGAGAATTGACTGAATTTATGGAA
CTGTTTGTAGGTGTGACAGAATTCTATGGTATGGAAAAGGAGTGAGGCAACTCTCCTATTTCAG
AAGTGAAAGTAAGTTCTCTGATCACAGACCAGTCTCTGCCCAATTTTTATCACATATTGACCTG
CTGGAAACCACAAATCCAAGAGTTATTGCTCTCAGCAAATTTCTTCCCTCCATACCTTCTCCCA
AACAGATG
Conservation Information
Conserved circRNAs NA
PMCS 0.504970332
Functional Information
Coding potential Y
Potential coding position 33067434-33067157(+)
Potential amino acid sequence MMMNEATGDGDYTRNTNLNRPMRFPGGDQTPIKFQGRIPANRVMGGSRYVLLASKKMVGVFISV
WIRRDLVRKYYISNVKVCSVACGIMGYLGNKGSVAVSMSIEGTSFCFVAAHLASGEKKGDERRR
NHQVSEIFRRTFFARSPKDDEYPNPHHPPLTILGHDQIFWFGDLNYRLYLEDSFARQLIKKQDW
EALQEFDQLRKEQEAGGVFQGWREGNIEFAPTYKYSSSNCNRYSGGPLRRTGEKQRTPAWCDRI
LWYGKGVRQLSYFRSESKFSDHRPVSAQFLSHIDLLETTNPRVIALSKFLPSIPSPKQMNLCGY
LECGREIADRKLGSRLR*
Sponge-miRNAs NA
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Zhu et al., 2019