BCIN_12g03580 cDNA ORF clone, Botrytis cinerea B05.10

The following BCIN_12g03580 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the BCIN_12g03580 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
OBc03987 XM_001552203.1
Latest version!
Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_08731) partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OBc22702 XM_024696396.1
Latest version!
Botrytis cinerea B05.10 hypothetical protein (BCIN_12g03580), 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 OBc03987
    Clone ID Related Accession (Same CDS sequence) XM_001552203.1
    Accession Version XM_001552203.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3264bp)
    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_001814514). 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
    3181
    3241
    ATGTTGACAA CGTACCCAGG TTCAGTAGTT GTGGCTACAA TAAATGAACT CAAACTCGCA 
    GTCATCGACA ACGAAAGAAG AACACATGTC AGAACCTTAC CGATTGGTGA AACTGTAAGG
    AGGGTAGCAT ACTCAGCTAA AGAGAAATCC TTTGCGATTG GAGCTATTAA ACGTGAATTG
    ACAAAGGGAC AAGAAGTTGT CACGACTTCT TTCAGGCTTG TCGACGAGGT TGTTTTCGGT
    GAGCTAGGAG AACCATACTA TTTACCACCA AATAACGAAA TTATCGAGAC TGTCGTACGA
    GCGGAGCTTC CAACAAGACA TGGCGATGGC GAATTAGTCG AACGCTTCCT TGTCGGTACA
    AGTTTCCTCC ACGAGGAAGA AGCGAATGTT CGCGGTCGTC TTCTTATTTT CGGTGTCAAT
    GCAGATAGAG CTCCATATAT GATCGCTTCT CACAATCTCA AAGGTTCTTG TCGATGCATT
    GGTGTACTCG ATGGTAAAAT CGTAGCGGCA CTAAATAAAA CAGTCGTAAT GAACGCAACG
    ACTGCCAAGG CTAATTTAGG AGGTCTGGTT GTCTTGGGAG AAACAAAGTT TACATATCTG
    GATGATGAAA GTAAAGCTAT TGTCGAATAT GCGCTGGATG AGGCTGTATT ATGGGCTGCT
    TGGGAACCGA TAGATGAGAG AACTTATCTA CTAGGAGATG ATTATGGCTT TTTGTACATT
    TTGACAATAC TGGTCGATGG TGCTACAGTT ACTGGATTGC AAGTTGTAAA ACTGGGACAG
    GTATCTAAAC CTACATCTTT GGAGAACTTG GGGAATGGAG TGTTCTACAT TGCTTCCCAT
    GAAGCGGACA ATCAGGTTGT TCAAATAGAT TTGGAGAGTC CAGAACATGG TGTTACGTTG
    TTACAGACAC TACCGAATAT TGCTCCAATA CTTGATTTTA CAGTCATGGA CATGGGCGGG
    CGAGAGGGAG AGACCCAATT GAATGAGTAT TCTTCAGGTC AGGCTCGATT AGTCACGGGC
    AGTGGAGGAT TCGAGGGAGG AAGTTTAAGA AGTGTTCGGA GTGGAGTTGG ACTTGATGAT
    ACTGCAATAC TTGCCGAAAT GGAGGGTATC CGTAAAGTCT TCGCGTTACA TTCTGGCCCA
    ACTCTACCAA ATGATACTCT TGTAGTGTCG TTTTCTACAG AGACTCGATT CTTTAAGTTT
    GATACACAAG GAGATATTGA AGAAGTGGAG ACTGTTAAGA ATTTGTCTTC TACATCGGAA
    ACATTACTAA CTTATAACCT TGATGAAGGC TGTATATTAC AAGTCACACA ACATGAGGTA
    TCAATATATG GCAAATCTCC CGGTCATCGA TGGCAACCTC CCAACGGACA AATAATCACG
    GCAGCCTCAG GAAACCAGAA CTACATTCTA CTTTCATCGA ATGGACGTAC CTTGTTTACT
    TTATCAATTC AACAAAATTT GGCAGAGGTC GCATTTCAGG AGCTTGGAGA TGATCAAGTA
    GCTTGCATAC ATGTACCCCA AGTAATGGGT GATATTGGTG TCGTTGGATT ATGGAAGTCG
    GGATCGGTAT CTCTGCTTGA TCTCGCAACT CTCAATACTA TCGTATCTGA GGATTTACGA
    CGAGCTGATG GTGCTTCTAT ACCGAGAGAT ATTGCCCTTA CTCAAATTTT ACCCCCAGAA
    CTTTCAGGTC CGACATTGTT TGTTAGTATG GAAGATGGCA TTGTGTTGAG CTTCAATGTT
    GACAAGTCCG ATTGTTCACT GTCGGGACGC AAAAGCATTG TCCTTGGAAC ACAACAGGCG
    CAACTTCAGA TTTTACCACG GGATAATACA ACCTTTAATG TTTTTGCAAC ATGTGAGCAT
    CCTAGCTTGA TATATGGTTC TGAAGGTAGA ACTGTGTATT CGGCCGTCAC AGCTGAGGAC
    GCAATCGCAG TATGTTCACT GAATAGTGTA GCGTACCCAG GTTCAGTAGT TGTGGCTACA
    ATAAATGAAC TCAAACTCGC AGTCATCGAC AACGAAAGAA GAACACATGT CAGAACCTTA
    CCGATTGGTG AAACTGTAAG GAGGGTAGCA TACTCAGCTA AAGAGAAATC CTTTGCGATT
    GGAGCTATTA AACGTGAATT GACAAAGGGA CAAGAAGTTG TCACGACTTC TTTCAGGCTT
    GTCGACGAGG TTGTTTTCGG TGAGCTAGGA GAACCATACT ATTTACCACC AAATAACGAA
    ATTATCGAGA CTGTCGTACG AGCGGAGCTT CCAACAAGAC ATGGCGATGG CGAATTAGTC
    GAACGCTTCC TTGTCGGTAC AAGTTTCCTC CACGAGGAAG AAGCGAATGT TCGCGGTCGT
    CTTCTTATTT TCGGTGTCAA TGCAGATAGA GCTCCATATA TGATCGCTTC TCACAATCTC
    AAAGGTTCTT GTCGATGCAT TGGTGTACTC GATGGTAAAA TCGTAGCGGC ACTAAATAAA
    ACAGTCGTAA TGTACGACTA CGAGGAAACT TCGAGTACAA GCGCCACGCT TAAAAAACTA
    GCAACATATC GATGTTCAAC ATGTCCGATC GATATTGATA TTACAGATAA TATAATAGCA
    GTAGCGGATA TTATGAAATC GATTGCGCTG GTCGAATATA CACCTGGAGC CGATGGTCTT
    CCAGATAAAC TTGAGGAGGT CGCAAGGCAT GCACAACAAG TCTTCTCAAC CAGTGTCGCA
    GAGGTAGATA CAGATACCTA TCTGGAAACA GATCATGATG GCAATTTAAT ATTATTGAAG
    AGGAATAGAG AGGGTGTCAC GAGAGAAGAT AAAACTAGAA TGGAAGTTAC TTGTGAGATG
    AACCTTGGAG AGATGGTCAA TAGGGTTAAG AGGATCAATG TGGAAACATC GAAAGATGCT
    CTATTGATCC CGAGAGCCTT TCTCGGCACA ACCGAAGGAT CAATCTACCT CTTCTCTCTC
    ATCCCCCCAC AAAACCAAGA TCTATTAATG CGTCTCCAAT CCCGTCTAGC ATCTCTTCCT
    TCCGCCTCCT CCATCAGAGG ATCCTCGGAC TCTACATCTC CTCACCAAAT CGAACTCTCG
    CCCGGTAATC TCGATTTCAA TAAATACCGA TCCTACATAT CCGCCACGAG GGAAACAAGC
    GAACCCTTCA GATTTGTAGA CGGGGAATTA ATAGAAAGAT TTTTGGATTT GGAGGTTGAG
    GTGCAGGAAC ATGTGGCCGA GGGGTTGGGT GTCAAAGCCG AGGATTTAAG AGGTATGGTG
    GAGGGATTGA GGAGGTTGCA CTAG

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

    RefSeq XP_001552253.1
    CDS1..3264
    Translation

    Target ORF information:

    RefSeq Version XM_001552203.1
    Organism Botrytis cinerea B05.10
    Definition Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_08731) partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001552203.1

    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
    ATGTTGACAA CGTACCCAGG TTCAGTAGTT GTGGCTACAA TAAATGAACT CAAACTCGCA 
    GTCATCGACA ACGAAAGAAG AACACATGTC AGAACCTTAC CGATTGGTGA AACTGTAAGG
    AGGGTAGCAT ACTCAGCTAA AGAGAAATCC TTTGCGATTG GAGCTATTAA ACGTGAATTG
    ACAAAGGGAC AAGAAGTTGT CACGACTTCT TTCAGGCTTG TCGACGAGGT TGTTTTCGGT
    GAGCTAGGAG AACCATACTA TTTACCACCA AATAACGAAA TTATCGAGAC TGTCGTACGA
    GCGGAGCTTC CAACAAGACA TGGCGATGGC GAATTAGTCG AACGCTTCCT TGTCGGTACA
    AGTTTCCTCC ACGAGGAAGA AGCGAATGTT CGCGGTCGTC TTCTTATTTT CGGTGTCAAT
    GCAGATAGAG CTCCATATAT GATCGCTTCT CACAATCTCA AAGGTTCTTG TCGATGCATT
    GGTGTACTCG ATGGTAAAAT CGTAGCGGCA CTAAATAAAA CAGTCGTAAT GAACGCAACG
    ACTGCCAAGG CTAATTTAGG AGGTCTGGTT GTCTTGGGAG AAACAAAGTT TACATATCTG
    GATGATGAAA GTAAAGCTAT TGTCGAATAT GCGCTGGATG AGGCTGTATT ATGGGCTGCT
    TGGGAACCGA TAGATGAGAG AACTTATCTA CTAGGAGATG ATTATGGCTT TTTGTACATT
    TTGACAATAC TGGTCGATGG TGCTACAGTT ACTGGATTGC AAGTTGTAAA ACTGGGACAG
    GTATCTAAAC CTACATCTTT GGAGAACTTG GGGAATGGAG TGTTCTACAT TGCTTCCCAT
    GAAGCGGACA ATCAGGTTGT TCAAATAGAT TTGGAGAGTC CAGAACATGG TGTTACGTTG
    TTACAGACAC TACCGAATAT TGCTCCAATA CTTGATTTTA CAGTCATGGA CATGGGCGGG
    CGAGAGGGAG AGACCCAATT GAATGAGTAT TCTTCAGGTC AGGCTCGATT AGTCACGGGC
    AGTGGAGGAT TCGAGGGAGG AAGTTTAAGA AGTGTTCGGA GTGGAGTTGG ACTTGATGAT
    ACTGCAATAC TTGCCGAAAT GGAGGGTATC CGTAAAGTCT TCGCGTTACA TTCTGGCCCA
    ACTCTACCAA ATGATACTCT TGTAGTGTCG TTTTCTACAG AGACTCGATT CTTTAAGTTT
    GATACACAAG GAGATATTGA AGAAGTGGAG ACTGTTAAGA ATTTGTCTTC TACATCGGAA
    ACATTACTAA CTTATAACCT TGATGAAGGC TGTATATTAC AAGTCACACA ACATGAGGTA
    TCAATATATG GCAAATCTCC CGGTCATCGA TGGCAACCTC CCAACGGACA AATAATCACG
    GCAGCCTCAG GAAACCAGAA CTACATTCTA CTTTCATCGA ATGGACGTAC CTTGTTTACT
    TTATCAATTC AACAAAATTT GGCAGAGGTC GCATTTCAGG AGCTTGGAGA TGATCAAGTA
    GCTTGCATAC ATGTACCCCA AGTAATGGGT GATATTGGTG TCGTTGGATT ATGGAAGTCG
    GGATCGGTAT CTCTGCTTGA TCTCGCAACT CTCAATACTA TCGTATCTGA GGATTTACGA
    CGAGCTGATG GTGCTTCTAT ACCGAGAGAT ATTGCCCTTA CTCAAATTTT ACCCCCAGAA
    CTTTCAGGTC CGACATTGTT TGTTAGTATG GAAGATGGCA TTGTGTTGAG CTTCAATGTT
    GACAAGTCCG ATTGTTCACT GTCGGGACGC AAAAGCATTG TCCTTGGAAC ACAACAGGCG
    CAACTTCAGA TTTTACCACG GGATAATACA ACCTTTAATG TTTTTGCAAC ATGTGAGCAT
    CCTAGCTTGA TATATGGTTC TGAAGGTAGA ACTGTGTATT CGGCCGTCAC AGCTGAGGAC
    GCAATCGCAG TATGTTCACT GAATAGTGTA GCGTACCCAG GTTCAGTAGT TGTGGCTACA
    ATAAATGAAC TCAAACTCGC AGTCATCGAC AACGAAAGAA GAACACATGT CAGAACCTTA
    CCGATTGGTG AAACTGTAAG GAGGGTAGCA TACTCAGCTA AAGAGAAATC CTTTGCGATT
    GGAGCTATTA AACGTGAATT GACAAAGGGA CAAGAAGTTG TCACGACTTC TTTCAGGCTT
    GTCGACGAGG TTGTTTTCGG TGAGCTAGGA GAACCATACT ATTTACCACC AAATAACGAA
    ATTATCGAGA CTGTCGTACG AGCGGAGCTT CCAACAAGAC ATGGCGATGG CGAATTAGTC
    GAACGCTTCC TTGTCGGTAC AAGTTTCCTC CACGAGGAAG AAGCGAATGT TCGCGGTCGT
    CTTCTTATTT TCGGTGTCAA TGCAGATAGA GCTCCATATA TGATCGCTTC TCACAATCTC
    AAAGGTTCTT GTCGATGCAT TGGTGTACTC GATGGTAAAA TCGTAGCGGC ACTAAATAAA
    ACAGTCGTAA TGTACGACTA CGAGGAAACT TCGAGTACAA GCGCCACGCT TAAAAAACTA
    GCAACATATC GATGTTCAAC ATGTCCGATC GATATTGATA TTACAGATAA TATAATAGCA
    GTAGCGGATA TTATGAAATC GATTGCGCTG GTCGAATATA CACCTGGAGC CGATGGTCTT
    CCAGATAAAC TTGAGGAGGT CGCAAGGCAT GCACAACAAG TCTTCTCAAC CAGTGTCGCA
    GAGGTAGATA CAGATACCTA TCTGGAAACA GATCATGATG GCAATTTAAT ATTATTGAAG
    AGGAATAGAG AGGGTGTCAC GAGAGAAGAT AAAACTAGAA TGGAAGTTAC TTGTGAGATG
    AACCTTGGAG AGATGGTCAA TAGGGTTAAG AGGATCAATG TGGAAACATC GAAAGATGCT
    CTATTGATCC CGAGAGCCTT TCTCGGCACA ACCGAAGGAT CAATCTACCT CTTCTCTCTC
    ATCCCCCCAC AAAACCAAGA TCTATTAATG CGTCTCCAAT CCCGTCTAGC ATCTCTTCCT
    TCCGCCTCCT CCATCAGAGG ATCCTCGGAC TCTACATCTC CTCACCAAAT CGAACTCTCG
    CCCGGTAATC TCGATTTCAA TAAATACCGA TCCTACATAT CCGCCACGAG GGAAACAAGC
    GAACCCTTCA GATTTGTAGA CGGGGAATTA ATAGAAAGAT TTTTGGATTT GGAGGTTGAG
    GTGCAGGAAC ATGTGGCCGA GGGGTTGGGT GTCAAAGCCG AGGATTTAAG AGGTATGGTG
    GAGGGATTGA GGAGGTTGCA CTAG

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

    CloneID OBc22702
    Clone ID Related Accession (Same CDS sequence) XM_024696396.1
    Accession Version XM_024696396.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3474bp)
    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 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_037321).

    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
    ATGGCTTACT TGGCACCGAT ACATAGACCA AGTAGTGTAC GACTTACACT GCGATTGAAT 
    CTTTTAGATC ATAGAGAGGA ATGTCTGGTA CTTGCGAAAG CAAACCGATT GGAAATATGG
    AGGGCCACAG AAGACGGTCT CACGATGGCA TATTCGAAAT CTATATATGG CCGCATATCC
    ATGCTGCAAA AGATCCAACC TGCGGGATCT AAAACTGACC ATCTCTTCGT CGGGACCGTT
    CGAGCACAAT ACTTTACCGT GATGTGGAAT CCTCAGACGC ACAAACTGGA TACCATGCAG
    TCTTTTGTCG ATGTCTCTCA AGAACACATG CGGGATTCGG AAAGTAGGGA TAGGTGTCTT
    GTGGATCCGA CGGGGCGACT ATTGGTTATG GAATTGTACG AAGGAGTGCT GAATTTGGTG
    AAGATTGTGA AGCCTAGGGG AGGCAAGACG GATTACTTGG AGAACCCAGA GCAAGTTAGG
    ATTTCGGAGA TGAAGGTTCG GGCGAGTGCG TTTTTGTATA CGGATACTAA ACAGCCGAAG
    TTGGCTTTGC TGTATCAGGA TGCGAGGGAG AATGTGAAGT TGGCGACATA TAGAATGCTG
    GATGACAAGG GACAGCTAAT TTTGCAGTTT GATCCAAAGA AGAACAGGGA GAATGACGTG
    GATGATTTGT GTGTTGGAGC TATGCATATC ATACCGGTTC CGAAGGCGAG GGATGAGGCG
    AGCAAGAGAT ATATTGTCAG GAACGCAACG ACTGCCAAGG CTAATTTAGG AGGTCTGGTT
    GTCTTGGGAG AAACAAAGTT TACATATCTG GATGATGAAA GTAAAGCTAT TGTCGAATAT
    GCGCTGGATG AGGCTGTATT ATGGGCTGCT TGGGAACCGA TAGATGAGAG AACTTATCTA
    CTAGGAGATG ATTATGGCTT TTTGTACATT TTGACAATAC TGGTCGATGG TGCTACAGTT
    ACTGGATTGC AAGTTGTAAA ACTGGGACAG GTATCTAAAC CTACATCTTT GGAGAACTTG
    GGGAATGGAG TGTTCTACAT TGCTTCCCAT GAAGCGGACA ATCAGGTTGT TCAAATAGAT
    TTGGAGAGTC CAGAACATGG TGTTACGTTG TTACAGACAC TACCGAATAT TGCTCCAATA
    CTTGATTTTA CAGTCATGGA CATGGGCGGG CGAGAGGGAG AGACCCAATT GAATGAGTAT
    TCTTCAGGTC AGGCTCGATT AGTCACGGGC AGTGGAGGAT TCGAGGGAGG AAGTTTAAGA
    AGTGTTCGGA GTGGAGTTGG ACTTGATGAT ACTGCAATAC TTGCCGAAAT GGAGGGTATC
    CGTAAAGTCT TCGCGTTACA TTCTGGCCCA ACTCTACCAA ATGATACTCT TGTAGTGTCG
    TTTTCTACAG AGACTCGATT CTTTAAGTTT GATACACAAG GAGATATTGA AGAAGTGGAG
    ACTGTTAAGA ATTTGTCTTC TACATCGGAA ACATTACTAA CTTATAACCT TGATGAAGGC
    TGTATATTAC AAGTCACACA ACATGAGGTA TCAATATATG GCAAATCTCC CGGTCATCGA
    TGGCAACCTC CCAACGGACA AATAATCACG GCAGCCTCAG GAAACCAGAA CTACATTCTA
    CTTTCATCGA ATGGACGTAC CTTGTTTACT TTATCAATTC AACAAAATTT GGCAGAGGTC
    GCATTTCAGG AGCTTGGAGA TGATCAAGTA GCTTGCATAC ATGTACCCCA AGTAATGGGT
    GATATTGGTG TCGTTGGATT ATGGAAGTCG GGATCGGTAT CTCTGCTTGA TCTCGCAACT
    CTCAATACTA TCGTATCTGA GGATTTACGA CGAGCTGATG GTGCTTCTAT ACCGAGAGAT
    ATTGCCCTTA CTCAAATTTT ACCCCCAGAA CTTTCAGGTC CGACATTGTT TGTTAGTATG
    GAAGATGGCA TTGTGTTGAG CTTCAATGTT GACAAGTCCG ATTGTTCACT GTCGGGACGC
    AAAAGCATTG TCCTTGGAAC ACAACAGGCG CAACTTCAGA TTTTACCACG GGATAATACA
    ACCTTTAATG TTTTTGCAAC ATGTGAGCAT CCTAGCTTGA TATATGGTTC TGAAGGTAGA
    ACTGTGTATT CGGCCGTCAC AGCTGAGGAC GCAATCGCAG TATGTTCACT GAATAGTGTA
    GCGTACCCAG GTTCAGTAGT TGTGGCTACA ATAAATGAAC TCAAACTCGC AGTCATCGAC
    AACGAAAGAA GAACACATGT CAGAACCTTA CCGATTGGTG AAACTGTAAG GAGGGTAGCA
    TACTCAGCTA AAGAGAAATC CTTTGCGATT GGAGCTATTA AACGTGAATT GACAAAGGGA
    CAAGAAGTTG TCACGACTTC TTTCAGGCTT GTCGACGAGG TTGTTTTCGG TGAGCTAGGA
    GAACCATACT ATTTACCACC AAATAACGAA ATTATCGAGA CTGTCGTACG AGCGGAGCTT
    CCAACAAGAC ATGGCGATGG CGAATTAGTC GAACGCTTCC TTGTCGGTAC AAGTTTCCTC
    CACGAGGAAG AAGCGAATGT TCGCGGTCGT CTTCTTATTT TCGGTGTCAA TGCAGATAGA
    GCTCCATATA TGATCGCTTC TCACAATCTC AAAGGTTCTT GTCGATGCAT TGGTGTACTC
    GATGGTAAAA TCGTAGCGGC ACTAAATAAA ACAGTCGTAA TGTACGACTA CGAGGAAACT
    TCGAGTACAA GCGCCACGCT TAAAAAACTA GCAACATATC GATGTTCAAC ATGTCCGATC
    GATATTGATA TTACAGATAA TATAATAGCA GTAGCGGATA TTATGAAATC GATTGCGCTG
    GTCGAATATA CACCTGGAGC CGATGGTCTT CCAGATAAAC TTGAGGAGGT CGCAAGGCAT
    GCACAACAAG TCTTCTCAAC CAGTGTCGCA GAGGTAGATA CAGATACCTA TCTGGAAACA
    GATCATGATG GCAATTTAAT ATTATTGAAG AGGAATAGAG AGGGTGTCAC GAGAGAAGAT
    AAAACTAGAA TGGAAGTTAC TTGTGAGATG AACCTTGGAG AGATGGTCAA TAGGGTTAAG
    AGGATCAATG TGGAAACATC GAAAGATGCT CTATTGATCC CGAGAGCCTT TCTCGGCACA
    ACCGAAGGAT CAATCTACCT CTTCTCTCTC ATCCCCCCAC AAAACCAAGA TCTATTAATG
    CGTCTCCAAT CCCGTCTAGC ATCTCTTCCT TCCGCCTCCT CCATCAGAGG ATCCTCGGAC
    TCTACATCTC CTCACCAAAT CGAACTCTCG CCCGGTAATC TCGATTTCAA TAAATACCGA
    TCCTACATAT CCGCCACGAG GGAAACAAGC GAACCCTTCA GATTTGTAGA CGGGGAATTA
    ATAGAAAGAT TTTTGGATTT GGAGGTTGAG GTGCAGGAAC ATGTGGCCGA GGGGTTGGGT
    GTCAAAGCCG AGGATTTAAG AGGTATGGTG GAGGGATTGA GGAGGTTGCA CTAG

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

    RefSeq XP_024552204.1
    CDS162..3635
    Translation

    Target ORF information:

    RefSeq Version XM_024696396.1
    Organism Botrytis cinerea B05.10
    Definition Botrytis cinerea B05.10 hypothetical protein (BCIN_12g03580), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_024696396.1

    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
    ATGGCTTACT TGGCACCGAT ACATAGACCA AGTAGTGTAC GACTTACACT GCGATTGAAT 
    CTTTTAGATC ATAGAGAGGA ATGTCTGGTA CTTGCGAAAG CAAACCGATT GGAAATATGG
    AGGGCCACAG AAGACGGTCT CACGATGGCA TATTCGAAAT CTATATATGG CCGCATATCC
    ATGCTGCAAA AGATCCAACC TGCGGGATCT AAAACTGACC ATCTCTTCGT CGGGACCGTT
    CGAGCACAAT ACTTTACCGT GATGTGGAAT CCTCAGACGC ACAAACTGGA TACCATGCAG
    TCTTTTGTCG ATGTCTCTCA AGAACACATG CGGGATTCGG AAAGTAGGGA TAGGTGTCTT
    GTGGATCCGA CGGGGCGACT ATTGGTTATG GAATTGTACG AAGGAGTGCT GAATTTGGTG
    AAGATTGTGA AGCCTAGGGG AGGCAAGACG GATTACTTGG AGAACCCAGA GCAAGTTAGG
    ATTTCGGAGA TGAAGGTTCG GGCGAGTGCG TTTTTGTATA CGGATACTAA ACAGCCGAAG
    TTGGCTTTGC TGTATCAGGA TGCGAGGGAG AATGTGAAGT TGGCGACATA TAGAATGCTG
    GATGACAAGG GACAGCTAAT TTTGCAGTTT GATCCAAAGA AGAACAGGGA GAATGACGTG
    GATGATTTGT GTGTTGGAGC TATGCATATC ATACCGGTTC CGAAGGCGAG GGATGAGGCG
    AGCAAGAGAT ATATTGTCAG GAACGCAACG ACTGCCAAGG CTAATTTAGG AGGTCTGGTT
    GTCTTGGGAG AAACAAAGTT TACATATCTG GATGATGAAA GTAAAGCTAT TGTCGAATAT
    GCGCTGGATG AGGCTGTATT ATGGGCTGCT TGGGAACCGA TAGATGAGAG AACTTATCTA
    CTAGGAGATG ATTATGGCTT TTTGTACATT TTGACAATAC TGGTCGATGG TGCTACAGTT
    ACTGGATTGC AAGTTGTAAA ACTGGGACAG GTATCTAAAC CTACATCTTT GGAGAACTTG
    GGGAATGGAG TGTTCTACAT TGCTTCCCAT GAAGCGGACA ATCAGGTTGT TCAAATAGAT
    TTGGAGAGTC CAGAACATGG TGTTACGTTG TTACAGACAC TACCGAATAT TGCTCCAATA
    CTTGATTTTA CAGTCATGGA CATGGGCGGG CGAGAGGGAG AGACCCAATT GAATGAGTAT
    TCTTCAGGTC AGGCTCGATT AGTCACGGGC AGTGGAGGAT TCGAGGGAGG AAGTTTAAGA
    AGTGTTCGGA GTGGAGTTGG ACTTGATGAT ACTGCAATAC TTGCCGAAAT GGAGGGTATC
    CGTAAAGTCT TCGCGTTACA TTCTGGCCCA ACTCTACCAA ATGATACTCT TGTAGTGTCG
    TTTTCTACAG AGACTCGATT CTTTAAGTTT GATACACAAG GAGATATTGA AGAAGTGGAG
    ACTGTTAAGA ATTTGTCTTC TACATCGGAA ACATTACTAA CTTATAACCT TGATGAAGGC
    TGTATATTAC AAGTCACACA ACATGAGGTA TCAATATATG GCAAATCTCC CGGTCATCGA
    TGGCAACCTC CCAACGGACA AATAATCACG GCAGCCTCAG GAAACCAGAA CTACATTCTA
    CTTTCATCGA ATGGACGTAC CTTGTTTACT TTATCAATTC AACAAAATTT GGCAGAGGTC
    GCATTTCAGG AGCTTGGAGA TGATCAAGTA GCTTGCATAC ATGTACCCCA AGTAATGGGT
    GATATTGGTG TCGTTGGATT ATGGAAGTCG GGATCGGTAT CTCTGCTTGA TCTCGCAACT
    CTCAATACTA TCGTATCTGA GGATTTACGA CGAGCTGATG GTGCTTCTAT ACCGAGAGAT
    ATTGCCCTTA CTCAAATTTT ACCCCCAGAA CTTTCAGGTC CGACATTGTT TGTTAGTATG
    GAAGATGGCA TTGTGTTGAG CTTCAATGTT GACAAGTCCG ATTGTTCACT GTCGGGACGC
    AAAAGCATTG TCCTTGGAAC ACAACAGGCG CAACTTCAGA TTTTACCACG GGATAATACA
    ACCTTTAATG TTTTTGCAAC ATGTGAGCAT CCTAGCTTGA TATATGGTTC TGAAGGTAGA
    ACTGTGTATT CGGCCGTCAC AGCTGAGGAC GCAATCGCAG TATGTTCACT GAATAGTGTA
    GCGTACCCAG GTTCAGTAGT TGTGGCTACA ATAAATGAAC TCAAACTCGC AGTCATCGAC
    AACGAAAGAA GAACACATGT CAGAACCTTA CCGATTGGTG AAACTGTAAG GAGGGTAGCA
    TACTCAGCTA AAGAGAAATC CTTTGCGATT GGAGCTATTA AACGTGAATT GACAAAGGGA
    CAAGAAGTTG TCACGACTTC TTTCAGGCTT GTCGACGAGG TTGTTTTCGG TGAGCTAGGA
    GAACCATACT ATTTACCACC AAATAACGAA ATTATCGAGA CTGTCGTACG AGCGGAGCTT
    CCAACAAGAC ATGGCGATGG CGAATTAGTC GAACGCTTCC TTGTCGGTAC AAGTTTCCTC
    CACGAGGAAG AAGCGAATGT TCGCGGTCGT CTTCTTATTT TCGGTGTCAA TGCAGATAGA
    GCTCCATATA TGATCGCTTC TCACAATCTC AAAGGTTCTT GTCGATGCAT TGGTGTACTC
    GATGGTAAAA TCGTAGCGGC ACTAAATAAA ACAGTCGTAA TGTACGACTA CGAGGAAACT
    TCGAGTACAA GCGCCACGCT TAAAAAACTA GCAACATATC GATGTTCAAC ATGTCCGATC
    GATATTGATA TTACAGATAA TATAATAGCA GTAGCGGATA TTATGAAATC GATTGCGCTG
    GTCGAATATA CACCTGGAGC CGATGGTCTT CCAGATAAAC TTGAGGAGGT CGCAAGGCAT
    GCACAACAAG TCTTCTCAAC CAGTGTCGCA GAGGTAGATA CAGATACCTA TCTGGAAACA
    GATCATGATG GCAATTTAAT ATTATTGAAG AGGAATAGAG AGGGTGTCAC GAGAGAAGAT
    AAAACTAGAA TGGAAGTTAC TTGTGAGATG AACCTTGGAG AGATGGTCAA TAGGGTTAAG
    AGGATCAATG TGGAAACATC GAAAGATGCT CTATTGATCC CGAGAGCCTT TCTCGGCACA
    ACCGAAGGAT CAATCTACCT CTTCTCTCTC ATCCCCCCAC AAAACCAAGA TCTATTAATG
    CGTCTCCAAT CCCGTCTAGC ATCTCTTCCT TCCGCCTCCT CCATCAGAGG ATCCTCGGAC
    TCTACATCTC CTCACCAAAT CGAACTCTCG CCCGGTAATC TCGATTTCAA TAAATACCGA
    TCCTACATAT CCGCCACGAG GGAAACAAGC GAACCCTTCA GATTTGTAGA CGGGGAATTA
    ATAGAAAGAT TTTTGGATTT GGAGGTTGAG GTGCAGGAAC ATGTGGCCGA GGGGTTGGGT
    GTCAAAGCCG AGGATTTAAG AGGTATGGTG GAGGGATTGA GGAGGTTGCA CTAG

    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)
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