Detail information of Os02g0745100_circ_g.10


General Information
CircRNA Name Os02g0745100_circ_g.10
ID in PlantcircBase osa_circ_016548
Alias NA
Organism Oryza sativa
Position chr2: 31266960-31268538  JBrowse»
Reference genome IRGSP-1.0.38
Type   i-circRNA
Identification method CIRCexplorer
Parent gene Os02g0745100
Parent gene annotation Aquaporin NIP III subfamily protein, Aquaporin, Silicon influx t
ransporter, Arsenic species (As) uptake, Arsenite efflux, Seleni
te (Se) uptake, Water transport (Os02t0745100-01)
Parent gene strand +
Alternative splicing Os02g0745100_circ_g.1 Os02g0745100_circ_g.2 Os02g0745100_circ_g.3 Os02g0745100_circ_g.4 Os02g0745100_circ_g.5 Os02g0745100_circ_g.6 Os02g0745100_circ_g.7 Os02g0745100_circ_g.8 Os02g0745100_circ_g.9 Os02g0745100_circ_g.11 Os02g0745100_circ_g.12 Os02g0745100_circ_g.13 Os02g0745100_circ_g.14 Os02g0745100_circ_g.15 Os02g0745100_circ_g.16 Os02g0745100_circ_g.17 Os02g0745100_circ_g.18 Os02g0745100_circ_g.19 Os02g0745100_circ_g.20 Os02g0745100_circ_g.21 Os02g0745100_circ_g.22 Os02g0745100_circ_g.23
Support reads 3
Tissues root
Exon boundary   No-No
Splicing signals   AC-AG
Number of exons covered 0
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   AGACATCTCGCAATGTGCAGTTAGATACTACTGCGACTGCTCTAGATCGATCTCCAGCTAGAGG
TGCAGGGTTAAAGCGTTGAAATGAAACATCTTTTCAgtatgcagatgcagcaacacagctacct
caaactgccaattcttcatatatattacttcttgcatcaaaatatatatgcaatataatagtta
gctatgtg
Assembled circRNA sequence   Yes
Full-length trsnacripts Transcript length: 1579
Transcript exons: 31266960-31268538
GTATGCAGATGCAGCAACACAGCTACCTCAAACTGCCAATTCTTCATATATATTACTTCTTGCA
TCAAAATATATATGCAATATAATAGTTAGCTATGTGTACGACTTAAGCCATGCACTACTTCGGC
ATACTAGCTAGATGCTTTCTTAGTTTCTTTCAATCTGTTCTTTGCCAAAAGATGTTAGCAGAGA
CACCTAACCAATTGAGTGCTGATTGAATATTAGTAGTCACATAAGAATTTTTTCTGAAACGACC
TTAGCTTGTTCCGGTTGTCTTTTTACATATGATGGTATCTGAATCTTGTTAAATTTACCTCCGA
TAGCTACAATTTTCAGAGTTTCGTCAGCTTTGATCCTCTCCATTTTTTTAATTTTTGACGCAAC
CCTCTTCATTATCTGAAAAACTTTTTAAATCTCAAGAGAGCAAAATCATTGGCTAATTTAGTCC
TCACTTAAGTACTTAGTTTATTCACGCGTTCTTGTCAAGATGTTGCCATGGATTTGATTCTGCC
AAATTAAATCTCTATTTTAGGCATATATGCCAAATTATTCAGTCTAGCTTATGTCGCCGGCCAG
AAAGAAAGTCAAAAGGCAACGAGAGGTGGTATATGCTCATGTAACTTGTTATCCGAACCAACCA
ATCACATATCTTTCAAGGTCATTAAACTTATATATACCATAATGATGCACACATCCGCATTGTA
TAAGGAATTAATGTCGTCTCTTCTGTCAACAACATATATCGACCTTAATCCATAGGTCCTTTTC
ACTACACATTTGTCTAGCTAGCTGGAGCCTGAAAGCAAGCAACCACTCCATATCAGCAACACAC
AAACAATAGTACAGCCAGACAACACGTTGGGCAGTAGCATGTGATCGATCGATCACCAGATTAA
TTAAGCTCACATCAATCAAAAAATCAGACATCTGAAATCTAGCATGAAACCGCCACAAACAATT
CAGGCTCGTGCTAATTGAACACGAGCAATCACGCGTCAAAACCCCAGCACAGCCAAATTAAAGA
TGAAGCCACTAAGCTGGGATACGCTGAGTTAGTTGCCACGGATCACATTCCATATAGTCTATTT
TTACATCGCAATCCACAGGGCACTTCTGCTGCTGCTGCTAGTAGAAGACAAGAGTATGATCGTG
GTCGAGGCTTTTTTGTTGCCACTGCACGTAAAGCTAGCAGGGACAAGTGTCCGTAGCGATACAG
TACAGGAGAACCGGTCGCGACGCAAGAATTCATGTAAAGGCGGTGGCGTGCGTGGTGGTTCATG
TGCCATATATTCGGTCGATCGATAGGGATCCGCCGGAAATCGATCGCCTGTGGCGCCGTCGTCC
GATCGATCGGCACCGAATCCGGGGCTAAGCTAGTTGCCGCTATCTGCTATAGTGCTATATATCT
ATCTATATATTCACTAGCACACACACCGGTGAGGCTGACCGGAACCGATTCGATGTTCCCGGCT
TCAACAGAGACATCTCGCAATGTGCAGTTAGATACTACTGCGACTGCTCTAGATCGATCTCCAG
CTAGAGGTGCAGGGTTAAAGCGTTGAAATGAAACATCTTTTCA

Genomic sequence GTATGCAGATGCAGCAACACAGCTACCTCAAACTGCCAATTCTTCATATATATTACTTCTTGCA
TCAAAATATATATGCAATATAATAGTTAGCTATGTGTACGACTTAAGCCATGCACTACTTCGGC
ATACTAGCTAGATGCTTTCTTAGTTTCTTTCAATCTGTTCTTTGCCAAAAGATGTTAGCAGAGA
CACCTAACCAATTGAGTGCTGATTGAATATTAGTAGTCACATAAGAATTTTTTCTGAAACGACC
TTAGCTTGTTCCGGTTGTCTTTTTACATATGATGGTATCTGAATCTTGTTAAATTTACCTCCGA
TAGCTACAATTTTCAGAGTTTCGTCAGCTTTGATCCTCTCCATTTTTTTAATTTTTGACGCAAC
CCTCTTCATTATCTGAAAAACTTTTTAAATCTCAAGAGAGCAAAATCATTGGCTAATTTAGTCC
TCACTTAAGTACTTAGTTTATTCACGCGTTCTTGTCAAGATGTTGCCATGGATTTGATTCTGCC
AAATTAAATCTCTATTTTAGGCATATATGCCAAATTATTCAGTCTAGCTTATGTCGCCGGCCAG
AAAGAAAGTCAAAAGGCAACGAGAGGTGGTATATGCTCATGTAACTTGTTATCCGAACCAACCA
ATCACATATCTTTCAAGGTCATTAAACTTATATATACCATAATGATGCACACATCCGCATTGTA
TAAGGAATTAATGTCGTCTCTTCTGTCAACAACATATATCGACCTTAATCCATAGGTCCTTTTC
ACTACACATTTGTCTAGCTAGCTGGAGCCTGAAAGCAAGCAACCACTCCATATCAGCAACACAC
AAACAATAGTACAGCCAGACAACACGTTGGGCAGTAGCATGTGATCGATCGATCACCAGATTAA
TTAAGCTCACATCAATCAAAAAATCAGACATCTGAAATCTAGCATGAAACCGCCACAAACAATT
CAGGCTCGTGCTAATTGAACACGAGCAATCACGCGTCAAAACCCCAGCACAGCCAAATTAAAGA
TGAAGCCACTAAGCTGGGATACGCTGAGTTAGTTGCCACGGATCACATTCCATATAGTCTATTT
TTACATCGCAATCCACAGGGCACTTCTGCTGCTGCTGCTAGTAGAAGACAAGAGTATGATCGTG
GTCGAGGCTTTTTTGTTGCCACTGCACGTAAAGCTAGCAGGGACAAGTGTCCGTAGCGATACAG
TACAGGAGAACCGGTCGCGACGCAAGAATTCATGTAAAGGCGGTGGCGTGCGTGGTGGTTCATG
TGCCATATATTCGGTCGATCGATAGGGATCCGCCGGAAATCGATCGCCTGTGGCGCCGTCGTCC
GATCGATCGGCACCGAATCCGGGGCTAAGCTAGTTGCCGCTATCTGCTATAGTGCTATATATCT
ATCTATATATTCACTAGCACACACACCGGTGAGGCTGACCGGAACCGATTCGATGTTCCCGGCT
TCAACAGAGACATCTCGCAATGTGCAGTTAGATACTACTGCGACTGCTCTAGATCGATCTCCAG
CTAGAGGTGCAGGGTTAAAGCGTTGAAATGAAACATCTTTTCA
Conservation Information
Conserved circRNAs NA
PMCS 0.223459801
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 Chu et al., 2017