FB2026_03 , released September 17, 2026
Decorated FASTA

Decorated FASTA for XNP (FBgn0039338)

3R:25477868..25482834 · 4967 bases · reverse complemented

All overlapping genes and alternative exon structures in this D. melanogaster region are shown, on both strands. The sequence is oriented to the selected gene. Padding is limited to 100,000 bases on each side and stops at chromosome boundaries.

FeatureAppearance
Intergenic regionacgtac
UTR or noncoding exonACGTAC
CDSACGTAC
Intronacgtac
>FBgn0039338 3R:25477868..25482834 (reverse complemented)
CCTTACGAATTTAGTATACCCAAGTTGGAATTGCGGCGTCTTCACGCTGAAAAATAACAA
TTAAAGGCTCGCAAAAAGGAGTGGATATCGAGTGGCAGGACGCGATGAAGCGGCCACACA
ACCAGTAGCAGgtgaacacagcagaacaaaccgatctagtgatattttcgatgtggaaac
taaagtgttttcggataaataatagatttagcagtggtgccgagccacacacaaaaaaaa
atagagagagacagacGCAGATTGCAAAAAAAAGGCGAAGAGAGCGAACAGAGGAAGTGC
GATAGGTGGAAAGAAGAAGAGAAAGCGAAGCGAAGAACGCGCGGCAAATGCTGACAATAA
AAATATAATAACGAACGAAAAAAAAAGAACATTACCTTTTGCAGGCTGCAAATAAAAAAC
CAGTAACGCAACAAAATCGCATTTCTTGCAGATCTTCGACGTGCTGGGCGGATAAACAGC
CGGTTACCTATGGGAAAGAAAAACCCCAACGCCCGTCACACAGATGCCGCAACACCTTTG
ACCACAGACGACTCCAACTCCTCATCCGTATCTCGGCGCGAATCCGCAACGGAATCCAAA
TCTGCATCCGAATCGGAGTCCTCGCCTCCAAGGTCGAACACCAAGCAGTCGCGAACGCAT
AAAAATGTCAAGGCATCCGGAAAGGCCACTGTTAGTAGCTCCAGTGATTCCGATCAGGCA
GTAGCAAACAGTTCAGCCAACGACGAGGAGAAGGAGCCCGTTTGCAAAATACGCATTGTG
CCGCTGGAGAAACTGCTGGCCAGTCCCAAAACCAAGGAGCGACCTTCGCGCGGCAGCCAA
CAAAAGAACGTTACGATCAACGATTCCAGTGACGAAGAGCCTCTGAAAGGAAGTAAGCTT
GTGTTGCCGGCTCGCAAAAGTCGCAACAAGAACGCTTCTATTATAGAACTCAGCGACAGC
GAGGAAGTCGACGAAGAGGAGGAGTCATTACTGGTGGCCATTCCTTTGCCCAAAGAGGCA
CAGCAGACCAAGCCAGAGAAGAATAGTAGCAAGGCAAGCAAGGAATCGATCGAAAAGCGG
CAGAAGGCGCAGAAAGAAGCTACGACATCATCCGCCAGGGCAATCAGAAGCGTTAACGGC
ACACGACGAGGATCCCTGTCCAGCGAAAGATCGTCTAGAGCCAGCTCCTCTCGAGCAGAG
TCACCGCCGAGGCCAAAACGTTGTGTCGTCCGCTTGAAGCGAGTCAGTCTGCCCAAAACG
AAACCCGCCCAGAAGCCAAAAAAAATGAGCTCGGATTCGGAAGAGGCGGCCACCACCTCG
AAGAAGAGCCGTCAGAGGCGCTCCAAAAGCGAAAGTGAGGCTGATTCAGACTATGAAGCA
CCAGCTGCAGAGGAGGAGGAGGAGGAGGAGAGAAAGTCGTCCGGTGATGAGGAGGAGGCG
GCTAACAGCAGCGACAGCGAGGTGATGCCCCAAAGGAAGCGGCGTCGAAAGAAGAGCGAA
TCCGACAAGGGCTCCTCCGATTTTGAGCCCGAGGAGAAGCAGAAAAAGAAAGGTCGAAAA
CGCATCAAGAAGACCTCAAGCGGCGAGAGCGATGGTGATGGCGATGATGACAAGCAGAAG
AACAAGCGTAAGCACATACGCAAGATCATCAAGACCAAGGATCTGGATCTGACGACTAAG
GAGGCGGCCAAAGAGGAGGATGACAGAAGGAAGCGTATCGAAGATCGTCAGAAGCTCTAT
AACCGCATCTTTGTGAAATCCGAGAGCGTGGAGATCAATGAACTGGTGCTAGACTTTGAC
GAGGAGTCGAAAAAGGCCCTGTTGCAGGTGGACAAGGGACTGCTGAAGAAGCTGAAGCCC
CATCAGGTGGCTGGCGTTAAGTTCATGTGGGACGCGTGCTTCGAGACGCTCAAGGAGAGC
CAGGAGAAGCCCGGTTCCGGTTGCATTCTAGCCCATTGCATGGGTCTGGGCAAGACTCTG
CAGGTGGTTACCTTGTCTCACACGCTGTTGGTCAACACGAGGCGAACCGGTGTGGACCGC
GTCCTGATCATCTCGCCACTGAGTACGGTCAACAACTGGGCTCGGGAGTTTACCAGCTGG
ATGAAGTTCGCCAACCGGAACGACATCGAGGTGTACGACATCTCACGCTATAAGGACAAG
CCCACGCGCATCTTTAAGCTCAACGAATGGTTTAACGAGGGCGGCGTCTGCATCCTCGGC
TACGACATGTACCGCATTCTGGCCAACGAGAAGGCCAAGGGTCTGCGCAAAAAGCAGCGT
GAGCAGCTAATGCAGGCCCTGGTTGATCCCGGCCCGGACCTGGTAGTCTGTGACGAGGGA
CATCTGCTCAAGAACGAGAAGACGTCCATTAGCAAGGCTGTCACCAGAATGCGCACAAAG
CGTCGGATTGTCCTTACTGGTACACCGCTTCAAAATAATCTCAGAGAATgtaagtatcga
aggaaagcataatacatagatgaaccacatgagggattctaccaacaaacttatccgaca
tgctattaaatcgctgtttccccttagATTACTGCATGATCCAGTTTGTGAAGCCGAATC
TGTTGGGCACATACAAGGAGTACATGAACCGCTTCGTCAACCCAATCACCAATGGTCAGT
ACACCGACTCCACGGAACGGGATCTTCGCTTAATGAAGCACCGCTCACACATTCTGCACA
AGCTGCTAGAGGGCTGCATCCAGCGAAGGGACTACTCGGTCCTGGCGCCTTATCTGCCGC
CAAAGCACGAGTATGTGGTCTACACGACGTTGTCGGAGCTGCAACAGAAGCTATATGGCT
ACTATATGACCACACACCGGGAACAGAGCGGCGGTGATGTGGTCGGCAAGGGGGCCAGGC
TGTTTCAGGACTTTCAAGATCTGCGGCGCATCTGGACGCATCCGATGAACCTGCGGGTTA
ACAGTGACAACGTGATTGCCAAACGGTTGCTCAGCAACGACGACTCCGACATGGAGGGCT
TTATCTGCGACGAAACCGACGAGGATGAGGCTGCCTCAAACTCTTCGGACAGCTGTGAGA
CCTTCAAGTCGGACGCCAGTATGTCGGGATTGGCGGCCAGTTCGGGAAAGGTGAAAAAGC
GCAAGACTCGTAATGGCAACGCTGGTGGCGGTGATAGCGATTCCGATCTGGAGATGCTGG
GCGGATTGGGTGGAGGATCCAGTGTCCAAAAGGACGACCCCTCGGAATGGTGGAAACCCT
TTGTCGAAGAACGAGAATTGAACAATGTACACCATTCCCCAAAGCTACTCATCCTTTTGC
GGCTACTGCAGCAGTGCGAGGCCATTGGCGACAAGCTGCTCGTATTCTCACAGTCTCTGC
AGTCCCTGGACGTCATCGAGCACTTTCTTTCACTGGTGGACAGCAACACCAAGAACTACG
AGTTCGAAGgtattttgagtatatacatttataggaagtaatacaaatttgttgttcttt
cgcagGTGATGTGGGTGATTTCAAGGGCTGCTGGACGAGCGGAAAGGATTACTTCCGATT
GGACGGCAGCTGCAGCGTGGAACAGCGCGAGGCGATGTGCAAGCAGTTTAACAACATAAC
CAACTTGCGCGCCCGCCTGTTTCTCATCTCCACGCGTGCCGGTGGACTCGGCATTAATCT
GGTGGCCGCTAACAGAGTGGTCATCTTCGATGTCTCCTGGAATCCCTCGCACGACACCCA
GAGCATATTCCGAGTGTATCGCTTTGGCCAGATCAAGCCGTGCTATATTTATCGTCTGAT
TGCCATGGGCACCATGGAGCAGAAGGTGTACGAGCGCCAGGTGGCCAAACAGGCTACGGC
TAAGCGTGTGATCGACGAGCAGCAGATTTCACGGCACTACAATCAGACGGACCTTATGGA
GCTGTACTCGTACGAGCTGAAACCCAGCACCGAGCGTGAGATGCCTATTCTGCCCAAGGA
TCGATTGTTTGCCGAGATTCTCACCGAGCACGAGAAACTGATCTTTAAGTACCACGAGCA
CGATTCACTGCTGGAACAGGAGGAGCATGAGAATCTGACGGAGGAGGAGCGCAAGTCGGC
TTGGGCCGAGTACGAGGCGGAAAAGACGCGAACCGTACAGGCGTCACAGTACATGAGCTA
CGATAGGAATGCCTTTGGCAACCAGGTGATGGGCCAGTTTGGCAATGCCTCCGGCAGCGT
GACGTCCAACAAGATCTTCGGCTTCCGCTCGGACATATTGCTGCAGCTGCTGAACATGAA
GATATCGAAGGATCATCAGGAGCTCAACCAGAACCAGGTCATTCAGCTGGTGCCTACCTA
TCTGCAGCAACTGTACAATGAGATGAACAACGGCGATCCGACCATGTACAAGGATCTCCT
CAACCTGCACTCAAATATTGTCCATCCCAGCGGGATGTACATGAATCCCCTGCTCTACGC
CAACCAGAATCCCAATGCCGCTGGCTACAACCAGGGCACTGGTGGTGTTCCGCCAATGGC
GGGCGGATCGGTGGCACATGGGCCACCGGCAGCACCTGCTCCGGGCTTTGAACCGGATAA
GGTATACGAGATCGACTAAAATACCCGAATCGAACCAATGCCGTGGTTACACCCTTTAAT
TTAATCGTAGGTAATTCGTCGACTTTGTCGATATTTCCTGTGGACTAAAGTTACAAATGT
GGTTTATCCTATCTAATTACAATTACCAATTACCCATAACCGAGCGCATAAGATTATTTT
TTCGTCAACTCAGTTAAGTTCGAAACTGTCCTAATTCATGTGTAGACTTACATTAGATAC
AAGTAAAAACAACAAAATATACAGCATATGATTTAAATACATATTTACACGATATAGATC
ATGGCTATATACAAACAATTCTGCGTATCCGGCTAGGACAAGCAGAATTACAATTATTTA
ACACGCGACATAAAGATAACAAAAATAAATGGCACAGATATTATAAT