Dana\GF12023 cDNA ORF clone, Drosophila ananassae

The following Dana\GF12023 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Dana\GF12023 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
ODh19147 XM_001959462.2
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Drosophila ananassae uncharacterized protein (Dana\GF12023), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
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** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID ODh19147
    Clone ID Related Accession (Same CDS sequence) XM_001959462.2
    Accession Version XM_001959462.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4962bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1450108800000
    Organism Drosophila ananassae
    Product uncharacterized protein
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NW_001939294). On Dec 16, 2015 this sequence version replaced XM_001959462.1. ##Genome-Annotation-Data-START## Annotation Provider :: FlyBase Annotation Status :: Full annotation Annotation Version :: Release 1.04 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline URL :: http://flybase.org ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    ATGGATGCGG GCGGCCTGCC AGTCTTCCAG AGCGCCAGCC AAGCAGCCGT CGCACAACAA 
    CAACAGCAGC AGCAGCAGCA GCAGCAACAA CAGCAGCAAC ATTTGAATCT CCAGTTGCAT
    CAGCAGCACT TGGGCCTACA TCTGCAACAG CAACAGCAGC TGCAACTCCA GCAGCAGCAG
    CAGCAACATA ATGCACAGGC GCAACAGCAG CAGCAGATCC AAGTGCAGCA GCAGCAGCAG
    CAACAACAGC AGCAGCAACA CTCTCCCTAC AATGCCAATT TGGGAGCAAC AGGCGGAATG
    GCTGGCCTCA CTGGCGGCAA TGGAACTGTC GGTCCTCCAA ACCAAGGAGC AGTACCCTCG
    CCCGGGGACG GTCTACCAAC CAAACGGCAA CCGATTGTCG ACCGGCTACG CCGTCGCATG
    GAGAACTACC GGCGACGGCA GACGGACTGC GTCCCACGCT ATGAGCAGGC CTTCAATACC
    GTCTGCGAGC AGCAGAATCA GGAGACCACC GCCCTCCAGA AGCGCTTCCT CGAGAGCAAG
    AACAAGCGGG CGGCCAAGAA GACAGAGAAG AAGTTGCCTG ATCCTTCCCA GCAACAGCAG
    CAGCAACACC AGCAGCAGCA ACATCAACAG CATCAGCAAC ATCAACAGCA TCAGCAACAT
    CAGCAGCAAC ATCAGCAACA CCAGCAGGCC CAGACCATGT TAGCCGGACA GCTGCAGAGC
    AGTGTTCATG TGCAACAAAA ATTCCTGAAA CGACCCGCGG AGGATGTTGA CAATGGCGCT
    GATAACTATG AGCCGCCGCA TAAATTGCCC AATAACAACA ACAATAGCAA TAATAACAAC
    AACAATGGCT CTAATGCCAA CAATGGCAAT ACCCAAAATA GTAATCCCAA TAATGGCGGC
    AACTCCAACA ACACCAACAA CAACAACACC AATAACACTG GCAACAACAC AAACAGCAAC
    AACAACGGAT CTGAGAATCT AACCAAATTC TCGGTGGAAA TTGTTCAGCA ACTGGAGTTC
    ACCACATCAG CGGCCAATTC GCAGCCCCAG CAGATCAGCA CGAATGTTAC TGTAAAGGCG
    TTAACCAACA CTTCGGTGAA GAGCGAACCA GGGGTGGGAG GAGGAGGAGG TGGTGGTGGA
    GGAGGCGGCG GCGGTAGTGG AGGAGGCGGT GGCGGCGGCA ACAACGGTAG TGGCAACAAT
    AACGGTGGTA ACAACAACCC CGGAGGCAAT AACACCGGAG GAGTCGGCGG CGTCGGCGGC
    GATCATCACC AGCAGCAGCA ACAACAAGGC GGCGGTCTGG GTGGGCTTGG CAATAATGGG
    CGTGGCGGGG GACCTGGCGG CATGGCCACG GGTCCCGGCG GCGTCGGTGT CGGTGTTGGC
    CTAGGCGTTG GTGGCGGCGG CCTTGGCGGC ATGGGCATGC CACCGCACAT GATGTCCGCC
    CAGCAGAAGT CGGCGCTCGG AAATCTGGCC AATTTGGTGG AATGCAAACG GGAGCCGGAT
    CACGATTTTC CGGATCTGGG CTCACTGGAC AAGGATGGTG CGGGTGGACA GTTCCCCGGA
    TTCCCTGATC TGCTCGGGGA TGATAACTCG GAGAACAATG ACACCTTCAA GGATCTCATC
    AACAACCTGC AGGACTTCAA TCCGAGTTTC CTCGACGGCT TCGATGAGAA GCCATTGCTG
    GACATCAAGA CGGAGGACGG CATCAAGGTG GAGCCGCCCA ATGCCCAGGA TCTGATCAAT
    AGCCTGAACG TGAAGTCGGA GGGCGGTCTG GGCCATGGCT TCGGTGGCTT CGGTCTCGGT
    CTGGACAATC CGGGCATGAA GATGCGCGGC AACCAGGGTG GCTTCCCCAA CGGCCCGAAT
    GGTCCGACCA TTGCGGGGGG AGGTGGTGGC GGTGTTGGCG GCGGTGGGGG TGGAGGCGTG
    GCCCCCAATG CTGGTGGTGG AAATGGCAAT GCCGGGAATC TCATGTCGGA TCATCCGCTG
    GCAGCTCAGA CTTTGAAGCA AATGGCTGAG CAGCATCAGC ACAAGAATGC CATGGGTGGG
    ATGGGTGGCT TCCCCCGCCC CCCGCATGGC ATGAATCCGC AACAGCAGCA GCAGCAGCAA
    CAGGCCCAGC AGCAGCAGCA GGCGCAGCAG CAACACGGCC AGATGATGGG TCAGGGTCAG
    CCGGGACGTT ACAATGACTA TGGCGGTGGC TTTCCCAATG ACTTCGGCCT GGGTCCCAAT
    GGACCGCAGC AGCAGCAGCA ACAGCAACAG CAGCAGCCGC AGCAGCAGCA CCTGCCGCCG
    CAGTTCCATC AAAAAGGTCC TGGCCCAGGT CCTGGGGCTG GTATGCAACA GAATTTCCTG
    GACATCAAGC AGGAGCTCTT CTATTCCTCT CAAAACGATT TCGATCTCAA GCGAATGCAG
    CAGCAGCAGG CCATGCAACA GCAGCAGCAG CAGCAGCAGC AACATCACCA GCAGCAGCAG
    CAGTCCAAAA TGGGTGGAGT GCCCAACTTT AACAAGCAGC AGCAGCAACA GGTGCCGCAG
    CAGCAGCAAC AATTGCAACA GCAACAATAC TCGCCCTTCT CCAACCAAAA CGCAAATCCT
    GCAGCCAATT TCCTGAATTG CCCGCCCAGG GGCCAGCAGC CGGGTAATCT GCCTCAGCAG
    CAGCAGCAGC AACAGCCCGG CGGCGGCGGC GGCCCGCAGC AGCAACAGCA GCGCGGCAAT
    GCCGGCAACG GTCCACCAAA TAATCCCAAT AACGGTGGTC CCGGCGGCAA CTCCAACAAC
    CCTACGCAGC AGCAGCAACA GCAACAGCAG CAGCAGCAGC AACAACAGCA GCAGCAGGCA
    ACAACAACAA CGCTGCAGAT GAAACAGACG CAACAATTGC ACATTAGCCA GCAGGGAGGT
    GGAGCCCACG GTATCCAGGT TTCGGCTGGC CAGCATCTGC ATTTGAGTGG CGACATGAAG
    AGCAATGTCT CGGTGGCCGC CCAACAAGGT GTCTTCTTCA GTCAGCAGCA GGCCCAGCAG
    CAGCAACAAC AGCAACAGCC CGGCGGCAAC AACGGCCCCA ATCCGCAACA GCAGCAACCG
    CATGGCGGCA ATGCTGGCGG AGGCGTGGGC GTTGGTGTGG GCGTCGGAGT GGGCGGAGTG
    GGCGGTGTGG GTGTGGGTAA TGGAGGACCC AATCCTGGAC AGCAGCAGCA ACCAAATCAA
    AACATGAGCA ATGCAAATGT ACCCTCCGAT GGCTTCTCGC TCTCTCAGAG CCAGACCATG
    AACTTCAACC AGCAACAGCA GCAGCAACAA GCGGCACAAC AGCAGCAGGT GCCGCCCAAC
    ATGCGCCAGC GTCAGACGCA AGCGCAGCAA GCGGCTGCTG CAGCGGCGGC AGCAGCGGCG
    CAGGCGCAGG CAGCCGCCAA TGCCGGCGGA CCGAACGTAC CGCTTATGCA GCAGCCGCAG
    GTCGGAGTGG GCGTCGGCGT TGGTGTGGGC AATGGCGGTG TGGTTGGTGG ACCAGGCGGT
    GGCGGCGGCG TCGGCGTTGG CCCCAATAAC GGTGCAATGA ACCAAATGGG CGGACCCATG
    GGCGGCATGC CGGGCATGCA GATGGGCGGA CCCATGAATC CCATGCAGAT GAACCCGAAC
    GGACCCGGCG GTCCCACTGC CCAGCAGCAG ATGATGATGG GCGGCGGCGG CGGCAACGGT
    GGACCGGGTC AGGTGCCAGG TGGTCCCGGT GGTCCGGTTC CCAATCCCAA CCAGGCCAAG
    TTCCTGCAGC AGCAGCAGAT GATGCGAGCC CAGGCGATGC AGCAGCAGCA ACAGCACATG
    GCCGGAGCCC GTCCACCGCC GCCGGAGTAC GCCAATGCTA CCAAGGCGCA GCTGATGCAG
    GCCCAGATGA TGCAGCAGAC GGTGGGTGGC GGTGGAGTCG GTGTCGGCGG CGTGGGAGTG
    GGCGTTGGAG TCGGAGGCGT CGGCGGTGCC AATGGCGGTC GCTTCCCCAA CAGCGCTGCC
    CAGGCTGCGG CCATGCGGCG CATCACTCAG CAGCCCATTC CGCCCTCAGG TCCGATGATG
    CGCCCGCAAC ACGCGGCCAT GTACATGCAA CAGCATGGCG GAGCGGGCGG TGGTCCCAGG
    GGTGGCATGG GCGGTCCCTA TGGCGGTGGA GCAGGCGGAC CCATGGGTGG TCCTCAGCAG
    CAGCAGCGAC CGCCCAATGT GCAGGTCACG CCGGATGGAA TGCCCATGGG CTCGCAGCAG
    GAGTGGCGCC ACATGATGAT GTCGCAGCAG CAGACGCAGA TGGGCTTCGG CGGTCCAGGA
    CCCGGAGGTC CGATGCGTCA GGGTCCGGGC GGATTCAATG GAGGCAACTT CATGCCCAAT
    GGCGCACCGA ATCCAGCTGG CAATGGCCCG AACGGTGGCG GCATGATGTC CGGTCCGAAT
    GTGCCGCAGA TGCAACTGGC ACCGGCCCAA ATGCAGCAGC AGCTGATGCG TCAACAGCAA
    CAGCAACAAC AGCAGCAGCA GCAACACCTG GGACCCGGCG GTGGCAACAA CATGCAACAG
    ATGCAGCAGC TCCTGCAACA GCAGCAATCT GGCGGCGGTG GCAACATGAT GACCAGCCAA
    ATGCAAATGT CCAGCATGCA CATGTCCCAG ACCCAGCAGC AGATCACCAT GCAGCAGCAG
    CAACAGTTTG TGCAGAGCAC CACCACCACC ACGCATCAGC AGCAGCAGAT GTTGCAGATG
    CAACAACAGC AGGGCCCGGG CGGTGGCGGT GGAGCGGCCA GCAACAACAA TGGCGGCGGC
    GGAGGCGGTG GCGGTGGGGC GGCCGTTGGT GGCAACACAA CAACGACCAT TGCCAGTGCT
    AGTTCCATTA GCCAAACGAT CAACTCGGTG GTGGCCAACT CGAATGATTT GTGTCTCGAA
    TTCTTGGACA ACCTGCCGGT GGATAGTAAT TTCTCCACGC AGGATCTGAT CAATTCCCTT
    GACAACGACC ATTTCAACCT GCAGGACTTC AACATGCCGT AG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_001959498.2
    CDS785..5746
    Translation

    Target ORF information:

    RefSeq Version XM_001959462.2
    Organism Drosophila ananassae
    Definition Drosophila ananassae uncharacterized protein (Dana\GF12023), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001959462.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    ATGGATGCGG GCGGCCTGCC AGTCTTCCAG AGCGCCAGCC AAGCAGCCGT CGCACAACAA 
    CAACAGCAGC AGCAGCAGCA GCAGCAACAA CAGCAGCAAC ATTTGAATCT CCAGTTGCAT
    CAGCAGCACT TGGGCCTACA TCTGCAACAG CAACAGCAGC TGCAACTCCA GCAGCAGCAG
    CAGCAACATA ATGCACAGGC GCAACAGCAG CAGCAGATCC AAGTGCAGCA GCAGCAGCAG
    CAACAACAGC AGCAGCAACA CTCTCCCTAC AATGCCAATT TGGGAGCAAC AGGCGGAATG
    GCTGGCCTCA CTGGCGGCAA TGGAACTGTC GGTCCTCCAA ACCAAGGAGC AGTACCCTCG
    CCCGGGGACG GTCTACCAAC CAAACGGCAA CCGATTGTCG ACCGGCTACG CCGTCGCATG
    GAGAACTACC GGCGACGGCA GACGGACTGC GTCCCACGCT ATGAGCAGGC CTTCAATACC
    GTCTGCGAGC AGCAGAATCA GGAGACCACC GCCCTCCAGA AGCGCTTCCT CGAGAGCAAG
    AACAAGCGGG CGGCCAAGAA GACAGAGAAG AAGTTGCCTG ATCCTTCCCA GCAACAGCAG
    CAGCAACACC AGCAGCAGCA ACATCAACAG CATCAGCAAC ATCAACAGCA TCAGCAACAT
    CAGCAGCAAC ATCAGCAACA CCAGCAGGCC CAGACCATGT TAGCCGGACA GCTGCAGAGC
    AGTGTTCATG TGCAACAAAA ATTCCTGAAA CGACCCGCGG AGGATGTTGA CAATGGCGCT
    GATAACTATG AGCCGCCGCA TAAATTGCCC AATAACAACA ACAATAGCAA TAATAACAAC
    AACAATGGCT CTAATGCCAA CAATGGCAAT ACCCAAAATA GTAATCCCAA TAATGGCGGC
    AACTCCAACA ACACCAACAA CAACAACACC AATAACACTG GCAACAACAC AAACAGCAAC
    AACAACGGAT CTGAGAATCT AACCAAATTC TCGGTGGAAA TTGTTCAGCA ACTGGAGTTC
    ACCACATCAG CGGCCAATTC GCAGCCCCAG CAGATCAGCA CGAATGTTAC TGTAAAGGCG
    TTAACCAACA CTTCGGTGAA GAGCGAACCA GGGGTGGGAG GAGGAGGAGG TGGTGGTGGA
    GGAGGCGGCG GCGGTAGTGG AGGAGGCGGT GGCGGCGGCA ACAACGGTAG TGGCAACAAT
    AACGGTGGTA ACAACAACCC CGGAGGCAAT AACACCGGAG GAGTCGGCGG CGTCGGCGGC
    GATCATCACC AGCAGCAGCA ACAACAAGGC GGCGGTCTGG GTGGGCTTGG CAATAATGGG
    CGTGGCGGGG GACCTGGCGG CATGGCCACG GGTCCCGGCG GCGTCGGTGT CGGTGTTGGC
    CTAGGCGTTG GTGGCGGCGG CCTTGGCGGC ATGGGCATGC CACCGCACAT GATGTCCGCC
    CAGCAGAAGT CGGCGCTCGG AAATCTGGCC AATTTGGTGG AATGCAAACG GGAGCCGGAT
    CACGATTTTC CGGATCTGGG CTCACTGGAC AAGGATGGTG CGGGTGGACA GTTCCCCGGA
    TTCCCTGATC TGCTCGGGGA TGATAACTCG GAGAACAATG ACACCTTCAA GGATCTCATC
    AACAACCTGC AGGACTTCAA TCCGAGTTTC CTCGACGGCT TCGATGAGAA GCCATTGCTG
    GACATCAAGA CGGAGGACGG CATCAAGGTG GAGCCGCCCA ATGCCCAGGA TCTGATCAAT
    AGCCTGAACG TGAAGTCGGA GGGCGGTCTG GGCCATGGCT TCGGTGGCTT CGGTCTCGGT
    CTGGACAATC CGGGCATGAA GATGCGCGGC AACCAGGGTG GCTTCCCCAA CGGCCCGAAT
    GGTCCGACCA TTGCGGGGGG AGGTGGTGGC GGTGTTGGCG GCGGTGGGGG TGGAGGCGTG
    GCCCCCAATG CTGGTGGTGG AAATGGCAAT GCCGGGAATC TCATGTCGGA TCATCCGCTG
    GCAGCTCAGA CTTTGAAGCA AATGGCTGAG CAGCATCAGC ACAAGAATGC CATGGGTGGG
    ATGGGTGGCT TCCCCCGCCC CCCGCATGGC ATGAATCCGC AACAGCAGCA GCAGCAGCAA
    CAGGCCCAGC AGCAGCAGCA GGCGCAGCAG CAACACGGCC AGATGATGGG TCAGGGTCAG
    CCGGGACGTT ACAATGACTA TGGCGGTGGC TTTCCCAATG ACTTCGGCCT GGGTCCCAAT
    GGACCGCAGC AGCAGCAGCA ACAGCAACAG CAGCAGCCGC AGCAGCAGCA CCTGCCGCCG
    CAGTTCCATC AAAAAGGTCC TGGCCCAGGT CCTGGGGCTG GTATGCAACA GAATTTCCTG
    GACATCAAGC AGGAGCTCTT CTATTCCTCT CAAAACGATT TCGATCTCAA GCGAATGCAG
    CAGCAGCAGG CCATGCAACA GCAGCAGCAG CAGCAGCAGC AACATCACCA GCAGCAGCAG
    CAGTCCAAAA TGGGTGGAGT GCCCAACTTT AACAAGCAGC AGCAGCAACA GGTGCCGCAG
    CAGCAGCAAC AATTGCAACA GCAACAATAC TCGCCCTTCT CCAACCAAAA CGCAAATCCT
    GCAGCCAATT TCCTGAATTG CCCGCCCAGG GGCCAGCAGC CGGGTAATCT GCCTCAGCAG
    CAGCAGCAGC AACAGCCCGG CGGCGGCGGC GGCCCGCAGC AGCAACAGCA GCGCGGCAAT
    GCCGGCAACG GTCCACCAAA TAATCCCAAT AACGGTGGTC CCGGCGGCAA CTCCAACAAC
    CCTACGCAGC AGCAGCAACA GCAACAGCAG CAGCAGCAGC AACAACAGCA GCAGCAGGCA
    ACAACAACAA CGCTGCAGAT GAAACAGACG CAACAATTGC ACATTAGCCA GCAGGGAGGT
    GGAGCCCACG GTATCCAGGT TTCGGCTGGC CAGCATCTGC ATTTGAGTGG CGACATGAAG
    AGCAATGTCT CGGTGGCCGC CCAACAAGGT GTCTTCTTCA GTCAGCAGCA GGCCCAGCAG
    CAGCAACAAC AGCAACAGCC CGGCGGCAAC AACGGCCCCA ATCCGCAACA GCAGCAACCG
    CATGGCGGCA ATGCTGGCGG AGGCGTGGGC GTTGGTGTGG GCGTCGGAGT GGGCGGAGTG
    GGCGGTGTGG GTGTGGGTAA TGGAGGACCC AATCCTGGAC AGCAGCAGCA ACCAAATCAA
    AACATGAGCA ATGCAAATGT ACCCTCCGAT GGCTTCTCGC TCTCTCAGAG CCAGACCATG
    AACTTCAACC AGCAACAGCA GCAGCAACAA GCGGCACAAC AGCAGCAGGT GCCGCCCAAC
    ATGCGCCAGC GTCAGACGCA AGCGCAGCAA GCGGCTGCTG CAGCGGCGGC AGCAGCGGCG
    CAGGCGCAGG CAGCCGCCAA TGCCGGCGGA CCGAACGTAC CGCTTATGCA GCAGCCGCAG
    GTCGGAGTGG GCGTCGGCGT TGGTGTGGGC AATGGCGGTG TGGTTGGTGG ACCAGGCGGT
    GGCGGCGGCG TCGGCGTTGG CCCCAATAAC GGTGCAATGA ACCAAATGGG CGGACCCATG
    GGCGGCATGC CGGGCATGCA GATGGGCGGA CCCATGAATC CCATGCAGAT GAACCCGAAC
    GGACCCGGCG GTCCCACTGC CCAGCAGCAG ATGATGATGG GCGGCGGCGG CGGCAACGGT
    GGACCGGGTC AGGTGCCAGG TGGTCCCGGT GGTCCGGTTC CCAATCCCAA CCAGGCCAAG
    TTCCTGCAGC AGCAGCAGAT GATGCGAGCC CAGGCGATGC AGCAGCAGCA ACAGCACATG
    GCCGGAGCCC GTCCACCGCC GCCGGAGTAC GCCAATGCTA CCAAGGCGCA GCTGATGCAG
    GCCCAGATGA TGCAGCAGAC GGTGGGTGGC GGTGGAGTCG GTGTCGGCGG CGTGGGAGTG
    GGCGTTGGAG TCGGAGGCGT CGGCGGTGCC AATGGCGGTC GCTTCCCCAA CAGCGCTGCC
    CAGGCTGCGG CCATGCGGCG CATCACTCAG CAGCCCATTC CGCCCTCAGG TCCGATGATG
    CGCCCGCAAC ACGCGGCCAT GTACATGCAA CAGCATGGCG GAGCGGGCGG TGGTCCCAGG
    GGTGGCATGG GCGGTCCCTA TGGCGGTGGA GCAGGCGGAC CCATGGGTGG TCCTCAGCAG
    CAGCAGCGAC CGCCCAATGT GCAGGTCACG CCGGATGGAA TGCCCATGGG CTCGCAGCAG
    GAGTGGCGCC ACATGATGAT GTCGCAGCAG CAGACGCAGA TGGGCTTCGG CGGTCCAGGA
    CCCGGAGGTC CGATGCGTCA GGGTCCGGGC GGATTCAATG GAGGCAACTT CATGCCCAAT
    GGCGCACCGA ATCCAGCTGG CAATGGCCCG AACGGTGGCG GCATGATGTC CGGTCCGAAT
    GTGCCGCAGA TGCAACTGGC ACCGGCCCAA ATGCAGCAGC AGCTGATGCG TCAACAGCAA
    CAGCAACAAC AGCAGCAGCA GCAACACCTG GGACCCGGCG GTGGCAACAA CATGCAACAG
    ATGCAGCAGC TCCTGCAACA GCAGCAATCT GGCGGCGGTG GCAACATGAT GACCAGCCAA
    ATGCAAATGT CCAGCATGCA CATGTCCCAG ACCCAGCAGC AGATCACCAT GCAGCAGCAG
    CAACAGTTTG TGCAGAGCAC CACCACCACC ACGCATCAGC AGCAGCAGAT GTTGCAGATG
    CAACAACAGC AGGGCCCGGG CGGTGGCGGT GGAGCGGCCA GCAACAACAA TGGCGGCGGC
    GGAGGCGGTG GCGGTGGGGC GGCCGTTGGT GGCAACACAA CAACGACCAT TGCCAGTGCT
    AGTTCCATTA GCCAAACGAT CAACTCGGTG GTGGCCAACT CGAATGATTT GTGTCTCGAA
    TTCTTGGACA ACCTGCCGGT GGATAGTAAT TTCTCCACGC AGGATCTGAT CAATTCCCTT
    GACAACGACC ATTTCAACCT GCAGGACTTC AACATGCCGT AG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

  • PubMed

    Assembly reconciliation.
    Bioinformatics (Oxford, England)24(1)42-5(2008 Jan)
    Zimin AV,Smith DR,Sutton G,Yorke JA


    Evolution of genes and genomes on the Drosophila phylogeny.
    Nature450(7167)203-18(2007 Nov)
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