GGGTACCAGTTTGCTCTTCGTGCACAGCACATCTAATATTTGTGAAGACGGTATTCAACGACGACGACGACGACAACAAC AAATTGTCTTTTTTCGCGAACGAATAGAAAAAAGTGGCAAAGAATTTGTTTACTAGTGTGAAAGCGAGTGAGTGCAGTGC CCACGGGAGAAAAGTGAAAACAACACAAATACAGGAGTAAAAATCAGCCAACCGCCAAACTAACGGTAACTGCGTGTCCT TGCTGTGGATTAAAAAGGATTCTAGAGGCGTCTTAAAAGGCTCGCTGGAAATCATTGCCGGAGAAATTCTAGAGCTCTTT GGAACCAACTCCAAGCTGTCGCTGGCGTAGCCAAGTCCCCCAATCCAAGATGCCGGCGGAAATTAAACCATCCGCGCCCG CTGAGCCGGAAACGCCGACCAAGAGCAAACCCAAGTCCAGCTCATCCTCGCACGGAAAGCCTGCCCTAGCACGAGTCACC CTGCTGGATGGCTCCCTTCTGGACGTGTCCATTGATCGCAAAGCCATTGGCCGTGATGTGATCAACTCAATCTGCGCCGG TCTGAACCTCATCGAAAAGGACTACTTTGGTCTGACCTATGAGACGCCCACAGATCCGCGCACTTGGCTGGATCTGGAGA AGCCGGTATCCAAGTTCTTCCGCACGGACACTTGGCCTCTCACCTTCGCCGTCAAGTTCTATCCGCCGGAGCCATCGCAG CTGAAGGAGGACATCACGCGCTACCATTTGTGCCTGCAGGTGCGCAATGACATCCTGGAGGGTCGACTGCCCTGCACATT CGTCACCCACGCTCTGCTCGGATCCTACTTGGTGCAGTCGGAGATGGGCGACTACGATGCAGAGGAAATGCCCACCAGGG CCTACCTGAAGGACTTCAAGATCGCTCCAAATCAGACGGCTGAGTTGGAGGATAAGGTCATGGATCTTCACAAGACCCAC AAGGGACAATCGCCCGCCGAGGCTGAGCTACACTACCTGGAGAATGCCAAGAAGCTGGCCATGTACGGCGTGGACTTGCA TCCCGCTAAGGATTCTGAGGGCGTGGACATCATGCTGGGCGTTTGTGCCTCCGGTTTGCTCGTCTACCGCGATAAATTGC GCATCAACCGCTTTGCCTGGCCCAAGATTCTGAAGATCTCCTACAAGCGCCACCATTTCTACATCAAGATCCGACCGGGT GAATTCGAGCAGTACGAATCCACCATTGGCTTTAAGCTGGCCAACCATCGTGCCGCCAAGAAACTGTGGAAATCCTGCGT GGAGCACCACACCTTCTTCCGCCTGATGACCCCCGAACCGGTCAGCAAGTCCAAGATGTTCCCAGTCTTCGGGTCCACCT ATCGCTACAAGGGTCGCACTCAGGCCGAGAGCACGAACACACCCGTGGATCGTACTCCTCCGAAGTTCAATAGGACTCTG TCCGGAGCTCGTCTCACTTCCAGGAGCATGGATGCTCTGGCCTTGGCCGAAAAGGAAAAGGTGGCTAGGAAGAGCAGCAC CCTGGATCATCGGGGAGATCGCAATGCCGATGGCGATGCCCACAGCCGCAGTCCCATCAAGAACAAGAAGGAGAAGGATG CTGATAAGGAGGCTAAGTTGCGTGAGAAGAAACAAAAGGAGAAGGAGGAGAAGGAGCGAAAGGAGCGGGAGAAGCGGGAG TTGGAGGAGAAGAAGAAGGCCGAAAAGGCTGCCAAGGCAGCACTTGCCGCTGGTGCCGCTGCAGGAGCGGCTGTTAATGG CAATGACGAGCTGAATGATTCCAACAAGTCTGACAAGTCCTCAGGCAGACGTGCTGATGCTACACCCACCGACCTGAGTG GCGCCTATGTCACGGCCACCGCAGTCACCACCCGCACCGCCACCACGCACGAGGATCTGGGCAAGAACGCCAAGACGGAG CAGCTGGAGGAGAAGACGGTGGCCACCACCCGCACCCACGATCCCAACAAGCAGCAGCAGCGCGTCGTTACCCAGGAGGT GAAGACGACGGCGACGGTCACCAGTGGGGATCAGTATCAGAGGAGGGATAGCGTTTCCTCGACCAGTTCCGGCGATTCGG GCACGCCCATCGACGGACCCTACGATGGTGCCAGTGTGGTGCGCACAGATAACCAGAAATCTCCGCTGTTTACGACCTCC GCCACCACTGGACCCCATGTGGAAAGCACCCGAGTGGTTCTCGGTGAGGACACACCCGGATTCTCCGGACATGGCGAAAT CATCTCCACCCAAACCGTGAGCAGCAAAACCCGCACTGTGGAAACCATTACCTACAAAACCGAACGCGATGGCATTGTGG AGACCCGAGTGGAACAGAAGATAACCATTCAGTCCGATGGAGATCCGATCGATCATGACAAAGCCTTGGCCGAGGCAATA CAAGAAGCGACGGCCATGAATCCGGACATGACAGTCGAGAAGATTGAAATTCAGCAGCAAACGCAGTAGATTTTATAATT ATTTTTAAACCATTCGGATGATTTTCTAAGTAAACCCGCACACACACTCACACACATGAACACCAGCCCACGCATACGCA GCACTTGCAGTACACCTTTTATACAACCTATATCTAAATATAATTTAAACAAATATATATATATATACACACGAGTGTAT ATTTGAGCTCGAGCTGATGACCCACATGACATAACACTAAGAAACATAAAAAGATAAATTCCCAATTATCCGTTACCGCA ACCGTCTACGAGAAAATGCATCTACATGTTTATTATTTTTATTACAACTGTTGTTTATAATTACTTTTTATTACGTATAT TATATATTGAATGTGCAAGGCAACGTTGAAATGAAAACTCTATATATTGTAAACCACGATTGCATTCAAATACAAGAATA AAACCTAAATGTACACACACAGAAAAAAAAAAAAAAAAA
Corrected cDNA clones.
BDGP corrected cDNA clones; vector and tissue/stage source are the same as the progenitor clone.
A file listing all FI clones submitted as of April 2014 and their source cDNA clones may be downloaded from the FlyBase ftp site (link above).