BC1G_06137 cDNA ORF clone, Botrytis cinerea B05.10

The following BC1G_06137 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the BC1G_06137 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
OBc05691 XM_001555382.1
Latest version!
Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_06137) partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $307.30
$439.00
OBc18158 XM_024692072.1
Latest version!
Botrytis cinerea B05.10 Bcblm10 (Bcblm10), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $951.30
$1359.00

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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 OBc05691
    Clone ID Related Accession (Same CDS sequence) XM_001555382.1
    Accession Version XM_001555382.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 1596bp)
    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_001814543). 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
    ATGAACGGCA TGTTATTTAT CATCTCGTGT TTAGTCAGCA TGCTTGCTGG AGTGATTGCT 
    TGCTTGCTTG TTTGCTTGCT TTGGGGTTCC TTCAAGGCAG TCGTGATCAC ACCAAACACC
    GCCACTCTTT CCCTTCTTGC TCCCTTCTCT CCCTCACACC CAGCCACTCA ATTTGAGCCG
    CCATTCTCAA AAATAACGAT TTGCAAGATG GACGAAGGGT TCACAAATGG CAAAAGCCAT
    TCGCAGTACC TACAGAATAT GCTCCAAGGA GGTTCGAGCG ATACGATTTC GCGTGCAACT
    TCACCAGGTC TCGGCTTTGG GGCCAACGGA ATCGATACCG ACAGGGAGAA ACGATACAGG
    CCCAGAACAT TTCCATACTT CAAACTATTA CCATATAAAG TCGAGGAGGA GACCGAACGT
    AATGTGGCGC TGGCAGAAAT TATTAAGCAG CTTTATATTG CTCTCAAAGC TGAAGATATT
    GCACCTGGTG CTGTACATTG GACAAGAGAG CTGAGAGCAT GGCTGAGTCT GAAATTCGAC
    ATTACTCGTG CGCTGCGTGT GAAGCTTGTA AAGCTCTATT ACATGCTTTC GTTGGCCCCG
    GGCTTGGACT TGAGCAATGG AGAAAGATTT GAGAGCATGT TCAGATTCCT TTTGACTAGA
    AAAAAGCATC ACCTCAAACC CGGAGCAGAT CTTATTCTTG ATTGGCGCCC GCTCTGGAGA
    GAAATTAAAG GTCTCGTTCT TCCCCATGAA ATGGCAGCGC ATCAGGGTAG CCGAAAGCGA
    AGCCACAAGA ACGTTGCGAG TCTTGCAGCT TATGCATCGC AGTTTTTTGA TCCTGGTGAA
    AGAAAAGCTA TGTTCGAGGA GATTCTACCA TATTTTAGCA CCTCGGATTG TTCATACGCA
    TTCATTACCC TTGGGGCTCT GAATATGATG ATGCCAACTC AGCCATCACT GAATGAATCG
    GGCTTACTTC AACAACCCCA AGACTACCTG CCTACCCTTT TCCATCTTTG GTCACTCGTC
    AACCGTTCCA AGATCTTTGA CGTAACATTT TTAGACATGT TTTCGAGGCT TGCCCGAGAC
    TCTGTAGCTA ACGAACACGT TAACTTCTCC GAACATGGTA TATTCACAAA GGAACAATCC
    GATCTTATAT TTACAGCAAT TTTGAGGTTG ACCGAGATAC CCGTTGGGCA AGCTACCACT
    CCGTATAGCC CAATGGTGGA CATGGCTTCC GGCCTTGGCG TATATCTCGA AACAGACAAG
    AAGCGAACAC CTGTTGGATA TACGATTGCA CGATGGATAG TAATGTCTCT TTCGCCATTA
    TCTCTCAACA GCGAAAATTC GATTTTGTCA AATCTTGAGG GCTTGATACA GTCCATTGAT
    ACCTTTTTCC ATCCGTCGAA CAATGGAAAC TGGGCAGATA TACTATCACA GACTGTTTTT
    CATCTCGTTG ATTTCTTCCT CTTGCGTTGG AATCGAGAAC AGAGTGGCGA AATGGACACA
    CCACCCACGC GACGCATTAC TCCCGAATTA AAGAAGAGAT TCGTCCTCAT TCTTAAAGAT
    TCTTCAAATG CTCGCCAATG TTATGTCAAA ACATAA

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

    RefSeq XP_001555432.1
    CDS1..1596
    Translation

    Target ORF information:

    RefSeq Version XM_001555382.1
    Organism Botrytis cinerea B05.10
    Definition Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_06137) partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001555382.1

    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
    ATGAACGGCA TGTTATTTAT CATCTCGTGT TTAGTCAGCA TGCTTGCTGG AGTGATTGCT 
    TGCTTGCTTG TTTGCTTGCT TTGGGGTTCC TTCAAGGCAG TCGTGATCAC ACCAAACACC
    GCCACTCTTT CCCTTCTTGC TCCCTTCTCT CCCTCACACC CAGCCACTCA ATTTGAGCCG
    CCATTCTCAA AAATAACGAT TTGCAAGATG GACGAAGGGT TCACAAATGG CAAAAGCCAT
    TCGCAGTACC TACAGAATAT GCTCCAAGGA GGTTCGAGCG ATACGATTTC GCGTGCAACT
    TCACCAGGTC TCGGCTTTGG GGCCAACGGA ATCGATACCG ACAGGGAGAA ACGATACAGG
    CCCAGAACAT TTCCATACTT CAAACTATTA CCATATAAAG TCGAGGAGGA GACCGAACGT
    AATGTGGCGC TGGCAGAAAT TATTAAGCAG CTTTATATTG CTCTCAAAGC TGAAGATATT
    GCACCTGGTG CTGTACATTG GACAAGAGAG CTGAGAGCAT GGCTGAGTCT GAAATTCGAC
    ATTACTCGTG CGCTGCGTGT GAAGCTTGTA AAGCTCTATT ACATGCTTTC GTTGGCCCCG
    GGCTTGGACT TGAGCAATGG AGAAAGATTT GAGAGCATGT TCAGATTCCT TTTGACTAGA
    AAAAAGCATC ACCTCAAACC CGGAGCAGAT CTTATTCTTG ATTGGCGCCC GCTCTGGAGA
    GAAATTAAAG GTCTCGTTCT TCCCCATGAA ATGGCAGCGC ATCAGGGTAG CCGAAAGCGA
    AGCCACAAGA ACGTTGCGAG TCTTGCAGCT TATGCATCGC AGTTTTTTGA TCCTGGTGAA
    AGAAAAGCTA TGTTCGAGGA GATTCTACCA TATTTTAGCA CCTCGGATTG TTCATACGCA
    TTCATTACCC TTGGGGCTCT GAATATGATG ATGCCAACTC AGCCATCACT GAATGAATCG
    GGCTTACTTC AACAACCCCA AGACTACCTG CCTACCCTTT TCCATCTTTG GTCACTCGTC
    AACCGTTCCA AGATCTTTGA CGTAACATTT TTAGACATGT TTTCGAGGCT TGCCCGAGAC
    TCTGTAGCTA ACGAACACGT TAACTTCTCC GAACATGGTA TATTCACAAA GGAACAATCC
    GATCTTATAT TTACAGCAAT TTTGAGGTTG ACCGAGATAC CCGTTGGGCA AGCTACCACT
    CCGTATAGCC CAATGGTGGA CATGGCTTCC GGCCTTGGCG TATATCTCGA AACAGACAAG
    AAGCGAACAC CTGTTGGATA TACGATTGCA CGATGGATAG TAATGTCTCT TTCGCCATTA
    TCTCTCAACA GCGAAAATTC GATTTTGTCA AATCTTGAGG GCTTGATACA GTCCATTGAT
    ACCTTTTTCC ATCCGTCGAA CAATGGAAAC TGGGCAGATA TACTATCACA GACTGTTTTT
    CATCTCGTTG ATTTCTTCCT CTTGCGTTGG AATCGAGAAC AGAGTGGCGA AATGGACACA
    CCACCCACGC GACGCATTAC TCCCGAATTA AAGAAGAGAT TCGTCCTCAT TCTTAAAGAT
    TCTTCAAATG CTCGCCAATG TTATGTCAAA ACATAA

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

    CloneID OBc18158
    Clone ID Related Accession (Same CDS sequence) XM_024692072.1
    Accession Version XM_024692072.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5859bp)
    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 Bcblm10
    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_037312).

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    5701
    5761
    5821
    ATGGACGAAG GGTTCACAAA TGGCAAAAGC CATTCGCAGT ACCTACAGAA TATGCTCCAA 
    GGAGGTTCGA GCGATACGAT TTCGCGTGCA ACTTCACCAG GTCTCGGCTT TGGGGCCAAC
    GGAATCGATA CCGACAGGGA GAAACGATAC AGGCCCAGAA CATTTCCATA CTTCAAACTA
    TTACCATATA AAGTCGAGGA GGAGACCGAA CGTAATGTGG CGCTGGCAGA AATTATTAAG
    CAGCTTTATA TTGCTCTCAA AGCTGAAGAT ATTGCACCTG GTGCTGTACA TTGGACAAGA
    GAGCTGAGAG CATGGCTGAG TCTGAAATTC GACATTACTC GTGCGCTGCG TGTGAAGCTT
    GTAAAGCTCT ATTACATGCT TTCGTTGGCC CCGGGCTTGG ACTTGAGCAA TGGAGAAAGA
    TTTGAGAGCA TGTTCAGATT CCTTTTGACT AGAAAAAAGC ATCACCTCAA ACCCGGAGCA
    GATCTTATTC TTGATTGGCG CCCGCTCTGG AGAGAAATTA AAGGTCTCGT TCTTCCCCAT
    GAAATGGCAG CGCATCAGGG TAGCCGAAAG CGAAGCCACA AGAACGTTGC GAGTCTTGCA
    GCTTATGCAT CGCAGTTTTT TGATCCTGGT GAAAGAAAAG CTATGTTCGA GGAGATTCTA
    CCATATTTTA GCACCTCGGA TTGTTCATAC GCATTCATTA CCCTTGGGGC TCTGAATATG
    ATGATGCCAA CTCAGCCATC ACTGAATGAA TCGGGCTTAC TTCAACAACC CCAAGACTAC
    CTGCCTACCC TTTTCCATCT TTGGTCACTC GTCAACCGTT CCAAGATCTT TGACGTAACA
    TTTTTAGACA TGTTTTCGAG GCTTGCCCGA GACTCTGTAG CTAACGAACA CGTTAACTTC
    TCCGAACATG GTATATTCAC AAAGGAACAA TCCGATCTTA TATTTACAGC AATTTTGAGG
    TTGACCGAGA TACCCGTTGG GCAAGCTACC ACTCCGTATA GCCCAATGGT GGACATGGCT
    TCCGGCCTTG GCGTATATCT CGAAACAGAC AAGAAGCGAA CACCTGTTGG ATATACGATT
    GCACGATGGA TAGTAATGTC TCTTTCGCCA TTATCTCTCA ACAGCGAAAA TTCGATTTTG
    TCAAATCTTG AGGGCTTGAT ACAGTCCATT GATACCTTTT TCCATCCGTC GAACAATGGA
    AACTGGGCAG ATATACTATC ACAGACTGTT TTTCATCTCG TTGATTTCTT CCTCTTGCGT
    TGGAATCGAG AACAGAGTGG CGAAATGGAC ACACCACCCA CGCGACGCAT TACTCCCGAA
    TTAAAGAAGA GATTCGTCCT CATTCTTAAA GATGTAGTTT TCATGGGAAT CTTTTCCAAA
    AGATCAAAGA TTCTCAACTA CTATTTTGTT GCACTTCAAG GTCTGGCGAA TCTTGAACCA
    AACTTAATCT TGCCAGGAGC AATGCAGAGA TTTTACCCTT CCCTTCAAGG TTTGGTTGAG
    GTCCATCGAA CTTCTTCATC TTTATGTAGT CTTCAAATGC TCGCCAATGT TATGTCAAAA
    CATAAGGGAT ATCGTTGTCA TATTACAGCG TTGCTAGCTC TAGCTTTGCC TGGTATCGAT
    GCCAATGATT TGTCCAAAAC CCAATATACT TTGAATTTTA TACAGGCTGT AGCATTTAGT
    ATACCATTTA CGGATCTCAC AAAGAATCAC GATGGTATAC ATGACACATC CCTTGCCATT
    CAATGGGTAC AGGGTGAGAT GGAACGACTA GAACGAGATG GCCCAAACGT GGAGATCGAC
    TATGACACGG AGCTTAGCGA TGAAGACGAA GCCAGTATCT TGCGATCTTC CACCGCAGGC
    TTTGGTGAGT TCGTCTTAGC TCTGCTCGGG AAAGTATTTA CGTTGTTGGA GAATTTACCT
    GAACAAAACC GGCTACGAAC CGGAGCCCCG GAAGAAAACG TGGTCAACGT CTTACCCAGC
    GCTCTCACAC CATTGTTTTG CTCTTTGTCG CCTGATCTCT TCGACATAGC ATTAGAGAAA
    ATGGCAGCTT TCATTAATAG CCATGTTGTC CACCAGGCTA GAGATGCAAT GGCATTTATC
    GTCAATTCCA TGTGCAAGGC TAATCCAGAG AGGACGATAA AACTACTTTT GCCGATGCTT
    GTTGTTGGTA TCCGAAACGA GATTGATTTC AATGATGCTG CATCTAACAG GAGTGGTGGT
    TCTGACGTAT TGCCTCGCGA TCGAGCTTTA GTTTGGCATT TGAGTATGCT TAGCATGATT
    GTTGTTCATG TCGGAGATGC AGTTATGCCA TATAAGAAAG AGCTTTTTGA TATAGCTCTT
    TATATGCAGG AAAAATGTTA CGGCCTCGCC ACAACTCATG TCTCTAATTT TATTCATCAC
    CTTTTGCTCA ACCTCACCAC AATCTATCCT GTTGATACTG CCCTATATGA ACCAGAAGTT
    TTTGAGAGAG GCCTTGATGT CAGCGATTGG GGTCGCAACA CTAAGCCATC CGAATTAACG
    ATAAAATGGC ATGTGCCTTC CTCCGATGAG ATCAATCTTG CCGTTGAAAT ATTTGAGTCT
    CAAGTAAAGA CCTCAATCGA GAAGCTTGAC AACTTAACCA GCGATTCTCC AGCCGTTTCA
    CGAAATGGTA AGAACAAAGA GTGGTCAGAT GAGGTTGAAA GAGCTCTCAC ACATATTCGG
    TTGATGATGT CCGGTGTTTC TGTCCTATTT GATCCCAAAG CAGCTTCTGG GAATCTACAT
    GCAGAATCTG AGTCGGATAA CGATATCACT ATGAATGGAG ATAACCCGAT GGAAGGTGAT
    GATGATCCTT TAGCGGAAGC CTCCGAAGAT GAGGAAACCA GACCTCAATT TCATTATCGT
    GCGGGATACC TTTTGGAAAA GGATAGCCCA GCGTACGTTC GTATACATAA ACTTCGCGAA
    GATGTTGGCC ACCTATATTG CAAGATGCAC AACTTTCTCA TGAAGTATCA AGAAGATGAT
    GTTCCTTGTT TCACCGCGCT TTACTTGGCA TACAAATCAT GGATTACCGA TGTTGGCAAT
    GAGAAGTCTG CTCATACCTT AGAACGAATG AACAAAATCT ACCTCTCAGA GATTCGTTCC
    TTCAAAGTTA CCGGTCTTAG GAAGGTATAT CCAAGACCCT TGTTGATAAA GCGTGCTGGA
    AGCTATCATC TACAGCGCTC TAAGCACAAT GCATCGGCAC GACAGAAGTC GGATCTTGAT
    AAAGAACTTC TTTTAAATCT AGCAACATCC GCCATTTCCC AATATGCCGA AGTTCGAGTC
    ACGGCTCAGC AAGCTATGGA ATCAGCTCTA AAGAGCGTTA TTGGCGGTCG ACCTCTAGTT
    GTACCCCAAT TACTCAGTGC CTTTAGGACA GCTTTGGAAA CAAATGATTT TGACCGGATC
    AAAGGGTGTC TTTATACGTT ATTATTCGGT AGCCTTACGA AAACAATCTC GAAAGATTGG
    CGGTTTGCGC CAGAGCTGAT TGATCTATAT ATTAAGTCTG GATCTGTCGA TAAGCCCTCT
    ATTCAAAAAG TAGGTAACAC CGCCATGTAC GGAGGATTGA TTGAATTTGG CAGAAGAATG
    GAGACCCTCG TTGTCCTCGA CCAAGCTCTT ATTCAAGAAA TAGAGCCACA AGAAGATTGT
    CACTCCACTA TCAAGACCAG AAACGACTTT ATTGTTGGGC GACGTGTTAG AGTAGAAGAA
    AAGAAGTGGA AATTAGCAGT GGAGCTTACT GCATTTGCAA AAACTGCTCA CTGGAAACTT
    GCTGGGCGTT GTACTTTGTT CATTAACAAT TTGGGTCTCC GAGTGCAAAC ACTTGCACCA
    CCCGAAATGA TTGAGCTCGC TACGCTAGGA GCCGTCACTG AACATCCTGG GCTTCGAGCT
    GCTCATACTG AATTCATGAC CCGCATCTTA AATCACATTG AAACTCGTGC TATCTATGGC
    CACAGCTTCG AGAAATATAT TCGCGAAGAG GAATTTCAGC CTAACAAGCT TGAGGTTCCC
    GTGGATAATA AAGATCCCGA GTGGACGAAG AAGTTCTTGG ACTCCTTTGC AGAGCCTGGA
    CAGCCAGAAT ATTATTTGGA TCGTGATTGG CCCGGATGGC TTGTCTGGGG TAAGAGCTTT
    CATGCCATGC GAGCAGACCC TATAGAATTT ACGGATTTCG ATGAGCTAGA AACTTCTGCG
    AGAAAGCAAA TCGGGTCTCT ATTGACATTA GACTGGTATC AAAAATTCTT CATGTACATG
    AAGCAAGAGC CAAGAGACAC CTCTGCAGAT CGATTTCGAG TGCAGAATAC AACTTTGCTA
    GTTCAAACAT TCGAGTTGAT GCATTCCGGA CTCACTTCAG CTAACTTTGA TGATATTAAA
    GAAGAGGTCA AAAAAGTTTA CGAAGATGGT AGTGACAAGC ATCAGCATCG TGCAACAGCA
    GAGATCGTGG CTGGGCTTAT GCTTTCCACA TATGACTTTC CGAATAAGAA ACGTGATGAG
    GTCTGGGCTT TCTGCTTACC TATCATGTTA AATGTCTTCT CCGAAGGGTT GACACCAGAA
    AACTTGACTT ATTGGGTCAC CGGTCTTCAT ATGGTTATCG GCGGCAGAGA CCCCAGGTCA
    TCAAGAGAAC TTTTTGATTT CCTTGTTTCA TTCCGGTTGG ATATCACATC TAATGCAGCC
    TTTAAGGATA GTTCCAAGAT TCAGCTCTTG GATGTTGCTA TCTCTGATGC TGGTTGGCAT
    TTCCGCAACG ACGAGCCCAT CCTACGAGAT TTCCTTGACC ACATCGACCA CCCGTATAAA
    GCTGTGAGAG AAGCAATTGG CCGAGCAACT GCTACCATAT ATCGTATGAG ATACTTCGAG
    GCATTCAGAG ATGTAGATAC TCTTCTAGAG GCAAACAAGT CGGCTTCTTC CATTGGTATC
    AAGCCTTACG AACCCACGGA AGATTTCTCT TCAACCATCA GAGACGTCTT CAAGCGACTA
    GAAGTTTGGC GTGGTCAACG AGCTCAGGGT GAGCAGACAC CAACCTCATA TACCAATGGT
    AGCAAAACCG TATTGTTATG GCTTGATTCC ACTTTGCAAT CTTACGAATG TACCCAACTT
    ATTAGTTTCT TCCCGAATGT ATTTATGGAG CAACTATTAC ATATGATGGA TGTCAAAGAA
    GATCCAGAGC TTCAACGTCT CGCTTATCAC GTATACCGCC ACCTTCCCAA TATCCCGTTC
    CGTGCTGGCG AAGATGGTGA GTTTATCTCG GCCCTCATTC GTATCGGCAA GGTATCCGGA
    TCATGGCATC AACGTTTACG AACCTTGATC AACATGCAAG TGATCTACTT CCGTCGCATA
    TTCCTCATCA GGCCCGCGGA GCAGCAAGCT CTCTTTACAG CCGTCGCTGA GATGCTTGAA
    GACCCACAAC TCGAAGTCCG TCTTGGTGCA TCTACTACTC TCGCTGGCAT GATTCGATGT
    TCGCCCATCG TTCTTCGTAA TAATATCCTA TCTTCTCTGC GCATCAAATT TACGCAAGCT
    CTCAAGAAGA ACCCTATGCC CAAGAAAGTA CAAGGTGTAA GCACACCAGT AAATTCAAAT
    ACTCAAATTA TCAAAAGACA TGCGGCTGTT CTCGGATTAG GTGCCTTGGT CAACGCATTC
    CCATATGCAA CACCACCACC CGAATGGATG CCAGAGGTAT TGGCTACTTT AGCAAGTAGA
    GCTGCAAATG ATGCTGGTGC AATTGGCAAG ACCGTGAAGA GCGTTTTGGC TGATTTCAAG
    AAAACTCGTC AGGACACTTG GGTAACGGAT CAGAAGTATT TCACACCCGA ACAGTTGGAG
    GATTTAGAAG GCGTGCTCTG GAAATCCTAT TTTGCATGA

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

    RefSeq XP_024547845.1
    CDS285..6143
    Translation

    Target ORF information:

    RefSeq Version XM_024692072.1
    Organism Botrytis cinerea B05.10
    Definition Botrytis cinerea B05.10 Bcblm10 (Bcblm10), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_024692072.1

    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
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    5701
    5761
    5821
    ATGGACGAAG GGTTCACAAA TGGCAAAAGC CATTCGCAGT ACCTACAGAA TATGCTCCAA 
    GGAGGTTCGA GCGATACGAT TTCGCGTGCA ACTTCACCAG GTCTCGGCTT TGGGGCCAAC
    GGAATCGATA CCGACAGGGA GAAACGATAC AGGCCCAGAA CATTTCCATA CTTCAAACTA
    TTACCATATA AAGTCGAGGA GGAGACCGAA CGTAATGTGG CGCTGGCAGA AATTATTAAG
    CAGCTTTATA TTGCTCTCAA AGCTGAAGAT ATTGCACCTG GTGCTGTACA TTGGACAAGA
    GAGCTGAGAG CATGGCTGAG TCTGAAATTC GACATTACTC GTGCGCTGCG TGTGAAGCTT
    GTAAAGCTCT ATTACATGCT TTCGTTGGCC CCGGGCTTGG ACTTGAGCAA TGGAGAAAGA
    TTTGAGAGCA TGTTCAGATT CCTTTTGACT AGAAAAAAGC ATCACCTCAA ACCCGGAGCA
    GATCTTATTC TTGATTGGCG CCCGCTCTGG AGAGAAATTA AAGGTCTCGT TCTTCCCCAT
    GAAATGGCAG CGCATCAGGG TAGCCGAAAG CGAAGCCACA AGAACGTTGC GAGTCTTGCA
    GCTTATGCAT CGCAGTTTTT TGATCCTGGT GAAAGAAAAG CTATGTTCGA GGAGATTCTA
    CCATATTTTA GCACCTCGGA TTGTTCATAC GCATTCATTA CCCTTGGGGC TCTGAATATG
    ATGATGCCAA CTCAGCCATC ACTGAATGAA TCGGGCTTAC TTCAACAACC CCAAGACTAC
    CTGCCTACCC TTTTCCATCT TTGGTCACTC GTCAACCGTT CCAAGATCTT TGACGTAACA
    TTTTTAGACA TGTTTTCGAG GCTTGCCCGA GACTCTGTAG CTAACGAACA CGTTAACTTC
    TCCGAACATG GTATATTCAC AAAGGAACAA TCCGATCTTA TATTTACAGC AATTTTGAGG
    TTGACCGAGA TACCCGTTGG GCAAGCTACC ACTCCGTATA GCCCAATGGT GGACATGGCT
    TCCGGCCTTG GCGTATATCT CGAAACAGAC AAGAAGCGAA CACCTGTTGG ATATACGATT
    GCACGATGGA TAGTAATGTC TCTTTCGCCA TTATCTCTCA ACAGCGAAAA TTCGATTTTG
    TCAAATCTTG AGGGCTTGAT ACAGTCCATT GATACCTTTT TCCATCCGTC GAACAATGGA
    AACTGGGCAG ATATACTATC ACAGACTGTT TTTCATCTCG TTGATTTCTT CCTCTTGCGT
    TGGAATCGAG AACAGAGTGG CGAAATGGAC ACACCACCCA CGCGACGCAT TACTCCCGAA
    TTAAAGAAGA GATTCGTCCT CATTCTTAAA GATGTAGTTT TCATGGGAAT CTTTTCCAAA
    AGATCAAAGA TTCTCAACTA CTATTTTGTT GCACTTCAAG GTCTGGCGAA TCTTGAACCA
    AACTTAATCT TGCCAGGAGC AATGCAGAGA TTTTACCCTT CCCTTCAAGG TTTGGTTGAG
    GTCCATCGAA CTTCTTCATC TTTATGTAGT CTTCAAATGC TCGCCAATGT TATGTCAAAA
    CATAAGGGAT ATCGTTGTCA TATTACAGCG TTGCTAGCTC TAGCTTTGCC TGGTATCGAT
    GCCAATGATT TGTCCAAAAC CCAATATACT TTGAATTTTA TACAGGCTGT AGCATTTAGT
    ATACCATTTA CGGATCTCAC AAAGAATCAC GATGGTATAC ATGACACATC CCTTGCCATT
    CAATGGGTAC AGGGTGAGAT GGAACGACTA GAACGAGATG GCCCAAACGT GGAGATCGAC
    TATGACACGG AGCTTAGCGA TGAAGACGAA GCCAGTATCT TGCGATCTTC CACCGCAGGC
    TTTGGTGAGT TCGTCTTAGC TCTGCTCGGG AAAGTATTTA CGTTGTTGGA GAATTTACCT
    GAACAAAACC GGCTACGAAC CGGAGCCCCG GAAGAAAACG TGGTCAACGT CTTACCCAGC
    GCTCTCACAC CATTGTTTTG CTCTTTGTCG CCTGATCTCT TCGACATAGC ATTAGAGAAA
    ATGGCAGCTT TCATTAATAG CCATGTTGTC CACCAGGCTA GAGATGCAAT GGCATTTATC
    GTCAATTCCA TGTGCAAGGC TAATCCAGAG AGGACGATAA AACTACTTTT GCCGATGCTT
    GTTGTTGGTA TCCGAAACGA GATTGATTTC AATGATGCTG CATCTAACAG GAGTGGTGGT
    TCTGACGTAT TGCCTCGCGA TCGAGCTTTA GTTTGGCATT TGAGTATGCT TAGCATGATT
    GTTGTTCATG TCGGAGATGC AGTTATGCCA TATAAGAAAG AGCTTTTTGA TATAGCTCTT
    TATATGCAGG AAAAATGTTA CGGCCTCGCC ACAACTCATG TCTCTAATTT TATTCATCAC
    CTTTTGCTCA ACCTCACCAC AATCTATCCT GTTGATACTG CCCTATATGA ACCAGAAGTT
    TTTGAGAGAG GCCTTGATGT CAGCGATTGG GGTCGCAACA CTAAGCCATC CGAATTAACG
    ATAAAATGGC ATGTGCCTTC CTCCGATGAG ATCAATCTTG CCGTTGAAAT ATTTGAGTCT
    CAAGTAAAGA CCTCAATCGA GAAGCTTGAC AACTTAACCA GCGATTCTCC AGCCGTTTCA
    CGAAATGGTA AGAACAAAGA GTGGTCAGAT GAGGTTGAAA GAGCTCTCAC ACATATTCGG
    TTGATGATGT CCGGTGTTTC TGTCCTATTT GATCCCAAAG CAGCTTCTGG GAATCTACAT
    GCAGAATCTG AGTCGGATAA CGATATCACT ATGAATGGAG ATAACCCGAT GGAAGGTGAT
    GATGATCCTT TAGCGGAAGC CTCCGAAGAT GAGGAAACCA GACCTCAATT TCATTATCGT
    GCGGGATACC TTTTGGAAAA GGATAGCCCA GCGTACGTTC GTATACATAA ACTTCGCGAA
    GATGTTGGCC ACCTATATTG CAAGATGCAC AACTTTCTCA TGAAGTATCA AGAAGATGAT
    GTTCCTTGTT TCACCGCGCT TTACTTGGCA TACAAATCAT GGATTACCGA TGTTGGCAAT
    GAGAAGTCTG CTCATACCTT AGAACGAATG AACAAAATCT ACCTCTCAGA GATTCGTTCC
    TTCAAAGTTA CCGGTCTTAG GAAGGTATAT CCAAGACCCT TGTTGATAAA GCGTGCTGGA
    AGCTATCATC TACAGCGCTC TAAGCACAAT GCATCGGCAC GACAGAAGTC GGATCTTGAT
    AAAGAACTTC TTTTAAATCT AGCAACATCC GCCATTTCCC AATATGCCGA AGTTCGAGTC
    ACGGCTCAGC AAGCTATGGA ATCAGCTCTA AAGAGCGTTA TTGGCGGTCG ACCTCTAGTT
    GTACCCCAAT TACTCAGTGC CTTTAGGACA GCTTTGGAAA CAAATGATTT TGACCGGATC
    AAAGGGTGTC TTTATACGTT ATTATTCGGT AGCCTTACGA AAACAATCTC GAAAGATTGG
    CGGTTTGCGC CAGAGCTGAT TGATCTATAT ATTAAGTCTG GATCTGTCGA TAAGCCCTCT
    ATTCAAAAAG TAGGTAACAC CGCCATGTAC GGAGGATTGA TTGAATTTGG CAGAAGAATG
    GAGACCCTCG TTGTCCTCGA CCAAGCTCTT ATTCAAGAAA TAGAGCCACA AGAAGATTGT
    CACTCCACTA TCAAGACCAG AAACGACTTT ATTGTTGGGC GACGTGTTAG AGTAGAAGAA
    AAGAAGTGGA AATTAGCAGT GGAGCTTACT GCATTTGCAA AAACTGCTCA CTGGAAACTT
    GCTGGGCGTT GTACTTTGTT CATTAACAAT TTGGGTCTCC GAGTGCAAAC ACTTGCACCA
    CCCGAAATGA TTGAGCTCGC TACGCTAGGA GCCGTCACTG AACATCCTGG GCTTCGAGCT
    GCTCATACTG AATTCATGAC CCGCATCTTA AATCACATTG AAACTCGTGC TATCTATGGC
    CACAGCTTCG AGAAATATAT TCGCGAAGAG GAATTTCAGC CTAACAAGCT TGAGGTTCCC
    GTGGATAATA AAGATCCCGA GTGGACGAAG AAGTTCTTGG ACTCCTTTGC AGAGCCTGGA
    CAGCCAGAAT ATTATTTGGA TCGTGATTGG CCCGGATGGC TTGTCTGGGG TAAGAGCTTT
    CATGCCATGC GAGCAGACCC TATAGAATTT ACGGATTTCG ATGAGCTAGA AACTTCTGCG
    AGAAAGCAAA TCGGGTCTCT ATTGACATTA GACTGGTATC AAAAATTCTT CATGTACATG
    AAGCAAGAGC CAAGAGACAC CTCTGCAGAT CGATTTCGAG TGCAGAATAC AACTTTGCTA
    GTTCAAACAT TCGAGTTGAT GCATTCCGGA CTCACTTCAG CTAACTTTGA TGATATTAAA
    GAAGAGGTCA AAAAAGTTTA CGAAGATGGT AGTGACAAGC ATCAGCATCG TGCAACAGCA
    GAGATCGTGG CTGGGCTTAT GCTTTCCACA TATGACTTTC CGAATAAGAA ACGTGATGAG
    GTCTGGGCTT TCTGCTTACC TATCATGTTA AATGTCTTCT CCGAAGGGTT GACACCAGAA
    AACTTGACTT ATTGGGTCAC CGGTCTTCAT ATGGTTATCG GCGGCAGAGA CCCCAGGTCA
    TCAAGAGAAC TTTTTGATTT CCTTGTTTCA TTCCGGTTGG ATATCACATC TAATGCAGCC
    TTTAAGGATA GTTCCAAGAT TCAGCTCTTG GATGTTGCTA TCTCTGATGC TGGTTGGCAT
    TTCCGCAACG ACGAGCCCAT CCTACGAGAT TTCCTTGACC ACATCGACCA CCCGTATAAA
    GCTGTGAGAG AAGCAATTGG CCGAGCAACT GCTACCATAT ATCGTATGAG ATACTTCGAG
    GCATTCAGAG ATGTAGATAC TCTTCTAGAG GCAAACAAGT CGGCTTCTTC CATTGGTATC
    AAGCCTTACG AACCCACGGA AGATTTCTCT TCAACCATCA GAGACGTCTT CAAGCGACTA
    GAAGTTTGGC GTGGTCAACG AGCTCAGGGT GAGCAGACAC CAACCTCATA TACCAATGGT
    AGCAAAACCG TATTGTTATG GCTTGATTCC ACTTTGCAAT CTTACGAATG TACCCAACTT
    ATTAGTTTCT TCCCGAATGT ATTTATGGAG CAACTATTAC ATATGATGGA TGTCAAAGAA
    GATCCAGAGC TTCAACGTCT CGCTTATCAC GTATACCGCC ACCTTCCCAA TATCCCGTTC
    CGTGCTGGCG AAGATGGTGA GTTTATCTCG GCCCTCATTC GTATCGGCAA GGTATCCGGA
    TCATGGCATC AACGTTTACG AACCTTGATC AACATGCAAG TGATCTACTT CCGTCGCATA
    TTCCTCATCA GGCCCGCGGA GCAGCAAGCT CTCTTTACAG CCGTCGCTGA GATGCTTGAA
    GACCCACAAC TCGAAGTCCG TCTTGGTGCA TCTACTACTC TCGCTGGCAT GATTCGATGT
    TCGCCCATCG TTCTTCGTAA TAATATCCTA TCTTCTCTGC GCATCAAATT TACGCAAGCT
    CTCAAGAAGA ACCCTATGCC CAAGAAAGTA CAAGGTGTAA GCACACCAGT AAATTCAAAT
    ACTCAAATTA TCAAAAGACA TGCGGCTGTT CTCGGATTAG GTGCCTTGGT CAACGCATTC
    CCATATGCAA CACCACCACC CGAATGGATG CCAGAGGTAT TGGCTACTTT AGCAAGTAGA
    GCTGCAAATG ATGCTGGTGC AATTGGCAAG ACCGTGAAGA GCGTTTTGGC TGATTTCAAG
    AAAACTCGTC AGGACACTTG GGTAACGGAT CAGAAGTATT TCACACCCGA ACAGTTGGAG
    GATTTAGAAG GCGTGCTCTG GAAATCCTAT TTTGCATGA

    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