Detail information of AT1G41830_circ_g.1


General Information
CircRNA Name AT1G41830_circ_g.1
ID in PlantcircBase ath_circ_005860
Alias 1:15604814-15605159
Organism Arabidpsis thaliana
Position chr1: 15604814-15605159  JBrowse»
Reference genome TAIR10.38
Type   e-circRNA
Identification method find_circ; CIRI2
Parent gene AT1G41830
Parent gene annotation SKS6
Parent gene strand -
Alternative splicing AT1G41830_circ_g.2
Support reads 1/1
Tissues leaf;flower
Exon boundary   Yes-Yes
Splicing signals   CT-AC
Number of exons covered AT1G41830.1:1
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   GTCCCTTCGACTTCCACAAGCTTCATTCTGTGGTTTTGGATTCGGAAGTTCAGAGAATCTTGTA
ATCCAACGTTTGATATCCTCAATCGGTATGTTTTTCctgatggcacgtgcttggttcaaggacc
aatcaacctgaatagtgggaccgccaggaataggaccagaagcaggggtagacgagccactgta
gcgaagaa
Assembled circRNA sequence   Yes
Full-length trsnacripts Transcript length: 346
Transcript exons: 15604814-15605159
CTGATGGCACGTGCTTGGTTCAAGGACCAATCAACCTGAATAGTGGGACCGCCAGGAATAGGAC
CAGAAGCAGGGGTAGACGAGCCACTGTAGCGAAGAACCCCGGTGGTGGTTATGATTTTATCCGT
GAATCGAGACGAAACAACCACGTAGTAGTCACGAGGAGATTGGTCAGCAGTAATTAGAACGGAG
TAAGACTGGCCAACGTGAACGTCAAGAGAGGAAAACATGGTTTGAAGTGTGTGCGTCCCTTCGA
CTTCCACAAGCTTCATTCTGTGGTTTTGGATTCGGAAGTTCAGAGAATCTTGTAATCCAACGTT
TGATATCCTCAATCGGTATGTTTTTC

Genomic sequence CTGATGGCACGTGCTTGGTTCAAGGACCAATCAACCTGAATAGTGGGACCGCCAGGAATAGGAC
CAGAAGCAGGGGTAGACGAGCCACTGTAGCGAAGAACCCCGGTGGTGGTTATGATTTTATCCGT
GAATCGAGACGAAACAACCACGTAGTAGTCACGAGGAGATTGGTCAGCAGTAATTAGAACGGAG
TAAGACTGGCCAACGTGAACGTCAAGAGAGGAAAACATGGTTTGAAGTGTGTGCGTCCCTTCGA
CTTCCACAAGCTTCATTCTGTGGTTTTGGATTCGGAAGTTCAGAGAATCTTGTAATCCAACGTT
TGATATCCTCAATCGGTATGTTTTTC
Conservation Information
Conserved circRNAs NA
PMCS 0.417628104
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 Philips et al., 2020