JMJ2102 cDNA ORF clone, [Nectria] haematococca mpVI 77-13-4

  • Gene

  • Clones

  • gRNAs

The following JMJ2102 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the JMJ2102 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
ONb10498 XM_003050576.1
Latest version!
Nectria haematococca mpVI 77-13-4 jumonji superfamily protein (JMJ2102), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $1021.30
$1459.00

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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 ONb10498
    Clone ID Related Accession (Same CDS sequence) XM_003050576.1
    Accession Version XM_003050576.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5004bp)
    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 2010-08-13
    Organism [Nectria] haematococca mpVI 77-13-4
    Product jumonji superfamily 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_003315877). 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
    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
    ATGGTATCAG TACCAACTGT CGGCGCCGTC GCCGCGTCAA ATTCCCACGG CGCCAGTGCG 
    AGCTCGCGAA GTTCGCCTGC CGTAGGCGCT GGCTCGTCGA AACCGAAGCC CAAGGTCAAC
    TCAAATGGTT ACCACCCTAT TAATCCGCAG ACGCCTCTCA GTTCTTTGTC GAGCGCTCCC
    CTAGATCTAA CCTCGGTCGA ACGCCGAGGA CAACCTACCG CAATCCGAGA GCCCGTGACA
    AAGACGAGCC GCCCGCATGG CCTCCAAGAA GCTCCCACCT ACTGTCCAAC CGAGGAGGAA
    TGGCGAGATC CTTTCGAGTA CATGCGCAAG ATCACACCAG AAGCGAAGAA GTTTGGCATC
    TGCAAGATTA TTCCTCCAGA TTCCTGGAAT CCCGATTTTG CCATCGACAC CGAGGACCCG
    AAAACAAGAG TTGAACTCGG TGGAAGGGAA CTCAAAAAAG CTGTCGAGTC GCGAGGTGGC
    TTTGAAAAGC GATGGCTTTG CCCGTACGAG GAGTACTTGC GCCTGGCGAA ACCTGGAGTC
    CACCAGCAAT TAGAACAAGA ATACGGCGGC CCATTGACTC CCAGTCCAGC GCATACGCCA
    ATTAAGCGAT CAAATGTCAA CACGCCAGCG AGCGGTAGAG GCGACTCGCC AGCGCGAAAC
    GCATCCGATG CTCTACAGGC CAGCATCAAC GGGGTGAAGA AGGAGACGGA TCGCGATACT
    CCAATGACCG ATGCGCCGAC CACGACCCCA GCACCAACTT CTGGCGGTTT CACTGCGATC
    AACTCTGGAG GTTTTACCGC GGTTAATTCG GGATTCACCA GTGTCAACCG CAGTACCAAT
    GGTGACTCGA AGAGCTTTAC TCCTGAATCT AAGCGATTCG ACAGCCCAAG CTCCTCGGCA
    AAGAACACCC CAGACAACCG TGCGTCGAGC CTCATGGCTA CAGCCCTGAA GCGTCAGCTC
    AGCTGCGACA GCTCATCAGA CTCGACGAGA AAAGACGCCG ACGCTGGTAA AGACGATGGC
    GACGCGGGTA GTCGTCGTTC TAAGCGTCTC AAGAAAGATG CCGTCCCCAC TGTGGCTGGA
    TCACACATGA CGCCATTCCG TCCATCAGTG CCGAGGATTC CTAGAGATGA AGCTACACCA
    GGAGGCGAGA AATGCGAAAC ATGTGCAAGA GGAGAAGATG CGGGCTCTCT TCTCGTCTGC
    GAATCTTGCG ATCACTCCTA TCATCCCGGT TGTCTAGACC CACCCTTGAA GCGAAAGCCG
    GATGCTGAGT GGAATTGCCC CCGATGCCTC GTTGGAGATG GCCAGTTCGG CTTCGAAGAG
    GGAGGCTTGT ACTCTCTGAA GCAATTCCAG CAAAAGGCAA ACGACTTCAA GCAAGGCTAC
    TTTGAAAAGA AGATGCCCTT CGACCACGAA CTCAACTGTC ATCGACCCGT CACTGAGGAA
    GATGTGGAGA CGGAGTTTTG GCGATTGGTT GCTGATCTTG AAGAGACGGT TGAAGTCGAA
    TACGGAGCCG ATATTCATTG CACAACCCAC GGCTCTGGGT TCCCTACTGC CGAACGACAC
    CCCAACAACC CGTATGCGAC CGATCCTTGG AATCTGAATG TCCTTCCATT CCACCCCGAG
    AGTCTGTTTA GACACATCAA GTCGGATATT TCTGGTATGA CCGTTCCCTG GGTCTATGTT
    GGGATGATCT TTTCGACATT CTGCTGGCAC AACGAGGATC ACTACGCCTA CTCAGCCAAC
    TACCAGCATC TCGGCGCGAC CAAGACCTGG TACGGCATTC CAGGAGAAGA TGCCGAAAAG
    TTCGAGGCTG CCATGAGAGA AGCCGTGCCC GAGCTTTTCG AGACACAGCC AGATCTCCTC
    TTCCAGCTGG TGACGCTCTT GACTCCTGAA CAGTTGAAGA AGGCGGGCGT TCGCGTGTAT
    GCCCTCGATC AGCGAGCTGG ACAGTTTGTC ATTACGTTCC CTCAAGCCTA CCATGCTGGT
    TTCAATCACG GATTCAACTT CAACGAGGCC GTCAACTTTG CACCTAGTGA TTGGGAGCCC
    TTCGGCCTTG CGGGTGTGGA GCGATTGCAG CTGTTCCGAA GGCAGCCATG CTTTTCTCAC
    GATGAGCTGC TCTGGACAGC TGCTGAAGGA AGCACGGCAG CCGGTCTCAC GATCCAGACA
    GCGAAATGGC TAGCACCAGC CCTTGAGCGC ATTCACAAGC GAGAGATTTC CCAGCGGGAG
    GAATTCTTGT CCAAGCATGG CGAGACATCA CCCCATCAAT GTCATGCCAC AGGGGGCAGC
    GAAGACACTT GCCCTTTGAC TTTCAAGGTT GACGATGAGG ACGTCCAGGA TGAGGAAGAG
    CAATGCTGCA GTTACTGCAA GGCGTTTTCC TATCTTTCAC GCTTCAAGTG CCTCGCCTCA
    GGCAAGGTTC TCTGTCTGCT ACATGCCGGC TATCATGCCT GCTGTGATCA ACCCGAGCCA
    GCGCGTTTCC GAGGCGATGG ACATGTTCTC ATTTATCGCA AGACCGAAGA GGACATGGCT
    GAAACCTACC ACAAGGTTAT GGAGAAGGCC CAGACTCCCG AGGCTTGGGA AGAAAAGTAT
    GAGAAGATCC TAGACGAGGA GTCTACGCCA TCACTCAAGA CCCTCCGAGC CATTCTTCAT
    GAGGGTGAGC GCATCCCATA TGAGCTGCCT TCACTACCGA TTCTACAGGA GTTTGTCAAC
    CGATGCAACG ACTGGGTGGA GGAAGCGACA AACTACACTG TCCGAAAGCA ACAAAACCGA
    CGGAAGAACG AAAAAGCCTG GCAGTCTGGA ATGCGAAAAT CCATCGGTAG CGCCGAGCAT
    GATCAAAAGG AGAGAGAGTC CCGAAATGTC TCCAACATTT ACAGACTCCT CGACGAGGCA
    GAGCGGATTG GTTTCGACTG CCCTGAAATC GCTCAACTTC AAGAGCGCGC TGAAGCCATC
    AAGCGCTTTC AGACAAGTGC CATGCAAGCT CTGAAGAACA CGGCAGCGGT GCCAGAAGAC
    ACAATCGAGG AGCTTCTTGA AGAGGGTCGC AGCTTTAATG TGGACACGCC CGAGGTCGAG
    CAGCTTTCCA GGGTGCTGGA GCAAATGCGC TGGAATGCAA AGGCTCGAGC CAACCGAAGT
    GTCATCATGA CGCTGAAGGA GGTGCAGGAT CTGATCGAAG AGGGAAATCG ACTCGAGATT
    CAGCCGTACA ACGACCACCT AACTCACTAC CGCGAGCAGA TGCATGCTGG ACAAGCCTGG
    GAGAAGAAGG CAAAGGAGCT CATTGGTGCC GAGTTTGTGC ACTATCCCCA GCTTGAGGCC
    CTCTCGCATC AAGTGCAGGT CAATTACTTG CCCGTCTCGC AGGAGACTCT GAATGCTGTC
    GACAACATCC TCCACAAGCA ACGCGAAGCC CATCGTCAGA TCCTTGACAT TACCGAACGA
    TGCCGGAACC CCGACTTTCG CCAACGACCT AAGTACTCGG AGGTGGTCGA AATCCAGAAG
    AAGTTGGAGG ATCTCAACTC GAAGCCCAAT GGAACGATTG ATCTCGAAAA CGAGCGAAAA
    CGCCACGAGG ACTGGATGCG AAAGGGCAAG AAGCTGTTTG GCAAGTCGAA TGCGCCACTG
    CACATCCTCA AGAGCCACCT CGAATATGTG CTGGAGCGCA ACCAGGACTG CTTCGATACC
    GAAAACGACA CGCCTCGTCT GCCCGGGGAG CCAGTCTCCA GAGAGGTTAG CCCTGAACCA
    GGGGTGAGTA GATGGGAAGA CCCGCGGTCT CGGCAAGTCT TTTGCATCTG CCGAAAGATT
    GAGGCAGGCA TGATGATTGA GTGCGAATTG TGCCACGAAT GGTATCACTA CAAGTGCCTC
    AAGATTGCCC GTGGCAAGGT CAAGGAAGAC GACAAGTACA CTTGTCCTAT CTGTGACTGG
    CGAATGAAGA TTCCTCGAGA TGCTTCACGA CCAAAGCTGG AGGATCTAGT GGCTCTATCG
    GACGAGATGC CCTCTTTGCC TTTTCAGCCT GAAGAGGAAG AGGTGCTACG CAAGATCATT
    GACAATGCGC AAAACTTCCG CAACCACATT GCCAGGTACT GCAATCCACT TTTGTCGACG
    GAAGCCGAGG CCGAGACTCA ACGGTTCTAC CTCCGAAAGA TCGAAGGGGC CGAAGTCTTG
    CTGGCGTATG AGACGAACTT CTTCCGCCAA GAACTCCACA AATGGTGTCC CGTGGCTCCT
    GAGGCTCCAC CAATACTAGA GGTGTCACTG AGCACTCGAA AGCCTCGGCC CACCAAGCTG
    CAGAAGATGC TTGTCGAGTA TGGAGTCGAT AACCCCGACG ACCTCCCTGA GCACGCCAAA
    GGTAAGGCCA ACAGCCTGCG ACGAAAGGCG GCCAATGCAG AGGCGGCTGC TGCTGCTGCT
    GCGCAGTCAC AATCCGCCCC GATCTTGCCT CCAAGTACGG CTTCTGGAGC GTATGCAGGC
    CCAGCATTCT TTCCCAGGAC AGGGGCGACT TTGAGCGGTA GTCCTCCGAC TCACGGGCAC
    CCAGAGCGTC GACCCTCGCA GTCTGGCTCA AACCACTCGA GGGATAATTC AGTCAGCATG
    GGTAGTGGGC TACACCCTGG TCTGTTTGGA GCTGGCGGTC CACAGTTGGT TGTTGGCAAC
    TCTTCCATGT CTCTGGAGGA AAAGCTTCTG CAAGGTCAAG ACGACGGCAT CAGCTTTCAC
    ACTGAGGCTG AAAAGAGTAA GGCTCTTGAA ATCCTCTCGA GGACGGAGAT GGGCAGAAAG
    CAAGCCGAAA AGATGTGGGG ACCAGACGTT TGGGGACCTC GTCGTGGCTC TATGGGTGAT
    GGAGGAAGAC GCATGACTCC AAATCCCATG GACGACGATA TGATGAAGCA AGAGGACGGC
    AACGTGGACC AGATGTTCAA GGAGATGACG AACCAAGACG AGGAGGACGA CAAGAAGAAG
    GATGCAAGTG GTGATGTTCA TATGACGACG GCATCCCTAG AAAAGGAGAG AAACGGCATG
    GACGCGCTCC TAGACGGCGC GTAA

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

    RefSeq XP_003050622.1
    CDS1..5004
    Translation

    Target ORF information:

    RefSeq Version XM_003050576.1
    Organism [Nectria] haematococca mpVI 77-13-4
    Definition Nectria haematococca mpVI 77-13-4 jumonji superfamily protein (JMJ2102), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003050576.1

    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
    ATGGTATCAG TACCAACTGT CGGCGCCGTC GCCGCGTCAA ATTCCCACGG CGCCAGTGCG 
    AGCTCGCGAA GTTCGCCTGC CGTAGGCGCT GGCTCGTCGA AACCGAAGCC CAAGGTCAAC
    TCAAATGGTT ACCACCCTAT TAATCCGCAG ACGCCTCTCA GTTCTTTGTC GAGCGCTCCC
    CTAGATCTAA CCTCGGTCGA ACGCCGAGGA CAACCTACCG CAATCCGAGA GCCCGTGACA
    AAGACGAGCC GCCCGCATGG CCTCCAAGAA GCTCCCACCT ACTGTCCAAC CGAGGAGGAA
    TGGCGAGATC CTTTCGAGTA CATGCGCAAG ATCACACCAG AAGCGAAGAA GTTTGGCATC
    TGCAAGATTA TTCCTCCAGA TTCCTGGAAT CCCGATTTTG CCATCGACAC CGAGGACCCG
    AAAACAAGAG TTGAACTCGG TGGAAGGGAA CTCAAAAAAG CTGTCGAGTC GCGAGGTGGC
    TTTGAAAAGC GATGGCTTTG CCCGTACGAG GAGTACTTGC GCCTGGCGAA ACCTGGAGTC
    CACCAGCAAT TAGAACAAGA ATACGGCGGC CCATTGACTC CCAGTCCAGC GCATACGCCA
    ATTAAGCGAT CAAATGTCAA CACGCCAGCG AGCGGTAGAG GCGACTCGCC AGCGCGAAAC
    GCATCCGATG CTCTACAGGC CAGCATCAAC GGGGTGAAGA AGGAGACGGA TCGCGATACT
    CCAATGACCG ATGCGCCGAC CACGACCCCA GCACCAACTT CTGGCGGTTT CACTGCGATC
    AACTCTGGAG GTTTTACCGC GGTTAATTCG GGATTCACCA GTGTCAACCG CAGTACCAAT
    GGTGACTCGA AGAGCTTTAC TCCTGAATCT AAGCGATTCG ACAGCCCAAG CTCCTCGGCA
    AAGAACACCC CAGACAACCG TGCGTCGAGC CTCATGGCTA CAGCCCTGAA GCGTCAGCTC
    AGCTGCGACA GCTCATCAGA CTCGACGAGA AAAGACGCCG ACGCTGGTAA AGACGATGGC
    GACGCGGGTA GTCGTCGTTC TAAGCGTCTC AAGAAAGATG CCGTCCCCAC TGTGGCTGGA
    TCACACATGA CGCCATTCCG TCCATCAGTG CCGAGGATTC CTAGAGATGA AGCTACACCA
    GGAGGCGAGA AATGCGAAAC ATGTGCAAGA GGAGAAGATG CGGGCTCTCT TCTCGTCTGC
    GAATCTTGCG ATCACTCCTA TCATCCCGGT TGTCTAGACC CACCCTTGAA GCGAAAGCCG
    GATGCTGAGT GGAATTGCCC CCGATGCCTC GTTGGAGATG GCCAGTTCGG CTTCGAAGAG
    GGAGGCTTGT ACTCTCTGAA GCAATTCCAG CAAAAGGCAA ACGACTTCAA GCAAGGCTAC
    TTTGAAAAGA AGATGCCCTT CGACCACGAA CTCAACTGTC ATCGACCCGT CACTGAGGAA
    GATGTGGAGA CGGAGTTTTG GCGATTGGTT GCTGATCTTG AAGAGACGGT TGAAGTCGAA
    TACGGAGCCG ATATTCATTG CACAACCCAC GGCTCTGGGT TCCCTACTGC CGAACGACAC
    CCCAACAACC CGTATGCGAC CGATCCTTGG AATCTGAATG TCCTTCCATT CCACCCCGAG
    AGTCTGTTTA GACACATCAA GTCGGATATT TCTGGTATGA CCGTTCCCTG GGTCTATGTT
    GGGATGATCT TTTCGACATT CTGCTGGCAC AACGAGGATC ACTACGCCTA CTCAGCCAAC
    TACCAGCATC TCGGCGCGAC CAAGACCTGG TACGGCATTC CAGGAGAAGA TGCCGAAAAG
    TTCGAGGCTG CCATGAGAGA AGCCGTGCCC GAGCTTTTCG AGACACAGCC AGATCTCCTC
    TTCCAGCTGG TGACGCTCTT GACTCCTGAA CAGTTGAAGA AGGCGGGCGT TCGCGTGTAT
    GCCCTCGATC AGCGAGCTGG ACAGTTTGTC ATTACGTTCC CTCAAGCCTA CCATGCTGGT
    TTCAATCACG GATTCAACTT CAACGAGGCC GTCAACTTTG CACCTAGTGA TTGGGAGCCC
    TTCGGCCTTG CGGGTGTGGA GCGATTGCAG CTGTTCCGAA GGCAGCCATG CTTTTCTCAC
    GATGAGCTGC TCTGGACAGC TGCTGAAGGA AGCACGGCAG CCGGTCTCAC GATCCAGACA
    GCGAAATGGC TAGCACCAGC CCTTGAGCGC ATTCACAAGC GAGAGATTTC CCAGCGGGAG
    GAATTCTTGT CCAAGCATGG CGAGACATCA CCCCATCAAT GTCATGCCAC AGGGGGCAGC
    GAAGACACTT GCCCTTTGAC TTTCAAGGTT GACGATGAGG ACGTCCAGGA TGAGGAAGAG
    CAATGCTGCA GTTACTGCAA GGCGTTTTCC TATCTTTCAC GCTTCAAGTG CCTCGCCTCA
    GGCAAGGTTC TCTGTCTGCT ACATGCCGGC TATCATGCCT GCTGTGATCA ACCCGAGCCA
    GCGCGTTTCC GAGGCGATGG ACATGTTCTC ATTTATCGCA AGACCGAAGA GGACATGGCT
    GAAACCTACC ACAAGGTTAT GGAGAAGGCC CAGACTCCCG AGGCTTGGGA AGAAAAGTAT
    GAGAAGATCC TAGACGAGGA GTCTACGCCA TCACTCAAGA CCCTCCGAGC CATTCTTCAT
    GAGGGTGAGC GCATCCCATA TGAGCTGCCT TCACTACCGA TTCTACAGGA GTTTGTCAAC
    CGATGCAACG ACTGGGTGGA GGAAGCGACA AACTACACTG TCCGAAAGCA ACAAAACCGA
    CGGAAGAACG AAAAAGCCTG GCAGTCTGGA ATGCGAAAAT CCATCGGTAG CGCCGAGCAT
    GATCAAAAGG AGAGAGAGTC CCGAAATGTC TCCAACATTT ACAGACTCCT CGACGAGGCA
    GAGCGGATTG GTTTCGACTG CCCTGAAATC GCTCAACTTC AAGAGCGCGC TGAAGCCATC
    AAGCGCTTTC AGACAAGTGC CATGCAAGCT CTGAAGAACA CGGCAGCGGT GCCAGAAGAC
    ACAATCGAGG AGCTTCTTGA AGAGGGTCGC AGCTTTAATG TGGACACGCC CGAGGTCGAG
    CAGCTTTCCA GGGTGCTGGA GCAAATGCGC TGGAATGCAA AGGCTCGAGC CAACCGAAGT
    GTCATCATGA CGCTGAAGGA GGTGCAGGAT CTGATCGAAG AGGGAAATCG ACTCGAGATT
    CAGCCGTACA ACGACCACCT AACTCACTAC CGCGAGCAGA TGCATGCTGG ACAAGCCTGG
    GAGAAGAAGG CAAAGGAGCT CATTGGTGCC GAGTTTGTGC ACTATCCCCA GCTTGAGGCC
    CTCTCGCATC AAGTGCAGGT CAATTACTTG CCCGTCTCGC AGGAGACTCT GAATGCTGTC
    GACAACATCC TCCACAAGCA ACGCGAAGCC CATCGTCAGA TCCTTGACAT TACCGAACGA
    TGCCGGAACC CCGACTTTCG CCAACGACCT AAGTACTCGG AGGTGGTCGA AATCCAGAAG
    AAGTTGGAGG ATCTCAACTC GAAGCCCAAT GGAACGATTG ATCTCGAAAA CGAGCGAAAA
    CGCCACGAGG ACTGGATGCG AAAGGGCAAG AAGCTGTTTG GCAAGTCGAA TGCGCCACTG
    CACATCCTCA AGAGCCACCT CGAATATGTG CTGGAGCGCA ACCAGGACTG CTTCGATACC
    GAAAACGACA CGCCTCGTCT GCCCGGGGAG CCAGTCTCCA GAGAGGTTAG CCCTGAACCA
    GGGGTGAGTA GATGGGAAGA CCCGCGGTCT CGGCAAGTCT TTTGCATCTG CCGAAAGATT
    GAGGCAGGCA TGATGATTGA GTGCGAATTG TGCCACGAAT GGTATCACTA CAAGTGCCTC
    AAGATTGCCC GTGGCAAGGT CAAGGAAGAC GACAAGTACA CTTGTCCTAT CTGTGACTGG
    CGAATGAAGA TTCCTCGAGA TGCTTCACGA CCAAAGCTGG AGGATCTAGT GGCTCTATCG
    GACGAGATGC CCTCTTTGCC TTTTCAGCCT GAAGAGGAAG AGGTGCTACG CAAGATCATT
    GACAATGCGC AAAACTTCCG CAACCACATT GCCAGGTACT GCAATCCACT TTTGTCGACG
    GAAGCCGAGG CCGAGACTCA ACGGTTCTAC CTCCGAAAGA TCGAAGGGGC CGAAGTCTTG
    CTGGCGTATG AGACGAACTT CTTCCGCCAA GAACTCCACA AATGGTGTCC CGTGGCTCCT
    GAGGCTCCAC CAATACTAGA GGTGTCACTG AGCACTCGAA AGCCTCGGCC CACCAAGCTG
    CAGAAGATGC TTGTCGAGTA TGGAGTCGAT AACCCCGACG ACCTCCCTGA GCACGCCAAA
    GGTAAGGCCA ACAGCCTGCG ACGAAAGGCG GCCAATGCAG AGGCGGCTGC TGCTGCTGCT
    GCGCAGTCAC AATCCGCCCC GATCTTGCCT CCAAGTACGG CTTCTGGAGC GTATGCAGGC
    CCAGCATTCT TTCCCAGGAC AGGGGCGACT TTGAGCGGTA GTCCTCCGAC TCACGGGCAC
    CCAGAGCGTC GACCCTCGCA GTCTGGCTCA AACCACTCGA GGGATAATTC AGTCAGCATG
    GGTAGTGGGC TACACCCTGG TCTGTTTGGA GCTGGCGGTC CACAGTTGGT TGTTGGCAAC
    TCTTCCATGT CTCTGGAGGA AAAGCTTCTG CAAGGTCAAG ACGACGGCAT CAGCTTTCAC
    ACTGAGGCTG AAAAGAGTAA GGCTCTTGAA ATCCTCTCGA GGACGGAGAT GGGCAGAAAG
    CAAGCCGAAA AGATGTGGGG ACCAGACGTT TGGGGACCTC GTCGTGGCTC TATGGGTGAT
    GGAGGAAGAC GCATGACTCC AAATCCCATG GACGACGATA TGATGAAGCA AGAGGACGGC
    AACGTGGACC AGATGTTCAA GGAGATGACG AACCAAGACG AGGAGGACGA CAAGAAGAAG
    GATGCAAGTG GTGATGTTCA TATGACGACG GCATCCCTAG AAAAGGAGAG AAACGGCATG
    GACGCGCTCC TAGACGGCGC GTAA

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

  • PubMed

    The genome of Nectria haematococca: contribution of supernumerary chromosomes to gene expansion.
    PLoS genetics5(8)e1000618(2009 Aug)
    Coleman JJ,Rounsley SD,Rodriguez-Carres M,Kuo A,Wasmann CC,Grimwood J,Schmutz J,Taga M,White GJ,Zhou S,Schwartz DC,Freitag M,Ma LJ,Danchin EG,Henrissat B,Coutinho PM,Nelson DR,Straney D,Napoli CA,Barker BM,Gribskov M,Rep M,Kroken S,Moln?r I,Rensing C,Kennell JC,Zamora J,Farman ML,Selker EU,Salamov A,Shapiro H,Pangilinan J,Lindquist E,Lamers C,Grigoriev IV,Geiser DM,Covert SF,Temporini E,Vanetten HD


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