Detail information of Os01g0778800_circ_g.10


General Information
CircRNA Name Os01g0778800_circ_g.10
ID in PlantcircBase osa_circ_004197
Alias NA
Organism Oryza sativa
Position chr1: 32971233-32972580  JBrowse»
Reference genome IRGSP-1.0.38
Type   e-circRNA
Identification method CIRCexplorer
Parent gene Os01g0778800
Parent gene annotation Peptidase M16, core domain containing protein. (Os01t0778800-01)
Parent gene strand +
Alternative splicing Os01g0778800_circ_g.1 Os01g0778800_circ_ag.1 Os01g0778800_circ_ag.2 Os01g0778800_circ_ag.3 Os01g0778800_circ_ag.4 Os01g0778800_circ_ag.5 Os01g0778800_circ_ag.6 Os01g0778800_circ_ag.7 Os01g0778800_circ_ag.8 Os01g0778800_circ_ag.9 Os01g0778800_circ_ag.11 Os01g0778800_circ_ag.12 Os01g0778800_circ_g.13 Os01g0778800_circ_ag.14 Os01g0778800_circ_ag.15 Os01g0778800_circ_ag.16 Os01g0778800_circ_ag.17 Os01g0779100_circ_g.1
Support reads 1
Tissues root
Exon boundary   Yes-Yes
Splicing signals   GT-AG
Number of exons covered Os01t0778800-01:5
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   TCAAACATAAATTTACAAAATGTTTGTGCCTTTTGCAGCGTATGATGCTCAAATTGCTGGTTTA
TTCTATTCAATATATCGCACTTCTGCTGGATTCCAGttattcccaccagaagaatggctggttg
gagcatcactaccgtccaagtatgctccaaatagaataaatatgatacttgatgagttgtcagc
tgaaagag
Assembled circRNA sequence   NA
Full-length trsnacripts NA
Genomic sequence TTATTCCCACCAGAAGAATGGCTGGTTGGAGCATCACTACCGTCCAAGTATGCTCCAAATAGAA
TAAATATGATACTTGATGAGTTGTCAGCTGAAAGAGTAAGGTACATTTATGCAGTTCACATGGC
AGCATTGTTTGTTCCTCCTATCTATTTACAGTATCTACTATTTAGGTATCTCAACACACAAACA
TTTCTGAATTCGTTCTTTTCTGAAGTAAAAAGTGGTAATAGGTTTAAGAATTATGCATCATTAT
TTGCCATCCCTACTGGTTTCAACTTCTTCCAGATATGCGACCTTAGAAAGTTATCCCTACTGGT
TTCAACTTCTACCAGATATGCGACCTTAGAAAGTTATGCCCAAAATTAGTCATTATATTTACTT
GCCCACTTATTTTCTGACAAGCTGACAGATATCCAGTTTGGCACTTAAAAATACCATATGAAGC
TAAATATTGTGACTTTCCTCTTCCTTTTATGTAATATTTCTCTCTCTCCGTCTCCAGGATACTG
TGGGAATCTAAAAAGTTCAAAGGATCTACTGATTCTGTTGAGCCATGGTATAGTACAGCGTATT
CTGTTGAAAATGTTACTCCTTCCATGATACAGGTTTGTCCTTTTTGAATAATCTTGATTTTTTG
AACTAGAGTTTTCCTCTTATCTTATTGCACATTACATACTGTTAGAATGTGGACACTTGTTATA
ATCCATAGAGATAATATGCTAGAACATATTGTCAGTGATTGTTCTACTTTGGCAGCAATGGATT
CAAAAAGCTCCTACTGAGAAGCTCTGTATCCCAAAGCCTAACATTTTCATTCCAAAAGATTTAT
CGCTCAAAGAAGCGCATGAAAAGGTTGGATTCAGATCACCTCATCTGTGTTTTTTCCCCACATT
AGCACAGTTCTAAATGAATTGCTGAATCTTGAATATAGTAAATATCTCTTACAAAATAAATGTT
TGCAGGTTAAATATCCAGCAATATTGAGAAAGACACCACTTTCACGGTTGTGGTATAAGCCTGA
CATGCTGTTCTCCACTCCAAAGGTTCACATTATAATTGATTTCCACTGTCCGTTAACAAGCCAT
TCCCCCGAGGCAGTCATTTCTACGAGTCTCTTTGTTGATTTGTTAGCTGATTACTTGAATGCAT
ATGGTAAGCACCACTTCACAAATAGTGTAAATATTAGCATATTTATCCGTACATTAATAACCCA
TTTGGGTATTACTACTCCCACCAACTGTAAGTTCAAACATAAATTTACAAAATGTTTGTGCCTT
TTGCAGCGTATGATGCTCAAATTGCTGGTTTATTCTATTCAATATATCGCACTTCTGCTGGATT
CCAG
Conservation Information
Conserved circRNAs NA
PMCS 0.38582172
Functional Information
Coding potential Y
Potential coding position 32971303-32972577(+)
32972380-32971296(+)
32971835-32972549(-)
32971268-32972342(-)
Potential amino acid sequence MILDELSAERVRILWESKKFKGSTDSVEPWYSTAYSVENVTPSMIQQWIQKAPTEKLCIPKPNI
FIPKDLSLKEAHEKVKYPAILRKTPLSRLWYKPDMLFSTPKVHIIIDFHCPLTSHSPEAVISTS
LFVDLLADYLNAYAYDAQIAGLFYSIYRTSAGFQLFPPEEWLVGASLPSKYAPNRINMILDELS
AERVRILWESKKFKGSTDSVEPWYSTAYSVENVTPSMIQQWIQKAPTEKLCIPKPNIFIPKDLS
LKEAHEKVKYPAILRKTPLSRLWYKPDMLFSTPKVHIIIDFHCPLTSHSPEAVISTSLFVDLLA
DYLNAYAYDAQIAGLFYSIYRTSAGFQLFPPEEWLVGASLPSKYAPNRINMILDELSAERVRIL
WESKKFKGSTDSVEPWYSTAYSVENVTPSMIQQWIQKAPTEKLCIPKPNIFIPKDLSLKEAHEK
VKYPAILRKTPLSRLWYKPDMLFSTPKVHIIIDFHCPLTSHSPEAVISTSLFVDLLADYLNAYA
YDAQIAGLFYSIYRTSAGFQLFPPEEWLVGASLPSKYAPNRINMILDELSAERVRILWESKKFK
GSTDSVEPWYSTAYSVENVTPSMIQQWIQKAPTEKLCIPKPNIFIPKDLSLKEAHEKVKYPAIL
RKTPLSRLWYKPDMLFSTPKVHIIIDFHCPLTSHSPEAVISTSLFVDLLADYLNAYAYDAQIAG
LFYSIYRTSAGFQ(+)
MHMRMMLKLLVYSIQYIALLLDSSYSHQKNGWLEHHYRPSMLQIE*(+)
MEGVTFSTEYAVLYHGSTESVDPLNFLDSHSILTLSADNSSSIIFILFGAYLDGSDAPTSHSSG
GNNWNPAEVRYIE*(-)
MLQPAILLVGITGIQQKCDILNRINQQFEHHTHMHSSNQLTNQQRDS*(-)
Sponge-miRNAs NA
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description NA
Other Information
References Chu et al., 2017