BCIN_04g00980 cDNA ORF clone, Botrytis cinerea B05.10

The following BCIN_04g00980 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the BCIN_04g00980 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
OBc18456 XM_024692356.1
Latest version!
Botrytis cinerea B05.10 hypothetical protein (BCIN_04g00980), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OBc05129 XM_001554344.1
Latest version!
Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_06982) partial mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $510.30
$729.00

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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 OBc18456
    Clone ID Related Accession (Same CDS sequence) XM_024692356.1
    Accession Version XM_024692356.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2997bp)
    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 2018-04-16
    Organism Botrytis cinerea B05.10
    Product hypothetical 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 (NC_037313).

    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
    ATGCGTCTCC TACAGTATAG CGACACTGGT AGATTCACCC TCACTAAAGA CTTTATTGGC 
    GACGATCAAA TCCCTCCTTA TGCTATACTA TCGCATACAT GGGGACCAAA TGATGAGGAA
    GTAACCTTTG AGGATATCCT AAATGGTACT GGCGAGGCCA AGCCTGGCTA TGAGAAAATC
    CGCTTCTGTG GAGAACAAGC TAAACAAAAT GGTCTGCTAT ACTTTTGGAT TGACACTTGC
    TGTATCAACA AGAGTAACGA TGCCGAACTC TCACGATCTA TCAACTATAT GTTTCGCTGG
    TACCGCAATG CAGCTCGATG TTATGTTTAT TTGTCGGATG TCTCTGGATG TTCCGTCAGC
    GGTAACCACA AGTGCATTTC GCGGCTATGG GAATCGGATT TCCGGAAAAG CAAATGGTTC
    ACTCGGGGCT GGACACTTCA AGAGCTTCTT GCCCCGGTAT TGGTCGAGTT TTTTTCTCGA
    GAACGTGGGC GACTGGGTGA TAAGAGTTCT TTAATAATAC AAATTAGTGA AATAACTAAT
    ATTCCTCGCA CAGCGCTTGA GGGACAACCT TTATCTCAAT TTAGTGTCGA GGAGCGTTTG
    CAGTGGATAC AACACCGTCA GACCACGCTG GAAGAAGATA AAGCGTATTC CTTACTAGGA
    ATTTTCGATG TTTATATACT CCCTATCTAC AAAGAAGGAC TAGCAAGTGC GCATGCTCGG
    CTCCTAGATG AGTTCTACAA AAAGCAGAAA TGCATCCAAG ACTTACGTCT TTCTGATCCG
    CGCGACGACA AGAAGCGTAT CGAGGATACC AAAGGTGGTT TACTAGAGGG CTTATACGAC
    TGGATCCTAG GAAACCCGGA CTTCCAAAAA TGGCGCAAAG ACCAACAAAG CCGGCTGCTT
    TGGATCAAGG GCGATCCTGG TAAGGGCAAG ACGATGCTAC TCTGCGGAGT TATTAACGAG
    CTAGAGAAGT CCAAAGCCAA GTCGGTTCTT CTATCGCACT TTTTCTGCCA GGCCACGGAC
    TCCCGGATTA ATTACGCTAC AGCCGTACTG CGGGGTCTGA TCTATTTGCT TGTTGACCAA
    CAGCGGTCTC TCATCTCGCA TATACGGACA AAGTACGATG AGAGTGGCAA ATCGCTTTTC
    GAGGATGCAA ATGCATGGGT TGTGCTCTCC AAGATCTTCA TTGATGTTTT GCAAGACCCG
    AGCTTAGATT TTGTGTACTT AATAGTCGAT GCGCTCGACG AATGCGTAGT GGATTTGCCA
    AAATTGATGG ACCTCATCGT GCAGACTTCA TCAATATCTC CTCGCATTAA GTGGGTTGTC
    TCTAGCCGCA ACTGGCCAAA TATCGAGAAG GCTCTCGACA CTGCAACACA GAAGCTAAGG
    CTTTGTCTCG AGCTCAATGA AAAATCCATC TCTGCCGCTG TTGCGTCATT TATCCAGCTC
    AAAGTGAATC GGCTAGCGAC ACGAAACAAA TACAGCAACG ATACACGGGA AGCAATCCAG
    CAGCATTTAA CAATAAACGC AAACGGTACT TTTCTTTGGG TAGCTTTGAT CTGCCAAGAG
    CTGTCTAATA TTCCGAGATG GAAGGCTCTG CAGAAGTTGA CAGCATTCCC ACCTGGACTC
    GATGCTCTCT ACCGGCGAAT GTTAGACCAA ATCACGGATT CAGAAGATGC TGAACTCTGT
    ATAAGCATAC TGGCTGTCGT TTCGGCTGTA TATAGACCTG TTACATTAGA CGAGCTAGTA
    GCTTTGGTGG ACATGCCTGA CGGAGTTGCT AGCGATTATG AAGCTCTATC AGAGATTATA
    GGTTCTTGTG GCTCTTTTCT AACGCTTCGA GAACGTACAA TCTTCTTTGT CCATCAATCT
    GCTAAAGATT TTTTGATTAA AAAGGCATCT AAAGATATAT TTCTTCCTAC AAAGGAAAAT
    GTGCATAGCA GGATCTTCTC GCGATCGTTA CAAGCCATGT CACCTATACT TCGACGTGAC
    ATCTACAACC TACGTGCTCC TGGAATCTCT ATCGACCAAA TCAAGCCGCC TGTTCCAGAT
    ACACTAGCCA CAGTACGCTA TTCCTGTCTC TATTGGGTTG ACCATCTGTT CGAATGTGAT
    GCTGAAGGCA TCATTTATAA CAACCTTAAG GACAACGGCT CAGTTCATAA TTTTTTACGT
    CAGAGCTTCC TTTGCTGGTT CGAAGCGCTT AGTCTGATGA GATGCTTGCC AAACGGTATA
    GTAATTATTA GAAAGCTCGA GGGTTGGGTA CAGGCCAATA AAAGTCCCAA TCTATATGGA
    TTCATACATG ATGCAAAGAG GTTTGCACTC TACAGCCGAT CAGTCATTGA GCAAGCGCCT
    CTTCAATCCT ATTGTTCGGC CCTTGTCTTC GCCCCCCAGA AGAGTATTAT CCGAACAACA
    TTTGAGAAGT GTATTCCTCC TTGGATTCAG AAAAAGCCCA TAGTAGAACC ATATTGGAAC
    GCGATGTTAC AAACACTCGA GGGTCATGCC AGCTCAGTCA ACTCAGTAGC TTTCTCGCCT
    GACGGCAAGC AGGTCGTATC TGGATCCGAC GATAATACAG TACGACTCTG GGATACAGCG
    ACAGGACAGC AAATCCAGCC AACGCTCGAG GACCATACAG ATTCAGTCAG GTCAGTAGCT
    TTCTCGCCTG ACGGCAAGCA GATCGTATCT GGATCCGACG ATAAGACAGT ACGACTCTGG
    GATACAGCGA CAGGACAGCA GATCCAGCCA ACGCTCGGGG GCCATACAAA TTCAGTCAAC
    TCAGTAGCTT TCTCACCTGA TGGCAAGAAG GTGGTGCCTG AGTCACATAA TCAGATGTTG
    TTACATACTC TAGCTGTATC AAACGACTGG ATTATTGAAG ATGGTGCAAA TATTCTCTGG
    CTACCATTCA ACTATCGCAC AGCAGTTACC GCTATTTATC GTGGAACTAT TGTTTTAGCT
    CAATTCTCTG GGAGAATGTT CTTTTTTGAA CTTACAAATG AATCAAAGTT TCTATAA

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

    RefSeq XP_024548131.1
    CDS205..3201
    Translation

    Target ORF information:

    RefSeq Version XM_024692356.1
    Organism Botrytis cinerea B05.10
    Definition Botrytis cinerea B05.10 hypothetical protein (BCIN_04g00980), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_024692356.1

    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
    ATGCGTCTCC TACAGTATAG CGACACTGGT AGATTCACCC TCACTAAAGA CTTTATTGGC 
    GACGATCAAA TCCCTCCTTA TGCTATACTA TCGCATACAT GGGGACCAAA TGATGAGGAA
    GTAACCTTTG AGGATATCCT AAATGGTACT GGCGAGGCCA AGCCTGGCTA TGAGAAAATC
    CGCTTCTGTG GAGAACAAGC TAAACAAAAT GGTCTGCTAT ACTTTTGGAT TGACACTTGC
    TGTATCAACA AGAGTAACGA TGCCGAACTC TCACGATCTA TCAACTATAT GTTTCGCTGG
    TACCGCAATG CAGCTCGATG TTATGTTTAT TTGTCGGATG TCTCTGGATG TTCCGTCAGC
    GGTAACCACA AGTGCATTTC GCGGCTATGG GAATCGGATT TCCGGAAAAG CAAATGGTTC
    ACTCGGGGCT GGACACTTCA AGAGCTTCTT GCCCCGGTAT TGGTCGAGTT TTTTTCTCGA
    GAACGTGGGC GACTGGGTGA TAAGAGTTCT TTAATAATAC AAATTAGTGA AATAACTAAT
    ATTCCTCGCA CAGCGCTTGA GGGACAACCT TTATCTCAAT TTAGTGTCGA GGAGCGTTTG
    CAGTGGATAC AACACCGTCA GACCACGCTG GAAGAAGATA AAGCGTATTC CTTACTAGGA
    ATTTTCGATG TTTATATACT CCCTATCTAC AAAGAAGGAC TAGCAAGTGC GCATGCTCGG
    CTCCTAGATG AGTTCTACAA AAAGCAGAAA TGCATCCAAG ACTTACGTCT TTCTGATCCG
    CGCGACGACA AGAAGCGTAT CGAGGATACC AAAGGTGGTT TACTAGAGGG CTTATACGAC
    TGGATCCTAG GAAACCCGGA CTTCCAAAAA TGGCGCAAAG ACCAACAAAG CCGGCTGCTT
    TGGATCAAGG GCGATCCTGG TAAGGGCAAG ACGATGCTAC TCTGCGGAGT TATTAACGAG
    CTAGAGAAGT CCAAAGCCAA GTCGGTTCTT CTATCGCACT TTTTCTGCCA GGCCACGGAC
    TCCCGGATTA ATTACGCTAC AGCCGTACTG CGGGGTCTGA TCTATTTGCT TGTTGACCAA
    CAGCGGTCTC TCATCTCGCA TATACGGACA AAGTACGATG AGAGTGGCAA ATCGCTTTTC
    GAGGATGCAA ATGCATGGGT TGTGCTCTCC AAGATCTTCA TTGATGTTTT GCAAGACCCG
    AGCTTAGATT TTGTGTACTT AATAGTCGAT GCGCTCGACG AATGCGTAGT GGATTTGCCA
    AAATTGATGG ACCTCATCGT GCAGACTTCA TCAATATCTC CTCGCATTAA GTGGGTTGTC
    TCTAGCCGCA ACTGGCCAAA TATCGAGAAG GCTCTCGACA CTGCAACACA GAAGCTAAGG
    CTTTGTCTCG AGCTCAATGA AAAATCCATC TCTGCCGCTG TTGCGTCATT TATCCAGCTC
    AAAGTGAATC GGCTAGCGAC ACGAAACAAA TACAGCAACG ATACACGGGA AGCAATCCAG
    CAGCATTTAA CAATAAACGC AAACGGTACT TTTCTTTGGG TAGCTTTGAT CTGCCAAGAG
    CTGTCTAATA TTCCGAGATG GAAGGCTCTG CAGAAGTTGA CAGCATTCCC ACCTGGACTC
    GATGCTCTCT ACCGGCGAAT GTTAGACCAA ATCACGGATT CAGAAGATGC TGAACTCTGT
    ATAAGCATAC TGGCTGTCGT TTCGGCTGTA TATAGACCTG TTACATTAGA CGAGCTAGTA
    GCTTTGGTGG ACATGCCTGA CGGAGTTGCT AGCGATTATG AAGCTCTATC AGAGATTATA
    GGTTCTTGTG GCTCTTTTCT AACGCTTCGA GAACGTACAA TCTTCTTTGT CCATCAATCT
    GCTAAAGATT TTTTGATTAA AAAGGCATCT AAAGATATAT TTCTTCCTAC AAAGGAAAAT
    GTGCATAGCA GGATCTTCTC GCGATCGTTA CAAGCCATGT CACCTATACT TCGACGTGAC
    ATCTACAACC TACGTGCTCC TGGAATCTCT ATCGACCAAA TCAAGCCGCC TGTTCCAGAT
    ACACTAGCCA CAGTACGCTA TTCCTGTCTC TATTGGGTTG ACCATCTGTT CGAATGTGAT
    GCTGAAGGCA TCATTTATAA CAACCTTAAG GACAACGGCT CAGTTCATAA TTTTTTACGT
    CAGAGCTTCC TTTGCTGGTT CGAAGCGCTT AGTCTGATGA GATGCTTGCC AAACGGTATA
    GTAATTATTA GAAAGCTCGA GGGTTGGGTA CAGGCCAATA AAAGTCCCAA TCTATATGGA
    TTCATACATG ATGCAAAGAG GTTTGCACTC TACAGCCGAT CAGTCATTGA GCAAGCGCCT
    CTTCAATCCT ATTGTTCGGC CCTTGTCTTC GCCCCCCAGA AGAGTATTAT CCGAACAACA
    TTTGAGAAGT GTATTCCTCC TTGGATTCAG AAAAAGCCCA TAGTAGAACC ATATTGGAAC
    GCGATGTTAC AAACACTCGA GGGTCATGCC AGCTCAGTCA ACTCAGTAGC TTTCTCGCCT
    GACGGCAAGC AGGTCGTATC TGGATCCGAC GATAATACAG TACGACTCTG GGATACAGCG
    ACAGGACAGC AAATCCAGCC AACGCTCGAG GACCATACAG ATTCAGTCAG GTCAGTAGCT
    TTCTCGCCTG ACGGCAAGCA GATCGTATCT GGATCCGACG ATAAGACAGT ACGACTCTGG
    GATACAGCGA CAGGACAGCA GATCCAGCCA ACGCTCGGGG GCCATACAAA TTCAGTCAAC
    TCAGTAGCTT TCTCACCTGA TGGCAAGAAG GTGGTGCCTG AGTCACATAA TCAGATGTTG
    TTACATACTC TAGCTGTATC AAACGACTGG ATTATTGAAG ATGGTGCAAA TATTCTCTGG
    CTACCATTCA ACTATCGCAC AGCAGTTACC GCTATTTATC GTGGAACTAT TGTTTTAGCT
    CAATTCTCTG GGAGAATGTT CTTTTTTGAA CTTACAAATG AATCAAAGTT TCTATAA

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

    CloneID OBc05129
    Clone ID Related Accession (Same CDS sequence) XM_001554344.1
    Accession Version XM_001554344.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2796bp)
    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 2008-02-25
    Organism Botrytis cinerea B05.10
    Product hypothetical 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_001814535). COMPLETENESS: incomplete on both ends.

    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
    ATGCGTCTCC TACAGTATAG CGACACTGGT AGATTCACCC TCACTAAAGA CTTTATTGGC 
    GACGATCAAA TCCCTCCTTA TGCTATACTA TCGCATACAT GGGGACCAAA TGATGAGGAA
    GTAACCTTTG AGGATATCCT AAATGGTACT GGCGAGGCCA AGCCTGGCTA TGAGAAAATC
    CGCTTCTGTG GAGAACAAGC TAAACAAAAT GGTCTGCTAT ACTTTTGGAT TGACACTTGC
    TGTATCAACA AGAGTAACGA TGCCGAACTC TCACGATCTA TCAACTATAT GTTTCGCTGG
    TACCGCAATG CAGCTCGATG TTATGTTTAT TTGTCGGATG TCTCTGGATG TTCCGTCAGC
    GGTAACCACA AGTGCATTTC GCGGCTATGG GAATCGGATT TCCGGAAAAG CAAATGGTTC
    ACTCGGGGCT GGACACTTCA AGAGCTTCTT GCCCCGGTAT TGGTCGAGTT TTTTTCTCGA
    GAACGTGGGC GACTGGGTGA TAAGAGTTCT TTAATAATAC AAATTAGTGA AATAACTAAT
    ATTCCTCGCA CAGCGCTTGA GGGACAACCT TTATCTCAAT TTAGTGTCGA GGAGCGTTTG
    CAGTGGATAC AACACCGTCA GACCACGCTG GAAGAAGATA AAGCGTATTC CTTACTAGGA
    ATTTTCGATG TTTATATACT CCCTATCTAC AAAGAAGGAC TAGCAAGTGC GCATGCTCGG
    CTCCTAGATG AGTTCTACAA AAAGCAGAAA TGCATCCAAG ACTTACGTCT TTCTGATCCG
    CGCGACGACA AGAAGCGTAT CGAGGATACC AAAGGTGGTT TACTAGAGGG CTTATACGAC
    TGGATCCTAG GAAACCCGGA CTTCCAAAAA TGGCGCAAAG ACCAACAAAG CCGGCTGCTT
    TGGATCAAGG GCGATCCTGG TAAGGGCAAG ACGATGCTAC TCTGCGGAGT TATTAACGAG
    CTAGAGAAGT CCAAAGCCAA GTCGGTTCTT CTATCGCACT TTTTCTGCCA GGCCACGGAC
    TCCCGGATTA ATTACGCTAC AGCCGTACTG CGGGGTCTGA TCTATTTGCT TGTTGACCAA
    CAGCGGTCTC TCATCTCGCA TATACGGACA AAGTACGATG AGAGTGGCAA ATCGCTTTTC
    GAGGATGCAA ATGCATGGGT TGTGCTCTCC AAGATCTTCA TTGATGTTTT GCAAGACCCG
    AGCTTAGATT TTGTGTACTT AATAGTCGAT GCGCTCGACG AATGCGTAGT GGATTTGCCA
    AAATTGATGG ACCTCATCGT GCAGACTTCA TCAATATCTC CTCGCATTAA GTGGGTTGTC
    TCTAGCCGCA ACTGGCCAAA TATCGAGAAG GCTCTCGACA CTGCAACACA GAAGCTAAGG
    CTTTGTCTCG AGCTCAATGA AAAATCCATC TCTGCCGCTG TTGCGTCATT TATCCAGCTC
    AAAGTGAATC GGCTAGCGAC ACGAAACAAA TACAGCAACG ATACACGGGA AGCAATCCAG
    CAGCATTTAA CAATAAACGC AAACGGTACT TTTCTTTGGG TAGCTTTGAT CTGCCAAGAG
    CTGTCTAATA TTCCGAGATG GAAGGCTCTG CAGAAGTTGA CAGCATTCCC ACCTGGACTC
    GATGCTCTCT ACCGGCGAAT GTTAGACCAA ATCACGGATT CAGAAGATGC TGAACTCTGT
    ATAAGCATAC TGGCTGTCGT TTCGGCTGTA TATAGACCTG TTACATTAGA CGAGCTAGTA
    GCTTTGGTGG ACATGCCTGA CGGAGTTGCT AGCGATTATG AAGCTCTATC AGAGATTATA
    GGTTCTTGTG GCTCTTTTCT AACGCTTCGA GAACGTACAA TCTTCTTTGT CCATCAATCT
    GCTAAAGATT TTTTGATTAA AAAGGCATCT AAAGATATAT TTCTTCCTAC AAAGGAAAAT
    GTGCATAGCA GGATCTTCTC GCGATCGTTA CAAGCCATGT CACCTATACT TCGACGTGAC
    ATCTACAACC TACGTGCTCC TGGAATCTCT ATCGACCAAA TCAAGCCGCC TGTTCCAGAT
    ACACTAGCCA CAGCCAATAA AAGTCCCAAT CTATATGGAT TCATACATGA TGCAAAGAGG
    TTTGCACTCT ACAGCCGATC AGTCATTGAG CAAGCGCCTC TTCAATCCTA TTGTTCGGCC
    CTTGTCTTCG CCCCCCAGAA GAGTATTATC CGAACAACAT TTGAGAAGTG TATTCCTCCT
    TGGATTCAGA AAAAGCCCAT AGTAGAACCA TATTGGAACG CGATGTTACA AACACTCGAG
    GGTCATGCCA GCTCAGTCAA CTCAGTAGCT TTCTCGCCTG ACGGCAAGCA GGTCGTATCT
    GGATCCGACG ATAATACAGT ACGACTCTGG GATACAGCGA CAGGACAGCA AATCCAGCCA
    ACGCTCGAGG ACCATACAGA TTCAGTCAGG TCAGTAGCTT TCTCGCCTGA CGGCAAGCAG
    ATCGTATCTG GATCCGACGA TAAGACAGTA CGACTCTGGG ATACAGCGAC AGGACAGCAG
    ATCCAGCCAA CGCTCGGGGG CCATACAAAT TCAGTCAACT CAGTAGCTTT CTCACCTGAT
    GGCAAGAAGG TGGTGCCTGA GTCACATAAT CAGATGTTGT TACATACTCT AGCTGTATCA
    AACGACTGGA TTATTGAAGA TGGTGCAAAT ATTCTCTGGC TACCATTCAA CTATCGCACA
    GCAGTTACCG CTATTTATCG TGGAACTATT GTTTTAGCTC AATTCTCTGG GAGAATGTTC
    TTTTTTGAAC TTACAAATGA ATCAAAGTTT CTATAA

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

    RefSeq XP_001554394.1
    CDS1..2796
    Translation

    Target ORF information:

    RefSeq Version XM_001554344.1
    Organism Botrytis cinerea B05.10
    Definition Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_06982) partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001554344.1

    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
    ATGCGTCTCC TACAGTATAG CGACACTGGT AGATTCACCC TCACTAAAGA CTTTATTGGC 
    GACGATCAAA TCCCTCCTTA TGCTATACTA TCGCATACAT GGGGACCAAA TGATGAGGAA
    GTAACCTTTG AGGATATCCT AAATGGTACT GGCGAGGCCA AGCCTGGCTA TGAGAAAATC
    CGCTTCTGTG GAGAACAAGC TAAACAAAAT GGTCTGCTAT ACTTTTGGAT TGACACTTGC
    TGTATCAACA AGAGTAACGA TGCCGAACTC TCACGATCTA TCAACTATAT GTTTCGCTGG
    TACCGCAATG CAGCTCGATG TTATGTTTAT TTGTCGGATG TCTCTGGATG TTCCGTCAGC
    GGTAACCACA AGTGCATTTC GCGGCTATGG GAATCGGATT TCCGGAAAAG CAAATGGTTC
    ACTCGGGGCT GGACACTTCA AGAGCTTCTT GCCCCGGTAT TGGTCGAGTT TTTTTCTCGA
    GAACGTGGGC GACTGGGTGA TAAGAGTTCT TTAATAATAC AAATTAGTGA AATAACTAAT
    ATTCCTCGCA CAGCGCTTGA GGGACAACCT TTATCTCAAT TTAGTGTCGA GGAGCGTTTG
    CAGTGGATAC AACACCGTCA GACCACGCTG GAAGAAGATA AAGCGTATTC CTTACTAGGA
    ATTTTCGATG TTTATATACT CCCTATCTAC AAAGAAGGAC TAGCAAGTGC GCATGCTCGG
    CTCCTAGATG AGTTCTACAA AAAGCAGAAA TGCATCCAAG ACTTACGTCT TTCTGATCCG
    CGCGACGACA AGAAGCGTAT CGAGGATACC AAAGGTGGTT TACTAGAGGG CTTATACGAC
    TGGATCCTAG GAAACCCGGA CTTCCAAAAA TGGCGCAAAG ACCAACAAAG CCGGCTGCTT
    TGGATCAAGG GCGATCCTGG TAAGGGCAAG ACGATGCTAC TCTGCGGAGT TATTAACGAG
    CTAGAGAAGT CCAAAGCCAA GTCGGTTCTT CTATCGCACT TTTTCTGCCA GGCCACGGAC
    TCCCGGATTA ATTACGCTAC AGCCGTACTG CGGGGTCTGA TCTATTTGCT TGTTGACCAA
    CAGCGGTCTC TCATCTCGCA TATACGGACA AAGTACGATG AGAGTGGCAA ATCGCTTTTC
    GAGGATGCAA ATGCATGGGT TGTGCTCTCC AAGATCTTCA TTGATGTTTT GCAAGACCCG
    AGCTTAGATT TTGTGTACTT AATAGTCGAT GCGCTCGACG AATGCGTAGT GGATTTGCCA
    AAATTGATGG ACCTCATCGT GCAGACTTCA TCAATATCTC CTCGCATTAA GTGGGTTGTC
    TCTAGCCGCA ACTGGCCAAA TATCGAGAAG GCTCTCGACA CTGCAACACA GAAGCTAAGG
    CTTTGTCTCG AGCTCAATGA AAAATCCATC TCTGCCGCTG TTGCGTCATT TATCCAGCTC
    AAAGTGAATC GGCTAGCGAC ACGAAACAAA TACAGCAACG ATACACGGGA AGCAATCCAG
    CAGCATTTAA CAATAAACGC AAACGGTACT TTTCTTTGGG TAGCTTTGAT CTGCCAAGAG
    CTGTCTAATA TTCCGAGATG GAAGGCTCTG CAGAAGTTGA CAGCATTCCC ACCTGGACTC
    GATGCTCTCT ACCGGCGAAT GTTAGACCAA ATCACGGATT CAGAAGATGC TGAACTCTGT
    ATAAGCATAC TGGCTGTCGT TTCGGCTGTA TATAGACCTG TTACATTAGA CGAGCTAGTA
    GCTTTGGTGG ACATGCCTGA CGGAGTTGCT AGCGATTATG AAGCTCTATC AGAGATTATA
    GGTTCTTGTG GCTCTTTTCT AACGCTTCGA GAACGTACAA TCTTCTTTGT CCATCAATCT
    GCTAAAGATT TTTTGATTAA AAAGGCATCT AAAGATATAT TTCTTCCTAC AAAGGAAAAT
    GTGCATAGCA GGATCTTCTC GCGATCGTTA CAAGCCATGT CACCTATACT TCGACGTGAC
    ATCTACAACC TACGTGCTCC TGGAATCTCT ATCGACCAAA TCAAGCCGCC TGTTCCAGAT
    ACACTAGCCA CAGCCAATAA AAGTCCCAAT CTATATGGAT TCATACATGA TGCAAAGAGG
    TTTGCACTCT ACAGCCGATC AGTCATTGAG CAAGCGCCTC TTCAATCCTA TTGTTCGGCC
    CTTGTCTTCG CCCCCCAGAA GAGTATTATC CGAACAACAT TTGAGAAGTG TATTCCTCCT
    TGGATTCAGA AAAAGCCCAT AGTAGAACCA TATTGGAACG CGATGTTACA AACACTCGAG
    GGTCATGCCA GCTCAGTCAA CTCAGTAGCT TTCTCGCCTG ACGGCAAGCA GGTCGTATCT
    GGATCCGACG ATAATACAGT ACGACTCTGG GATACAGCGA CAGGACAGCA AATCCAGCCA
    ACGCTCGAGG ACCATACAGA TTCAGTCAGG TCAGTAGCTT TCTCGCCTGA CGGCAAGCAG
    ATCGTATCTG GATCCGACGA TAAGACAGTA CGACTCTGGG ATACAGCGAC AGGACAGCAG
    ATCCAGCCAA CGCTCGGGGG CCATACAAAT TCAGTCAACT CAGTAGCTTT CTCACCTGAT
    GGCAAGAAGG TGGTGCCTGA GTCACATAAT CAGATGTTGT TACATACTCT AGCTGTATCA
    AACGACTGGA TTATTGAAGA TGGTGCAAAT ATTCTCTGGC TACCATTCAA CTATCGCACA
    GCAGTTACCG CTATTTATCG TGGAACTATT GTTTTAGCTC AATTCTCTGG GAGAATGTTC
    TTTTTTGAAC TTACAAATGA ATCAAAGTTT CTATAA

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

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    A gapless genome sequence of the fungus Botrytis cinerea.
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    Genome update of Botrytis cinerea strains B05.10 and T4.
    Eukaryotic cell11(11)1413-4(2012 Nov)
    Staats M,van Kan JA


    Genomic analysis of the necrotrophic fungal pathogens Sclerotinia sclerotiorum and Botrytis cinerea.
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