Detail information of Niben101Scf04285g01008_circ_ig.19


General Information
CircRNA Name Niben101Scf04285g01008_circ_ig.19
ID in PlantcircBase nbe_circ_007219
Alias NA
Organism Nicotiana benthamiana
Position chrNiben101Scf04285: 145676-148795  JBrowse»
Reference genome Niben.genome.v1.0.1
Type   ig-circRNA
Identification method DCC
Parent gene NA
Parent gene annotation NA
Parent gene strand NA
Alternative splicing Niben101Scf04285g01008_circ_ig.1 Niben101Scf04285g01008_circ_ig.2 Niben101Scf04285g01008_circ_ig.3 Niben101Scf04285g01008_circ_ig.4 Niben101Scf04285g01008_circ_ig.5 Niben101Scf04285g01008_circ_ig.6 Niben101Scf04285g01008_circ_ig.7 Niben101Scf04285g01008_circ_ig.8 Niben101Scf04285g01008_circ_ig.9 Niben101Scf04285g01008_circ_ig.10 Niben101Scf04285g01008_circ_ig.11 Niben101Scf04285g01008_circ_ig.12 Niben101Scf04285g01008_circ_ig.13 Niben101Scf04285g01008_circ_ig.14 Niben101Scf04285g01008_circ_ig.15 Niben101Scf04285g01008_circ_ig.16 Niben101Scf04285g01008_circ_ig.17 Niben101Scf04285g01008_circ_ig.18 Niben101Scf04285g01008_circ_ig.20 Niben101Scf04285g01008_circ_ig.21 Niben101Scf04285g01008_circ_ig.22 Niben101Scf04285g01008_circ_ig.23 Niben101Scf04285g01008_circ_ig.24
Support reads NA
Tissues leaf
Exon boundary   NA-NA
Splicing signals   GC-AA
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   TGACTCGGTCCGTTTCCATACCCCCAACCAAACGATCCCGTTTAGGTTATAATTTATTTGAGCC
GTCGAGGTTGGCTTGATCCAACGGTGGGGAAGTGCGgggagattgtagaatcagaatctgaact
gaaagatgaggtcagaatgttgaaacaacagatgacagaaatgtatcagtcttgggttaggagg
catcctcc
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence GGGAGATTGTAGAATCAGAATCTGAACTGAAAGATGAGGTCAGAATGTTGAAACAACAGATGAC
AGAAATGTATCAGTCTTGGGTTAGGAGGCATCCTCCACCTTCATTCCCCCACTAATTACACTGA
AAACCCTATAATTATCCTACCACTATCACAAGCCCAGGTTCCCACGATTGTCGACCTTTCCCCT
GAATATTCACCGGTCTTTACCCCTTACCACAATCACCCTTGCACTTTCTCCCAAGTTTTCCATG
CTCCACCAGCAAAAACAACCTTATACCCTACTCCGACATCTGCCCCTATTTTTGTAGCTCCTCC
ACCAGCTACTCATCCTCGATCCTCTAGGGAGACAGTGTTCAAAGGCCCCGATGCCTAAGGAAAG
AGATCCAAGGAAAGTTTTAAGGAGTTTTGGTTCAGATGGAATGACAAGTTGCTCGGGTCAGTTT
TCCGATTGATAGAAAAGATTTTGCTGAGCCCTGCCAACGACATGATCTAGTGGGCTTTCCTGAT
AAATGTTTTCAACCTCAATACCGACCCCATAAATACCCTCGTACTCCAGATAATCGTCACCAAT
GCTACTTTCCTCCACAAAATCCCCGAAGTCATACCTCACCTCCCCAGTACTCTATCCATAATGC
ACCGCCATATGCTACACACTCACAAAACCCGCTACGGCTTGAACTGCCTCCACAATGTCTTACC
CACCTCTACAAGCATATCAACCCCCTAAATGGAAGAGGTTCCAATCAAGGCTGAAGTACAAAAT
AAGAAGGCAACAACAAAGAGAAAAGTCTTTCACTCCAATTAGAGAATCCTATGCAAGCTTGCTT
GAGAAATTAAAGCCTTATGACCTGATTGCACTTATTCCTTCGAATCATGTAGACCTGCGTGCAA
GAAGCTTTAGCCCTTCTAAAAGGTGTGAAATCATTCCAATGCTCAGGGGCATAATGTCGAATGT
TGTCGGGATTTTAAAAGGGAGATAGAAAGAAATTCAGGAAGGGATAATTGCGGTACAGGACAGC
GACACCCATATCATTGCACAAAATCCTTTACCTGTACATGATGATGCAAACTTTGTGGGAAAGA
TGCATGGTAACATGGAGTATGAGAATCCTCTTAGGAACTTTCTGATTGAAGTTAATGATATTAA
AATTGGTGAAGGTTCTAGTAATTTTGATATGCAACCCAGTGCTATGATGCCGAGCTTGGTAATT
GGAAAGACGCTCATTTTTTGGCTAGCCAAGGAGGAGTTTTTATAGTTTATTTTATTGTCATTTC
TATTGTTCGGGTTATTTTAGGGTTGTAATCCGAATATTATCTAGTGGCTCAAATCTTTTTTCTT
CTTATGTTTGTCTAGTTCGTTTAGTTGTAGTAACTCGTCTTGTGTTATCTAGGATTGTTCCAGG
GTTATAACCGACGTCTATTTGCTTGTATTGTTCAAACCCTTTTCATCATCTGTCTAATAAAATC
TCCTATTTTCTGTTAGTTCTAGTCAGTTTTTGTTTAGGTCATTTTTAATTTTATAGTTCTTTTC
ATGCCGACTCTAGTGACATGACATTCATGCATAATTCTCAGCTTGATCTTGAAAGTTATTCTAA
TCATGAAGCAATGGAACACTTTTGAATATGATAAAAGGATGTTTTTGAGGAAACAATTAAAGAT
TCACGCATTCAGAGGTGACCTGAACTTTGAATTGAGTGAAACTGAGGCAGTAAGTCTGGGAAAT
CAAGAGGTTGATAAGATCATACAATAAGGAAATGTCTCTTAAGAAATTTGAGATAAATCAGTTA
GTGCTGAAAATGCTTTCTTCCACATCAAGATAAGGTTGAGACAAGTTTGCCTCGAACCCGCAAG
GGTCATTCATTGAGACAAAGGTATTGCCCATTGGCACTTTTTGTGTGTGTTGATACCATTAACA
GAGACTATGCATGATTATTTGCATATCTTCAATTGCAAGTTTGTACTTGGCATTTCTAATTTTT
GTATGACGAAGGCGTTTAATTCTGCAACTCAAATACTTTTATCATTTATTACCCATTTTGAACC
GAGATTTTTTTTTCATACCCCTCTTTTGGAATTAAAAATTGAGTTAGGAACTAGAAAAGAAAAA
CAAAAATAGAAAAAGAGGGAAAAAAGGGAAAGAGAAAAAGGAAAAAAAAGAAAAGGAGAAAATA
AAAAAGAGGGAAAAAGAAAAAGGAAAAAAGAAAAAAAACAAAAAACAACTTTGTCGTTTGAACT
ACGTTTTACCTGATCCTTTTTCACCACAAGATGCAGCCTTACTATTCGGTCGCATCAAATAAAA
TATTTCATAATCCGACAAAGTCAAGTGTGGGGCAGTCTTTCTTACAAATTTTCATCAAAGCAAA
AATCCAAAAAAAAAATATATTCCCAGACTCCAAGAAACTGGGGCAGAAGTTTTAATTTTGCCAA
AAGATCCGATTCCAAAAGTTATAATTTTGAGCATGTGATTTTTTTCCTATATGAATTACTCCCA
TAAATTCAAAATAAAATAATATTTTTTCATTATTTGCAATTTATGGATTCTTTGTGGCATTTTC
TGTCAATTGTTTGCATTTGTCTGTGCATTTATATATTTTTTTAATTAATAAAAAATACCAAAAG
AAATGTTGCATTTGCATTTAGGAATTAACTTTGTGTTTTTTAATTGAGTAGTAAATTAGTTATT
TTATAAAAATTGGAAAATTCACAAAAATGTTATTTTGCACTATAGTTTTAATTTTGAATTTTGG
CAGTTGTTCTTTTAATTTGGTTCTCAATTAGTTGTGATAATTATTAGGTTTAATTAGTATTTTT
GACTGGTTAATTGGGTTTTAGGATTTAATTTAAATTTTAATTTAATTTTGAAAAAAAGAATAAG
AGAAGAAATTGAATTTTGAAAAAAATAATAATTGAAAATGAAGGAAATTGGTGGAGAAAATCCA
TTTGGGTTGCTTCAATTTAATCTCCACAAGCCCAAGTTTTCCCCTTGTACCTGCTAGCCCAAAC
CCAGTTTCCCCTTGACTCGGTCCGTTTCCATACCCCCAACCAAACGATCCCGTTTAGGTTATAA
TTTATTTGAGCCGTCGAGGTTGGCTTGATCCAACGGTGGGGAAGTGCG
Conservation Information
Conserved circRNAs NA
PMCS
Functional Information
Coding potential NA
Potential coding position NA
Potential amino acid sequence NA
Sponge-miRNAs NA
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Guria et al., 2019