Dana\GF25144 cDNA ORF clone, Drosophila ananassae

The following Dana\GF25144 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Dana\GF25144 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
ODh03391 XM_001956283.2
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Drosophila ananassae uncharacterized protein (Dana\GF25144), 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 ODh03391
    Clone ID Related Accession (Same CDS sequence) XM_001956283.2
    Accession Version XM_001956283.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4923bp)
    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_001939293). On Dec 16, 2015 this sequence version replaced XM_001956283.1. ##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
    ATGAAGCGCA GCCGGTGGAG CCACAGTGGC TCCTCCACGG CGCGTCTGCT AATCGCCGGC 
    CTGCTGGTAG CCACCTGCTC CCCTTTAGCT CTGGGAGCGC AAAGGCAGCC CATCACCTCC
    GCCGGAGGAC ACGAGCTGCG CGGCACCACC TTTATGCCGG CCCTGGAGTG CTACGATCCC
    TATGGCAGAC CGCAGAAATG TCTGCCCGAG TTCATCAATG CTGCCTATCA ACTGAGAATC
    GAATCGACCA ATACCTGTGG CGAACAGGGT GACAATCATT TTTGCATCCA AACAATGAAT
    CAGAATCACA AAAACTGCGA GTTCTGCAGA TATAACGACC ACAATCCTTC ATTCCTAACG
    GATCTGCACG ACCCCCAGAA TCCAACCTGG TGGCAGTCGG AGACCATGCT TGAGGGTATC
    CAGCATCCCA ACTTTGTCAA TCTCACTCTG CATTTAAAAA AATCCTACGA TATTACGTAC
    GTGCGTATCC TTTTCCGTTC GCCGCGTCCC GAATCCTTTA CGATTTACAA GCGCACCACG
    GAGAATGGAC CCTGGATTCC GTATCAGTAC TACAGTGCGT CCTGTCGGGA CATCTACTCC
    CTGCCGGATT CGAGGGACAT CCGTAAAGGC GAGGGCGAGG CCCATGCTCT GTGTACCAGC
    GAGTACAGTG ACATCTCCCC ACTGAGGGAC GGTGAGATTG CCTTCTCCAC CCTGGAGGGT
    CGTCCCAGCG GCATCAACTT TGAGCGCAGC TTGGAGCTGC AGGATTGGGT CACAGCCACG
    GATATTCGTA TCACCCTGGA CCGTCTGAAC ACCTTCGGAG ACGAGCTGTT CGGCGATTCT
    CAGGTGCTGA AGTCGTACTT CTATGCCATT AGTGATATTG CCGTGGGAGC TCGTTGCAAG
    TGTAATGGAC ATGCAAGCAA GTGTGTGGCA AGTACGGGAA TGCACGGAGA AAGGAACCTG
    GTGTGCGAGT GTCGCCACAA CACCGATGGC CCCGACTGTG ATCGCTGTCT GCCACTCTAC
    AACGATGTGA AATGGAAGAG GGCCACCTCC ACGGAGGTCA ACGAGTGCAA AGCTTGTAAC
    TGCAACGGTC TGGCGGACAA GTGCTTCTTC GATGCCCATC TTTTCAACCT GACGGGTCAT
    GGTGGTCACT GTCTGGACTG CCGGGAGAAC CGCGACGGCC CCAACTGCGA GCGCTGCAAG
    GAGAACTTCT ACATGCGGGA GGACGGCTAC TGCGTCAACT GCGCCTGTGA TCCTACTGGC
    TCCCGGTCGC TGCAGTGCAA CAGCCAGGGC AAGTGCCAGT GCAAGCCGGG AGTGACCGGA
    GACAAGTGCG ACCGCTGTGA CAACAACTAT TATCAGTTTG GACCCCACGG ATGCCAGCCC
    TGCGGATGTG ATAGCCGGGG ATCCCACGAA AACACCCCCG CGTGCGATGC CGTGACCGGT
    ATCTGTATCT GCAAAGAGAA TGTGGAGGGC AGGCGCTGCA ATGAATGCAA GCCTGGCTTC
    TTCAACCTGG ACAAGATCAA CCGCTTCGGC TGCACTCCCT GCTTCTGCTA CGGCCATACC
    TCCGAGTGTC AGACTGCCCC CGGCTACTCC ATTGTGTCTG TGACCTCCAA CTTCAACAAG
    TTCAAGGAGC GCTGGACAGC CATTGACCTG AACCGCCGCG AGGTGGACAT CAAGTACAAC
    CAGTACAGCC GGAGCATTGG CACCACCGCC CAGGGCAACG AGCACGTATA CTTCCAGGCC
    CCGGACAGAT TCCTTGGCGA TCAGCGTGCC TCTTACAATC GCGACCTCAA GTTCAAGCTG
    CAGTTAGTGG GACAGGTGGG CCCCAGTACC AGTGCCAGCG ATGTGATCCT CGAGGGTGCC
    GGAAGTCGCA TCTCACTACC CATCTTTGCC CAGGGCAACG GAATTCCCGA CCAGGGAGTG
    AAGGAGTATA CTTTCCGGCT GCACGAAAAC CACGACTACC AATGGCAGCC TAGCCAGTCG
    GCTCGTGGAT TCCTCTCCAT TCTGTCCAAT CTGACTGCTA TCAAGATTAG GGCCACGTAT
    TCGGTGCAGG GCGAGGCCAT CCTGGACGAT GTGGAGCTTC AGACGGCGCA TCGTGGAGCA
    GCCGGCAACC CGGCCACCTG GATCGAGCAG TGTACCTGTC CGGAGGGCTA CCTGGGACAG
    TTTTGCGAGT CCTGCGCTCC TGGCTATCGT CACAGCCCAG CCCGAGGAGG ACCCTTTATG
    CCATGTATCC CCTGCGACTG CCACGGTCAT GCCGATATCT GTGACTCGGA GACGGGTCGC
    TGCATCTGCC AGCACAACAC CCACGGCGAT AACTGCGACC AGTGCGCCAA GGGTTTCTAC
    GGCAATGCTC TCGGAGGCAC TCCCTATGAC TGCAAGCGCT GTCCTTGCCC CAATGAAGGA
    GCTTGTCTGC AAATCAATGG TGACACGGTG ATCTGCACAG AGTGTCCTGT CGGTTACTTC
    GGCTCCCGCT GCGAACAGTG TAGTGATGGC TTCTTCGGCG ATCCGACGGG ACTCCTTGGG
    GCCGTGCAAA CCTGCAAGAG CTGCGACTGC AACGGTAATG TGGATCCCAA TGCTGTGGGC
    AACTGCAATC GAACTACCGG CGAGTGCTTG AAGTGTATCC ACAACACGGC CGGAGAGCAC
    TGCGATCTGT GTCTGCCAGG ACACTTTGGC GATCCCTTGG CCCTGCCCCA CGGAAGCTGT
    GATCGGTGCA GCTGCTACGA GGCTGGAACA GAGCAGGATG AGCAGAGCAT CTCCCGTTGC
    GACCAGGTCA CCGGCCAGTG CCAATGCAAG CCCAACGTAA TCGGCAAGGA TTGCGGTGAG
    TGCCAGCCAG GCTACTTCAA CATCCGATCG GGCAATGGCT GCGAGAACTG TCTCTGCGAT
    CCAGTGGGCA GCTACAACTC TACCTGCGAC AGGCACACCG GCCAGTGCCA CTGCCGACCC
    GGAGTGGTGG GCAAGAAGTG CGATCAGTGC GCCAACTACT TCTACGGCTT CTCCAACGAG
    GGCTGCCTGC CCTGCGAGTG CGACGAGAGC GGCTCCAAGG GCTTCCAGTG CGACCAATAC
    GGCCAGTGTC CTTGCAACGA CAATGTCGAA GGACGACGAT GCGACCGCTG CAAGGAGAAC
    AAATACGATC GCCATCGGGG CTGCATCGAC TGCCCGGACT GCTACAATCT GGTTCAGGAT
    GCCGCCGATC TGCACCGCGC CAAGCTGACT AATCTCAGCC AGACCCTGGA CGAGATTGCT
    CGCACTCCGG TGACCAATGA CGAGGAGTTT GAGGCCAAGC TGCGGGCTGT CCAAGAGAAG
    GTGGCCGTGC TGTCGCAAGA TGCCCGGGAT AATGCTGGCG AAGGTGGTCA GACCTATTCC
    GAGGTGATTG ACGATCTGCA CAAGCGCCTA GATGGAGTCA AGGAGCACCT GGCCAGCGCC
    ACCAAGCACC AGGAAGAAGC TAACGCCGAG ATCGAAAAGT CACGACACAA TTACACCATC
    CTGGACCAGA TCACGGAGAA CGCCAAGAAG GAGCTGCAGG AGGCCCTGGA TCTTCTCAGC
    GACGAGGGTG AAAAGGCCTT GGCTAAGGCC AAGGAGAAGT CCGTGGAATT TGGCCAGCAG
    TCGGAGCAGA TATCCGAAAT CTCCCGGGAG GCTCGTGCCT TGGCCATCAA ACTGGAATCG
    GAGGCGCAAT TCGATCTGAA GAATGCCAAG GACGCAAAGG ATGCGGTGGA GAAGGCCCAT
    CAGCTGGCCA AGAGTGCCAT TGACCTGCAA CAGGATATTG CCAAGGTGCT GCGCTCCGAG
    GTCAATCTGG AAATGAATCA TGTTAACCAG TCGCTGCGCA CCGTGGTCCA GATCGCCAAG
    GAGGCCTTGG AAAAGGCCAA CCAGGTGTAC GACACGGCCT TGACTCTTCT TAATGACGTG
    AACCGACAGA CCCAGCCGGA AATCGACATC AATGAGCTGA AGAAGGATGC AGTGGCTGCC
    AACGAAAGGG CCGATGAGCT GCTCAAGAGG ATCAACGATT TGTCCAACAG CAATGGTGAG
    ATATTCGCCG ATTTCCATGA AGAGCGCGAA CTGGCAGAGA CACTCCTTGA AAGAGCCGAC
    AAGCAGCAGC AGGAGGACAT TGAGCTACTG GCGAGAGCCA AGGCTGCTCA CGACAAGGCC
    ACCGAGGCCG TGGAGCAAGG AGACAATACC CTCAAGGAGG CCAATAACAC ATACAATACA
    CTCTTTGGTT TCCAGTCGGA TGTGCAGCGC TCCTCGCAGA GTGCAGACGA AGCCCTGCAG
    ACAGTGCCCA ATATCGAGAA GGAAATTCAG AATGCGGAGG ATCTGATCCG GCAGGCTGGA
    GATGCTTTGG CAGGAGCTAA CAAGAATGCC AACGAAGCCA AGCAAAATGC CCAGGAAGCA
    CAGAAGAAGT ACGCCGAACA GGCATCCAAG GATGCGGAGC TTATCCGTCG CAAGGCCAAC
    GAGACCAAGG TTGCTGCCAG GAATCTGCGA GATGAGGCTG ATCAGCTCAA CCATCGGGTG
    AAGCTTACCG AAATGGACAT CTTCCAGCTG GAGGAAAGCT CCACCAAGGA CGACAATCTG
    GTGGACGATG CCAAGCGCAA GGTGGGCCAA GCCAAGGCCG ATACCCAAGA CGCTCAGAAG
    CAAATCGAAA AGGCTAACGC CGAGCTGACG GCCATCAAGG ACGAGTTGGA GAACCTGAAG
    GACATCAACA CTGGTGATTT AGATAAATTG GAGAACCGCC TGGCCGGTGT AGAGGGTGAA
    ATCAATCGCG TCAATCTGAC AGGACGCATT GAAAACTACA GAAAGCAACG CACCATCCAG
    AAGAATCTGA TCGATAAATA CGCTGCCGAG CTGAAGGAGC TGTCCAAGGA GGTGGAAAGC
    ATCAGGGTCA TATCCACGGT CCTGCCAGAT GGCTGCTTTG GACGCAATCG TCTGGAGCCA
    TAG

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

    RefSeq XP_001956319.1
    CDS265..5187
    Translation

    Target ORF information:

    RefSeq Version XM_001956283.2
    Organism Drosophila ananassae
    Definition Drosophila ananassae uncharacterized protein (Dana\GF25144), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001956283.2

    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
    ATGAAGCGCA GCCGGTGGAG CCACAGTGGC TCCTCCACGG CGCGTCTGCT AATCGCCGGC 
    CTGCTGGTAG CCACCTGCTC CCCTTTAGCT CTGGGAGCGC AAAGGCAGCC CATCACCTCC
    GCCGGAGGAC ACGAGCTGCG CGGCACCACC TTTATGCCGG CCCTGGAGTG CTACGATCCC
    TATGGCAGAC CGCAGAAATG TCTGCCCGAG TTCATCAATG CTGCCTATCA ACTGAGAATC
    GAATCGACCA ATACCTGTGG CGAACAGGGT GACAATCATT TTTGCATCCA AACAATGAAT
    CAGAATCACA AAAACTGCGA GTTCTGCAGA TATAACGACC ACAATCCTTC ATTCCTAACG
    GATCTGCACG ACCCCCAGAA TCCAACCTGG TGGCAGTCGG AGACCATGCT TGAGGGTATC
    CAGCATCCCA ACTTTGTCAA TCTCACTCTG CATTTAAAAA AATCCTACGA TATTACGTAC
    GTGCGTATCC TTTTCCGTTC GCCGCGTCCC GAATCCTTTA CGATTTACAA GCGCACCACG
    GAGAATGGAC CCTGGATTCC GTATCAGTAC TACAGTGCGT CCTGTCGGGA CATCTACTCC
    CTGCCGGATT CGAGGGACAT CCGTAAAGGC GAGGGCGAGG CCCATGCTCT GTGTACCAGC
    GAGTACAGTG ACATCTCCCC ACTGAGGGAC GGTGAGATTG CCTTCTCCAC CCTGGAGGGT
    CGTCCCAGCG GCATCAACTT TGAGCGCAGC TTGGAGCTGC AGGATTGGGT CACAGCCACG
    GATATTCGTA TCACCCTGGA CCGTCTGAAC ACCTTCGGAG ACGAGCTGTT CGGCGATTCT
    CAGGTGCTGA AGTCGTACTT CTATGCCATT AGTGATATTG CCGTGGGAGC TCGTTGCAAG
    TGTAATGGAC ATGCAAGCAA GTGTGTGGCA AGTACGGGAA TGCACGGAGA AAGGAACCTG
    GTGTGCGAGT GTCGCCACAA CACCGATGGC CCCGACTGTG ATCGCTGTCT GCCACTCTAC
    AACGATGTGA AATGGAAGAG GGCCACCTCC ACGGAGGTCA ACGAGTGCAA AGCTTGTAAC
    TGCAACGGTC TGGCGGACAA GTGCTTCTTC GATGCCCATC TTTTCAACCT GACGGGTCAT
    GGTGGTCACT GTCTGGACTG CCGGGAGAAC CGCGACGGCC CCAACTGCGA GCGCTGCAAG
    GAGAACTTCT ACATGCGGGA GGACGGCTAC TGCGTCAACT GCGCCTGTGA TCCTACTGGC
    TCCCGGTCGC TGCAGTGCAA CAGCCAGGGC AAGTGCCAGT GCAAGCCGGG AGTGACCGGA
    GACAAGTGCG ACCGCTGTGA CAACAACTAT TATCAGTTTG GACCCCACGG ATGCCAGCCC
    TGCGGATGTG ATAGCCGGGG ATCCCACGAA AACACCCCCG CGTGCGATGC CGTGACCGGT
    ATCTGTATCT GCAAAGAGAA TGTGGAGGGC AGGCGCTGCA ATGAATGCAA GCCTGGCTTC
    TTCAACCTGG ACAAGATCAA CCGCTTCGGC TGCACTCCCT GCTTCTGCTA CGGCCATACC
    TCCGAGTGTC AGACTGCCCC CGGCTACTCC ATTGTGTCTG TGACCTCCAA CTTCAACAAG
    TTCAAGGAGC GCTGGACAGC CATTGACCTG AACCGCCGCG AGGTGGACAT CAAGTACAAC
    CAGTACAGCC GGAGCATTGG CACCACCGCC CAGGGCAACG AGCACGTATA CTTCCAGGCC
    CCGGACAGAT TCCTTGGCGA TCAGCGTGCC TCTTACAATC GCGACCTCAA GTTCAAGCTG
    CAGTTAGTGG GACAGGTGGG CCCCAGTACC AGTGCCAGCG ATGTGATCCT CGAGGGTGCC
    GGAAGTCGCA TCTCACTACC CATCTTTGCC CAGGGCAACG GAATTCCCGA CCAGGGAGTG
    AAGGAGTATA CTTTCCGGCT GCACGAAAAC CACGACTACC AATGGCAGCC TAGCCAGTCG
    GCTCGTGGAT TCCTCTCCAT TCTGTCCAAT CTGACTGCTA TCAAGATTAG GGCCACGTAT
    TCGGTGCAGG GCGAGGCCAT CCTGGACGAT GTGGAGCTTC AGACGGCGCA TCGTGGAGCA
    GCCGGCAACC CGGCCACCTG GATCGAGCAG TGTACCTGTC CGGAGGGCTA CCTGGGACAG
    TTTTGCGAGT CCTGCGCTCC TGGCTATCGT CACAGCCCAG CCCGAGGAGG ACCCTTTATG
    CCATGTATCC CCTGCGACTG CCACGGTCAT GCCGATATCT GTGACTCGGA GACGGGTCGC
    TGCATCTGCC AGCACAACAC CCACGGCGAT AACTGCGACC AGTGCGCCAA GGGTTTCTAC
    GGCAATGCTC TCGGAGGCAC TCCCTATGAC TGCAAGCGCT GTCCTTGCCC CAATGAAGGA
    GCTTGTCTGC AAATCAATGG TGACACGGTG ATCTGCACAG AGTGTCCTGT CGGTTACTTC
    GGCTCCCGCT GCGAACAGTG TAGTGATGGC TTCTTCGGCG ATCCGACGGG ACTCCTTGGG
    GCCGTGCAAA CCTGCAAGAG CTGCGACTGC AACGGTAATG TGGATCCCAA TGCTGTGGGC
    AACTGCAATC GAACTACCGG CGAGTGCTTG AAGTGTATCC ACAACACGGC CGGAGAGCAC
    TGCGATCTGT GTCTGCCAGG ACACTTTGGC GATCCCTTGG CCCTGCCCCA CGGAAGCTGT
    GATCGGTGCA GCTGCTACGA GGCTGGAACA GAGCAGGATG AGCAGAGCAT CTCCCGTTGC
    GACCAGGTCA CCGGCCAGTG CCAATGCAAG CCCAACGTAA TCGGCAAGGA TTGCGGTGAG
    TGCCAGCCAG GCTACTTCAA CATCCGATCG GGCAATGGCT GCGAGAACTG TCTCTGCGAT
    CCAGTGGGCA GCTACAACTC TACCTGCGAC AGGCACACCG GCCAGTGCCA CTGCCGACCC
    GGAGTGGTGG GCAAGAAGTG CGATCAGTGC GCCAACTACT TCTACGGCTT CTCCAACGAG
    GGCTGCCTGC CCTGCGAGTG CGACGAGAGC GGCTCCAAGG GCTTCCAGTG CGACCAATAC
    GGCCAGTGTC CTTGCAACGA CAATGTCGAA GGACGACGAT GCGACCGCTG CAAGGAGAAC
    AAATACGATC GCCATCGGGG CTGCATCGAC TGCCCGGACT GCTACAATCT GGTTCAGGAT
    GCCGCCGATC TGCACCGCGC CAAGCTGACT AATCTCAGCC AGACCCTGGA CGAGATTGCT
    CGCACTCCGG TGACCAATGA CGAGGAGTTT GAGGCCAAGC TGCGGGCTGT CCAAGAGAAG
    GTGGCCGTGC TGTCGCAAGA TGCCCGGGAT AATGCTGGCG AAGGTGGTCA GACCTATTCC
    GAGGTGATTG ACGATCTGCA CAAGCGCCTA GATGGAGTCA AGGAGCACCT GGCCAGCGCC
    ACCAAGCACC AGGAAGAAGC TAACGCCGAG ATCGAAAAGT CACGACACAA TTACACCATC
    CTGGACCAGA TCACGGAGAA CGCCAAGAAG GAGCTGCAGG AGGCCCTGGA TCTTCTCAGC
    GACGAGGGTG AAAAGGCCTT GGCTAAGGCC AAGGAGAAGT CCGTGGAATT TGGCCAGCAG
    TCGGAGCAGA TATCCGAAAT CTCCCGGGAG GCTCGTGCCT TGGCCATCAA ACTGGAATCG
    GAGGCGCAAT TCGATCTGAA GAATGCCAAG GACGCAAAGG ATGCGGTGGA GAAGGCCCAT
    CAGCTGGCCA AGAGTGCCAT TGACCTGCAA CAGGATATTG CCAAGGTGCT GCGCTCCGAG
    GTCAATCTGG AAATGAATCA TGTTAACCAG TCGCTGCGCA CCGTGGTCCA GATCGCCAAG
    GAGGCCTTGG AAAAGGCCAA CCAGGTGTAC GACACGGCCT TGACTCTTCT TAATGACGTG
    AACCGACAGA CCCAGCCGGA AATCGACATC AATGAGCTGA AGAAGGATGC AGTGGCTGCC
    AACGAAAGGG CCGATGAGCT GCTCAAGAGG ATCAACGATT TGTCCAACAG CAATGGTGAG
    ATATTCGCCG ATTTCCATGA AGAGCGCGAA CTGGCAGAGA CACTCCTTGA AAGAGCCGAC
    AAGCAGCAGC AGGAGGACAT TGAGCTACTG GCGAGAGCCA AGGCTGCTCA CGACAAGGCC
    ACCGAGGCCG TGGAGCAAGG AGACAATACC CTCAAGGAGG CCAATAACAC ATACAATACA
    CTCTTTGGTT TCCAGTCGGA TGTGCAGCGC TCCTCGCAGA GTGCAGACGA AGCCCTGCAG
    ACAGTGCCCA ATATCGAGAA GGAAATTCAG AATGCGGAGG ATCTGATCCG GCAGGCTGGA
    GATGCTTTGG CAGGAGCTAA CAAGAATGCC AACGAAGCCA AGCAAAATGC CCAGGAAGCA
    CAGAAGAAGT ACGCCGAACA GGCATCCAAG GATGCGGAGC TTATCCGTCG CAAGGCCAAC
    GAGACCAAGG TTGCTGCCAG GAATCTGCGA GATGAGGCTG ATCAGCTCAA CCATCGGGTG
    AAGCTTACCG AAATGGACAT CTTCCAGCTG GAGGAAAGCT CCACCAAGGA CGACAATCTG
    GTGGACGATG CCAAGCGCAA GGTGGGCCAA GCCAAGGCCG ATACCCAAGA CGCTCAGAAG
    CAAATCGAAA AGGCTAACGC CGAGCTGACG GCCATCAAGG ACGAGTTGGA GAACCTGAAG
    GACATCAACA CTGGTGATTT AGATAAATTG GAGAACCGCC TGGCCGGTGT AGAGGGTGAA
    ATCAATCGCG TCAATCTGAC AGGACGCATT GAAAACTACA GAAAGCAACG CACCATCCAG
    AAGAATCTGA TCGATAAATA CGCTGCCGAG CTGAAGGAGC TGTCCAAGGA GGTGGAAAGC
    ATCAGGGTCA TATCCACGGT CCTGCCAGAT GGCTGCTTTG GACGCAATCG TCTGGAGCCA
    TAG

    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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