BC1G_10523 cDNA ORF clone, Botrytis cinerea B05.10

The following BC1G_10523 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the BC1G_10523 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
OBc03299 XM_001550914.1
Latest version!
Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_10523) partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OBc16432 XM_024690377.1
Latest version!
Botrytis cinerea B05.10 Bcams1 (Bcams1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OBc16433 XM_024690378.1
Latest version!
Botrytis cinerea B05.10 Bcams1 (Bcams1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00

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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 OBc03299
    Clone ID Related Accession (Same CDS sequence) XM_001550914.1
    Accession Version XM_001550914.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3144bp)
    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 1203868800000
    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_001814500). 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
    2821
    2881
    2941
    3001
    3061
    3121
    ATGGGTGGTG AAACTGTCTT AAAGCCAGAA CTCAAGAGCT CATATCCTGT TAGGTCTGAG 
    GGACCTAAGG GTAAATTGAT ATCTAATCTC TACAAAGATC GAATTGGCCA ATTCTATGCC
    GGTGGTCAAT ATGAAGGACA TAACTTACGA GCAATGTTGA ACGAAGGGGT CGCCTCTGGA
    GAACCGCACA TCAAACTATC GGTCTGGGAC GCGCCGGACC TTTCTCGACC CACTTTCAAA
    GATGCCACTA GCCATGAATT TAGATCAACA CACATTGGAG AAGCTTTTGG TCCTTCATGG
    TCAACCCATT GGTTTAAAGT ACGAATCACC GTCCCGTCGG AGTTCCTGAA AAAGGACCTA
    TTGGAGTTAC ATTGGGATGC CAACAATGAA GGAATGGTAT GGACCGAGGA CGGCAACCCT
    CTTCAGGGAT TGACCGGAGG TGGCGAGAGG GTTGAATGGG TCTTGCCGGA CACGTTCCGC
    GACGGGAAGG AACACACAAT CTACATTGAG ATGGCCTGCA ACGGGATGTT CGGTAATGCC
    CCAGGTGGCG ATTCCATTCA GCCCCCGAAC CCGAACAAAT ATTTCCAACT ATCAAAGGCC
    GAGATTGTGG CTGTAAACGT GGAAGCCCGA GCTTTATGGA TTGATATCTG GGAAATAAAT
    GATGCTGCTA GAGAATTTCC ATCGGATTCA TGGGAACAGC ATAAAGCATT GAGGGTCGCA
    AATGATATCA TTGACGCTTT CGAGTTGGGA AACCAAGATT CGATTCTTAA AGGCCGAAAA
    ATTGCACAAG AATATCTGGG TGAGAATATC AATTCATCTG CGGTTTATGA GACCGGCACA
    AAGCCTATTG TTTATGGTAT CGGTCATTGC CATATTGATA CCTGTTGGCT TTGGCCATGG
    GCCGAGACGA AAAGAAAAGT TGCTAGGTCT TGGTCAAATC AATGCGATCT TATGGATCGT
    TACCCCGAGC ATCGATTTGC TGTCTCCCAG GCTCAACAGT ATAAATGGTT GAAAGAGTAC
    TATCCATATG TGTTTGATCG AGTCAAGGAA AAGGTCAAAC AAGGAAAATT CCAACCTGTC
    GGAGGCAGCT GGGTTGAGCA TGACACTAAC CTGCCGAGTG GCGAGTCCCT CGTACGTCAA
    TTTTTGTATG GTCAAAGGTT CTTTGAAAGC AACTTCGGAG AGAGATCCAA GACATTTTGG
    TTGCCAGATA CTTTTGGTTA CTCGAGTCAA CTTCCGCAGC TTTGTCGTCT CGCAGGGATG
    AAACGGTTCT TCACTCAAAA ACTCAGCTGG AACAACATTA ACAATTTTCC TCACACCACA
    TTCAATTGGG TATCCCTAGA TGGTAGCCAG GTTATTTGTC ACATGGCACC TTCCGAGACA
    TACACTGCAA ATGCGGATTT CGGTGATGTA AGAAGATCAG TCACCCAGCA CAAATCTATG
    GACCAAGATG AGACCTCACT TCTTGTCTTT GGAAAGGGTG ATGGTGGTGG AGGACCAACG
    TGGCAGATGA TTGAGAAGCT CAGACGTCTT CGTGGAATGA GCGACACTAC TGGACTTTTG
    CCTAGAGTTC ATATGGGTGA CTCAGTTGAC GATTTCTTTG ATCGCTTGGA GGGAAGGGTA
    TCTGAGGAAC ACAAGCGAAC AACAAGCGTA GTAACAGAAA TTCCGAGAAT TATGCTACAC
    AATATTGAGC TTCTTTCACA ATCGCAAGAC ATTGACGATA TGTGGGAGGC TGTATTATTG
    TGCCAGTTCC ATGACTGCCT ACCAGGATCA TCTATTGAGA TGTGTTACGA CGACAGTGAT
    GAGCTATATG CCAAGGTATT CAAGACTGGC GAGAAGATTC TCAAAGAACT CTACCAGACT
    TTAGGTGTAG GCCAAGCCGA AGACTCATCT AGGGATGGCG ATCTTGTGGC CCTGAACACC
    ATGCCATGGC ACAGAAGAGA GATCGTGCCA CTTGGTGATA ACACTGCCGG AGTTGCTTGT
    GGACAAGGTA GCCTCTTGAA TATCAAGACT TTTAAGATTG CCGAGACACC CGAAGTTACT
    GTCAAAGAAG TCAGAGAAGG AGTTTTTGTG CTAGAAAACG AACAGCTTAA AGTCCAAGTC
    GAAGGAGGGG CAATTACCTC GCTATATGAT CTACAAGCAG ATAGAGAAGT AGTGGCCAAA
    GGTGGTAAAG CCAATCAGCT TGTCATATTT GATGATAAAC CACTTTACTG GCAAGCTTGG
    GATGTGGAGG TCTTCCACTT GGATTCTCGC AAGGAGTTGC CTGCAGGAAA TACTAAGATC
    GTGCAGAGTG ATGCCCACAG AGTCAGTGTA ATGACTGAGA CCAAGATCAG CAAAGACAGC
    TGGATAAAGA CTCACATTAG TTTGTCAGCC GCCTTCAAGG GCCAACAATC TTATGTTGAA
    ATGGAAAGCG AAGTTGAATG GAGGGAAAGT ATGAAGTTCC TCAAGGTCGA ATTTCCCGTT
    GATGTTCGAA ACACGGAGGC ATCCTACGAG ACACAATTTG GTATCGTTAA ACGACCTACT
    CACTACAATA CTACTTGGGA CATGGCCAAA TTTGAAGTAT GCTGTCATAA ATTTGCAGAT
    CTCTCAGAGA ATCAATACGG TGTTTCCATT CTGAATGATA GCAAATACGG CTTTGCTACT
    TGTGGCAATG TGATGCGTTT GTCACTTCTT CGAGCCCCCA AAGCTCCAGA TGCACATGCA
    GATATGGGTC GCCATCACAT TCGTTGGGCT ATTCTGCCTC ATCAGGGAGG CCTTGGCTCA
    ACTACCGTTC GCACGGCATT TAACTTCAAC AATCCATTAA AGCTTTGCAA GGCTTCAAAA
    GATGTTCAAA CCAACGCATT TGATAGCCCT ATCAAACTTA CGGGAGATTC GTCATTGATT
    CTAGATACTG TTAAGCGTGG TGAAGATGAC GAGGATGTCA GCCGTGGTGA ATTGGCTAAG
    AGAAAGGGCC AAAGTGTTAT CTTAAGAATC TACGATAGTC TAGGTGGAAC TAGCAAGGGA
    ACAATCGAGA CGACACTAGA TGTGAAGAGG GTTTGGAAGA CCAATGTTTT GGAGGATGAT
    GAAGAAGAGC TGAAGATTAA GGAAGGGAAA GTCGCGATCA CATTGAAGCC TTTTGAGGTT
    GGCACATTTA GATTGCAGTT GTAG

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

    RefSeq XP_001550964.1
    CDS1..3144
    Translation

    Target ORF information:

    RefSeq Version XM_001550914.1
    Organism Botrytis cinerea B05.10
    Definition Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_10523) partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001550914.1

    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
    ATGGGTGGTG AAACTGTCTT AAAGCCAGAA CTCAAGAGCT CATATCCTGT TAGGTCTGAG 
    GGACCTAAGG GTAAATTGAT ATCTAATCTC TACAAAGATC GAATTGGCCA ATTCTATGCC
    GGTGGTCAAT ATGAAGGACA TAACTTACGA GCAATGTTGA ACGAAGGGGT CGCCTCTGGA
    GAACCGCACA TCAAACTATC GGTCTGGGAC GCGCCGGACC TTTCTCGACC CACTTTCAAA
    GATGCCACTA GCCATGAATT TAGATCAACA CACATTGGAG AAGCTTTTGG TCCTTCATGG
    TCAACCCATT GGTTTAAAGT ACGAATCACC GTCCCGTCGG AGTTCCTGAA AAAGGACCTA
    TTGGAGTTAC ATTGGGATGC CAACAATGAA GGAATGGTAT GGACCGAGGA CGGCAACCCT
    CTTCAGGGAT TGACCGGAGG TGGCGAGAGG GTTGAATGGG TCTTGCCGGA CACGTTCCGC
    GACGGGAAGG AACACACAAT CTACATTGAG ATGGCCTGCA ACGGGATGTT CGGTAATGCC
    CCAGGTGGCG ATTCCATTCA GCCCCCGAAC CCGAACAAAT ATTTCCAACT ATCAAAGGCC
    GAGATTGTGG CTGTAAACGT GGAAGCCCGA GCTTTATGGA TTGATATCTG GGAAATAAAT
    GATGCTGCTA GAGAATTTCC ATCGGATTCA TGGGAACAGC ATAAAGCATT GAGGGTCGCA
    AATGATATCA TTGACGCTTT CGAGTTGGGA AACCAAGATT CGATTCTTAA AGGCCGAAAA
    ATTGCACAAG AATATCTGGG TGAGAATATC AATTCATCTG CGGTTTATGA GACCGGCACA
    AAGCCTATTG TTTATGGTAT CGGTCATTGC CATATTGATA CCTGTTGGCT TTGGCCATGG
    GCCGAGACGA AAAGAAAAGT TGCTAGGTCT TGGTCAAATC AATGCGATCT TATGGATCGT
    TACCCCGAGC ATCGATTTGC TGTCTCCCAG GCTCAACAGT ATAAATGGTT GAAAGAGTAC
    TATCCATATG TGTTTGATCG AGTCAAGGAA AAGGTCAAAC AAGGAAAATT CCAACCTGTC
    GGAGGCAGCT GGGTTGAGCA TGACACTAAC CTGCCGAGTG GCGAGTCCCT CGTACGTCAA
    TTTTTGTATG GTCAAAGGTT CTTTGAAAGC AACTTCGGAG AGAGATCCAA GACATTTTGG
    TTGCCAGATA CTTTTGGTTA CTCGAGTCAA CTTCCGCAGC TTTGTCGTCT CGCAGGGATG
    AAACGGTTCT TCACTCAAAA ACTCAGCTGG AACAACATTA ACAATTTTCC TCACACCACA
    TTCAATTGGG TATCCCTAGA TGGTAGCCAG GTTATTTGTC ACATGGCACC TTCCGAGACA
    TACACTGCAA ATGCGGATTT CGGTGATGTA AGAAGATCAG TCACCCAGCA CAAATCTATG
    GACCAAGATG AGACCTCACT TCTTGTCTTT GGAAAGGGTG ATGGTGGTGG AGGACCAACG
    TGGCAGATGA TTGAGAAGCT CAGACGTCTT CGTGGAATGA GCGACACTAC TGGACTTTTG
    CCTAGAGTTC ATATGGGTGA CTCAGTTGAC GATTTCTTTG ATCGCTTGGA GGGAAGGGTA
    TCTGAGGAAC ACAAGCGAAC AACAAGCGTA GTAACAGAAA TTCCGAGAAT TATGCTACAC
    AATATTGAGC TTCTTTCACA ATCGCAAGAC ATTGACGATA TGTGGGAGGC TGTATTATTG
    TGCCAGTTCC ATGACTGCCT ACCAGGATCA TCTATTGAGA TGTGTTACGA CGACAGTGAT
    GAGCTATATG CCAAGGTATT CAAGACTGGC GAGAAGATTC TCAAAGAACT CTACCAGACT
    TTAGGTGTAG GCCAAGCCGA AGACTCATCT AGGGATGGCG ATCTTGTGGC CCTGAACACC
    ATGCCATGGC ACAGAAGAGA GATCGTGCCA CTTGGTGATA ACACTGCCGG AGTTGCTTGT
    GGACAAGGTA GCCTCTTGAA TATCAAGACT TTTAAGATTG CCGAGACACC CGAAGTTACT
    GTCAAAGAAG TCAGAGAAGG AGTTTTTGTG CTAGAAAACG AACAGCTTAA AGTCCAAGTC
    GAAGGAGGGG CAATTACCTC GCTATATGAT CTACAAGCAG ATAGAGAAGT AGTGGCCAAA
    GGTGGTAAAG CCAATCAGCT TGTCATATTT GATGATAAAC CACTTTACTG GCAAGCTTGG
    GATGTGGAGG TCTTCCACTT GGATTCTCGC AAGGAGTTGC CTGCAGGAAA TACTAAGATC
    GTGCAGAGTG ATGCCCACAG AGTCAGTGTA ATGACTGAGA CCAAGATCAG CAAAGACAGC
    TGGATAAAGA CTCACATTAG TTTGTCAGCC GCCTTCAAGG GCCAACAATC TTATGTTGAA
    ATGGAAAGCG AAGTTGAATG GAGGGAAAGT ATGAAGTTCC TCAAGGTCGA ATTTCCCGTT
    GATGTTCGAA ACACGGAGGC ATCCTACGAG ACACAATTTG GTATCGTTAA ACGACCTACT
    CACTACAATA CTACTTGGGA CATGGCCAAA TTTGAAGTAT GCTGTCATAA ATTTGCAGAT
    CTCTCAGAGA ATCAATACGG TGTTTCCATT CTGAATGATA GCAAATACGG CTTTGCTACT
    TGTGGCAATG TGATGCGTTT GTCACTTCTT CGAGCCCCCA AAGCTCCAGA TGCACATGCA
    GATATGGGTC GCCATCACAT TCGTTGGGCT ATTCTGCCTC ATCAGGGAGG CCTTGGCTCA
    ACTACCGTTC GCACGGCATT TAACTTCAAC AATCCATTAA AGCTTTGCAA GGCTTCAAAA
    GATGTTCAAA CCAACGCATT TGATAGCCCT ATCAAACTTA CGGGAGATTC GTCATTGATT
    CTAGATACTG TTAAGCGTGG TGAAGATGAC GAGGATGTCA GCCGTGGTGA ATTGGCTAAG
    AGAAAGGGCC AAAGTGTTAT CTTAAGAATC TACGATAGTC TAGGTGGAAC TAGCAAGGGA
    ACAATCGAGA CGACACTAGA TGTGAAGAGG GTTTGGAAGA CCAATGTTTT GGAGGATGAT
    GAAGAAGAGC TGAAGATTAA GGAAGGGAAA GTCGCGATCA CATTGAAGCC TTTTGAGGTT
    GGCACATTTA GATTGCAGTT GTAG

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

    CloneID OBc16432
    Clone ID Related Accession (Same CDS sequence) XM_024690377.1
    Accession Version XM_024690377.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3297bp)
    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 1523808000000
    Organism Botrytis cinerea B05.10
    Product Bcams1
    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_037310).

    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
    ATGTCGAGTC CATCATCCCA TCTCGAATCC GTCCATAAAA CCATCCAATT GCCAATCATG 
    GGTGGTGAAA CTGTCTTAAA GCCAGAACTC AAGAGCTCAT ATCCTGTTAG GTCTGAGGGA
    CCTAAGGGTA AATTGATATC TAATCTCTAC AAAGATCGAA TTGGCCAATT CTATGCCGGT
    GGTCAATATG AAGGACATAA CTTACGAGCA ATGTTGAACG AAGGGGTCGC CTCTGGAGAA
    CCGCACATCA AACTATCGGT CTGGGACGCG CCGGACCTTT CTCGACCCAC TTTCAAAGAT
    GCCACTAGCC ATGAATTTAG ATCAACACAC ATTGGAGAAG CTTTTGGTCC TTCATGGTCA
    ACCCATTGGT TTAAAGTACG AATCACCGTC CCGTCGGAGT TCCTGAAAAA GGACCTATTG
    GAGTTACATT GGGATGCCAA CAATGAAGGA ATGGTATGGA CCGAGGACGG CAACCCTCTT
    CAGGGATTGA CCGGAGGTGG CGAGAGGGTT GAATGGGTCT TGCCGGACAC GTTCCGCGAC
    GGGAAGGAAC ACACAATCTA CATTGAGATG GCCTGCAACG GGATGTTCGG TAATGCCCCA
    GGTGGCGATT CCATTCAGCC CCCGAACCCG AACAAATATT TCCAACTATC AAAGGCCGAG
    ATTGTGGCTG TAAACGTGGA AGCCCGAGCT TTATGGATTG ATATCTGGGA AATAAATGAT
    GCTGCTAGAG AATTTCCATC GGATTCATGG GAACAGCATA AAGCATTGAG GGTCGCAAAT
    GATATCATTG ACGCTTTCGA GTTGGGAAAC CAAGATTCGA TTCTTAAAGG CCGAAAAATT
    GCACAAGAAT ATCTGGGTGA GAATATCAAT TCATCTGCGG TTTATGAGAC CGGCACAAAG
    CCTATTGTTT ATGGTATCGG TCATTGCCAT ATTGATACCT GTTGGCTTTG GCCATGGGCC
    GAGACGAAAA GAAAAGTTGC TAGGTCTTGG TCAAATCAAT GCGATCTTAT GGATCGTTAC
    CCCGAGCATC GATTTGCTGT CTCCCAGGCT CAACAGTATA AATGGTTGAA AGAGTACTAT
    CCATATGTGT TTGATCGAGT CAAGGAAAAG GTCAAACAAG GAAAATTCCA ACCTGTCGGA
    GGCAGCTGGG TTGAGCATGA CACTAACCTG CCGAGTGGCG AGTCCCTCGT ACGTCAATTT
    TTGTATGGTC AAAGGTTCTT TGAAAGCAAC TTCGGAGAGA GATCCAAGAC ATTTTGGTTG
    CCAGATACTT TTGGTTACTC GAGTCAACTT CCGCAGCTTT GTCGTCTCGC AGGGATGAAA
    CGGTTCTTCA CTCAAAAACT CAGCTGGAAC AACATTAACA ATTTTCCTCA CACCACATTC
    AATTGGGTAT CCCTAGATGG TAGCCAGGTT ATTTGTCACA TGGCACCTTC CGAGACATAC
    ACTGCAAATG CGGATTTCGG TGATGTAAGA AGATCAGTCA CCCAGCACAA ATCTATGGAC
    CAAGATGAGA CCTCACTTCT TGTCTTTGGA AAGGGTGATG GTGGTGGAGG ACCAACGTGG
    CAGATGATTG AGAAGCTCAG ACGTCTTCGT GGAATGAGCG ACACTACTGG ACTTTTGCCT
    AGAGTTCATA TGGGTGACTC AGTTGACGAT TTCTTTGATC GCTTGGAGGG AAGGGTATCT
    GAGGGTCTAG ACTTAGTGAC CTGGTACGGT GAACTGTATT TTGAGCTTCA CCGTGGAACC
    TACACAACAC AAGCGAACAA CAAGCGTAAT AACAGAAATT CCGAAATTAT GCTACACAAT
    ATTGAGCTTC TTTCAACAAT CGCAAGTCTC AAAAGTAAGG ACTTTAAGTA TCCAAAAGAG
    GACATTGACG ATATGTGGGA GGCTGTATTA TTGTGCCAGT TCCATGACTG CCTACCAGGA
    TCATCTATTG AGATGTGTTA CGACGACAGT GATGAGCTAT ATGCCAAGGT ATTCAAGACT
    GGCGAGAAGA TTCTCAAAGA ACTCTACCAG ACTTTAGGTG TAGGCCAAGC CGAAGACTCA
    TCTAGGGATG GCGATCTTGT GGCCCTGAAC ACCATGCCAT GGCACAGAAG AGAGATCGTG
    CCACTTGGTG ATAACACTGC CGGAGTTGCT TGTGGACAAG GTAGCCTCTT GAATATCAAG
    ACTTTTAAGA TTGCCGAGAC ACCCGAAGTT ACTGTCAAAG AAGTCAGAGA AGGAGTTTTT
    GTGCTAGAAA ACGAACAGCT TAAAGTCCAA GTCGAAGGAG GGGCAATTAC CTCGCTATAT
    GATCTACAAG CAGATAGAGA AGTAGTGGCC AAAGGTGGTA AAGCCAATCA GCTTGTCATA
    TTTGATGATA AACCACTTTA CTGGCAAGCT TGGGATGTGG AGGTCTTCCA CTTGGATTCT
    CGCAAGGAGT TGCCTGCAGG AAATACTAAG ATCGTGCAGA GTGATGCCCA CAGAGTCAGT
    GTAATGACTG AGACCAAGAT CAGCAAAGAC AGCTGGATAA AGACTCACAT TAGTTTGTCA
    GCCGCCTTCA AGGGCCAACA ATCTTATGTT GAAATGGAAA GCGAAGTTGA ATGGAGGGAA
    AGTATGAAGT TCCTCAAGGT CGAATTTCCC GTTGATGTTC GAAACACGGA GGCATCCTAC
    GAGACACAAT TTGGTATCGT TAAACGACCT ACTCACTACA ATACTACTTG GGACATGGCC
    AAATTTGAAG TATGCTGTCA TAAATTTGCA GATCTCTCAG AGAATCAATA CGGTGTTTCC
    ATTCTGAATG ATAGCAAATA CGGCTTTGCT ACTTGTGGCA ATGTGATGCG TTTGTCACTT
    CTTCGAGCCC CCAAAGCTCC AGATGCACAT GCAGATATGG GTCGCCATCA CATTCGTTGG
    GCTATTCTGC CTCATCAGGG AGGCCTTGGC TCAACTACCG TTCGCACGGC ATTTAACTTC
    AACAATCCAT TAAAGCTTTG CAAGGCTTCA AAAGATGTTC AAACCAACGC ATTTGATAGC
    CCTATCAAAC TTACGGGAGA TTCGTCATTG ATTCTAGATA CTGTTAAGCG TGGTGAAGAT
    GACGAGGATG TCAGCCGTGG TGAATTGGCT AAGAGAAAGG GCCAAAGTGT TATCTTAAGA
    ATCTACGATA GTCTAGGTGG AACTAGCAAG GGAACAATCG AGACGACACT AGATGTGAAG
    AGGGTTTGGA AGACCAATGT TTTGGAGGAT GATGAAGAAG AGCTGAAGAT TAAGGAAGGG
    AAAGTCGCGA TCACATTGAA GCCTTTTGAG GTTGGCACAT TTAGATTGCA GTTGTAG

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

    RefSeq XP_024546145.1
    CDS149..3445
    Translation

    Target ORF information:

    RefSeq Version XM_024690377.1
    Organism Botrytis cinerea B05.10
    Definition Botrytis cinerea B05.10 Bcams1 (Bcams1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_024690377.1

    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
    ATGTCGAGTC CATCATCCCA TCTCGAATCC GTCCATAAAA CCATCCAATT GCCAATCATG 
    GGTGGTGAAA CTGTCTTAAA GCCAGAACTC AAGAGCTCAT ATCCTGTTAG GTCTGAGGGA
    CCTAAGGGTA AATTGATATC TAATCTCTAC AAAGATCGAA TTGGCCAATT CTATGCCGGT
    GGTCAATATG AAGGACATAA CTTACGAGCA ATGTTGAACG AAGGGGTCGC CTCTGGAGAA
    CCGCACATCA AACTATCGGT CTGGGACGCG CCGGACCTTT CTCGACCCAC TTTCAAAGAT
    GCCACTAGCC ATGAATTTAG ATCAACACAC ATTGGAGAAG CTTTTGGTCC TTCATGGTCA
    ACCCATTGGT TTAAAGTACG AATCACCGTC CCGTCGGAGT TCCTGAAAAA GGACCTATTG
    GAGTTACATT GGGATGCCAA CAATGAAGGA ATGGTATGGA CCGAGGACGG CAACCCTCTT
    CAGGGATTGA CCGGAGGTGG CGAGAGGGTT GAATGGGTCT TGCCGGACAC GTTCCGCGAC
    GGGAAGGAAC ACACAATCTA CATTGAGATG GCCTGCAACG GGATGTTCGG TAATGCCCCA
    GGTGGCGATT CCATTCAGCC CCCGAACCCG AACAAATATT TCCAACTATC AAAGGCCGAG
    ATTGTGGCTG TAAACGTGGA AGCCCGAGCT TTATGGATTG ATATCTGGGA AATAAATGAT
    GCTGCTAGAG AATTTCCATC GGATTCATGG GAACAGCATA AAGCATTGAG GGTCGCAAAT
    GATATCATTG ACGCTTTCGA GTTGGGAAAC CAAGATTCGA TTCTTAAAGG CCGAAAAATT
    GCACAAGAAT ATCTGGGTGA GAATATCAAT TCATCTGCGG TTTATGAGAC CGGCACAAAG
    CCTATTGTTT ATGGTATCGG TCATTGCCAT ATTGATACCT GTTGGCTTTG GCCATGGGCC
    GAGACGAAAA GAAAAGTTGC TAGGTCTTGG TCAAATCAAT GCGATCTTAT GGATCGTTAC
    CCCGAGCATC GATTTGCTGT CTCCCAGGCT CAACAGTATA AATGGTTGAA AGAGTACTAT
    CCATATGTGT TTGATCGAGT CAAGGAAAAG GTCAAACAAG GAAAATTCCA ACCTGTCGGA
    GGCAGCTGGG TTGAGCATGA CACTAACCTG CCGAGTGGCG AGTCCCTCGT ACGTCAATTT
    TTGTATGGTC AAAGGTTCTT TGAAAGCAAC TTCGGAGAGA GATCCAAGAC ATTTTGGTTG
    CCAGATACTT TTGGTTACTC GAGTCAACTT CCGCAGCTTT GTCGTCTCGC AGGGATGAAA
    CGGTTCTTCA CTCAAAAACT CAGCTGGAAC AACATTAACA ATTTTCCTCA CACCACATTC
    AATTGGGTAT CCCTAGATGG TAGCCAGGTT ATTTGTCACA TGGCACCTTC CGAGACATAC
    ACTGCAAATG CGGATTTCGG TGATGTAAGA AGATCAGTCA CCCAGCACAA ATCTATGGAC
    CAAGATGAGA CCTCACTTCT TGTCTTTGGA AAGGGTGATG GTGGTGGAGG ACCAACGTGG
    CAGATGATTG AGAAGCTCAG ACGTCTTCGT GGAATGAGCG ACACTACTGG ACTTTTGCCT
    AGAGTTCATA TGGGTGACTC AGTTGACGAT TTCTTTGATC GCTTGGAGGG AAGGGTATCT
    GAGGGTCTAG ACTTAGTGAC CTGGTACGGT GAACTGTATT TTGAGCTTCA CCGTGGAACC
    TACACAACAC AAGCGAACAA CAAGCGTAAT AACAGAAATT CCGAAATTAT GCTACACAAT
    ATTGAGCTTC TTTCAACAAT CGCAAGTCTC AAAAGTAAGG ACTTTAAGTA TCCAAAAGAG
    GACATTGACG ATATGTGGGA GGCTGTATTA TTGTGCCAGT TCCATGACTG CCTACCAGGA
    TCATCTATTG AGATGTGTTA CGACGACAGT GATGAGCTAT ATGCCAAGGT ATTCAAGACT
    GGCGAGAAGA TTCTCAAAGA ACTCTACCAG ACTTTAGGTG TAGGCCAAGC CGAAGACTCA
    TCTAGGGATG GCGATCTTGT GGCCCTGAAC ACCATGCCAT GGCACAGAAG AGAGATCGTG
    CCACTTGGTG ATAACACTGC CGGAGTTGCT TGTGGACAAG GTAGCCTCTT GAATATCAAG
    ACTTTTAAGA TTGCCGAGAC ACCCGAAGTT ACTGTCAAAG AAGTCAGAGA AGGAGTTTTT
    GTGCTAGAAA ACGAACAGCT TAAAGTCCAA GTCGAAGGAG GGGCAATTAC CTCGCTATAT
    GATCTACAAG CAGATAGAGA AGTAGTGGCC AAAGGTGGTA AAGCCAATCA GCTTGTCATA
    TTTGATGATA AACCACTTTA CTGGCAAGCT TGGGATGTGG AGGTCTTCCA CTTGGATTCT
    CGCAAGGAGT TGCCTGCAGG AAATACTAAG ATCGTGCAGA GTGATGCCCA CAGAGTCAGT
    GTAATGACTG AGACCAAGAT CAGCAAAGAC AGCTGGATAA AGACTCACAT TAGTTTGTCA
    GCCGCCTTCA AGGGCCAACA ATCTTATGTT GAAATGGAAA GCGAAGTTGA ATGGAGGGAA
    AGTATGAAGT TCCTCAAGGT CGAATTTCCC GTTGATGTTC GAAACACGGA GGCATCCTAC
    GAGACACAAT TTGGTATCGT TAAACGACCT ACTCACTACA ATACTACTTG GGACATGGCC
    AAATTTGAAG TATGCTGTCA TAAATTTGCA GATCTCTCAG AGAATCAATA CGGTGTTTCC
    ATTCTGAATG ATAGCAAATA CGGCTTTGCT ACTTGTGGCA ATGTGATGCG TTTGTCACTT
    CTTCGAGCCC CCAAAGCTCC AGATGCACAT GCAGATATGG GTCGCCATCA CATTCGTTGG
    GCTATTCTGC CTCATCAGGG AGGCCTTGGC TCAACTACCG TTCGCACGGC ATTTAACTTC
    AACAATCCAT TAAAGCTTTG CAAGGCTTCA AAAGATGTTC AAACCAACGC ATTTGATAGC
    CCTATCAAAC TTACGGGAGA TTCGTCATTG ATTCTAGATA CTGTTAAGCG TGGTGAAGAT
    GACGAGGATG TCAGCCGTGG TGAATTGGCT AAGAGAAAGG GCCAAAGTGT TATCTTAAGA
    ATCTACGATA GTCTAGGTGG AACTAGCAAG GGAACAATCG AGACGACACT AGATGTGAAG
    AGGGTTTGGA AGACCAATGT TTTGGAGGAT GATGAAGAAG AGCTGAAGAT TAAGGAAGGG
    AAAGTCGCGA TCACATTGAA GCCTTTTGAG GTTGGCACAT TTAGATTGCA GTTGTAG

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

    CloneID OBc16433
    Clone ID Related Accession (Same CDS sequence) XM_024690378.1
    Accession Version XM_024690378.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3240bp)
    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 1523808000000
    Organism Botrytis cinerea B05.10
    Product Bcams1
    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_037310).

    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
    ATGGGTGGTG AAACTGTCTT AAAGCCAGAA CTCAAGAGCT CATATCCTGT TAGGTCTGAG 
    GGACCTAAGG GTAAATTGAT ATCTAATCTC TACAAAGATC GAATTGGCCA ATTCTATGCC
    GGTGGTCAAT ATGAAGGACA TAACTTACGA GCAATGTTGA ACGAAGGGGT CGCCTCTGGA
    GAACCGCACA TCAAACTATC GGTCTGGGAC GCGCCGGACC TTTCTCGACC CACTTTCAAA
    GATGCCACTA GCCATGAATT TAGATCAACA CACATTGGAG AAGCTTTTGG TCCTTCATGG
    TCAACCCATT GGTTTAAAGT ACGAATCACC GTCCCGTCGG AGTTCCTGAA AAAGGACCTA
    TTGGAGTTAC ATTGGGATGC CAACAATGAA GGAATGGTAT GGACCGAGGA CGGCAACCCT
    CTTCAGGGAT TGACCGGAGG TGGCGAGAGG GTTGAATGGG TCTTGCCGGA CACGTTCCGC
    GACGGGAAGG AACACACAAT CTACATTGAG ATGGCCTGCA ACGGGATGTT CGGTAATGCC
    CCAGGTGGCG ATTCCATTCA GCCCCCGAAC CCGAACAAAT ATTTCCAACT ATCAAAGGCC
    GAGATTGTGG CTGTAAACGT GGAAGCCCGA GCTTTATGGA TTGATATCTG GGAAATAAAT
    GATGCTGCTA GAGAATTTCC ATCGGATTCA TGGGAACAGC ATAAAGCATT GAGGGTCGCA
    AATGATATCA TTGACGCTTT CGAGTTGGGA AACCAAGATT CGATTCTTAA AGGCCGAAAA
    ATTGCACAAG AATATCTGGG TGAGAATATC AATTCATCTG CGGTTTATGA GACCGGCACA
    AAGCCTATTG TTTATGGTAT CGGTCATTGC CATATTGATA CCTGTTGGCT TTGGCCATGG
    GCCGAGACGA AAAGAAAAGT TGCTAGGTCT TGGTCAAATC AATGCGATCT TATGGATCGT
    TACCCCGAGC ATCGATTTGC TGTCTCCCAG GCTCAACAGT ATAAATGGTT GAAAGAGTAC
    TATCCATATG TGTTTGATCG AGTCAAGGAA AAGGTCAAAC AAGGAAAATT CCAACCTGTC
    GGAGGCAGCT GGGTTGAGCA TGACACTAAC CTGCCGAGTG GCGAGTCCCT CGTACGTCAA
    TTTTTGTATG GTCAAAGGTT CTTTGAAAGC AACTTCGGAG AGAGATCCAA GACATTTTGG
    TTGCCAGATA CTTTTGGTTA CTCGAGTCAA CTTCCGCAGC TTTGTCGTCT CGCAGGGATG
    AAACGGTTCT TCACTCAAAA ACTCAGCTGG AACAACATTA ACAATTTTCC TCACACCACA
    TTCAATTGGG TATCCCTAGA TGGTAGCCAG GTTATTTGTC ACATGGCACC TTCCGAGACA
    TACACTGCAA ATGCGGATTT CGGTGATGTA AGAAGATCAG TCACCCAGCA CAAATCTATG
    GACCAAGATG AGACCTCACT TCTTGTCTTT GGAAAGGGTG ATGGTGGTGG AGGACCAACG
    TGGCAGATGA TTGAGAAGCT CAGACGTCTT CGTGGAATGA GCGACACTAC TGGACTTTTG
    CCTAGAGTTC ATATGGGTGA CTCAGTTGAC GATTTCTTTG ATCGCTTGGA GGGAAGGGTA
    TCTGAGGGTC TAGACTTAGT GACCTGGTAC GGTGAACTGT ATTTTGAGCT TCACCGTGGA
    ACCTACACAA CACAAGCGAA CAACAAGCGT AATAACAGAA ATTCCGAAAT TATGCTACAC
    AATATTGAGC TTCTTTCAAC AATCGCAAGT CTCAAAAGTA AGGACTTTAA GTATCCAAAA
    GAGGACATTG ACGATATGTG GGAGGCTGTA TTATTGTGCC AGTTCCATGA CTGCCTACCA
    GGATCATCTA TTGAGATGTG TTACGACGAC AGTGATGAGC TATATGCCAA GGTATTCAAG
    ACTGGCGAGA AGATTCTCAA AGAACTCTAC CAGACTTTAG GTGTAGGCCA AGCCGAAGAC
    TCATCTAGGG ATGGCGATCT TGTGGCCCTG AACACCATGC CATGGCACAG AAGAGAGATC
    GTGCCACTTG GTGATAACAC TGCCGGAGTT GCTTGTGGAC AAGGTAGCCT CTTGAATATC
    AAGACTTTTA AGATTGCCGA GACACCCGAA GTTACTGTCA AAGAAGTCAG AGAAGGAGTT
    TTTGTGCTAG AAAACGAACA GCTTAAAGTC CAAGTCGAAG GAGGGGCAAT TACCTCGCTA
    TATGATCTAC AAGCAGATAG AGAAGTAGTG GCCAAAGGTG GTAAAGCCAA TCAGCTTGTC
    ATATTTGATG ATAAACCACT TTACTGGCAA GCTTGGGATG TGGAGGTCTT CCACTTGGAT
    TCTCGCAAGG AGTTGCCTGC AGGAAATACT AAGATCGTGC AGAGTGATGC CCACAGAGTC
    AGTGTAATGA CTGAGACCAA GATCAGCAAA GACAGCTGGA TAAAGACTCA CATTAGTTTG
    TCAGCCGCCT TCAAGGGCCA ACAATCTTAT GTTGAAATGG AAAGCGAAGT TGAATGGAGG
    GAAAGTATGA AGTTCCTCAA GGTCGAATTT CCCGTTGATG TTCGAAACAC GGAGGCATCC
    TACGAGACAC AATTTGGTAT CGTTAAACGA CCTACTCACT ACAATACTAC TTGGGACATG
    GCCAAATTTG AAGTATGCTG TCATAAATTT GCAGATCTCT CAGAGAATCA ATACGGTGTT
    TCCATTCTGA ATGATAGCAA ATACGGCTTT GCTACTTGTG GCAATGTGAT GCGTTTGTCA
    CTTCTTCGAG CCCCCAAAGC TCCAGATGCA CATGCAGATA TGGGTCGCCA TCACATTCGT
    TGGGCTATTC TGCCTCATCA GGGAGGCCTT GGCTCAACTA CCGTTCGCAC GGCATTTAAC
    TTCAACAATC CATTAAAGCT TTGCAAGGCT TCAAAAGATG TTCAAACCAA CGCATTTGAT
    AGCCCTATCA AACTTACGGG AGATTCGTCA TTGATTCTAG ATACTGTTAA GCGTGGTGAA
    GATGACGAGG ATGTCAGCCG TGGTGAATTG GCTAAGAGAA AGGGCCAAAG TGTTATCTTA
    AGAATCTACG ATAGTCTAGG TGGAACTAGC AAGGGAACAA TCGAGACGAC ACTAGATGTG
    AAGAGGGTTT GGAAGACCAA TGTTTTGGAG GATGATGAAG AAGAGCTGAA GATTAAGGAA
    GGGAAAGTCG CGATCACATT GAAGCCTTTT GAGGTTGGCA CATTTAGATT GCAGTTGTAG

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

    RefSeq XP_024546146.1
    CDS207..3446
    Translation

    Target ORF information:

    RefSeq Version XM_024690378.1
    Organism Botrytis cinerea B05.10
    Definition Botrytis cinerea B05.10 Bcams1 (Bcams1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_024690378.1

    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
    ATGGGTGGTG AAACTGTCTT AAAGCCAGAA CTCAAGAGCT CATATCCTGT TAGGTCTGAG 
    GGACCTAAGG GTAAATTGAT ATCTAATCTC TACAAAGATC GAATTGGCCA ATTCTATGCC
    GGTGGTCAAT ATGAAGGACA TAACTTACGA GCAATGTTGA ACGAAGGGGT CGCCTCTGGA
    GAACCGCACA TCAAACTATC GGTCTGGGAC GCGCCGGACC TTTCTCGACC CACTTTCAAA
    GATGCCACTA GCCATGAATT TAGATCAACA CACATTGGAG AAGCTTTTGG TCCTTCATGG
    TCAACCCATT GGTTTAAAGT ACGAATCACC GTCCCGTCGG AGTTCCTGAA AAAGGACCTA
    TTGGAGTTAC ATTGGGATGC CAACAATGAA GGAATGGTAT GGACCGAGGA CGGCAACCCT
    CTTCAGGGAT TGACCGGAGG TGGCGAGAGG GTTGAATGGG TCTTGCCGGA CACGTTCCGC
    GACGGGAAGG AACACACAAT CTACATTGAG ATGGCCTGCA ACGGGATGTT CGGTAATGCC
    CCAGGTGGCG ATTCCATTCA GCCCCCGAAC CCGAACAAAT ATTTCCAACT ATCAAAGGCC
    GAGATTGTGG CTGTAAACGT GGAAGCCCGA GCTTTATGGA TTGATATCTG GGAAATAAAT
    GATGCTGCTA GAGAATTTCC ATCGGATTCA TGGGAACAGC ATAAAGCATT GAGGGTCGCA
    AATGATATCA TTGACGCTTT CGAGTTGGGA AACCAAGATT CGATTCTTAA AGGCCGAAAA
    ATTGCACAAG AATATCTGGG TGAGAATATC AATTCATCTG CGGTTTATGA GACCGGCACA
    AAGCCTATTG TTTATGGTAT CGGTCATTGC CATATTGATA CCTGTTGGCT TTGGCCATGG
    GCCGAGACGA AAAGAAAAGT TGCTAGGTCT TGGTCAAATC AATGCGATCT TATGGATCGT
    TACCCCGAGC ATCGATTTGC TGTCTCCCAG GCTCAACAGT ATAAATGGTT GAAAGAGTAC
    TATCCATATG TGTTTGATCG AGTCAAGGAA AAGGTCAAAC AAGGAAAATT CCAACCTGTC
    GGAGGCAGCT GGGTTGAGCA TGACACTAAC CTGCCGAGTG GCGAGTCCCT CGTACGTCAA
    TTTTTGTATG GTCAAAGGTT CTTTGAAAGC AACTTCGGAG AGAGATCCAA GACATTTTGG
    TTGCCAGATA CTTTTGGTTA CTCGAGTCAA CTTCCGCAGC TTTGTCGTCT CGCAGGGATG
    AAACGGTTCT TCACTCAAAA ACTCAGCTGG AACAACATTA ACAATTTTCC TCACACCACA
    TTCAATTGGG TATCCCTAGA TGGTAGCCAG GTTATTTGTC ACATGGCACC TTCCGAGACA
    TACACTGCAA ATGCGGATTT CGGTGATGTA AGAAGATCAG TCACCCAGCA CAAATCTATG
    GACCAAGATG AGACCTCACT TCTTGTCTTT GGAAAGGGTG ATGGTGGTGG AGGACCAACG
    TGGCAGATGA TTGAGAAGCT CAGACGTCTT CGTGGAATGA GCGACACTAC TGGACTTTTG
    CCTAGAGTTC ATATGGGTGA CTCAGTTGAC GATTTCTTTG ATCGCTTGGA GGGAAGGGTA
    TCTGAGGGTC TAGACTTAGT GACCTGGTAC GGTGAACTGT ATTTTGAGCT TCACCGTGGA
    ACCTACACAA CACAAGCGAA CAACAAGCGT AATAACAGAA ATTCCGAAAT TATGCTACAC
    AATATTGAGC TTCTTTCAAC AATCGCAAGT CTCAAAAGTA AGGACTTTAA GTATCCAAAA
    GAGGACATTG ACGATATGTG GGAGGCTGTA TTATTGTGCC AGTTCCATGA CTGCCTACCA
    GGATCATCTA TTGAGATGTG TTACGACGAC AGTGATGAGC TATATGCCAA GGTATTCAAG
    ACTGGCGAGA AGATTCTCAA AGAACTCTAC CAGACTTTAG GTGTAGGCCA AGCCGAAGAC
    TCATCTAGGG ATGGCGATCT TGTGGCCCTG AACACCATGC CATGGCACAG AAGAGAGATC
    GTGCCACTTG GTGATAACAC TGCCGGAGTT GCTTGTGGAC AAGGTAGCCT CTTGAATATC
    AAGACTTTTA AGATTGCCGA GACACCCGAA GTTACTGTCA AAGAAGTCAG AGAAGGAGTT
    TTTGTGCTAG AAAACGAACA GCTTAAAGTC CAAGTCGAAG GAGGGGCAAT TACCTCGCTA
    TATGATCTAC AAGCAGATAG AGAAGTAGTG GCCAAAGGTG GTAAAGCCAA TCAGCTTGTC
    ATATTTGATG ATAAACCACT TTACTGGCAA GCTTGGGATG TGGAGGTCTT CCACTTGGAT
    TCTCGCAAGG AGTTGCCTGC AGGAAATACT AAGATCGTGC AGAGTGATGC CCACAGAGTC
    AGTGTAATGA CTGAGACCAA GATCAGCAAA GACAGCTGGA TAAAGACTCA CATTAGTTTG
    TCAGCCGCCT TCAAGGGCCA ACAATCTTAT GTTGAAATGG AAAGCGAAGT TGAATGGAGG
    GAAAGTATGA AGTTCCTCAA GGTCGAATTT CCCGTTGATG TTCGAAACAC GGAGGCATCC
    TACGAGACAC AATTTGGTAT CGTTAAACGA CCTACTCACT ACAATACTAC TTGGGACATG
    GCCAAATTTG AAGTATGCTG TCATAAATTT GCAGATCTCT CAGAGAATCA ATACGGTGTT
    TCCATTCTGA ATGATAGCAA ATACGGCTTT GCTACTTGTG GCAATGTGAT GCGTTTGTCA
    CTTCTTCGAG CCCCCAAAGC TCCAGATGCA CATGCAGATA TGGGTCGCCA TCACATTCGT
    TGGGCTATTC TGCCTCATCA GGGAGGCCTT GGCTCAACTA CCGTTCGCAC GGCATTTAAC
    TTCAACAATC CATTAAAGCT TTGCAAGGCT TCAAAAGATG TTCAAACCAA CGCATTTGAT
    AGCCCTATCA AACTTACGGG AGATTCGTCA TTGATTCTAG ATACTGTTAA GCGTGGTGAA
    GATGACGAGG ATGTCAGCCG TGGTGAATTG GCTAAGAGAA AGGGCCAAAG TGTTATCTTA
    AGAATCTACG ATAGTCTAGG TGGAACTAGC AAGGGAACAA TCGAGACGAC ACTAGATGTG
    AAGAGGGTTT GGAAGACCAA TGTTTTGGAG GATGATGAAG AAGAGCTGAA GATTAAGGAA
    GGGAAAGTCG CGATCACATT GAAGCCTTTT GAGGTTGGCA CATTTAGATT GCAGTTGTAG

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

  • PubMed

    A gapless genome sequence of the fungus Botrytis cinerea.
    Molecular plant pathology18(1)75-89(2017 01)
    Van Kan JA,Stassen JH,Mosbach A,Van Der Lee TA,Faino L,Farmer AD,Papasotiriou DG,Zhou S,Seidl MF,Cottam E,Edel D,Hahn M,Schwartz DC,Dietrich RA,Widdison S,Scalliet G


    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.
    PLoS genetics7(8)e1002230(2011 Aug)
    Amselem J,Cuomo CA,van Kan JA,Viaud M,Benito EP,Couloux A,Coutinho PM,de Vries RP,Dyer PS,Fillinger S,Fournier E,Gout L,Hahn M,Kohn L,Lapalu N,Plummer KM,Pradier JM,Quévillon E,Sharon A,Simon A,ten Have A,Tudzynski B,Tudzynski P,Wincker P,Andrew M,Anthouard V,Beever RE,Beffa R,Benoit I,Bouzid O,Brault B,Chen Z,Choquer M,Collémare J,Cotton P,Danchin EG,Da Silva C,Gautier A,Giraud C,Giraud T,Gonzalez C,Grossetete S,Güldener U,Henrissat B,Howlett BJ,Kodira C,Kretschmer M,Lappartient A,Leroch M,Levis C,Mauceli E,Neuvéglise C,Oeser B,Pearson M,Poulain J,Poussereau N,Quesneville H,Rascle C,Schumacher J,Ségurens B,Sexton A,Silva E,Sirven C,Soanes DM,Talbot NJ,Templeton M,Yandava C,Yarden O,Zeng Q,Rollins JA,Lebrun MH,Dickman M