BC1G_07948 cDNA ORF clone, Botrytis cinerea B05.10

The following BC1G_07948 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the BC1G_07948 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
OBc04756 XM_001553705.1
Latest version!
Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_07948) partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OBc17348 XM_001553705.2
Latest version!
Botrytis cinerea B05.10 hypothetical protein (BCIN_02g04060), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00

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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 OBc04756
    Clone ID Related Accession (Same CDS sequence) XM_001553705.1
    Accession Version XM_001553705.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3222bp)
    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_001814529). 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
    ATGCGAGAAA AATCAAAAGG AAGACAGCGC AAGATCCATG CAAATCTCCG CCTCAAAGTC 
    CAAACAACCT TTTCAACACA CCATGGACCT CAACCTCAAG CGATCTCTTC ACAGCCGTCT
    CGATCCAATG GAGTTTTTGT TGATTTGGCC ACCCTCAGGA AACTGGAAAA TGTTTCGGCT
    CATCCAAACG GAACTTTGTG GAAATCTTTG GAGAACAAGA AAAGCAAAGC CATCGAAAAC
    TCTGCCGAGG AGACTAAGAC TGAGGCTCTG GAAACAGTAC AGAAAGAAAC ACCGAATGTA
    TATCCGCTGG CAGAGCGACG AGGGTCTTTG AGACCAGCAG CCCTGAAGTT GGAGGACGAC
    TTGTCTCCTA ACGATCGACC AATTGTTATC GGCATCTCAA TCCCATCTGC ACGTTTAGCT
    CATCATGTAA CCACCCCGCA AACATCAACT TCAATCGCTT CAACAATGAT GGGAAGTTAC
    GGGCATGAAA CACCGATAGG GAGAGAATTG GTAACGCCAT CTATCGTCAT CACTCCTGCC
    CACGAGGTCT CTGCGTGGTC GCCTTACAGT ACTGCATCAA ATGTTTCACG AGCACGAACT
    TTATCAACAT CCTTTTCAGT AACTAGCCCT AATGACCCAT TCAAAGAGGG GGCGCCACCA
    TTGCCGAAAA TGCCAGCGGC TTTAGCCGAA GAGGAGAAGC GAAGAGTGGC TGCCCAGCAT
    AGTTACTTCT CTCCCGATTC GGATGCCACT ACTGAATGGG ATGACGAACC AGATTCAACC
    CGAGTTCTGT CGTCTTGTAT TATTTATGAA GAGGATGAGC ATCCAATCAT TGTGCGAAGT
    GCTCGTGCAA TCGATGTTGC AGACAAATTG AAAGTGGACA ACCATGAAAG TATCGACACC
    ATTGCTGCAC GGACTCGTTC TGGATGGTGG AATTACATCA CTTCGCCATT CGTTTCGCGG
    TCGAACACAG TGGTATATCC AGAGAAGAAG ATTTCGAGTA TCCCGGAGGT ACCTATCTTA
    AACGTTGCAG CAGCCAGAGT TCAGGAATCA AAGATGGAGC GAAAGTCGTG GGAACAGCTT
    TTTTCCCCTC TTTCTATCAA AAGATCGAAT TCCAATGCAT CCGATGCTTG GTGGGATGTG
    ACTCCCTTGG GTTTCAGGTC AGAAAAGCAG GTTTCTCCTG GTTTAGTTTA CAAAGAGACG
    AGGCATCCAG TGAAGCCGTC GATAGCTACT TTGCCCTTTG TTCGTTCAGC TTCGGGCGAT
    GTGGGAGATG CTTCATTGGC TAGCGCCATT GGTATGACTG CCACCGCGGA TTCTAAGTAT
    TATACGAATT CTACAATGCC TCATGACCAT TCGGGTATTT CAAATTCAAT ACAAAGAGGT
    TCTATTTTGG TCAACAAAGA CAATTCGTTG TCATCTTCAA ACGATAGCAC AAAAGAACTC
    AGAAGCAATA ATCCCTTTGT CAAGTACCAA AATAGTAACA TTGATCTTTA CAACGACTCG
    GGAATGATTA AAGATGGGGA CTCAAGTGAT TCAGGGTTGA AATCGAGAAC ACTTATTGTG
    AATAACACTA CTGAACCACC ACCACCACCA CCACCTTACA CTGAATCACC AAAGAAAGTC
    AGGAAATATC GAGCCTTTTT TCCTTCTTCA CGCGAATTAG CACCAGCATC AGCACCAGCA
    CCAGCACCAG CACCAGCACA TGCACCAGCA CCAGCACATG CACCAGCGGT TGCTCAAGCT
    TCAGCAGTAG CTTCAACTTT ACAATATCCT ACTTCTCCCA GTCCCATATC CCCAGAAAGC
    GAGCAAAAGA TGGCTCCTCA AGCCGGTATT CAGCTGTCAG AGGTTCCACT GAGTCCTGCG
    CGTGGTAGAA TCAATCAGAG CACTGCATAC CCCGGGCCTG CTAGGCAGAC AACACCAACA
    ATTTTGATTA TGACTGAAGA ATATCTCGAG CAAATGGCAG ATAAAGCAGC TCTTAAGGCC
    GCCAAAAAAT CAGAATCGAA ACGTCAAAGA AACGAAAAGG AAGACAGCAT GGCTAGCAAA
    TTGGGTGGAT TATTCAAGAA ATGCATACCT AAAAAAGGTA GGCAAGGCCC TGAAGGCCGA
    AAAAGACGGA GATGGTATTG CTGCGGAACC ATTGCATTGA TTTTGTTGAT CATCATTATT
    GTAGCCCTTG CTACGACGTT GACCCGCAAA CCAAAACATG TTGTTTTACC ATCTCAATGG
    TTGAACCTCA CTGGCTTTCC TCCTATTTAC GCTGGGCTCT CGACGGTGGC TGCTCCAGTG
    AACATTGTGG CGAATACTGG TTGCGTATTC CCTGCTACGC AATGGAGCTG TGCTTTACCA
    AAAGAGCAAC AAGCTTCCGT CGCACCAAAT CTACCAAATC AGCCCAATTT CTTTTTGGAG
    ATTCAATGGG ACAATAGTAG TGCAGCAAAT GCAACCTTTG CAAATGTTAC AGGGAACAAG
    AACCTCTCTA CACGCAGTAT TGTCGGTAAT CCCGTTTCTG CTGGTAAATT CATCAGGGAC
    TTGATATTGA GAGCACGTCA AACAGTTACT TTCAACCCCT CGCCGCCGCC ACCATCATAT
    GCCGAAGAAG CTTTTTTGGG AGATACCACA GATGGGATAG TTTCGTCCAA TAAAGCTGGA
    GAATCAACAC CTTTCTATAT ATCCTTCTTA TCCACTACAA ACACTACTTT ACCAATCAAC
    AATCGTGTGA AGCGTGCAGA CTCAAACAAT ACCGATCCAA ATCTGTTCCC GAATATCACA
    ACTGGTATCC CGGCCCCAAG TCTGAATCCC GATGGCACTG CGGCTCCAGC AAACCTTCTT
    CCATATCCCA TTCAACAGCC AATTCGTTTA TATGATCGAG GGCTTCCTAC TGAGCATTAT
    GGATTCTATA CTTACTTCAA TCGTACTATC TTCCTCAAGT CTCTCTCATT ACTCAACGAT
    ACTAATACCT CCAACGGTGA AGTTCCTGCT GATCAGAATG GCGGGGCTCT TGAAGGGGAA
    GCCAATTTCC GTTGCACATG GGGCGAGACT CGTTTCTTAG TACAGATGTG GACCAGGATG
    AATGGAACTG CTAGACTCAA CAATGCTACT AGTTCGACGG GTGCCTCTAC TGTCATTGCC
    GGACAGGACT TCTCGCAGCC TGGATCATTC CCTTATCCGA TCACTATTAC CACCGATCGA
    CATGGAGGGG ATCCTGGTGA GGAAGTTGTT GTACTGTTAT AG

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

    RefSeq XP_001553755.1
    CDS1..3222
    Translation

    Target ORF information:

    RefSeq Version XM_001553705.1
    Organism Botrytis cinerea B05.10
    Definition Botryotinia fuckeliana B05.10 hypothetical protein (BC1G_07948) partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001553705.1

    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
    ATGCGAGAAA AATCAAAAGG AAGACAGCGC AAGATCCATG CAAATCTCCG CCTCAAAGTC 
    CAAACAACCT TTTCAACACA CCATGGACCT CAACCTCAAG CGATCTCTTC ACAGCCGTCT
    CGATCCAATG GAGTTTTTGT TGATTTGGCC ACCCTCAGGA AACTGGAAAA TGTTTCGGCT
    CATCCAAACG GAACTTTGTG GAAATCTTTG GAGAACAAGA AAAGCAAAGC CATCGAAAAC
    TCTGCCGAGG AGACTAAGAC TGAGGCTCTG GAAACAGTAC AGAAAGAAAC ACCGAATGTA
    TATCCGCTGG CAGAGCGACG AGGGTCTTTG AGACCAGCAG CCCTGAAGTT GGAGGACGAC
    TTGTCTCCTA ACGATCGACC AATTGTTATC GGCATCTCAA TCCCATCTGC ACGTTTAGCT
    CATCATGTAA CCACCCCGCA AACATCAACT TCAATCGCTT CAACAATGAT GGGAAGTTAC
    GGGCATGAAA CACCGATAGG GAGAGAATTG GTAACGCCAT CTATCGTCAT CACTCCTGCC
    CACGAGGTCT CTGCGTGGTC GCCTTACAGT ACTGCATCAA ATGTTTCACG AGCACGAACT
    TTATCAACAT CCTTTTCAGT AACTAGCCCT AATGACCCAT TCAAAGAGGG GGCGCCACCA
    TTGCCGAAAA TGCCAGCGGC TTTAGCCGAA GAGGAGAAGC GAAGAGTGGC TGCCCAGCAT
    AGTTACTTCT CTCCCGATTC GGATGCCACT ACTGAATGGG ATGACGAACC AGATTCAACC
    CGAGTTCTGT CGTCTTGTAT TATTTATGAA GAGGATGAGC ATCCAATCAT TGTGCGAAGT
    GCTCGTGCAA TCGATGTTGC AGACAAATTG AAAGTGGACA ACCATGAAAG TATCGACACC
    ATTGCTGCAC GGACTCGTTC TGGATGGTGG AATTACATCA CTTCGCCATT CGTTTCGCGG
    TCGAACACAG TGGTATATCC AGAGAAGAAG ATTTCGAGTA TCCCGGAGGT ACCTATCTTA
    AACGTTGCAG CAGCCAGAGT TCAGGAATCA AAGATGGAGC GAAAGTCGTG GGAACAGCTT
    TTTTCCCCTC TTTCTATCAA AAGATCGAAT TCCAATGCAT CCGATGCTTG GTGGGATGTG
    ACTCCCTTGG GTTTCAGGTC AGAAAAGCAG GTTTCTCCTG GTTTAGTTTA CAAAGAGACG
    AGGCATCCAG TGAAGCCGTC GATAGCTACT TTGCCCTTTG TTCGTTCAGC TTCGGGCGAT
    GTGGGAGATG CTTCATTGGC TAGCGCCATT GGTATGACTG CCACCGCGGA TTCTAAGTAT
    TATACGAATT CTACAATGCC TCATGACCAT TCGGGTATTT CAAATTCAAT ACAAAGAGGT
    TCTATTTTGG TCAACAAAGA CAATTCGTTG TCATCTTCAA ACGATAGCAC AAAAGAACTC
    AGAAGCAATA ATCCCTTTGT CAAGTACCAA AATAGTAACA TTGATCTTTA CAACGACTCG
    GGAATGATTA AAGATGGGGA CTCAAGTGAT TCAGGGTTGA AATCGAGAAC ACTTATTGTG
    AATAACACTA CTGAACCACC ACCACCACCA CCACCTTACA CTGAATCACC AAAGAAAGTC
    AGGAAATATC GAGCCTTTTT TCCTTCTTCA CGCGAATTAG CACCAGCATC AGCACCAGCA
    CCAGCACCAG CACCAGCACA TGCACCAGCA CCAGCACATG CACCAGCGGT TGCTCAAGCT
    TCAGCAGTAG CTTCAACTTT ACAATATCCT ACTTCTCCCA GTCCCATATC CCCAGAAAGC
    GAGCAAAAGA TGGCTCCTCA AGCCGGTATT CAGCTGTCAG AGGTTCCACT GAGTCCTGCG
    CGTGGTAGAA TCAATCAGAG CACTGCATAC CCCGGGCCTG CTAGGCAGAC AACACCAACA
    ATTTTGATTA TGACTGAAGA ATATCTCGAG CAAATGGCAG ATAAAGCAGC TCTTAAGGCC
    GCCAAAAAAT CAGAATCGAA ACGTCAAAGA AACGAAAAGG AAGACAGCAT GGCTAGCAAA
    TTGGGTGGAT TATTCAAGAA ATGCATACCT AAAAAAGGTA GGCAAGGCCC TGAAGGCCGA
    AAAAGACGGA GATGGTATTG CTGCGGAACC ATTGCATTGA TTTTGTTGAT CATCATTATT
    GTAGCCCTTG CTACGACGTT GACCCGCAAA CCAAAACATG TTGTTTTACC ATCTCAATGG
    TTGAACCTCA CTGGCTTTCC TCCTATTTAC GCTGGGCTCT CGACGGTGGC TGCTCCAGTG
    AACATTGTGG CGAATACTGG TTGCGTATTC CCTGCTACGC AATGGAGCTG TGCTTTACCA
    AAAGAGCAAC AAGCTTCCGT CGCACCAAAT CTACCAAATC AGCCCAATTT CTTTTTGGAG
    ATTCAATGGG ACAATAGTAG TGCAGCAAAT GCAACCTTTG CAAATGTTAC AGGGAACAAG
    AACCTCTCTA CACGCAGTAT TGTCGGTAAT CCCGTTTCTG CTGGTAAATT CATCAGGGAC
    TTGATATTGA GAGCACGTCA AACAGTTACT TTCAACCCCT CGCCGCCGCC ACCATCATAT
    GCCGAAGAAG CTTTTTTGGG AGATACCACA GATGGGATAG TTTCGTCCAA TAAAGCTGGA
    GAATCAACAC CTTTCTATAT ATCCTTCTTA TCCACTACAA ACACTACTTT ACCAATCAAC
    AATCGTGTGA AGCGTGCAGA CTCAAACAAT ACCGATCCAA ATCTGTTCCC GAATATCACA
    ACTGGTATCC CGGCCCCAAG TCTGAATCCC GATGGCACTG CGGCTCCAGC AAACCTTCTT
    CCATATCCCA TTCAACAGCC AATTCGTTTA TATGATCGAG GGCTTCCTAC TGAGCATTAT
    GGATTCTATA CTTACTTCAA TCGTACTATC TTCCTCAAGT CTCTCTCATT ACTCAACGAT
    ACTAATACCT CCAACGGTGA AGTTCCTGCT GATCAGAATG GCGGGGCTCT TGAAGGGGAA
    GCCAATTTCC GTTGCACATG GGGCGAGACT CGTTTCTTAG TACAGATGTG GACCAGGATG
    AATGGAACTG CTAGACTCAA CAATGCTACT AGTTCGACGG GTGCCTCTAC TGTCATTGCC
    GGACAGGACT TCTCGCAGCC TGGATCATTC CCTTATCCGA TCACTATTAC CACCGATCGA
    CATGGAGGGG ATCCTGGTGA GGAAGTTGTT GTACTGTTAT AG

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

    CloneID OBc17348
    Clone ID Related Accession (Same CDS sequence) XM_001553705.2
    Accession Version XM_001553705.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3708bp)
    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_037311). On Apr 17, 2018 this sequence version replaced XM_001553705.1.

    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
    ATGAATACCA AAAACAAGAT CATATCTAAA TCTCCTGTTG AGAGACCGCC AGCTCTATCT 
    ACGAACGATC CTTCCACAGT ACTGACAGAA AATCCTTTTG AAACCATATT TGACGGGAAA
    AGCGAAGATG ATGATTCTTG GAAAGACGAG GATGTATATT CGATCGCTTC ATCGGAGGAG
    CTACAGCAGT CGAGACCCTC AAGAAATATC ACTACCAGTC GTAGTGGAAA CGTGACGCGC
    ACAATCAGCC GCAGGGAGAG AAAAAACTCC ATATCGAGAT CGATGCGAGA AAAATCAAAA
    GGAAGACAGC GCAAGATCCA TGCAAATCTC CGCCTCAAAG TCCAAACAAC CTTTTCAACA
    CACCATGGAC CTCAACCTCA AGCGATCTCT TCACAGCCGT CTCGATCCAA TGGAGTTTTT
    GTTGATTTGG CCACCCTCAG GAAACTGGAA AATGTTTCGG CTCATCCAAA CGGAACTTTG
    TGGAAATCTT TGGAGAACAA GAAAAGCAAA GCCATCGAAA ACTCTGCCGA GGAGACTAAG
    ACTGAGGCTC TGGAAACAGT ACAGAAAGAA ACACCGAATG TATATCCGCT GGCAGAGCGA
    CGAGGGTCTT TGAGACCAGC AGCCCTGAAG TTGGAGGACG ACTTGTCTCC TAACGATCGA
    CCAATTGTTA TCGGCATCTC AATCCCATCT GCACGTTTAG CTCATCATGT AACCACCCCG
    CAAACATCAA CTTCAATCGC TTCAACAATG ATGGGAAGTT ACGGGCATGA AACACCGATA
    GGGAGAGAAT TGGTAACGCC ATCTATCGTC ATCACTCCTG CCCACGAGGT CTCTGCGTGG
    TCGCCTTACA GTACTGCATC AAATGTTTCA CGAGCACGAA CTTTATCAAC ATCCTTTTCA
    GTAACTAGCC CTAATGACCC ATTCAAAGAG GGGGCGCCAC CATTGCCGAA AATGCCAGCG
    GCTTTAGCCG AAGAGGAGAA GCGAAGAGTG GCTGCCCAGC ATAGTTACTT CTCTCCCGAT
    TCGGATGCCA CTACTGAATG GGATGACGAA CCAGATTCAA CCCGAGTTCT GTCGTCTTGT
    ATTATTTATG AAGAGGATGA GCATCCAATC ATTGTGCGAA GTGCTCGTGC AATCGATGTT
    GCAGACAAAT TGAAAGTGGA CAACCATGAA AGTATCGACA CCATTGCTGC ACGGACTCGT
    TCTGGATGGT GGAATTACAT CACTTCGCCA TTCGTTTCGC GGTCGAACAC AGTGGTATAT
    CCAGAGAAGA AGATTTCGAG TATCCCGGAG GTACCTATCT TAAACGTTGC AGCAGCCAGA
    GTTCAGGAAT CAAAGATGGA GCGAAAGTCG TGGGAACAGC TTTTTTCCCC TCTTTCTATC
    AAAAGATCGA ATTCCAATGC ATCCGATGCT TGGTGGGATG TGACTCCCTT GGGTTTCAGG
    TCAGAAAAGC AGGTTTCTCC TGGTTTAGTT TACAAAGAGA CGAGGCATCC AGTGAAGCCG
    TCGATAGCTA CTTTGCCCTT TGTTCGTTCA GCTTCGGGCG ATGTGGGAGA TGCTTCATTG
    GCTAGCGCCA TTGGTATGAC TGCCACCGCG GATTCTAAGT ATTATACGAA TTCTACAATG
    CCTCATGACC ATTCGGGTAT TTCAAATTCA ATACAAAGAG GTTCTATTTT GGTCAACAAA
    GACAATTCGT TGTCATCTTC AAACGATAGC ACAAAAGAAC TCAGAAGCAA TAATCCCTTT
    GTCAAGTACC AAAATAGTAA CATTGATCTT TACAACGACT CGGGAATGAT TAAAGATGGG
    GACTCAAGTG ATTCAGGGTT GAAATCGAGA ACACTTATTG TGAATAACAC TACTGAACCA
    CCACCACCAC CACCACCTTA CACTGAATCA CCAAAGAAAG TCAGGAAATA TCGAGCCTTT
    TTTCCTTCTT CACGCGAATT AGCACCAGCA TCAGCACCAG CACCAGCACC AGCACCAGCA
    CATGCACCAG CACCAGCACA TGCACCAGCG GTTGCTCAAG CTTCAGCAGT AGCTTCAACT
    TTACAATATC CTACTTCTCC CAGTCCCATA TCCCCAGAAA GCGAGCAAAA GATGGCTCCT
    CAAGCCGGTA TTCAGCTGTC AGAGGTTCCA CTGAGTCCTG CGCGTGGTAG AATCAATCAG
    AGCACTGCAT ACCCCGGGCC TGCTAGGCAG ACAACACCAA CAATTTTGAT TATGACTGAA
    GAATATCTCG AGCAAATGGC AGATAAAGCA GCTCTTAAGG CCGCCAAAAA ATCAGAATCG
    AAACGTCAAA GAAACGAAAA GGAAGACAGC ATGGCTAGCA AATTGGGTGG ATTATTCAAG
    AAATGCATAC CTAAAAAAGG TAGGCAAGGC CCTGAAGGCC GAAAAAGACG GAGATGGTAT
    TGCTGCGGAA CCATTGCATT GATTTTGTTG ATCATCATTA TTGTAGCCCT TGCTACGACG
    TTGACCCGCA AACCAAAACA TGTTGTTTTA CCATCTCAAT GGTTGAACCT CACTGGCTTT
    CCTCCTATTT ACGCTGGGCT CTCGACGGTG GCTGCTCCAG TGAACATTGT GGCGAATACT
    GGTTGCGTAT TCCCTGCTAC GCAATGGAGC TGTGCTTTAC CAAAAGAGCA ACAAGCTTCC
    GTCGCACCAA ATCTACCAAA TCAGCCCAAT TTCTTTTTGG AGATTCAATG GGACAATAGT
    AGTGCAGCAA ATGCAACCTT TGCAAATGTT ACAGGGAACA AGAACCTCTC TACACGCAGT
    ATTGTCGGTA ATCCCGTTTC TGCTGGTAAA TTCATCAGGG ACTTGATATT GAGAGCACGT
    CAAACAGTTA CTTTCAACCC CTCGCCGCCG CCACCATCAT ATGCCGAAGA AGCTTTTTTG
    GGAGATACCA CAGATGGGAT AGTTTCGTCC AATAAAGCTG GAGAATCAAC ACCTTTCTAT
    ATATCCTTCT TATCCACTAC AAACACTACT TTACCAATCA ACAATCGTGT GAAGCGTGCA
    GACTCAAACA ATACCGATCC AAATCTGTTC CCGAATATCA CAACTGGTAT CCCGGCCCCA
    AGTCTGAATC CCGATGGCAC TGCGGCTCCA GCAAACCTTC TTCCATATCC CATTCAACAG
    CCAATTCGTT TATATGATCG AGGGCTTCCT ACTGAGCATT ATGGATTCTA TACTTACTTC
    AATCGTACTA TCTTCCTCAA GTCTCTCTCA TTACTCAACG ATACTAATAC CTCCAACGGT
    GAAGTTCCTG CTGATCAGAA TGGCGGGGCT CTTGAAGGGG AAGCCAATTT CCGTTGCACA
    TGGGGCGAGA CTCGTTTCTT AGTACAGATG TGGACCAGGA TGAATGGAAC TGCTAGACTC
    AACAATGCTA CTAGTTCGAC GGGTGCCTCT ACTGTCATTG CCGGACAGGA CTTCTCGCAG
    CCTGGATCAT TCCCTTATCC GATCACTATT ACCACCGATC GACATGGAGG GGATCCTGGG
    AGGAAGTTGT TGTACTGTTA TAGTATGAAT GACAGGGAAG GGATTATAGC GACCAGTGGA
    GTGGTCAATG GAGAGAATAG AGCATTTGGA GGCCAGATTA TCAATCCGGC TCCGAGTGTT
    TTCTTGAATA CTAGTGATTC ATCGCTTGGA GGTTTTGATG GAGGAACAGG CGGCTGTTCT
    TGTGCTTGGA GTAACTTTCA GGAGCTCATC AGTGCGTCAG GAACGTGA

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

    RefSeq XP_001553755.2
    CDS422..4129
    Translation

    Target ORF information:

    RefSeq Version XM_001553705.2
    Organism Botrytis cinerea B05.10
    Definition Botrytis cinerea B05.10 hypothetical protein (BCIN_02g04060), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001553705.2

    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
    ATGAATACCA AAAACAAGAT CATATCTAAA TCTCCTGTTG AGAGACCGCC AGCTCTATCT 
    ACGAACGATC CTTCCACAGT ACTGACAGAA AATCCTTTTG AAACCATATT TGACGGGAAA
    AGCGAAGATG ATGATTCTTG GAAAGACGAG GATGTATATT CGATCGCTTC ATCGGAGGAG
    CTACAGCAGT CGAGACCCTC AAGAAATATC ACTACCAGTC GTAGTGGAAA CGTGACGCGC
    ACAATCAGCC GCAGGGAGAG AAAAAACTCC ATATCGAGAT CGATGCGAGA AAAATCAAAA
    GGAAGACAGC GCAAGATCCA TGCAAATCTC CGCCTCAAAG TCCAAACAAC CTTTTCAACA
    CACCATGGAC CTCAACCTCA AGCGATCTCT TCACAGCCGT CTCGATCCAA TGGAGTTTTT
    GTTGATTTGG CCACCCTCAG GAAACTGGAA AATGTTTCGG CTCATCCAAA CGGAACTTTG
    TGGAAATCTT TGGAGAACAA GAAAAGCAAA GCCATCGAAA ACTCTGCCGA GGAGACTAAG
    ACTGAGGCTC TGGAAACAGT ACAGAAAGAA ACACCGAATG TATATCCGCT GGCAGAGCGA
    CGAGGGTCTT TGAGACCAGC AGCCCTGAAG TTGGAGGACG ACTTGTCTCC TAACGATCGA
    CCAATTGTTA TCGGCATCTC AATCCCATCT GCACGTTTAG CTCATCATGT AACCACCCCG
    CAAACATCAA CTTCAATCGC TTCAACAATG ATGGGAAGTT ACGGGCATGA AACACCGATA
    GGGAGAGAAT TGGTAACGCC ATCTATCGTC ATCACTCCTG CCCACGAGGT CTCTGCGTGG
    TCGCCTTACA GTACTGCATC AAATGTTTCA CGAGCACGAA CTTTATCAAC ATCCTTTTCA
    GTAACTAGCC CTAATGACCC ATTCAAAGAG GGGGCGCCAC CATTGCCGAA AATGCCAGCG
    GCTTTAGCCG AAGAGGAGAA GCGAAGAGTG GCTGCCCAGC ATAGTTACTT CTCTCCCGAT
    TCGGATGCCA CTACTGAATG GGATGACGAA CCAGATTCAA CCCGAGTTCT GTCGTCTTGT
    ATTATTTATG AAGAGGATGA GCATCCAATC ATTGTGCGAA GTGCTCGTGC AATCGATGTT
    GCAGACAAAT TGAAAGTGGA CAACCATGAA AGTATCGACA CCATTGCTGC ACGGACTCGT
    TCTGGATGGT GGAATTACAT CACTTCGCCA TTCGTTTCGC GGTCGAACAC AGTGGTATAT
    CCAGAGAAGA AGATTTCGAG TATCCCGGAG GTACCTATCT TAAACGTTGC AGCAGCCAGA
    GTTCAGGAAT CAAAGATGGA GCGAAAGTCG TGGGAACAGC TTTTTTCCCC TCTTTCTATC
    AAAAGATCGA ATTCCAATGC ATCCGATGCT TGGTGGGATG TGACTCCCTT GGGTTTCAGG
    TCAGAAAAGC AGGTTTCTCC TGGTTTAGTT TACAAAGAGA CGAGGCATCC AGTGAAGCCG
    TCGATAGCTA CTTTGCCCTT TGTTCGTTCA GCTTCGGGCG ATGTGGGAGA TGCTTCATTG
    GCTAGCGCCA TTGGTATGAC TGCCACCGCG GATTCTAAGT ATTATACGAA TTCTACAATG
    CCTCATGACC ATTCGGGTAT TTCAAATTCA ATACAAAGAG GTTCTATTTT GGTCAACAAA
    GACAATTCGT TGTCATCTTC AAACGATAGC ACAAAAGAAC TCAGAAGCAA TAATCCCTTT
    GTCAAGTACC AAAATAGTAA CATTGATCTT TACAACGACT CGGGAATGAT TAAAGATGGG
    GACTCAAGTG ATTCAGGGTT GAAATCGAGA ACACTTATTG TGAATAACAC TACTGAACCA
    CCACCACCAC CACCACCTTA CACTGAATCA CCAAAGAAAG TCAGGAAATA TCGAGCCTTT
    TTTCCTTCTT CACGCGAATT AGCACCAGCA TCAGCACCAG CACCAGCACC AGCACCAGCA
    CATGCACCAG CACCAGCACA TGCACCAGCG GTTGCTCAAG CTTCAGCAGT AGCTTCAACT
    TTACAATATC CTACTTCTCC CAGTCCCATA TCCCCAGAAA GCGAGCAAAA GATGGCTCCT
    CAAGCCGGTA TTCAGCTGTC AGAGGTTCCA CTGAGTCCTG CGCGTGGTAG AATCAATCAG
    AGCACTGCAT ACCCCGGGCC TGCTAGGCAG ACAACACCAA CAATTTTGAT TATGACTGAA
    GAATATCTCG AGCAAATGGC AGATAAAGCA GCTCTTAAGG CCGCCAAAAA ATCAGAATCG
    AAACGTCAAA GAAACGAAAA GGAAGACAGC ATGGCTAGCA AATTGGGTGG ATTATTCAAG
    AAATGCATAC CTAAAAAAGG TAGGCAAGGC CCTGAAGGCC GAAAAAGACG GAGATGGTAT
    TGCTGCGGAA CCATTGCATT GATTTTGTTG ATCATCATTA TTGTAGCCCT TGCTACGACG
    TTGACCCGCA AACCAAAACA TGTTGTTTTA CCATCTCAAT GGTTGAACCT CACTGGCTTT
    CCTCCTATTT ACGCTGGGCT CTCGACGGTG GCTGCTCCAG TGAACATTGT GGCGAATACT
    GGTTGCGTAT TCCCTGCTAC GCAATGGAGC TGTGCTTTAC CAAAAGAGCA ACAAGCTTCC
    GTCGCACCAA ATCTACCAAA TCAGCCCAAT TTCTTTTTGG AGATTCAATG GGACAATAGT
    AGTGCAGCAA ATGCAACCTT TGCAAATGTT ACAGGGAACA AGAACCTCTC TACACGCAGT
    ATTGTCGGTA ATCCCGTTTC TGCTGGTAAA TTCATCAGGG ACTTGATATT GAGAGCACGT
    CAAACAGTTA CTTTCAACCC CTCGCCGCCG CCACCATCAT ATGCCGAAGA AGCTTTTTTG
    GGAGATACCA CAGATGGGAT AGTTTCGTCC AATAAAGCTG GAGAATCAAC ACCTTTCTAT
    ATATCCTTCT TATCCACTAC AAACACTACT TTACCAATCA ACAATCGTGT GAAGCGTGCA
    GACTCAAACA ATACCGATCC AAATCTGTTC CCGAATATCA CAACTGGTAT CCCGGCCCCA
    AGTCTGAATC CCGATGGCAC TGCGGCTCCA GCAAACCTTC TTCCATATCC CATTCAACAG
    CCAATTCGTT TATATGATCG AGGGCTTCCT ACTGAGCATT ATGGATTCTA TACTTACTTC
    AATCGTACTA TCTTCCTCAA GTCTCTCTCA TTACTCAACG ATACTAATAC CTCCAACGGT
    GAAGTTCCTG CTGATCAGAA TGGCGGGGCT CTTGAAGGGG AAGCCAATTT CCGTTGCACA
    TGGGGCGAGA CTCGTTTCTT AGTACAGATG TGGACCAGGA TGAATGGAAC TGCTAGACTC
    AACAATGCTA CTAGTTCGAC GGGTGCCTCT ACTGTCATTG CCGGACAGGA CTTCTCGCAG
    CCTGGATCAT TCCCTTATCC GATCACTATT ACCACCGATC GACATGGAGG GGATCCTGGG
    AGGAAGTTGT TGTACTGTTA TAGTATGAAT GACAGGGAAG GGATTATAGC GACCAGTGGA
    GTGGTCAATG GAGAGAATAG AGCATTTGGA GGCCAGATTA TCAATCCGGC TCCGAGTGTT
    TTCTTGAATA CTAGTGATTC ATCGCTTGGA GGTTTTGATG GAGGAACAGG CGGCTGTTCT
    TGTGCTTGGA GTAACTTTCA GGAGCTCATC AGTGCGTCAG GAACGTGA

    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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