Detail information of Zm00001d025470_circ_g.2


General Information
CircRNA Name Zm00001d025470_circ_g.2
ID in PlantcircBase zma_circ_010313
Alias Zm10circ00055, zma_circ_0003262, GRMZM2G158097_C1
Organism Zea mays
Position chr10: 119885341-119887302  JBrowse»
Reference genome AGPv4.38
Type   u-circRNA
Identification method CIRI2, find_circ
Parent gene Zm00001d025470
Parent gene annotation protein_coding
Parent gene strand +
Alternative splicing Zm00001d025470_circ_g.1
Support reads NA
Tissues leaf, endosperm, root
Exon boundary   Yes-Yes
Splicing signals   GT-AG
Number of exons covered Zm00001d025470_T006:5
Zm00001d025470_T009:3
Zm00001d025470_T008:5
Zm00001d025470_T004:3
Zm00001d025470_T002:5
Zm00001d025470_T005:5
Zm00001d025470_T007:5
Zm00001d025470_T001:3
Zm00001d025470_T010:4
Zm00001d025470_T003:3
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   TTACGTTTCCGTCCGAAGGTGAATTCAGTAAACTGAAGGATAGTGGGTTGTTACAAAGAATCGG
GTTGCAATATCACTGGAGAAATCGGAATTACAAGAGggacatccatcttcgaaggtcagcttcc
gaaggttggcgccacgattaaaggtcaatgcactttttggatggcctaggggggacacgacagc
acgtgaac
Assembled circRNA sequence   Yes
Full-length trsnacripts Transcript length: 1302
Transcript exons: 119885341-119885740,119886269-119886326,119886459-119887
302
GGACATCCATCTTCGAAGGTCAGCTTCCGAAGGTTGGCGCCACGATTAAAGGTCAATGCACTTT
TTGGATGGCCTAGGGGGGACACGACAGCACGTGAACTGATCCCTCCTGCTGAATCCTATACGCT
CTCAGGGTCAGCCTCAGAGGTGTTTGTGTTTCTTGAGTGAACTCCTTTTTGAGGACCTATGCAC
CTAATTCATGATTTCCTTAATCACTCGTTTATTTCAGGTAGGTGCAAAACCACGTGAGGTGTCT
ATATCTGTTGCTTCTTCAATCATGGACATTCCTGCTGCGGATTGGGATGCCTGTGCGTGTGATT
TAGATGATCCTGGAAATTTTAACCCTTTCCTTACTTATGCATTCCTCTCAAGCTTAGAAGAATC
AGGTTCTGCGGTCAAGGAAACTGGCTGGTTACCTTTTCATATTGTTGCACGGGATGAGAATGGA
CATATTATAGCCATTCTAGGGGAGAGTTTGTGTTTGATCAATCATGGGCAGAAGCTTACTACAA
CTATGGCCTTGAATACTATCCAAAGCTCCAGTCTTGTGTGCCTTTTACTCCAGTAACTGGTCAA
AGAATATTACTTCGAAATACATCATACCGTGATCAAGTTTTTGACGCACTAGTCAAAGGTTTGA
TGAGCCTCACTACCAAGGTATCTGGGTTAGCATTCTTGCAAATATTGGTTTAAAGTAGTGCCTA
CTAAGAATGCCTAAGAATTGTAGCAAACGTCCTATAGTTATAGCGTCTATGTGCTACTGTTCAT
TGTTTCCACATTTTATCAGTTCTACTTCATATGGCATTGTGATATCCTCTAGGGCCCCACTATT
TCTTAATTCTTGAGTCATCTGTCTTCTTTCGTTCTTGTTTTCTTGACATTTACAGCTTATACCA
AAGGGCACAAAGTATTTCGTTTAAATAGAATAATTTGATTGTCTGCTTGCAGCTACAAAGTTGC
TAAAGCAGGGGTTGATCATTACTTAATTTGTGCGGGTGAGGAGTCAATGCTGAAGTATAAAAGT
TTTAAATCCTGTCTCTCTTTACAACTCATGTTTCTATACATAGTGACAACTTGGGTTGCTTTGT
TTATTTATCAACTACCTCTGTATAGCTCTTAAAAGACTGCCTTCAGATGTATTGAACTAAGTTA
ATATCTGTTGGTTTCTTCTGCATTTCAGATGAATGTGTCATCATTACATATTACGTTTCCGTCC
GAAGGTGAATTCAGTAAACTGAAGGATAGTGGGTTGTTACAAAGAATCGGGTTGCAATATCACT
GGAGAAATCGGAATTACAAGAG

Genomic sequence GGACATCCATCTTCGAAGGTCAGCTTCCGAAGGTTGGCGCCACGATTAAAGGTCAATGCACTTT
TTGGATGGCCTAGGGGGGACACGACAGCACGTGAACTGATCCCTCCTGCTGAATCCTATACGCT
CTCAGGGTCAGCCTCAGAGGTGTTTGTGTTTCTTGAGTGAACTCCTTTTTGAGGACCTATGCAC
CTAATTCATGATTTCCTTAATCACTCGTTTATTTCAGGTAGGTGCAAAACCACGTGAGGTGTCT
ATATCTGTTGCTTCTTCAATCATGGACATTCCTGCTGCGGATTGGGATGCCTGTGCGTGTGATT
TAGATGATCCTGGAAATTTTAACCCTTTCCTTACTTATGCATTCCTCTCAAGCTTAGAAGAATC
AGGTTCTGCGGTCAAGGTAAGCACATAAAGCACCATGTATTCTCGTCGGATCATTATAAGACAT
TTCAGTTTTAATCACTGTTCACCTACTGCCTATACAGTTGTTTTGCCCGAATAATGGCTAAACG
ATAGGTGACTGACTGTATAGCGTTTAGTGTTTATGTGAACACTAGTTTTAGTCGCTAAGTACCC
AAGCTCCATTATATGCATGCACAATGTTGAATACATTGGTTTTGACGATAAATTTGCTGTGTTT
AATTGACAACAGAACCACAAACAAGATTTGTCTGCAATATCACTAGGCAAATTGAGACATCACA
AATTATGAATGACCTATGATGAGGGAGTTCCTTTTCTATGTGCTTAGCAGTTAGCACCCATATG
ATTGTGATTCTTAATTCCACAGTTTCTTTCTTTTTGAAAAATATTGCCATAGATTGAACAAATA
TTAGATCTAATTTTTATTCTGTACCAATAATCATGGATGTACACTCTGTTATCTTATTGTCTTC
CTTGTGACCTTGGTCGCCTCGACTGATTTCAGGAAACTGGCTGGTTACCTTTTCATATTGTTGC
ACGGGATGAGAATGGACATATTATAGGTGTTGTTCCACTTTACCTTAAAAGGTTTAACATCGTT
AACAAAATATCATCTCCTGTTTTCCTACTTGCGATGTAGTAGGTTCTCGTTTTATCTTGTTCAT
TGTCTGAGAGACAACATTGTGAACTTGCAGCCATTCTAGGGGAGAGTTTGTGTTTGATCAATCA
TGGGCAGAAGCTTACTACAACTATGGCCTTGAATACTATCCAAAGCTCCAGTCTTGTGTGCCTT
TTACTCCAGTAACTGGTCAAAGAATATTACTTCGAAATACATCATACCGTGATCAAGTTTTTGA
CGCACTAGTCAAAGGTTTGATGAGCCTCACTACCAAGGTATCTGGGTTAGCATTCTTGCAAATA
TTGGTTTAAAGTAGTGCCTACTAAGAATGCCTAAGAATTGTAGCAAACGTCCTATAGTTATAGC
GTCTATGTGCTACTGTTCATTGTTTCCACATTTTATCAGTTCTACTTCATATGGCATTGTGATA
TCCTCTAGGGCCCCACTATTTCTTAATTCTTGAGTCATCTGTCTTCTTTCGTTCTTGTTTTCTT
GACATTTACAGCTTATACCAAAGGGCACAAAGTATTTCGTTTAAATAGAATAATTTGATTGTCT
GCTTGCAGCTACAAAGTTGCTAAAGCAGGGGTTGATCATTACTTAATTTGTGCGGGTGAGGAGT
CAATGCTGAAGTATAAAAGTTTTAAATCCTGTCTCTCTTTACAACTCATGTTTCTATACATAGT
GACAACTTGGGTTGCTTTGTTTATTTATCAACTACCTCTGTATAGCTCTTAAAAGACTGCCTTC
AGATGTATTGAACTAAGTTAATATCTGTTGGTTTCTTCTGCATTTCAGATGAATGTGTCATCAT
TACATATTACGTTTCCGTCCGAAGGTGAATTCAGTAAACTGAAGGATAGTGGGTTGTTACAAAG
AATCGGGTTGCAATATCACTGGAGAAATCGGAATTACAAGAG
Conservation Information
Conserved circRNAs NA
PMCS 0.206277684
Functional Information
Coding potential Y
Potential coding position 119887182-119885386(+)
Potential amino acid sequence MNVSSLHITFPSEGEFSKLKDSGLLQRIGLQYHWRNRNYKRDIHLRRSASEGWRHD*(+)
Sponge-miRNAs NA
circRNA-miRNA-mRNA network  VISUALIZATION
Potential function description responsive to drought stress