Detail information of Niben101Scf04285g01008_circ_ig.17


General Information
CircRNA Name Niben101Scf04285g01008_circ_ig.17
ID in PlantcircBase nbe_circ_007217
Alias NA
Organism Nicotiana benthamiana
Position chrNiben101Scf04285: 145467-148601  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.18 Niben101Scf04285g01008_circ_ig.19 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   AT-CA
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   TTGGGTTTTAGGATTTAATTTAAATTTTAATTTAATTTTGAAAAAAAGAATAAGAGAAGAAATT
GAATTTTGAAAAAAATAATAATTGAAAATGAAGGAAttgcatgcaatgtgatatttctatctca
taaataccgtaatgctaacatgttagctttgttttgctcccctttgttactttcattattatca
taagagag
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence TTGCATGCAATGTGATATTTCTATCTCATAAATACCGTAATGCTAACATGTTAGCTTTGTTTTG
CTCCCCTTTGTTACTTTCATTATTATCATAAGAGAGGATGGTTTGTTTGTGGCCGTTTGGTTAT
TCGTCCATACAACACAAGGTCGAAAGAGCAATATAGACATGGTTAGTAAAGACTTGGACACTGG
AGTTGTAGACCCACCAAGGGAGATTGTAGAATCAGAATCTGAACTGAAAGATGAGGTCAGAATG
TTGAAACAACAGATGACAGAAATGTATCAGTCTTGGGTTAGGAGGCATCCTCCACCTTCATTCC
CCCACTAATTACACTGAAAACCCTATAATTATCCTACCACTATCACAAGCCCAGGTTCCCACGA
TTGTCGACCTTTCCCCTGAATATTCACCGGTCTTTACCCCTTACCACAATCACCCTTGCACTTT
CTCCCAAGTTTTCCATGCTCCACCAGCAAAAACAACCTTATACCCTACTCCGACATCTGCCCCT
ATTTTTGTAGCTCCTCCACCAGCTACTCATCCTCGATCCTCTAGGGAGACAGTGTTCAAAGGCC
CCGATGCCTAAGGAAAGAGATCCAAGGAAAGTTTTAAGGAGTTTTGGTTCAGATGGAATGACAA
GTTGCTCGGGTCAGTTTTCCGATTGATAGAAAAGATTTTGCTGAGCCCTGCCAACGACATGATC
TAGTGGGCTTTCCTGATAAATGTTTTCAACCTCAATACCGACCCCATAAATACCCTCGTACTCC
AGATAATCGTCACCAATGCTACTTTCCTCCACAAAATCCCCGAAGTCATACCTCACCTCCCCAG
TACTCTATCCATAATGCACCGCCATATGCTACACACTCACAAAACCCGCTACGGCTTGAACTGC
CTCCACAATGTCTTACCCACCTCTACAAGCATATCAACCCCCTAAATGGAAGAGGTTCCAATCA
AGGCTGAAGTACAAAATAAGAAGGCAACAACAAAGAGAAAAGTCTTTCACTCCAATTAGAGAAT
CCTATGCAAGCTTGCTTGAGAAATTAAAGCCTTATGACCTGATTGCACTTATTCCTTCGAATCA
TGTAGACCTGCGTGCAAGAAGCTTTAGCCCTTCTAAAAGGTGTGAAATCATTCCAATGCTCAGG
GGCATAATGTCGAATGTTGTCGGGATTTTAAAAGGGAGATAGAAAGAAATTCAGGAAGGGATAA
TTGCGGTACAGGACAGCGACACCCATATCATTGCACAAAATCCTTTACCTGTACATGATGATGC
AAACTTTGTGGGAAAGATGCATGGTAACATGGAGTATGAGAATCCTCTTAGGAACTTTCTGATT
GAAGTTAATGATATTAAAATTGGTGAAGGTTCTAGTAATTTTGATATGCAACCCAGTGCTATGA
TGCCGAGCTTGGTAATTGGAAAGACGCTCATTTTTTGGCTAGCCAAGGAGGAGTTTTTATAGTT
TATTTTATTGTCATTTCTATTGTTCGGGTTATTTTAGGGTTGTAATCCGAATATTATCTAGTGG
CTCAAATCTTTTTTCTTCTTATGTTTGTCTAGTTCGTTTAGTTGTAGTAACTCGTCTTGTGTTA
TCTAGGATTGTTCCAGGGTTATAACCGACGTCTATTTGCTTGTATTGTTCAAACCCTTTTCATC
ATCTGTCTAATAAAATCTCCTATTTTCTGTTAGTTCTAGTCAGTTTTTGTTTAGGTCATTTTTA
ATTTTATAGTTCTTTTCATGCCGACTCTAGTGACATGACATTCATGCATAATTCTCAGCTTGAT
CTTGAAAGTTATTCTAATCATGAAGCAATGGAACACTTTTGAATATGATAAAAGGATGTTTTTG
AGGAAACAATTAAAGATTCACGCATTCAGAGGTGACCTGAACTTTGAATTGAGTGAAACTGAGG
CAGTAAGTCTGGGAAATCAAGAGGTTGATAAGATCATACAATAAGGAAATGTCTCTTAAGAAAT
TTGAGATAAATCAGTTAGTGCTGAAAATGCTTTCTTCCACATCAAGATAAGGTTGAGACAAGTT
TGCCTCGAACCCGCAAGGGTCATTCATTGAGACAAAGGTATTGCCCATTGGCACTTTTTGTGTG
TGTTGATACCATTAACAGAGACTATGCATGATTATTTGCATATCTTCAATTGCAAGTTTGTACT
TGGCATTTCTAATTTTTGTATGACGAAGGCGTTTAATTCTGCAACTCAAATACTTTTATCATTT
ATTACCCATTTTGAACCGAGATTTTTTTTTCATACCCCTCTTTTGGAATTAAAAATTGAGTTAG
GAACTAGAAAAGAAAAACAAAAATAGAAAAAGAGGGAAAAAAGGGAAAGAGAAAAAGGAAAAAA
AAGAAAAGGAGAAAATAAAAAAGAGGGAAAAAGAAAAAGGAAAAAAGAAAAAAAACAAAAAACA
ACTTTGTCGTTTGAACTACGTTTTACCTGATCCTTTTTCACCACAAGATGCAGCCTTACTATTC
GGTCGCATCAAATAAAATATTTCATAATCCGACAAAGTCAAGTGTGGGGCAGTCTTTCTTACAA
ATTTTCATCAAAGCAAAAATCCAAAAAAAAAATATATTCCCAGACTCCAAGAAACTGGGGCAGA
AGTTTTAATTTTGCCAAAAGATCCGATTCCAAAAGTTATAATTTTGAGCATGTGATTTTTTTCC
TATATGAATTACTCCCATAAATTCAAAATAAAATAATATTTTTTCATTATTTGCAATTTATGGA
TTCTTTGTGGCATTTTCTGTCAATTGTTTGCATTTGTCTGTGCATTTATATATTTTTTTAATTA
ATAAAAAATACCAAAAGAAATGTTGCATTTGCATTTAGGAATTAACTTTGTGTTTTTTAATTGA
GTAGTAAATTAGTTATTTTATAAAAATTGGAAAATTCACAAAAATGTTATTTTGCACTATAGTT
TTAATTTTGAATTTTGGCAGTTGTTCTTTTAATTTGGTTCTCAATTAGTTGTGATAATTATTAG
GTTTAATTAGTATTTTTGACTGGTTAATTGGGTTTTAGGATTTAATTTAAATTTTAATTTAATT
TTGAAAAAAAGAATAAGAGAAGAAATTGAATTTTGAAAAAAATAATAATTGAAAATGAAGGAA
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