sall1a cDNA ORF clone, Danio rerio(zebrafish)

The following sall1a gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the sall1a 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
ODa143295 XM_021477534.1
Latest version!
Danio rerio spalt-like transcription factor 1a (sall1a), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
ODa03723 NM_001146014.1
Latest version!
Danio rerio spalt-like transcription factor 1a (sall1a), mRNA. pcDNA3.1-C-(k)DYK or customized vector 20 $713.30
$1019.00

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** 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 ODa143295
    Clone ID Related Accession (Same CDS sequence) XM_021477534.1
    Accession Version XM_021477534.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3654bp)
    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 2017-06-14
    Organism Danio rerio(zebrafish)
    Product sal-like protein 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007118.7) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##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
    ATGAATGATA CAACTAATAA CACAGATCAA GCAGAGTTGA CTGACCTTTT GGAGCAAAAC 
    ATACTTGACA AAGAGGAGGC CATGGACACA GAGATGTCAG GAGTCTCTGC ACCACACAAT
    GATGGAAATG GTCGTATGGC AGGTAGCAGC CCACTCAGTG GTGTTGGAAC TGGCCATGGA
    ACGCTGGGAA GCACTGGGTC CAATCTGGGG AGCTCTGTCA TCTCTGCCTC ACTACCTCAG
    CTGGGTAACT TGACTGAGCT GGGCAATTTT TCCATGATCA ACAGCAATGT CATTATTGAA
    AACCTACAGA GCACCAAAGT GGCTGTGGCC CAATTTTCTC AAGAAACCAG AGCAACAGGG
    GGGCAAAGGG TGGCTGTGCC AGCCCTCATG GAGCAGCTCT TGGCCCTGCA GCAGCAGCAG
    ATTCACCAGC TACAGCTCAT AGAGCAGATT CGTCACCAGA TTCTTCTGTT AGCCTCACAG
    TCACCTGAGC TCCAAGCACC CCCTAGTTCT TCCCCAGTGA CCTTAGGTTC AGGTACTAGC
    CCACTAACCA CTCTTAGTTC CCATTTGTCT CAGCAGTTGG CAGCTGCCGC AGGGTTAGCA
    CAGAGCATAG CTAGCCAGTC TGCGAGCATT AGCAGTTTGA AACAGATGGC TAATGTTGCG
    CAGCTACCTC AGAGCAATTC CAGTGTGGGA GAGTCATCTC AAAGCCTTGC AGCACCAGGG
    CCTGCTCCAG TTAATGCCCA ACCTTTAGAA AAGAGGCCAG GCAATGCAGG AAGCTTGCAT
    CCTCCATTAG GAAACCCATC ACTTGCAAAG TCATCCACAC CAGCCTTTGC AATGGGAAAC
    CTTTTGAATC CTGTGGCTAA TACCCTTCTA CCTCAGCCCC CGCCAGGCAA CCCAATATTT
    TCCAGTGCAC TGCCGAGCGT CGGTTCCACA GTTGAGGATC TCAATTCACT GGCTGCACTG
    GCTCAACAAA GAAAAGGCAA GCCACCCAAT GTTTCTTCTT TTGAACCGAA GAGTAGCTCT
    GAGGACACAT TTTTCAAGCA TAAATGCAGG TTTTGTGGCA AGGTGTTTGG TAGTGACAGT
    GCACTGCAGA TTCACTTACG TTCTCATACA GGTGAAAGGC CATACAAATG CAACATATGT
    GGCAACCGCT TTTCCACTCG TGGTAACTTA AAGGTTCATT TTCAGCGTCA TAAAGAGAAG
    TATCCACACA TTCAGATGAA CCCATACCCT GTCCCAGAGC ATCTAGACAA TATTCCAACA
    AGTACTGGCA TTCCCTATGG TATGTCTATG CCCCCTGAAA AACCAGTGAC CAGCTGGTTG
    GATAGTAAAC CTGTTCTGTC CACTCTGACA TCCTCTGTTG GCATGTTACT TCCACCAACT
    ATACCAAGTC TGCCTCCATT CATAAAAAAG GAAGAGAATA ACTCACTGGC TATAAGCAGC
    CCTTCTCATT CTGCTAAAAG CGACTCAGGT CCTGCTGACA CACCCATGAA GAATACAGAT
    AGTGTGTTGG AGGAAGGTGA GAGCACAACC CTGCCTACCT CAAACGGAAA AGCTGAAGAA
    AACAACCAGT CCTCCAATTT ATTATCTAAC ATGAGCTCTG CGGTGGAGGG TACAATAGAG
    TACACCACCT CCAACAGTCC TCCGATGGCC ACTAACCCAC TCATGCCTCT GATGTCAGAA
    CAGTTCAAAG CTAAATTTCC TTTTGGGGGT CTTCTCGATC CTCTCCAAGG CTCAGAAACA
    TCAAAACTTC AGCAACTTGT TGAGAACATA GACAGGAAGG TGGCAGATCC CAATGAGTGT
    GTTATCTGTC ATCGTATTCT TAGTTGCCAG AGTGCACTGA AAATGCACTA CCGCACGCAC
    ACAGGGGAGA GGCCTTTCAA ATGTAAAGTG TGTGGTCGTG CCTTCACCAC CAAGGGCAAC
    CTCAAGACTC ATTACAGTGT CCATCGAGCT ATGCCGCCAC TGAGAGTCCA GCATTCATGT
    CCTATTTGCC AGAAGAAGTT CACAAATGCT GTGGTGTTGC AGCAGCACAT TCGCATGCAC
    ATGGGTGGCC AGATCCCCAA CACCCCACTT CCTGACAATT ATCCAGAATC CATGGGATCC
    GATGCTGGAT CTTTTGATGA GAGAAACATT GATGATCTTG ACAACTTCTC TGATGACAAC
    ATGGAAGGAA TTGAGGATGG ACCAGACAGC AGCATTCCAG ACACACCAAA GTCAGTTGAT
    GCATCTCAAG ACAGCCTCTG TTCATCTCCT ACTCTACATG AGTCATTTGG CATGGACGAG
    AGGATCCAGG AGAAGAGTGC CAACCATGGA GCAGGAGAGG AAGTGCAGTA TGATCAAGGG
    AAATCAGTGG AGAACGGTTT AGTGGAAGGA GACAGATTCA CAAATGACTC CTCTTCACTG
    GGGGGTGACA TAGAAAGCCA AAGTGCCGGA AGTCCAGCTG TCTCTGAATC TACCTCTTCC
    ATGCAAGCTC CGTCACCCTC TAATGGTATA TTCCAACAAC AAAAGTCTCC TAGTATGGAA
    GATAGGCAGC AAAGGGCATT GTCATTGGAG CACATTAGTG CAAGTCTCAT GCATTCTAAT
    TCTGCCAGTC CTGGAGCTCT GGATCTTACT TCAGTTAACT CATCTAAAGA TCCTATTAGC
    ATGCTTTTCC CCTTCCGTGA GCGAGGCACC TTGAAAAATA CAGCATGTGA TATCTGTGGC
    AAGACGTTTG CCTGCCAGAG TGCCTTGGAC ATCCATTACC GTAGCCATAC CAAAGAGAGA
    CCATTTATTT GCACAGTATG CAACCGGGGC TTTTCCACCA AGGGGAACTT AAAGCAACAT
    ATGCTGACTC ACCAGATGCG AGATTTGCCC TCCCAACTCT TTGAGCCCAA CACCAGTCTT
    GCCTCCAGTC TTGCCTCTAG CCCAACTCCT TCCCTTCTGT CTGTTGGACC CTTGTCCTCT
    ATGATGAAAA CTGAGGTCAA TGGCTTTCTG CATGGTCTTC AACCTGAAGT AAAAGACTTG
    CCCCCGGCAC TGGTGACCTC TTCTGCTTCC ACTTCTCCAG TACTTTCAGC CGCTCCACCA
    CGTAGGACGC CTAAGCAGCA CTTCTGCACC ACTTGTGGGA AGACTTTTTC CTCCTCCAGT
    GCTCTGCAAA TCCATGAGAG AACCCATACG GGAGAGAAGC CCTTTGCCTG CACTATATGT
    GGGCGAGCAT TTACCACAAA AGGAAATCTC AAGGTGCATA TGGGTACCCA CATGTGGAAC
    AGTGCTCCTG CACGGCGGGG TCGCAGACTT TCAGTAGATG GTCCCATGGC TTTCCTGGGC
    ACCAACCCTG TTAAGTTTCC TGAGCTCTTC CAAAAGGACC TATCCAGCAG GGCTGGAAAC
    GGAGACCCAA CCAGCTTCTG GAATCAGTAT GCTGCTGCTT TCTCTAATGG CCTCGCCATG
    AAAACCAACG AGATCTCAGT GATCCAAAAT GGAGGCCTGC CCCCTCCACT GTCAGGGAGT
    GTGGGCAATG GGGGCAGTTC TCCGATCGGA GGCTTGACAG GCAGCATGGA AAAGCTGCAT
    AACTCTGAGC CCAATCCTGC TCTGGCTGGC CTAGAGAAAA TGGCCAACAC TGAAAACGGG
    ACTCACTTCC GCTTCACACG CTTCATGGAG GACAAGGAGA TAGTGACCAA CTAG

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

    RefSeq XP_021333209.1
    CDS388..4041
    Translation

    Target ORF information:

    RefSeq Version XM_021477534.1
    Organism Danio rerio(zebrafish)
    Definition Danio rerio spalt-like transcription factor 1a (sall1a), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021477534.1

    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
    ATGAATGATA CAACTAATAA CACAGATCAA GCAGAGTTGA CTGACCTTTT GGAGCAAAAC 
    ATACTTGACA AAGAGGAGGC CATGGACACA GAGATGTCAG GAGTCTCTGC ACCACACAAT
    GATGGAAATG GTCGTATGGC AGGTAGCAGC CCACTCAGTG GTGTTGGAAC TGGCCATGGA
    ACGCTGGGAA GCACTGGGTC CAATCTGGGG AGCTCTGTCA TCTCTGCCTC ACTACCTCAG
    CTGGGTAACT TGACTGAGCT GGGCAATTTT TCCATGATCA ACAGCAATGT CATTATTGAA
    AACCTACAGA GCACCAAAGT GGCTGTGGCC CAATTTTCTC AAGAAACCAG AGCAACAGGG
    GGGCAAAGGG TGGCTGTGCC AGCCCTCATG GAGCAGCTCT TGGCCCTGCA GCAGCAGCAG
    ATTCACCAGC TACAGCTCAT AGAGCAGATT CGTCACCAGA TTCTTCTGTT AGCCTCACAG
    TCACCTGAGC TCCAAGCACC CCCTAGTTCT TCCCCAGTGA CCTTAGGTTC AGGTACTAGC
    CCACTAACCA CTCTTAGTTC CCATTTGTCT CAGCAGTTGG CAGCTGCCGC AGGGTTAGCA
    CAGAGCATAG CTAGCCAGTC TGCGAGCATT AGCAGTTTGA AACAGATGGC TAATGTTGCG
    CAGCTACCTC AGAGCAATTC CAGTGTGGGA GAGTCATCTC AAAGCCTTGC AGCACCAGGG
    CCTGCTCCAG TTAATGCCCA ACCTTTAGAA AAGAGGCCAG GCAATGCAGG AAGCTTGCAT
    CCTCCATTAG GAAACCCATC ACTTGCAAAG TCATCCACAC CAGCCTTTGC AATGGGAAAC
    CTTTTGAATC CTGTGGCTAA TACCCTTCTA CCTCAGCCCC CGCCAGGCAA CCCAATATTT
    TCCAGTGCAC TGCCGAGCGT CGGTTCCACA GTTGAGGATC TCAATTCACT GGCTGCACTG
    GCTCAACAAA GAAAAGGCAA GCCACCCAAT GTTTCTTCTT TTGAACCGAA GAGTAGCTCT
    GAGGACACAT TTTTCAAGCA TAAATGCAGG TTTTGTGGCA AGGTGTTTGG TAGTGACAGT
    GCACTGCAGA TTCACTTACG TTCTCATACA GGTGAAAGGC CATACAAATG CAACATATGT
    GGCAACCGCT TTTCCACTCG TGGTAACTTA AAGGTTCATT TTCAGCGTCA TAAAGAGAAG
    TATCCACACA TTCAGATGAA CCCATACCCT GTCCCAGAGC ATCTAGACAA TATTCCAACA
    AGTACTGGCA TTCCCTATGG TATGTCTATG CCCCCTGAAA AACCAGTGAC CAGCTGGTTG
    GATAGTAAAC CTGTTCTGTC CACTCTGACA TCCTCTGTTG GCATGTTACT TCCACCAACT
    ATACCAAGTC TGCCTCCATT CATAAAAAAG GAAGAGAATA ACTCACTGGC TATAAGCAGC
    CCTTCTCATT CTGCTAAAAG CGACTCAGGT CCTGCTGACA CACCCATGAA GAATACAGAT
    AGTGTGTTGG AGGAAGGTGA GAGCACAACC CTGCCTACCT CAAACGGAAA AGCTGAAGAA
    AACAACCAGT CCTCCAATTT ATTATCTAAC ATGAGCTCTG CGGTGGAGGG TACAATAGAG
    TACACCACCT CCAACAGTCC TCCGATGGCC ACTAACCCAC TCATGCCTCT GATGTCAGAA
    CAGTTCAAAG CTAAATTTCC TTTTGGGGGT CTTCTCGATC CTCTCCAAGG CTCAGAAACA
    TCAAAACTTC AGCAACTTGT TGAGAACATA GACAGGAAGG TGGCAGATCC CAATGAGTGT
    GTTATCTGTC ATCGTATTCT TAGTTGCCAG AGTGCACTGA AAATGCACTA CCGCACGCAC
    ACAGGGGAGA GGCCTTTCAA ATGTAAAGTG TGTGGTCGTG CCTTCACCAC CAAGGGCAAC
    CTCAAGACTC ATTACAGTGT CCATCGAGCT ATGCCGCCAC TGAGAGTCCA GCATTCATGT
    CCTATTTGCC AGAAGAAGTT CACAAATGCT GTGGTGTTGC AGCAGCACAT TCGCATGCAC
    ATGGGTGGCC AGATCCCCAA CACCCCACTT CCTGACAATT ATCCAGAATC CATGGGATCC
    GATGCTGGAT CTTTTGATGA GAGAAACATT GATGATCTTG ACAACTTCTC TGATGACAAC
    ATGGAAGGAA TTGAGGATGG ACCAGACAGC AGCATTCCAG ACACACCAAA GTCAGTTGAT
    GCATCTCAAG ACAGCCTCTG TTCATCTCCT ACTCTACATG AGTCATTTGG CATGGACGAG
    AGGATCCAGG AGAAGAGTGC CAACCATGGA GCAGGAGAGG AAGTGCAGTA TGATCAAGGG
    AAATCAGTGG AGAACGGTTT AGTGGAAGGA GACAGATTCA CAAATGACTC CTCTTCACTG
    GGGGGTGACA TAGAAAGCCA AAGTGCCGGA AGTCCAGCTG TCTCTGAATC TACCTCTTCC
    ATGCAAGCTC CGTCACCCTC TAATGGTATA TTCCAACAAC AAAAGTCTCC TAGTATGGAA
    GATAGGCAGC AAAGGGCATT GTCATTGGAG CACATTAGTG CAAGTCTCAT GCATTCTAAT
    TCTGCCAGTC CTGGAGCTCT GGATCTTACT TCAGTTAACT CATCTAAAGA TCCTATTAGC
    ATGCTTTTCC CCTTCCGTGA GCGAGGCACC TTGAAAAATA CAGCATGTGA TATCTGTGGC
    AAGACGTTTG CCTGCCAGAG TGCCTTGGAC ATCCATTACC GTAGCCATAC CAAAGAGAGA
    CCATTTATTT GCACAGTATG CAACCGGGGC TTTTCCACCA AGGGGAACTT AAAGCAACAT
    ATGCTGACTC ACCAGATGCG AGATTTGCCC TCCCAACTCT TTGAGCCCAA CACCAGTCTT
    GCCTCCAGTC TTGCCTCTAG CCCAACTCCT TCCCTTCTGT CTGTTGGACC CTTGTCCTCT
    ATGATGAAAA CTGAGGTCAA TGGCTTTCTG CATGGTCTTC AACCTGAAGT AAAAGACTTG
    CCCCCGGCAC TGGTGACCTC TTCTGCTTCC ACTTCTCCAG TACTTTCAGC CGCTCCACCA
    CGTAGGACGC CTAAGCAGCA CTTCTGCACC ACTTGTGGGA AGACTTTTTC CTCCTCCAGT
    GCTCTGCAAA TCCATGAGAG AACCCATACG GGAGAGAAGC CCTTTGCCTG CACTATATGT
    GGGCGAGCAT TTACCACAAA AGGAAATCTC AAGGTGCATA TGGGTACCCA CATGTGGAAC
    AGTGCTCCTG CACGGCGGGG TCGCAGACTT TCAGTAGATG GTCCCATGGC TTTCCTGGGC
    ACCAACCCTG TTAAGTTTCC TGAGCTCTTC CAAAAGGACC TATCCAGCAG GGCTGGAAAC
    GGAGACCCAA CCAGCTTCTG GAATCAGTAT GCTGCTGCTT TCTCTAATGG CCTCGCCATG
    AAAACCAACG AGATCTCAGT GATCCAAAAT GGAGGCCTGC CCCCTCCACT GTCAGGGAGT
    GTGGGCAATG GGGGCAGTTC TCCGATCGGA GGCTTGACAG GCAGCATGGA AAAGCTGCAT
    AACTCTGAGC CCAATCCTGC TCTGGCTGGC CTAGAGAAAA TGGCCAACAC TGAAAACGGG
    ACTCACTTCC GCTTCACACG CTTCATGGAG GACAAGGAGA TAGTGACCAA CTAG

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

    CloneID ODa03723
    Clone ID Related Accession (Same CDS sequence) NM_001146014.1
    Accession Version NM_001146014.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3942bp)
    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 2019-01-25
    Organism Danio rerio(zebrafish)
    Product sal-like protein 1
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from CR388023.13. On Mar 24, 2009 this sequence version replaced XM_678314.3. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments. ##Evidence-Data-START## Transcript exon combination :: GFIL01034402.1, GDQH01020821.1 [ECO:0000332] RNAseq introns :: single sample supports all introns SAMEA2168446, SAMEA2168447 [ECO:0000348] ##Evidence-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
    ATGTCGCGGA GGAAACAAGC GAAGCCGCAG CATTTCCAGT CCGACTCGCA GCTGGTCCTA 
    GCCGAGCACA ATGGGGACAC AGAGACCAAC CCGGACGACT CCCCCTGTAA AGACTCGGGT
    GCCCATGTCT GCAGCAGATG TTGCGCAGAG TTCTTTGAAC TATCGGATCT TGAACAACAC
    CAGAAGAATT GCACTAAGAA TCAATTAGTT CTAATTGTGA ATGAAAATCC AGTGTCTCCT
    TCCGGAACCT TCTCCCCAGG CTCCTCTCCT CATAATCCTG ATGAGCAGAT GAATGATACA
    ACTAATAACA CAGATCAAGC AGAGTTGACT GACCTTTTGG AGCAAAACAT ACTTGACAAA
    GAGGAGGCCA TGGACACAGA GATGTCAGGA GTCTCTGCAC CACACAATGA TGGAAATGGT
    CGTATGGCAG GTAGCAGCCC ACTCAGTGGT GTTGGAACTG GCCATGGAAC GCTGGGAAGC
    ACTGGGTCCA ATCTGGGGAG CTCTGTCATC TCTGCCTCAC TACCTCAGCT GGGTAACTTG
    ACTGAGCTGG GCAATTTTTC CATGATCAAC AGCAATGTCA TTATTGAAAA CCTACAGAGC
    ACCAAAGTGG CTGTGGCCCA ATTTTCTCAA GAAACCAGAG CAACAGGGGG GCAAAGGGTG
    GCTGTGCCAG CCCTCATGGA GCAGCTCTTG GCCCTGCAGC AGCAGCAGAT TCACCAGCTA
    CAGCTCATAG AGCAGATTCG TCACCAGATT CTTCTGTTAG CCTCACAGTC ACCTGAGCTC
    CAAGCACCCC CTAGTTCTTC CCCAGTGACC TTAGGTTCAG GTACTAGCCC ACTAACCACT
    CTTAGTTCCC ATTTGTCTCA GCAGTTGGCA GCTGCCGCAG GGTTAGCACA GAGCATAGCT
    AGCCAGTCTG CGAGCATTAG CAGTTTGAAA CAGATGGCTA ATGTTGCGCA GCTACCTCAG
    AGCAATTCCA GTGTGGGAGA GTCATCTCAA AGCCTTGCAG CACCAGGGCC TGCTCCAGTT
    AATGCCCAAC CTTTAGAAAA GAGGCCAGGC AATGCAGGAA GCTTGCATCC TCCATTAGGA
    AACCCATCAC TTGCAAAGTC ATCCACACCA GCCTTTGCAA TGGGAAACCT TTTGAATCCT
    GTGGCTAATA CCCTTCTACC TCAGCCCCCG CCAGGCAACC CAATATTTTC CAGTGCACTG
    CCGAGCGTCG GTTCCACAGT TGAGGATCTC AATTCACTGG CTGCACTGGC TCAACAAAGA
    AAAGGCAAGC CACCCAATGT TTCTTCTTTT GAACCGAAGA GTAGCTCTGA GGACACATTT
    TTCAAGCATA AATGCAGGTT TTGTGGCAAG GTGTTTGGTA GTGACAGTGC ACTGCAGATT
    CACTTACGTT CTCATACAGG TGAAAGGCCA TACAAATGCA ACATATGTGG CAACCGCTTT
    TCCACTCGTG GTAACTTAAA GGTTCATTTT CAGCGTCATA AAGAGAAGTA TCCACACATT
    CAGATGAACC CATACCCTGT CCCAGAGCAT CTAGACAATA TTCCAACAAG TACTGGCATT
    CCCTATGGTA TGTCTATGCC CCCTGAAAAA CCAGTGACCA GCTGGTTGGA TAGTAAACCT
    GTTCTGTCCA CTCTGACATC CTCTGTTGGC ATGTTACTTC CACCAACTAT ACCAAGTCTG
    CCTCCATTCA TAAAAAAGGA AGAGAATAAC TCACTGGCTA TAAGCAGCCC TTCTCATTCT
    GCTAAAAGCG ACTCAGGTCC TGCTGACACA CCCATGAAGA ATACAGATAG TGTGTTGGAG
    GAAGGTGAGA GCACAACCCT GCCTACCTCA AACGGAAAAG CTGAAGAAAA CAACCAGTCC
    TCCAATTTAT TATCTAACAT GAGCTCTGCG GTGGAGGGTA CAATAGAGTA CACCACCTCC
    AACAGTCCTC CGATGGCCAC TAACCCACTC ATGCCTCTGA TGTCAGAACA GTTCAAAGCT
    AAATTTCCTT TTGGGGGTCT TCTCGATCCT CTCCAAGGCT CAGAAACATC AAAACTTCAG
    CAACTTGTTG AGAACATAGA CAGGAAGGTG GCAGATCCCA ATGAGTGTGT TATCTGTCAT
    CGTATTCTTA GTTGCCAGAG TGCACTGAAA ATGCACTACC GCACGCACAC AGGGGAGAGG
    CCTTTCAAAT GTAAAGTGTG TGGTCGTGCC TTCACCACCA AGGGCAACCT CAAGACTCAT
    TACAGTGTCC ATCGAGCTAT GCCGCCACTG AGAGTCCAGC ATTCATGTCC TATTTGCCAG
    AAGAAGTTCA CAAATGCTGT GGTGTTGCAG CAGCACATTC GCATGCACAT GGGTGGCCAG
    ATCCCCAACA CCCCACTTCC TGACAATTAT CCAGAATCCA TGGGATCCGA TGCTGGATCT
    TTTGATGAGA GAAACATTGA TGATCTTGAC AACTTCTCTG ATGACAACAT GGAAGGAATT
    GAGGATGGAC CAGACAGCAG CATTCCAGAC ACACCAAAGT CAGTTGATGC ATCTCAAGAC
    AGCCTCTGTT CATCTCCTAC TCTACATGAG TCATTTGGCA TGGACGAGAG GATCCAGGAG
    AAGAGTGCCA ACCATGGAGC AGGAGAGGAA GTGCAGTATG ATCAAGGGAA ATCAGTGGAG
    AACGGTTTAG TGGAAGGAGA CAGATTCACA AATGACTCCT CTTCACTGGG GGGTGACATA
    GAAAGCCAAA GTGCCGGAAG TCCAGCTGTC TCTGAATCTA CCTCTTCCAT GCAAGCTCCG
    TCACCCTCTA ATGGTATATT CCAACAACAA AAGTCTCCTA GTATGGAAGA TAGGCAGCAA
    AGGGCATTGT CATTGGAGCA CATTAGTGCA AGTCTCATGC ATTCTAATTC TGCCAGTCCT
    GGAGCTCTGG ATCTTACTTC AGTTAACTCA TCTAAAGATC CTATTAGCAT GCTTTTCCCC
    TTCCGTGAGC GAGGCACCTT GAAAAATACA GCATGTGATA TCTGTGGCAA GACGTTTGCC
    TGCCAGAGTG CCTTGGACAT CCATTACCGT AGCCATACCA AAGAGAGACC ATTTATTTGC
    ACAGTATGCA ACCGGGGCTT TTCCACCAAG GGGAACTTAA AGCAACATAT GCTGACTCAC
    CAGATGCGAG ATTTGCCCTC CCAACTCTTT GAGCCCAACA CCAGTCTTGC CTCCAGTCTT
    GCCTCTAGCC CAACTCCTTC CCTTCTGTCT GTTGGACCCT TGTCCTCTAT GATGAAAACT
    GAGGTCAATG GCTTTCTGCA TGGTCTTCAA CCTGAAGTAA AAGACTTGCC CCCGGCACTG
    GTGACCTCTT CTGCTTCCAC TTCTCCAGTA CTTTCAGCCG CTCCACCACG TAGGACGCCT
    AAGCAGCACT TCTGCACCAC TTGTGGGAAG ACTTTTTCCT CCTCCAGTGC TCTGCAAATC
    CATGAGAGAA CCCATACGGG AGAGAAGCCC TTTGCCTGCA CTATATGTGG GCGAGCATTT
    ACCACAAAAG GAAATCTCAA GGTGCATATG GGTACCCACA TGTGGAACAG TGCTCCTGCA
    CGGCGGGGTC GCAGACTTTC AGTAGATGGT CCCATGGCTT TCCTGGGCAC CAACCCTGTT
    AAGTTTCCTG AGCTCTTCCA AAAGGACCTA TCCAGCAGGG CTGGAAACGG AGACCCAACC
    AGCTTCTGGA ATCAGTATGC TGCTGCTTTC TCTAATGGCC TCGCCATGAA AACCAACGAG
    ATCTCAGTGA TCCAAAATGG AGGCCTGCCC CCTCCACTGT CAGGGAGTGT GGGCAATGGG
    GGCAGTTCTC CGATCGGAGG CTTGACAGGC AGCATGGAAA AGCTGCATAA CTCTGAGCCC
    AATCCTGCTC TGGCTGGCCT AGAGAAAATG GCCAACACTG AAAACGGGAC TCACTTCCGC
    TTCACACGCT TCATGGAGGA CAAGGAGATA GTGACCAACT AG

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

    RefSeq NP_001139486.1
    CDS30..3971
    Translation

    Target ORF information:

    RefSeq Version NM_001146014.1
    Organism Danio rerio(zebrafish)
    Definition Danio rerio spalt-like transcription factor 1a (sall1a), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001146014.1

    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
    ATGTCGCGGA GGAAACAAGC GAAGCCGCAG CATTTCCAGT CCGACTCGCA GCTGGTCCTA 
    GCCGAGCACA ATGGGGACAC AGAGACCAAC CCGGACGACT CCCCCTGTAA AGACTCGGGT
    GCCCATGTCT GCAGCAGATG TTGCGCAGAG TTCTTTGAAC TATCGGATCT TGAACAACAC
    CAGAAGAATT GCACTAAGAA TCAATTAGTT CTAATTGTGA ATGAAAATCC AGTGTCTCCT
    TCCGGAACCT TCTCCCCAGG CTCCTCTCCT CATAATCCTG ATGAGCAGAT GAATGATACA
    ACTAATAACA CAGATCAAGC AGAGTTGACT GACCTTTTGG AGCAAAACAT ACTTGACAAA
    GAGGAGGCCA TGGACACAGA GATGTCAGGA GTCTCTGCAC CACACAATGA TGGAAATGGT
    CGTATGGCAG GTAGCAGCCC ACTCAGTGGT GTTGGAACTG GCCATGGAAC GCTGGGAAGC
    ACTGGGTCCA ATCTGGGGAG CTCTGTCATC TCTGCCTCAC TACCTCAGCT GGGTAACTTG
    ACTGAGCTGG GCAATTTTTC CATGATCAAC AGCAATGTCA TTATTGAAAA CCTACAGAGC
    ACCAAAGTGG CTGTGGCCCA ATTTTCTCAA GAAACCAGAG CAACAGGGGG GCAAAGGGTG
    GCTGTGCCAG CCCTCATGGA GCAGCTCTTG GCCCTGCAGC AGCAGCAGAT TCACCAGCTA
    CAGCTCATAG AGCAGATTCG TCACCAGATT CTTCTGTTAG CCTCACAGTC ACCTGAGCTC
    CAAGCACCCC CTAGTTCTTC CCCAGTGACC TTAGGTTCAG GTACTAGCCC ACTAACCACT
    CTTAGTTCCC ATTTGTCTCA GCAGTTGGCA GCTGCCGCAG GGTTAGCACA GAGCATAGCT
    AGCCAGTCTG CGAGCATTAG CAGTTTGAAA CAGATGGCTA ATGTTGCGCA GCTACCTCAG
    AGCAATTCCA GTGTGGGAGA GTCATCTCAA AGCCTTGCAG CACCAGGGCC TGCTCCAGTT
    AATGCCCAAC CTTTAGAAAA GAGGCCAGGC AATGCAGGAA GCTTGCATCC TCCATTAGGA
    AACCCATCAC TTGCAAAGTC ATCCACACCA GCCTTTGCAA TGGGAAACCT TTTGAATCCT
    GTGGCTAATA CCCTTCTACC TCAGCCCCCG CCAGGCAACC CAATATTTTC CAGTGCACTG
    CCGAGCGTCG GTTCCACAGT TGAGGATCTC AATTCACTGG CTGCACTGGC TCAACAAAGA
    AAAGGCAAGC CACCCAATGT TTCTTCTTTT GAACCGAAGA GTAGCTCTGA GGACACATTT
    TTCAAGCATA AATGCAGGTT TTGTGGCAAG GTGTTTGGTA GTGACAGTGC ACTGCAGATT
    CACTTACGTT CTCATACAGG TGAAAGGCCA TACAAATGCA ACATATGTGG CAACCGCTTT
    TCCACTCGTG GTAACTTAAA GGTTCATTTT CAGCGTCATA AAGAGAAGTA TCCACACATT
    CAGATGAACC CATACCCTGT CCCAGAGCAT CTAGACAATA TTCCAACAAG TACTGGCATT
    CCCTATGGTA TGTCTATGCC CCCTGAAAAA CCAGTGACCA GCTGGTTGGA TAGTAAACCT
    GTTCTGTCCA CTCTGACATC CTCTGTTGGC ATGTTACTTC CACCAACTAT ACCAAGTCTG
    CCTCCATTCA TAAAAAAGGA AGAGAATAAC TCACTGGCTA TAAGCAGCCC TTCTCATTCT
    GCTAAAAGCG ACTCAGGTCC TGCTGACACA CCCATGAAGA ATACAGATAG TGTGTTGGAG
    GAAGGTGAGA GCACAACCCT GCCTACCTCA AACGGAAAAG CTGAAGAAAA CAACCAGTCC
    TCCAATTTAT TATCTAACAT GAGCTCTGCG GTGGAGGGTA CAATAGAGTA CACCACCTCC
    AACAGTCCTC CGATGGCCAC TAACCCACTC ATGCCTCTGA TGTCAGAACA GTTCAAAGCT
    AAATTTCCTT TTGGGGGTCT TCTCGATCCT CTCCAAGGCT CAGAAACATC AAAACTTCAG
    CAACTTGTTG AGAACATAGA CAGGAAGGTG GCAGATCCCA ATGAGTGTGT TATCTGTCAT
    CGTATTCTTA GTTGCCAGAG TGCACTGAAA ATGCACTACC GCACGCACAC AGGGGAGAGG
    CCTTTCAAAT GTAAAGTGTG TGGTCGTGCC TTCACCACCA AGGGCAACCT CAAGACTCAT
    TACAGTGTCC ATCGAGCTAT GCCGCCACTG AGAGTCCAGC ATTCATGTCC TATTTGCCAG
    AAGAAGTTCA CAAATGCTGT GGTGTTGCAG CAGCACATTC GCATGCACAT GGGTGGCCAG
    ATCCCCAACA CCCCACTTCC TGACAATTAT CCAGAATCCA TGGGATCCGA TGCTGGATCT
    TTTGATGAGA GAAACATTGA TGATCTTGAC AACTTCTCTG ATGACAACAT GGAAGGAATT
    GAGGATGGAC CAGACAGCAG CATTCCAGAC ACACCAAAGT CAGTTGATGC ATCTCAAGAC
    AGCCTCTGTT CATCTCCTAC TCTACATGAG TCATTTGGCA TGGACGAGAG GATCCAGGAG
    AAGAGTGCCA ACCATGGAGC AGGAGAGGAA GTGCAGTATG ATCAAGGGAA ATCAGTGGAG
    AACGGTTTAG TGGAAGGAGA CAGATTCACA AATGACTCCT CTTCACTGGG GGGTGACATA
    GAAAGCCAAA GTGCCGGAAG TCCAGCTGTC TCTGAATCTA CCTCTTCCAT GCAAGCTCCG
    TCACCCTCTA ATGGTATATT CCAACAACAA AAGTCTCCTA GTATGGAAGA TAGGCAGCAA
    AGGGCATTGT CATTGGAGCA CATTAGTGCA AGTCTCATGC ATTCTAATTC TGCCAGTCCT
    GGAGCTCTGG ATCTTACTTC AGTTAACTCA TCTAAAGATC CTATTAGCAT GCTTTTCCCC
    TTCCGTGAGC GAGGCACCTT GAAAAATACA GCATGTGATA TCTGTGGCAA GACGTTTGCC
    TGCCAGAGTG CCTTGGACAT CCATTACCGT AGCCATACCA AAGAGAGACC ATTTATTTGC
    ACAGTATGCA ACCGGGGCTT TTCCACCAAG GGGAACTTAA AGCAACATAT GCTGACTCAC
    CAGATGCGAG ATTTGCCCTC CCAACTCTTT GAGCCCAACA CCAGTCTTGC CTCCAGTCTT
    GCCTCTAGCC CAACTCCTTC CCTTCTGTCT GTTGGACCCT TGTCCTCTAT GATGAAAACT
    GAGGTCAATG GCTTTCTGCA TGGTCTTCAA CCTGAAGTAA AAGACTTGCC CCCGGCACTG
    GTGACCTCTT CTGCTTCCAC TTCTCCAGTA CTTTCAGCCG CTCCACCACG TAGGACGCCT
    AAGCAGCACT TCTGCACCAC TTGTGGGAAG ACTTTTTCCT CCTCCAGTGC TCTGCAAATC
    CATGAGAGAA CCCATACGGG AGAGAAGCCC TTTGCCTGCA CTATATGTGG GCGAGCATTT
    ACCACAAAAG GAAATCTCAA GGTGCATATG GGTACCCACA TGTGGAACAG TGCTCCTGCA
    CGGCGGGGTC GCAGACTTTC AGTAGATGGT CCCATGGCTT TCCTGGGCAC CAACCCTGTT
    AAGTTTCCTG AGCTCTTCCA AAAGGACCTA TCCAGCAGGG CTGGAAACGG AGACCCAACC
    AGCTTCTGGA ATCAGTATGC TGCTGCTTTC TCTAATGGCC TCGCCATGAA AACCAACGAG
    ATCTCAGTGA TCCAAAATGG AGGCCTGCCC CCTCCACTGT CAGGGAGTGT GGGCAATGGG
    GGCAGTTCTC CGATCGGAGG CTTGACAGGC AGCATGGAAA AGCTGCATAA CTCTGAGCCC
    AATCCTGCTC TGGCTGGCCT AGAGAAAATG GCCAACACTG AAAACGGGAC TCACTTCCGC
    TTCACACGCT TCATGGAGGA CAAGGAGATA GTGACCAACT AG

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