Detail information of Chr1_circ_ig.22


General Information
CircRNA Name Chr1_circ_ig.22
ID in PlantcircBase csa_circ_000116
Alias Chr1:3192355_3196268
Organism Cucumis sativus
Position chrChr1: 3192355-3196268  JBrowse»
Reference genome Cucumis sativus v1.5
Type   igg-circRNA
Identification method CIRI2
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing Chr1_circ_ig.23
Support reads NA
Tissues leaf,root
Exon boundary   NA-NA
Splicing signals   GT-AG
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   AATCTGTATATTAATTTTTGTAGAACTGCATGGGTGCGGTGGTTTTCACTGTTCAAAAAGCTAA
CTCTAAAGCTTTGAATTTCTACCAAAGCAAGCTGCGtgtcttgaagcctaacaatggatttgga
gctctattgggaatcagaaagtgtcaagcaagtggcaattaaaatcatcgaggttggagcttac
tttaattt
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence TGTCTTGAAGCCTAACAATGGATTTGGAGCTCTATTGGGAATCAGAAAGTGTCAAGCAAGTGGC
AATTAAAATCATCGAGGTTGGAGCTTACTTTAATTTTACTTTTTGCAACTTCATAGAATTTATA
TTGTGTTAGCTTTGTGTGTTTGTTTTCAAAAAATCTCTTTGAATATTTTTTAGTTATTTTAGTT
TACGCTCCAATTTTTTTGGAAAGGTGGAGTTCTTTTTTTTATACAAGAAACGATACCTTCCTTT
AAATAAAAAGTCTTTGTGTATATATAAAGAAGCAAGGAGATAGAAAAAAGACAATCTAAGAACA
GCCTAAAACTTTGGCATTATCAAAAAGCATTTAGATGAACGTAACCCCCCCCCAGCCGTTAAAA
ACATTCTACATGCTNNNNNNNNNNNNNNNNAACCGAAGAACATCGCCCACACTCACCTCCCCCC
CCCCCGACAAGAAAAAAAAGGTAGGCTTTATCTTCCATAGTCCTATTCTGTTGCAACTACAAAC
TCCTAAAGAGGCCGTTCAATGACTCCAACAGCGAATTATCCACCTTCATGGCAAGAAAAAGTTG
AATATAAAAAAATTGAGCAGTCTGCCACAATATTGCGTAGTAAAAGAGCAACGTAACATAATAT
GATCCGAGGTCTCTTTCATCGGCTAAACACAAAAAACATATTGATGGATAGAGGGAGAGGTTTG
GGTATTTCTTCGGCAGACTATCTTGTGATACTCAATTTGTTGTGAGCCATGGAAAATAAAAAAA
ATCTCAACCTTTTTTGGGATTTTGAAATCCCAAATCAAAGAAAGTCAGCAAGCAGTTCAAACGA
AGCAGTCCAGTATTGTACTATTGTTTTTTTATATTAGGATATTATTGATAATTTTGTCCATGTA
GTTTATAAGTGTCGTTGTATCAACTATCAGTTGTTACAATCATTTATTTGACTTTTAATGATTC
GTAGGTCATTCGCAATATAGGTAAAAGGGGTTCAATATGGAGAGTGAGAGATTGAGGGAGGAGG
AAATCATTTATTTGACTTCTAATGATTGGTAGGTCATTCACAATATAGGTAAAAAGGGTTCAAT
ATGGAGAGAGTGAGAGACAGAGGGAGGAGGAAGGAGAAAAAGCAAGAGTGACCTGACCCAACAC
TTAGATTATTTGATTGGACTTATGAATTTCCCTTTGGCCCAACCTTTCTTATTGAAAGACGTAT
GGATGAGGAACTCCTTGATCATCTCACGAATATCCCTTTGGCTAGCTATCTGAATATCGAACTC
CTTCAGGAAGCAAATCCACACAAGCCTCGCAAAATGATAACCCCAAATAAGGTGATCCAGGCTT
TCCTCTGCCATTTGACACAACACAGCAGAAAGGACCCATTAATGAGGCCACTTTCCTAACAAGC
CTATCTAAAGTGTTTGCTCGACATAGCAAAACTTGCCAAAAAGAACTTGATTTTCTTTTTTCCA
AACCACATCATAGACTTACTCACTCACGAGAGAGGGATGCAACAACAATCTAAAGAAGAATTTA
CTAGAAAAACCATCAATAGGATTAGGGCTCTATACACAAACATCCCTTTTCCCCTCCCTAAAAT
TGAACACCAACTAAGTAAGAAAAGAGGCAGCCTCCATTGTCTTCTTATTGGATAAATGATGATG
AAACCTGGAAGAAAAAGACATAGAGCTCCCCGACCAAATAAAAAACCAGAGACCATTTGATTTT
TAAGGAAAGATAAATGATAAAAATGAGGAAACGCAAAGCAGAGGGGACTATCCCCCACCCACCA
ATCATTCCAAAAGTACATACTTTTACCATCCCCTTCAATGCATGCAACAGACCAAATGAGAGAA
AGAGGGAAACTCAAGATAAATATATTCACAAGGATTTTAGTATGTGCTTTTATGTAAGGATACT
CCCTTTTGATTTAGTATTCAAGTAGTTCTTAACCAAAATACAGGGGAAAATAGTGTTGATCGTA
AAATGTAACAAGCAAAATTAAAGTACAGCCAAACAAGAAGGTTGCTCTCTCCCACCAATAAACT
ATTGTTCATACAAATAACTCAAGATAACTAACCCCAAACAAAGAGATGCTTAAATACTAACATT
TCCTTGAGAACGTACTTTTTGGACCACACCCAACTAACCCTTTTGCCAGGGTGTAATTCCTCTT
TTGCCCCTCCTCTTGTAGACTTTCTTAGTTGGAGGTCTAGCACTTTGAACCCCTTCACCACCCA
TTCAAAGGGATGGGAGCCATGCTAACTTTTATGCCACAAGGATTCCAGCTCAAGGGCAAAACGC
CAAAGCCACTTAGCCAATAGAGCTTTGTTTTATTACACGCATGAATTATTTTTTTTAATTGATT
CAACTGGTAAATGGCTAGCAGTTAAAGTTGGTGCATTAAGATTTAATTAATTACAATAATAATA
TATTTTTTGTTGATGAGGTTTCGAGACAATCTTTATAAGACTGAATATGTTACCTATCGCAAAG
ATTATGCGGTGAGACCATGGGGTGGCTATTGGCAATTGTTGAAACAATCATATGGAGAATAAAG
GTTTGCTTTCTCATAGTCGTTCTGAGAACAACGGTTCTAGTGATTCTAATAGAGAACAAAGTTT
GAAGCGAAGAAAGGTAAATAATTCGTGAACTAGCACACTCGTGTATATCTATAATATTTTTCAA
ATTTGATAGAAGGTAAGGATGTTTAATACTTTTTTACTTCAACAATAGATACTTGAGCAGAAAA
AAGTCATGGATCAACTCATTGATGTTGCTGGCGCTCAAAAGGATCATCTTTCACCTTTTCCATC
CTTTCACCACTTCAACTGCGGTGGTATGGGTCTTCTTGATTTTGAATATTACAAGATTTTAGAT
CATGTTATCAGGCACAGACATTTTCTTTCCTGATTTAACTTGAATACGAGCCTATCAACTTAGT
TTGGATGGTTTGCATGAGTGGACTGTCGTTAAACATTTTGTTCTATTTGGGCCATAATTTTGAT
TTTATTGCAGCTATTGTCCCGACACATTTGTTGAGGTATAAACCTATGTTTCACATGATAGGAT
ACCTACTTCTCTTTCATTTCTAGGTTTATCTTTATACCTGCAATCAGGCCATGGCAATAAACTT
TCTCATTCGCTTAAGAAGTACATTCAGAATCTCCTCAAGGTAACAAATTGACTGTCTTGTTTCT
CACATTTAAACGCAGTCATTCTATCAGGAAATGTTTCGAACACATTATTTTTGGGTTGATAGAT
TATTCAATTTTTTTTTTCCTAAGATCAATATGGCGGGGCCATATGGATCCCAGTGGCCAACTGA
AGAGAAGGTGAAGCACAGGGAAATGGTTTCAACACACGCTCATTATATATTTGTGCACGAGGCT
TCAAATGCTAATGCCAATGGGATGTCTTCAAAATCAGATGCGGAGAAGATAACCACTACCCTAA
CTAAAAAGGATCCTGTGGTTGCATTTGTACACTTTCGATTTATATTAGAAGAGACGATTCCGGT
GCTTTATGTGTATGAACTGCAGATTGAGCCTCGTTTCCAAGGGAGGGGTTTGGGGACTTTCTTG
ATGGAGTTAATTGAACTTATTGCTTGCAAGGTTGTTCTCCGTTTTGCCTTTTCTTTGTTTCCTT
GTGTGAGCAAACGTTGTTACATTGAATAAATAAAATTTCAAACTGAACTTGAAACTCCAACAAA
AGTTCTTTTCTTCTTAGGTTAATTTAATTAGTTTTTCCATATCTTCTTTATATCTTCTGCCAAC
CTCTCTCTAGGATGCTTCTTTTATCTAATCATTCCTCTAATCTGTATATTAATTTTTGTAGAAC
TGCATGGGTGCGGTGGTTTTCACTGTTCAAAAAGCTAACTCTAAAGCTTTGAATTTCTACCAAA
GCAAGCTGCG
Conservation Information
Conserved circRNAs NA
PMCS 0.089281558
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 responsive to salt stress in root
Other Information
References Zhu et al., 2019