FB2026_01 , released March 12, 2026
FB2026_01 , released March 12, 2026
Transcript: Dmel\Svil-RT
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General Information
Symbol
Dmel\Svil-RT
Species
D. melanogaster
Annotation Symbol
CG45186-RT
FlyBase ID
FBtr0345102
Feature type
Associated gene
Evidence Rank
Length (nt)
7368
Evidence Score
Genomic Location
Genomic Maps
cDNA Clones Consistent with the Transcript ( 57 )
cDNA Clones, Fully Sequenced
Exact Match
    Contained within the annotated transcript, internally consistent
      End(s) extend beyond the annotated transcript, internally consistent
      cDNA Clones, End Sequence Only (ESTs)
      End(s) extend beyond the annotated transcript, internally consistent
      Sequence
      AAATGCCAAATCTTAGCTTTCGTTTAACAATAAATAATCAAAACAAAATAAGCAAGCTATAAATCATAAAAAGTGCATTT
      CGCGTGTGTATGGGCAGCGCCTATGCCATCCCACCGTCTCTTTTTAAACGAAATCGCGCCAAAATCAACGAAATACGTGT
      CGTCCTAAAGGCGCGTAAATAAAACCGGTGTGATAGTTGTGATTAATTAATGTAAGAGTGATTAAGTAGTTAACTAAGCT
      TTGATTAAGGTATAGAGCGGTATTAGCCATATTACAGAAACCATTGCGGCCTCAAGTGACTTATCCACAGCACCTGCCAC
      TGCCAAGACCAGCTGCCAGCCACCTGAGCCACTGAAACAGAAGCCACCGCAGCAGCAGACCACCAAGGACTCGGAGGATT
      CCAGTTCACAGAAGAGTGCTCCAGTCCAGTCGTATCGTGGTCAGCATCCGCACTTCCACCATCACACCACGCCCGCTTAC
      TACACGGATCTTCAGCTGAGAATTCACACGCCGAACGCATCGGATGTGGGCGCCTTGAACGAGAACTATCGAAGTGTATA
      CAGTACTCCGAGCACCCAGCTGGTGGAACAGCGATCGTTTCCAAAGAGCTCCACGGCCACGAAGGATCCACCGCTGCCCA
      TAAGCAATCCGGCTAGGGGAACATTTTTTCGTGGCGACTCTGCGTCCAGCGACAGTCACTCAAGACTCCGTCGGAGCCAG
      CAGAGAACCGGCAGCGAGGGACGCTTCTTCAGATACTCTCAGGGATCTGTGAGCCCTACCAAAGGTGAACCTCCAATCGG
      CCACGAAGGTGGTGAGCAGCCACCCGTTGTCGCCAGTCACTCCCCCATCACATCCACCAGCACCACCACCATCAGTAGTT
      GTAACCCCGTAGAGCAGGCTAGTCCACCACCAACAAACGTAGTAAATCCCAGCGGATCCGGTCGCAACAGCCGGCACAAG
      CAGCGTTTCCACAGTCGATCCCGTCGAGCGGTGCGCGTGCGCAGTGAATCGCGTCCGATTAGCGCCCTCTATGACATAAT
      ATGCAAGGAGAAGAACCTGGAAAACAGCAGCAGCAGCAGCAGCAGCAGCAACGAGCAGGAGAAGAAAAAGGATCAGGAGC
      AGCCTAAGACCACAACCGACAAGCTGGCGACCTTTTGGCCCCTGCACCATCACTACCTCAATCCCCCGATGAGCAGCGGC
      AACTCGGGCGGCAGCAGTGGCAATCCCAAGCAGCAGCAGCAGCAGCAGCAGCAACAACAGCTAGAGCAGCTGGGACACCA
      GACACATCTTGTGCTAGGAGCATCAAAGGAGTTGCCCGCGGTCAGCAGCAGCAGCGATGAAGAGGGATCCCTGCGGACTC
      TCCACTCCAGTCGCAAGGTGACCAATCTGAATGCCAAGTCCACCTCTCTGCCACCCGAGGAAGGACTCTCGGGTGATGTC
      TCCCTGGAGTCGTCCTCCAACCGACTGAATCTGCGATTGGCCAGGAGCCTGGAGCCCTCAGTCCGCAATATCACTGCATC
      CGCCTCCAAGGAAGTACAGAGCTATGATGCTGGGGAGCCTGTGAATACCAATCGATTGTTTGTGGAACCGCCCAAGATAC
      CACTGTCTGCCATCCGAAACTCTCTTGACGATCACGACCTGGATATTGAGGAGTGCGACAGCACCACCCAGTTCGATCAG
      GGGGATATCTACGATACCCTGGAACGCTGGAGCCATGGTGTCAGCTTGGGGGCACATCTATTGAACTGCGCGAATGGCCA
      CGATCAATCTGATCCCGAGGACGACCATCAAACCGATCATCATCAGCATGCACATCAATCATTGCCAGTAGAACCCAAGT
      CTCATCATCATCAGCACCACCAGGCCACCAATGCGCGCAGATTCATAACGCGCACCACGCGTTCCGCCAGTCGCCAGAGT
      TCCGCCGGACACTCCCCACCTCCGCCGCTGCATCGCAGTGACGACTCCTCCAGCAGTTCACCCTCACCGACACGCAGACG
      GAATAAGCCAGGTGGTGCTCCTGCCGCCACAGATCCACCATCATCGTCGGCGAACGGGAATAGTTCCGCTTATGAGACGG
      CAGCCACCACTGTGATGACCCATGACCAGCAGCGAGATCCTCCAGTTGAAGTTCCTAAGGCTCTAAACGTCGAGCCACCG
      CAGCCAGAAGACATCGTCCTGGGCTCCTGCCCCACTGCATCTGCCCACTCAGCAGAGAGCCAAAGTCGAGGAAAAGCTGG
      CAAATGCAGTATTAATTGCACCTACAGCCACAGCCACAGCACCAACAACAACTGCAACGCGCGACAACGCAACAGCAGCA
      ACATCAGCAGCAACAACACCATCAGCAGCAACAGCAGCAGCAGCAAAAGCACTTGCAACAACAATAGCAAACAGCAACAC
      GCCACGCCCATGCCGCCCCTAGCTAATGCCAACAAAGCCCCGTTAATTGTGCTTAAGACAGCCGCATCTGCAGCAGCATT
      GCCGTCCATTGCCGCAGCAGCAACATCCAGCGGCACGGCAGCAACATCTGGTGGTGTTGGTTCGCCCATCAAGCGTCGCA
      AGAATCCGCTGTCGCCGCTGCTCCTCGGCAGCCAGTGCCAGTCCACCATTGCGCCTCCGCAGGCCATTGCCAGTCCGCTC
      CTGAGCGGCGGCAGCTGCTCCTCCTCGACCACCTCGCCCCAATCCTCGCCAGCGGTTCGCACCACCAAGGCGAGTCGTCT
      GCGCGCCGCCGCGCTTGATAAAAAGAAGGAAGAGGAGCAACGCAATCGCTACAGTTCGCCCGTTTCACCAAAAGCCTCCA
      GCAACGGCGGAGTCCAAGCACAACGTCGTCTTAGCAACTCGGAGCTATCGCCCAAGTCGCCAGGTGCCAGTGGATTCACT
      TCGGAGCCAGTCGCGTCAGCCACAGCGAACAGAGTCCCGACGAGATCTGCCTCCCATCCTGTGGACACACCGCCCACACA
      AAGGCGACAGCCTCTGGTGGCCGTGAGTTCGGGCATCTCCATGAAGCAGAGTCTCAGCGAGCTGCACTTCACGGGTGGAG
      CAGTCAGTCCGCCCAAGGCTACGGCGGAATGCACTCTAAGGATGCGACCACGTAGCTCCACGATGAGCACCGAGAACACG
      GAGAATGGCCGACGTGACCACTTGGCTAATCTGCAACTAAGTCCTGTGCAAAAGCAAAAGCGAACGCCCGAAGTATCACC
      ACGCCGTTTCGGAGATCGCGACAAGTCGGCCAAACGGAAATCGAATTTGAATCGTTCGTTGACCGAGGAAGCCACCAAGG
      ATGGCGATGAGGTTGCCTCTTCGACCCGCCGGCGCCGACGTCGTGAACTGGGAATGGCTCGTCCCCTGGTTCCGGGCGAT
      GATGACGCCCTAAGAGATTTGCTAACGCCGCAGAAGAGTTCCTGCAGCGAGTCAACCAACTCCATATCCGAACCCCATCT
      CCAGTTCATACCAGCCGTTCGTCATCCGGTGGTTCCAGTACGCACCATGACTGCTGTGCTGCCTGCACCACGACCGCTGC
      ATACTCCTGCGGCCCGCAACGTCAGCCAGAAGTTCAATGAAAGGACCAAAACAGATCTGGCCGAGATCAAGAAGATTGCT
      GAGCAATCGGAGGCGCAGGTGCAACAGCCTTCGGTGGATGATAACCAGAAAATGTCAGCCATAATGCGCAGGAAGAGCAC
      GGATGAGGGTGGATCAGCTTTGGGGGCAACAAACCAGAATTCACCACCTGCCCCAAACCAAATTGTATCCATACTGAAGA
      AGAAGGAACATGGACTTGGCGAGTGCAACTCCAGTGCTTCAAGCAATCCCTCGCCGGTGACCTTCTCTTCTAGCGTGGTG
      GATCATCCTTTGGCTGGAGCTGGCCGGTGCAAACGGCAGGGAATACTCAAGAAGAGATCGAGTCTAGATGAATCGCGCTA
      CTACTCCCGATCGCATTCACCCGACGAACGTAGTATTCTCATTAAGTCGGCCAGGAGGAATTCCCTGGAGGAAGCTGGCA
      CTGGATTGAGTCCGGCTCAGGCCCATGGAATCCTCAAGCAGAGCAGCTACGACAGCAGCAAGAGCGACGGCTGCCCTTCG
      GCCACGGAGAGCCAGCCACACAGTATCCTGAAAAAGAAGGATTCGCTATCGACACCTTCGGACGGAGGATGCCACAAGCA
      TGTCTCTATATCGCAAGCTGTAACTTTAGCTGCTGCTGAACTGGCTGCCCATGATGGAATCACCTTCGATGATGGTGAGG
      AGCATGAGATACGACCGATCCTAAAGCAGGAGAGCACCTCCAGCGAGGAGGCTGTGCGTCCGCCAAAGCCCATACTCAAA
      AAGAAATCCTTTGGCGAGGCGGATGAACACGAAATACGTCCTATATTGAAGAGCTCTCGTAAAAGCAGTCGAGAGGAGTT
      CGATTTGAGTGGCTTGGAAAACGAGGTCAACGATTCCCTATCGTCAATCCTAAAGACAGACTCGCCGTCCAAGCGTCGGT
      CGCTCGGTTCAGCTTTGCATGATTTGGAGGAGTCCACCACTTCCCCGAGCATGCTCAAGAGGCGCACCCGTTCGCTGGAA
      CGTCAAGATGTCCAGCCTGGCATGGATTTGGCAGCTGCACTGGATGCCATCGCCACATCACAGGCTACTCCCAGCACCCC
      GGTGGACTTCGTGACCACACCAACAAGTATATCGGTGGCGGAGCGGATCAAGCGCATGGAGATGCTGTCGACGCCCACTT
      CCCGTGCGGCGGGTGGGGCCAACAGCAGCTGGGAATCGCCACTGCAGGCATCGTCAGCAGAGCATGGAGCACCCACCACC
      CCAAGGGTTCTCAAGCCAAGTGTGCTGCGCAGAGATTTGCAGAGGGAGCGGTACAAAACGCAACCCGTGACCAACGAGGA
      GATGAGCTTCTTCAAAGCCAACTCCGCGCCCTTCGACATCTCGGCTACATCGGCCTTCAAGCCCACCAAGCCGCTGGACA
      TCCGCTTGACCCACGCACCGCATGCACCGCTGATTTCGCCGATCACCGGACAGCCACTCAGCCACGTGCCCGCGCCACTG
      CTGCTATCCTCGTCGACGAACTCGGGAGCGGGATCCTCGTTCCGTCTGGCCCGCAGCTCCACCCAACCGCTGCAGTCGCC
      GCGAGTTGTCCACCTGGCCGGTCAGGCTACTGGTGGCTCCGCTTTGGCACGCCAGAACTCGGTGAACGACAGCATCAATC
      TCAGCGAGCAGCTAACCCTATCCATCGGCACGGACAGCGAGCACATCTTTGAGATGTCCGCTTTGGAGGAGGACTCGGCT
      ATTCAGTCGCTGAGCGACGAGACAGCCGCTTCCGCATCTGCCAACTCAACATCCACGACCACTGCAACCACCATGACACC
      GCCCAGTGGCCTGACGCGGAGCAACAGCGTTCGGGCCAGGGCCAATATGTTCCAGCAATTGCAGGAGCAGTCGCGCAACC
      AACGGGCAACGGGAACCACCAACTCCCGTCAATCTCCACCAGCGTCGTCGGCGGAGGTGTCTTCAAGTGCAGCCGACAAT
      TCCATGCACAGTGACGAGCGGTCCACGCCAAATGCAACGATAGATGCGGAATTCGAACCCTCATCCCTGTCGCTGGCTGA
      GCGACTGGCCTTCTTCAGCAATCTGTGCGAGAGCGGCGGAGGAGGTGGGAGTACCAGTGCCGGTGGAAGGTACCGCAGTC
      GCACCAGCAGCTATTCAAGGAGTCCGCCCGGCGATCGCACCACTCCCAGGAGCAGCACCACCGCCAGCAGTGTCAGTATG
      ACGCCCACGCCCATGGATTACTCTCCGATTCCCCACGACAAGGAGCCATCTAGTCTCACGCTGGAGAGCATCATCGAGCC
      CGAGCAGGAGGAGGTCAAGGAGCAGGTGGACCAGGATGAGGTCAAGTTGAGGAAGAAGGAGCCAGTCCAGAGGGAATCTT
      CCCAGCACAATGGCTTCCACGTGCTGACCAGGTCCGCCACCGAACCGCCGTCGTCCACCTCGCCCCTGCGCATCAGCATA
      CGGACTGTGGGAAAGCTAGTCCTGCCCGATACCTTCCGCGGCGATCGCAACAATAACAGCAGTAGTAGAAGTGGGAGCAA
      CAGCTGGAGCAACACTTGCATGGTCAAGCTGCAGAGCTTGGAGCCCGTTAGCCTGTCCGTTCATTCGCGCACCATTGGTA
      AGGTTAAGTCGCCATTCATTGAAAAGCAGCAGGAGAAACCACACACCGAGAAGCTAGCGAACGGAACCAGCGACAGTGGC
      TCCGATTCGGGCAAGGAGAACTGCGCCTCCAACGAGCAGGAACATCTGCAGCACCAGCAGTCGCAGGACGAGGATCGAGC
      TCCGCCCAGGGTGTCCGAGATGCGGAGGAAAATCAGCCGACTGGTGCAACAACAGCAGCCGCAACCACAGCCCGTCAATC
      GGCGGCACACCACCGAGATCACCTCCGTGACCGTTGGAACGCGTTCGCCCAGTGTGGACGATCGCTTTGCCAAGTACTTT
      GGTGTTAAGGAGAGCTGCAACAGCACGACCACCGTGCATAAAACGCAATCGCTGCCACCCAGCCAAGTTGAGGCCACCAA
      TGCGCACGTGAAACTACCGCAGATCACTACCGTGGTTTCCAAACGGCGCGAGCTGCTCAAGAGGACGCGACCCCTGTCCA
      TGGATCACTACTCCAGCGGCTGCACCAGTCCCACAGCCATGCCAAGTCCCAAGAGAGCACATTCGCCCGTCGGCCGGCGG
      AAGGCCGCCATTTCCAGCATCGAGGACATTGAGGTCACGCCGGATGAACTCCGGGCCGCTGGCAGGAACTTCAAGCTGTT
      GTACGGCGAGTTATTGGGCTGAAAAATTGTCTATTTTGGCCGAGCATTCAAAATTTCCCAATTTTTCCAAATCCCCGAAA
      TCCCAAACACAAACACAAATATTGCTCTCTTCGTGTGGGTCCGCGCTCAGTGTGATAGATGCGTCCGATCCTGATTCCAA
      GCTATTAAGCTAACTAGTTGTCTCATAGTAATCCCAATAATGAAAACAAACTGAACGAAACGAAAATTCCACAGATATGT
      CAAGCGAAAACGAAGTAATAAATGAAATAAACTATGTATGTTAGAAATGTATTTAAACCGAGAGACAGTTTTATTCCCAA
      CGGCTCGTATATTAATTATGTCTGGCCAGCAAAGCCTTCCAGTTTACCTTTATCCTATATTATTATTATGCGAAACAGCT
      TTGTGCTTATTTATACATAATACACTACTTTTTATTTACATTTAAAAACGAATTGTACCTTAAACGGAATTATATTATGA
      TGAGTATGTATTACATTTATTATTATTATTGTAATATTTAATTAATTGGAAGTTGTTACACCAAGAAAATAAATACAAGA
      AATGTGCT
      
      Other Products of this Gene
      Other Transcripts
      Name
      FlyBase ID
      Length (nt)
      FBtr0345096
      2084
      FBtr0345108
      4127
      FBtr0345109
      11401
      FBtr0345110
      10679
      FBtr0345111
      11244
      FBtr0345112
      14937
      FBtr0345113
      7339
      FBtr0345114
      6657
      FBtr0345115
      7166
      FBtr0345095
      1917
      FBtr0345093
      6579
      FBtr0345094
      5774
      FBtr0345089
      7069
      FBtr0345090
      6674
      FBtr0345091
      2310
      FBtr0345092
      7611
      FBtr0345087
      7321
      FBtr0345088
      7307
      FBtr0345086
      6328
      FBtr0345097
      2247
      FBtr0345098
      2511
      FBtr0345099
      7472
      FBtr0345100
      6947
      FBtr0345101
      6930
      FBtr0345103
      6398
      FBtr0345085
      5665
      FBtr0345104
      10097
      FBtr0345105
      5863
      FBtr0345106
      4738
      FBtr0345107
      4447
      Polypeptides
      Derived from THIS transcript
      Name
      FlyBase ID
      Length (aa)
      FBpp0311327
      1877
      Derived from OTHER transcripts
      Name
      FlyBase ID
      Length (aa)
      FBpp0311321
      475
      FBpp0311333
      1111
      FBpp0311334
      3359
      FBpp0311335
      3115
      FBpp0311336
      3473
      FBpp0311337
      4526
      FBpp0311338
      1933
      FBpp0311339
      1872
      FBpp0311340
      1872
      FBpp0311320
      416
      FBpp0311318
      1702
      FBpp0311319
      1400
      FBpp0311314
      1967
      FBpp0311315
      2028
      FBpp0311316
      266
      FBpp0311317
      2223
      FBpp0311312
      1877
      FBpp0311313
      1877
      FBpp0311311
      1446
      FBpp0311322
      407
      FBpp0311323
      663
      FBpp0311324
      1877
      FBpp0311325
      1702
      FBpp0311326
      1621
      FBpp0311328
      1519
      FBpp0311310
      1574
      FBpp0311329
      3040
      FBpp0311330
      1514
      FBpp0311331
      1156
      FBpp0311332
      1156
      Comments

      Transcript terminates at site supported by polyadenylated cDNA.

      External Crossreferences and Linkouts ( 1 )
      Crossreferences
      RefSeq - A comprehensive, integrated, non-redundant, well-annotated set of reference sequences including genomic, transcript, and protein.
      Synonyms and Secondary IDs (2)
      Reported As
      Symbol Synonym
      CG45186-RT
      Svil-RT
      Secondary FlyBase IDs
        References (0)