Detail information of Chr1_circ_ig.126


General Information
CircRNA Name Chr1_circ_ig.126
ID in PlantcircBase csa_circ_000581
Alias Chr1:23606820_23610618
Organism Cucumis sativus
Position chrChr1: 23606820-23610618  JBrowse»
Reference genome Cucumis sativus v1.5
Type   ig-circRNA
Identification method Find_circ
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing Chr1_circ_ig.125
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   AAAATATCCATAAACGATGAAAACTATGATAAAGATGAAGAAAAGTCCGATGCTCAACAAACGA
TGTTTTCCCTTGATGACGACTTCTACCAAGCATACTttctagacacaaagtcatgccacgaata
tcttatatctctcatatttacaataagcctggtgggtccaacaagaggcttgatctgcaagata
cgaatcaa
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence TTCTAGACACAAAGTCATGCCACGAATATCTTATATCTCTCATATTTACAATAAGCCTGGTGGG
TCCAACAAGAGGCTTGATCTGCAAGATACGAATCAAGTCTTTAGATTCCATCGCTAGAGACAGG
TATCATTGCATAATGACCATCATAGCTAACCTGAAGAAAATAGGCAAATGAAAATTTTCCACCT
AGAATAATGATCCACAAAAGCATGTACCTGCAAAATGAGTTTGGGAATCTCCTCATGTTCATAA
ACAAAATTTCATTGCTATGCATTTAAAAGAGCCATTTGATGTAGGGACATATTTACCTTGTCTT
TATATTACTCGCTTATGATAATTCAGAGTGGAGTAAATAGATCTCAAAGAAACCACTAAAGAAA
AATACATAAATGTAAAATACCAAAAAGGAAAATAATAATAATCCATAAACCCTAATTTCCTTTT
AACACCCACCCTTCCTCAAGGTGGTAGAATGACGAACAACTTAAGTTTGTGAAGAAAACTTTCG
AATCAAATCAACAAATCTAAAATATAATCAGAAACCCACAAAGAAACAAACACGCAAAGAACTA
TTGGGCTAGAAAAAGGAATCCGCAAAGAACGGAACCAAAAACTTCTAGGCTAGAAACATAGATC
CTCATATAGTGATCAATAACAAAACCTACAAAGAACCAAACAAAAACTTCTAGGTTGGAACAAA
GATCCTTATAGAGTGTTCTATAACAAAACCTAAGCACAACGAAACAAGAACTTTTGGGCTGGAA
CAAAAATCCTCATAGATCTATAACAAAACCCATGAACAAAGATCCTTGCGTACTTCTTGGCAAC
GACTTGCAACTAGGCTGATGGAATAAGTATAGCAGAGGTGAAAACAAACCTAGGAACGGGTTGG
AGGTTAGTGGGAATTGGTCTTAAACAATAGTGTGAATCAAAACGAATCTGCTTCCGCCCATGGC
TAATTGGAGTGACAAAGACAGACATTGGACAAGGTTGTGGCAGCAAGGGTTCAATGAGAAAACC
TTTAGATCTGAATATTTTATATAAGATATTGAATAATTCAGAGCACATAATGACCTTTTACATA
GTGGATAAATAGACCCCAAAGAATCCACTAAAGCAAAACAAATACCTAAGGGACGTTTGGCGCG
TAGGACCGGAATCAAATGCATGGGAATTAAATGTATGTGGGCTTATCTGATGGGGTTCTAATGG
CTGAGAATTATAAATGCATGTGATGTAATTCAAGTTGGACTTAATTTTGGATCTAGGAAGCACA
GACACCAACACCCGACACAACACGGAGATACACCCAATTTCTAGAAAGTAGGACATGACACGTT
ATAATTTCTTTATTTTTCAAAATTAATATATGTGAAAATACTTGTAGATAAATTACTCATATAT
GTTAGAAAATAAAGAGTACATTAGTTGGTTTTCCTTTTTTTTATTGAAACAGAGACAAACTTCT
TTATTAATACTAAGAACTCGATATACAAGAGATTTATACAAAGAGTACATTAGTTAATTGATGA
AGTTCATTAAAAAGTTCCAAACTCCAATACAAATACAAAATCCTAAATAGAGATCACACTTTCA
TCCAAAACGACGGTACAACGGGTATGTTTCTTTTGCTGGACTCTTTTAAGATCTTATCATTTAT
ATTTCTCTACCTTGTTTCAGACTTATAATTGGGATATGATGCTTTGGTGCTAAGGGGGTGTTAA
CCTAGTTGAGATGTCCAAGTGCACCTTCTAATCCCCTAGCTTTCTTGATCTTTAGGTTTTTTTT
ATTATTCTCAATATATATACCTCTTGTACTTTGAGATCTTATTATTAATAAAGAAGTCGTCTCT
ATTTCAAAAAAAAACAATGGTGCAAGGGGTATATTTCTTTGGAACCATAAATCAAGAGTTCTTC
GATTTTATTATTTTTCATGCATTAAAAAATATTTCCTGACTAGTTGGGAAGATCTCTGGTACAA
GTTTGAAGCTAAAGTATCATCCTGGAGATTTATGCTAATTGAACAGGGTGACTGGTACCAGCGA
CTTATGATTGGAGGGGAGGGCCCGAGCGTTGAAGATTGGAGAGGACTAGAGGAGAGTCAAGACG
AGTGCTTAGGGTTTGGTTTTTTTACAAAAGGGGCTGAAGTTAAAAAATAAAAGGGGTGTGTTTT
ATTTTTAAAAAATATTTTAAATCATATTAAAAAATTCCAGCATGTCCTCATGTGAAAAAAAAAA
AGACCAAACAATTTTGCGTGTCTAACACGTGTCGGCCGCATGTTCGTGCTTCATAGGTTTGGAT
GGCTTCTTGTTCAAAGGTGGCAAGGTTTACATTCCTCACACCTCTCTTAGAATCTTCATTATTA
AGGGAATGCATTCTGGAAGTTTAGCAGGCCTAACATAATGAAATCCTTGAGGCTTATATCAAAT
ATCGTCTTGCCCCTCTTTTATAAATTCTCCTGATATCGCAAGTTGCAACAAAATTTATTTGTGT
TTCGTGTATTTGGGATCCTAATGGGACATTAGTGGATGCAGATCTAATAAATTCAAATACTTAC
TTGATAAAGTCAGTAGTCCTCTCATACATCCCACGTCCAACGTAGTACCGTTCCTAATAAAACA
AATTTCAGAACCAAAATAATGAAAAAAACTTGTTTCCATTCAAAAATAAAACAAAAAAAAAAAG
GCAAAAAGGCAAAAGAAATTAAAGATTTAACCAAATAGTGCGCCAACTGAAATTGAGAGGGCCA
CATTACCCGAACAGAAAACAATAAATAAAACAAGCATAAGAAGGTGAAACCTGACGCATCCACT
TGAAAAAGCGAACAAGAGGCCACCGATCACATTGATTTGTTAAAAGATGGCAAGCAGGTATGCG
CATGAGGATACTGAGACAAAGTTGTACACCACCATATATTCCAATCACAATTACATATAGTCTG
AACATCACTCTTTCCGCATTAGGTTTACTCCCCTCCTGAAGAGCTTTCCTGTAAGGAAATAGAT
ATAAATAACACCAAACGTTTTACCGGAAAAACAAGACGGCAAAAACATTAAAGCAAGAATACAT
ACACATAAAGAAATGTTATTGAAGCTGATGCAATACTGAACCAAATAAAACGAAGAAAAATTCG
AGAAACAGCAAGACGCCTTGAAGTAGAGTATGCACCATACATCATTAGAATATCTAGAACACCT
GGATCAAGTTCATGCAGTAAAATAGAAAATTGTTAGAACAAGAAAATTATTTCCATCCATTGCA
GACAAGATAACAGAACAAATCAGCTTCAAAAACTTTCAGTAGAAATGACTAGAATAGCACATAC
TCTCAATAAACTTCATTACAACAAATGTCGGACCAAGACTCAAAACTTCCAGCAGCATCTTCAT
ATTGAAGCTTCCATTGTTAAATGCAATTATGGTCAGAGCCTGTAAGAATAACAATGTGATAAAT
AATGATTAAACAAATGAAAATGCATACATCCTAGTCCCCTGTATTGAACACATGAATCGTAACA
ACATTCTTTGGATTAGATTTCTGGGATCATTATATGTTTTGTCATTTAGGCTATACCACATGAA
CAAAAACAAAAGAAATCTCCCAAGCATCAAGACGGAGGATAGCAAATTATAGTTAACAGGACAA
AGGATAATGGAGAACATTTAAAAAAGCCATATACCTGGAACATCATAACCAAAAATATCCATAA
ACGATGAAAACTATGATAAAGATGAAGAAAAGTCCGATGCTCAACAAACGATGTTTTCCCTTGA
TGACGACTTCTACCAAGCATACT
Conservation Information
Conserved circRNAs NA
PMCS 0.094908733
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