MICPUN_59266 cDNA ORF clone, Micromonas commoda

The following MICPUN_59266 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the MICPUN_59266 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
OMg03510 XM_002502794.1
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Micromonas commoda p-type ATPase superfamily partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
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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 OMg03510
    Clone ID Related Accession (Same CDS sequence) XM_002502794.1
    Accession Version XM_002502794.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4602bp)
    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 1498060800000
    Organism Micromonas commoda
    Product p-type ATPase superfamily
    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_013043). 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
    ATGGGGAGGC TTCACCTGAC TTACCCGGCC AACATCGCCA AGGTGACCTC GCAGAAGCGT 
    CGGTTCAACC TCCACGGCCT GGGCCTGCAT CACCTTCCGT TCCTGATCCT GTACGTCTTC
    GCGCTGAAAG CGTGCGTCGA GACGTCGGGA AATCCCTACG CCGTGGCTCT CGCGCATCAC
    AAGGAGAAAG GATACGATCC CGCCGCGTTC GACGCGAAAA CCGCCGCGAG CGCCCAGCGC
    GGCAAGACCG TCGTGGATGA CTGGGGAGGC GGTGACGCCG AGGACGATCC CTGGGGCGAC
    CTCGAGGCGG ACGAGGAGCA TCTCGCGCCC GACGCCCCCG ACGCAGCCGC CGCGGTCGAG
    GCCTCGTCGA CCGCCCCCGA CGCCGACGCC GCGCAGGCCC CGGCGCCCGC GAACCTGACC
    GCGCTCGAGG AACAAATCAA GTACGAGACC CCGCCCGCGC TCCCGGCGTC CTGGCTCCCG
    GAGTTCTGGG CCGTCATCTA CTTCTCCGTC GTCGCGGTCA CGCACGTCCT CCTCATGTTT
    GGCCAACACT GGAGCGTTCG GTTCAGGGCG TTTGTGAACT ACGTCGAGGC CGACGAGGTC
    AAGCCCGGGA ACGTCCTGAT GTTCTGCCCG ATGCCCCACC AGGGCAAAGC CGAGATTGTG
    GACGTCAACG AGCTCGAGAT CTCCGATCCC AAGGCTCCCG GCGGCCGGCG CACGATGCTC
    TGGACGGTTT TCCAGCGGCA GCGGTTCGAA TACGTCACCA CCGAGGTGGG CGGCGACGGG
    AAGGTTCGTG GCGAGGTGAG GGAGGTGCAG ACGCCGGTGG CGGAGCCCCT CGCGAGCTAC
    CTGCAGCCCA CGCGCGGGAT GAGCGCCGGT GGGGTGGCGG CGTCGACGTC CCGCTTCGGC
    GATAACTCGC TTCGCGTGCC GCTCCCCACG TTTCTCAAGT GCTACAAGGA GCAGCTCATG
    TCGCCGGTTT GCGTGTTCCA GGTGTTCACC ACCCTGCTCT GGCTCCTCGA CGAGTACTGG
    AAGTACGCCC TGTTCTCCGC GGCAAACTTG CTCATGTTCG AGGCCGCCAC CGCCTTCTCG
    CGCATCAAGA ACATTCGCAC CCTGCGGGGC ATGGGGGCCA CGCCAACGCG CATCGTGGCG
    TTCCGCGACG GCCGCTGGGA AGTCAGGTCC AGCGAGGAGC TCGTGCCCGG GGATATCATC
    TCCGTCGCGA GGCCCCCAGG GGCGGGGGAC ACGCCCATCC CGTGCGATTG CCTCGTGCTG
    AGGGGCTCCG CGGTGGTCAA CGAGGCGAGC CTCACGGGCG AGTCCGTGCC GCAGATGAAG
    GACTCGCTGT CGGGGGAGAC GGTGGCTGGC GACCCGGCCG CGCCGCTGGA CATAAACGGC
    GAGCACAAGG TCAACGTGCT CTACTCCGGC ACGATGCTGA TGCAGCAGAG CCAGGGCGAA
    TCCGAGCAGG CGCACGGTCT CCCGGCGACC CCCGACGGCG GGTGCCTGTG CTACGTGCTC
    CAGACTGGAT TTTCGTCCAC GCAGGGCAAG TTGATGCGCA TGATGGAGTT TAGCAGCGAA
    CAGGTCACCG GGGATACCTG GGAGACGTTG GTGTTGCTCT TCATCCTGTT CGTCTTCGCC
    TGTGTCGCGT CCGGTAACGT GTTCGTCATG GGCATGAAGG ACGGCAAGCG GTCGCAGTAC
    GAGCTCGTGC TTCGGTGCAT CCTCATCCTC ACCAGCGTCG TCCCGCCCGA GCTGCCGATG
    CAGACGGCGA TGGCGGTCAA CACGGCTCTC ATCGCGCTCA TGCGAGCGTC CGTCTTTTGC
    ACCGAGCCCT TCAGGGTTCC CATCTCCGGC AAGGTGGACA CCACCCTGTT CGACAAGACC
    GGTACCCTCA CCTCCGACAA GCTCGTGGCC ATGGGCATCG TGACGCCCAA GGATGACGGC
    TCGTTCACCG AGCTGACGCC GTGCCCCGAG GCGACCAAGT CCGCGTCGCT GGTCGTCGCC
    GGCTGCCACT CGCTCGTGCA GGTGGACGGA AAAACCTTCG GAGATCCGCT GGAGCAGGCG
    GCGCTCATGG GCGTCAAGTG GAGGTTCGAC CCGCGGTCGC AGACGGCGCT TCCCACCGAG
    AACTTTCCCG ATCCCGCGCG GGACAAGGCG CTGGCCGAGG CGAGAGCCAA ACGAGCCGAG
    ATGGTTGCGA AACTTCCCCG CGACCGAGCG CACACCGTTC CGCCGGTGCC CGAGCCCAAG
    CCACCGAAGC GCACGTGGAA GGGGTCGCCC TCGGTGAAGA TTTTGGTCCG CAACCACTTC
    AGCAGCGCGC TGCAGCGCAT GTCCACAGTC GCCGCCGCCG CGCAAACCTC GGGCGAGAGA
    GCCGCGAACT GGGTCCTCGT GAAGGGCTCG CCGGAGATGG TCGCGACGCT GCTGGTGGAG
    AAGCCCAAAG GGTACGACGC CGCCTACCGC AGGCTCGCCG AGGAAGGCAT GCGCATCATC
    GCGCTCGCCC ACCGCGTCCT CACCGACGCC GAGAGCGCGA GGCTCCGGGA CCAAAAGGCA
    CCCTTGACCC GCGACGAGAT GGAGAGGGGC TTGACCTTTG ACGGGTTTCT CGCCTTCGCG
    TGCCCGGTTC GCAACGACAC CCCGGATGTT GTCAAGGCGC TCAGGGCGAG CAGCCACACC
    GTGATGATGG CCACCGGGGA CAGCGCTCTC ACCGCGCTGC ACGTCGCCAA CGAGGTTCAC
    ATCGCCGAGG GCGGTTTGGA GCGCGCGATG ATGCTGGTGA AGGACGAGGA CGACGGTCTG
    GAGTGGGTGA GCGCCAAGAC TGACGAGGAC ACCGGCGAAC CCGTGCACAG GCAGCCGTAC
    AGGGCCGACG GATCCATCCC GGACCTCGCG AAGAAGTACT CGCTGTGCGT CACCGGGTCC
    AGCCTCAACG CGGCGGCGGC GATCGACGGC GTGAGTCTCG GCAAGGAGAG CCTCATGAAG
    GACAACAAGC GCACGGGTCG CGGCGGCGGC CACGGAGGCC TCTGGGATTA CCTCGACTCG
    GTCGTCATCT TCGCGAGGAT GTCCCCGGAC GACAAGGAGC GCGTTTTGAA GCGGCTCAAG
    CAACAGGGTA GGCACACGTT CATGTGCGGA GACGGCGCTA ACGACGTCGG CGCGCTCAAG
    CAGGCGCACG TTGGGGTGGC GCTGCTCAGC GGCTTTGGCG GCGCAAACAC GAAGAAGGTG
    ACCCCCGTCG GCGAGGAGGA CAAAAAAGGC GCCAAGGATG ACAAGGCCGT GGCCGTGCCC
    ACGGAGGCCC AGGCGGAGAC GTTCGCGCAG AAGATGGAGC GCATCAAGGA GCAGGCCGCC
    AAGGTGAAAG AGGCGCGCGC CCGGGAGGCT GCAGCCCGGA AGCAGGACCA GAAGGAACTC
    GTCGCGCTCC AGAAGGTTTG GTTCGAGGAG GAGCTCGCGG CGCGAACCGC CGCCGGCGAG
    CAGTGGGCCC AGTTCAGCGC CATGAAGGCT GCCACCTCGC GCATGATCAC CGAGACCAAG
    GCTAGGCAGG CGGCGCGCGC GAGGGCCAAC GGCGGCGTGG GAGCCGCGCC CGGGTGGTCT
    CAGATGATGC AGGAGATGGA GGGCCTCGAG GACCAGGAGA CGCCGCAGGT TAAACTCGGC
    GACGCCTCCA TGGCGGCGCC GTTTACCTCC CGCATCCCAT CCGTTCGCAG CGCGGTCGAC
    ATCATCCGGC AGGGTCGGTG CACGCTCGTG TCGGCGATCC AGATGCAGCA GGTTCTCGTG
    CTCTCCTGCC TGATCAGCGC CTACTCCCTC TCCGTGCTCT ACCTCGACGG CATCCGCAGT
    AGCGATAACC AGATGATCGC GTCCGGCTCT GCGCTCACCG CGGCTTCTCT GGCGTTCTCC
    TACGCGACGC CGGTGCACAC GCTGTCGCAC GTCAGACCGC TGCGATCCAT CTTCCACCCC
    GCCAACTTCC TCTCTCTGAC TGGCCAGCTG GTCATCCACC TCGGGTGCAT GGTCTACGCC
    GTTCGTCTCG TGAAGGCGGC CACCGGCGAG GAGGCTGAGT TCCCGGAGAA CATCCCAGTC
    GCGATTATCC CCGAGGAGCT AAAGGCTAAC GCCACCGAGG AGCAGCGATC GTTCTGGGAG
    CAGGGCCCGC CGTTCAAGCC GTCGCTGCTC AACACCGTGG TGTTTTTGGT GGAGACTGTT
    CAGAGGGTGT GCGTCATGCT GGTCAACTAC AAGGGCCGCC CGTTCATGAT GGGCGCGATC
    GAGAACAAGA CGTTTCTTCT GTCGATTGCC TCGATGGTCA TCGGTGCGTT TGTGTGCGCG
    TTCGAGGTCA TACCGTGGCT CAACAACTGG CTGCAACTGG TGACGATGCC GGACACCGCG
    TTCAGGACCA CGATCCTATC CATTCTGGCG GTCTCCGTCG TGGGAACCGT CGCCTGGGAC
    CAGCTCATGC TGCTCATCTT TGCGCCCGAT ATCTTGTTCA CGGCGTACAG GGACACGATC
    CGGGCGTTGC CCACCCCCGC GGACATGGTG AAACAGTCGA AGAAGCCGCT GTTCGGTGCG
    TTGATGGCGT ACCTCTATTT CTTCAACCCA GCGACCGCGG GTAACGGGAT CTTACTCGTC
    GGCGGCTTCT ACGCGATGAG GCATCCGTTT TTCCGCAACT GA

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

    RefSeq XP_002502840.1
    CDS1..4602
    Translation

    Target ORF information:

    RefSeq Version XM_002502794.1
    Organism Micromonas commoda
    Definition Micromonas commoda p-type ATPase superfamily partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002502794.1

    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
    ATGGGGAGGC TTCACCTGAC TTACCCGGCC AACATCGCCA AGGTGACCTC GCAGAAGCGT 
    CGGTTCAACC TCCACGGCCT GGGCCTGCAT CACCTTCCGT TCCTGATCCT GTACGTCTTC
    GCGCTGAAAG CGTGCGTCGA GACGTCGGGA AATCCCTACG CCGTGGCTCT CGCGCATCAC
    AAGGAGAAAG GATACGATCC CGCCGCGTTC GACGCGAAAA CCGCCGCGAG CGCCCAGCGC
    GGCAAGACCG TCGTGGATGA CTGGGGAGGC GGTGACGCCG AGGACGATCC CTGGGGCGAC
    CTCGAGGCGG ACGAGGAGCA TCTCGCGCCC GACGCCCCCG ACGCAGCCGC CGCGGTCGAG
    GCCTCGTCGA CCGCCCCCGA CGCCGACGCC GCGCAGGCCC CGGCGCCCGC GAACCTGACC
    GCGCTCGAGG AACAAATCAA GTACGAGACC CCGCCCGCGC TCCCGGCGTC CTGGCTCCCG
    GAGTTCTGGG CCGTCATCTA CTTCTCCGTC GTCGCGGTCA CGCACGTCCT CCTCATGTTT
    GGCCAACACT GGAGCGTTCG GTTCAGGGCG TTTGTGAACT ACGTCGAGGC CGACGAGGTC
    AAGCCCGGGA ACGTCCTGAT GTTCTGCCCG ATGCCCCACC AGGGCAAAGC CGAGATTGTG
    GACGTCAACG AGCTCGAGAT CTCCGATCCC AAGGCTCCCG GCGGCCGGCG CACGATGCTC
    TGGACGGTTT TCCAGCGGCA GCGGTTCGAA TACGTCACCA CCGAGGTGGG CGGCGACGGG
    AAGGTTCGTG GCGAGGTGAG GGAGGTGCAG ACGCCGGTGG CGGAGCCCCT CGCGAGCTAC
    CTGCAGCCCA CGCGCGGGAT GAGCGCCGGT GGGGTGGCGG CGTCGACGTC CCGCTTCGGC
    GATAACTCGC TTCGCGTGCC GCTCCCCACG TTTCTCAAGT GCTACAAGGA GCAGCTCATG
    TCGCCGGTTT GCGTGTTCCA GGTGTTCACC ACCCTGCTCT GGCTCCTCGA CGAGTACTGG
    AAGTACGCCC TGTTCTCCGC GGCAAACTTG CTCATGTTCG AGGCCGCCAC CGCCTTCTCG
    CGCATCAAGA ACATTCGCAC CCTGCGGGGC ATGGGGGCCA CGCCAACGCG CATCGTGGCG
    TTCCGCGACG GCCGCTGGGA AGTCAGGTCC AGCGAGGAGC TCGTGCCCGG GGATATCATC
    TCCGTCGCGA GGCCCCCAGG GGCGGGGGAC ACGCCCATCC CGTGCGATTG CCTCGTGCTG
    AGGGGCTCCG CGGTGGTCAA CGAGGCGAGC CTCACGGGCG AGTCCGTGCC GCAGATGAAG
    GACTCGCTGT CGGGGGAGAC GGTGGCTGGC GACCCGGCCG CGCCGCTGGA CATAAACGGC
    GAGCACAAGG TCAACGTGCT CTACTCCGGC ACGATGCTGA TGCAGCAGAG CCAGGGCGAA
    TCCGAGCAGG CGCACGGTCT CCCGGCGACC CCCGACGGCG GGTGCCTGTG CTACGTGCTC
    CAGACTGGAT TTTCGTCCAC GCAGGGCAAG TTGATGCGCA TGATGGAGTT TAGCAGCGAA
    CAGGTCACCG GGGATACCTG GGAGACGTTG GTGTTGCTCT TCATCCTGTT CGTCTTCGCC
    TGTGTCGCGT CCGGTAACGT GTTCGTCATG GGCATGAAGG ACGGCAAGCG GTCGCAGTAC
    GAGCTCGTGC TTCGGTGCAT CCTCATCCTC ACCAGCGTCG TCCCGCCCGA GCTGCCGATG
    CAGACGGCGA TGGCGGTCAA CACGGCTCTC ATCGCGCTCA TGCGAGCGTC CGTCTTTTGC
    ACCGAGCCCT TCAGGGTTCC CATCTCCGGC AAGGTGGACA CCACCCTGTT CGACAAGACC
    GGTACCCTCA CCTCCGACAA GCTCGTGGCC ATGGGCATCG TGACGCCCAA GGATGACGGC
    TCGTTCACCG AGCTGACGCC GTGCCCCGAG GCGACCAAGT CCGCGTCGCT GGTCGTCGCC
    GGCTGCCACT CGCTCGTGCA GGTGGACGGA AAAACCTTCG GAGATCCGCT GGAGCAGGCG
    GCGCTCATGG GCGTCAAGTG GAGGTTCGAC CCGCGGTCGC AGACGGCGCT TCCCACCGAG
    AACTTTCCCG ATCCCGCGCG GGACAAGGCG CTGGCCGAGG CGAGAGCCAA ACGAGCCGAG
    ATGGTTGCGA AACTTCCCCG CGACCGAGCG CACACCGTTC CGCCGGTGCC CGAGCCCAAG
    CCACCGAAGC GCACGTGGAA GGGGTCGCCC TCGGTGAAGA TTTTGGTCCG CAACCACTTC
    AGCAGCGCGC TGCAGCGCAT GTCCACAGTC GCCGCCGCCG CGCAAACCTC GGGCGAGAGA
    GCCGCGAACT GGGTCCTCGT GAAGGGCTCG CCGGAGATGG TCGCGACGCT GCTGGTGGAG
    AAGCCCAAAG GGTACGACGC CGCCTACCGC AGGCTCGCCG AGGAAGGCAT GCGCATCATC
    GCGCTCGCCC ACCGCGTCCT CACCGACGCC GAGAGCGCGA GGCTCCGGGA CCAAAAGGCA
    CCCTTGACCC GCGACGAGAT GGAGAGGGGC TTGACCTTTG ACGGGTTTCT CGCCTTCGCG
    TGCCCGGTTC GCAACGACAC CCCGGATGTT GTCAAGGCGC TCAGGGCGAG CAGCCACACC
    GTGATGATGG CCACCGGGGA CAGCGCTCTC ACCGCGCTGC ACGTCGCCAA CGAGGTTCAC
    ATCGCCGAGG GCGGTTTGGA GCGCGCGATG ATGCTGGTGA AGGACGAGGA CGACGGTCTG
    GAGTGGGTGA GCGCCAAGAC TGACGAGGAC ACCGGCGAAC CCGTGCACAG GCAGCCGTAC
    AGGGCCGACG GATCCATCCC GGACCTCGCG AAGAAGTACT CGCTGTGCGT CACCGGGTCC
    AGCCTCAACG CGGCGGCGGC GATCGACGGC GTGAGTCTCG GCAAGGAGAG CCTCATGAAG
    GACAACAAGC GCACGGGTCG CGGCGGCGGC CACGGAGGCC TCTGGGATTA CCTCGACTCG
    GTCGTCATCT TCGCGAGGAT GTCCCCGGAC GACAAGGAGC GCGTTTTGAA GCGGCTCAAG
    CAACAGGGTA GGCACACGTT CATGTGCGGA GACGGCGCTA ACGACGTCGG CGCGCTCAAG
    CAGGCGCACG TTGGGGTGGC GCTGCTCAGC GGCTTTGGCG GCGCAAACAC GAAGAAGGTG
    ACCCCCGTCG GCGAGGAGGA CAAAAAAGGC GCCAAGGATG ACAAGGCCGT GGCCGTGCCC
    ACGGAGGCCC AGGCGGAGAC GTTCGCGCAG AAGATGGAGC GCATCAAGGA GCAGGCCGCC
    AAGGTGAAAG AGGCGCGCGC CCGGGAGGCT GCAGCCCGGA AGCAGGACCA GAAGGAACTC
    GTCGCGCTCC AGAAGGTTTG GTTCGAGGAG GAGCTCGCGG CGCGAACCGC CGCCGGCGAG
    CAGTGGGCCC AGTTCAGCGC CATGAAGGCT GCCACCTCGC GCATGATCAC CGAGACCAAG
    GCTAGGCAGG CGGCGCGCGC GAGGGCCAAC GGCGGCGTGG GAGCCGCGCC CGGGTGGTCT
    CAGATGATGC AGGAGATGGA GGGCCTCGAG GACCAGGAGA CGCCGCAGGT TAAACTCGGC
    GACGCCTCCA TGGCGGCGCC GTTTACCTCC CGCATCCCAT CCGTTCGCAG CGCGGTCGAC
    ATCATCCGGC AGGGTCGGTG CACGCTCGTG TCGGCGATCC AGATGCAGCA GGTTCTCGTG
    CTCTCCTGCC TGATCAGCGC CTACTCCCTC TCCGTGCTCT ACCTCGACGG CATCCGCAGT
    AGCGATAACC AGATGATCGC GTCCGGCTCT GCGCTCACCG CGGCTTCTCT GGCGTTCTCC
    TACGCGACGC CGGTGCACAC GCTGTCGCAC GTCAGACCGC TGCGATCCAT CTTCCACCCC
    GCCAACTTCC TCTCTCTGAC TGGCCAGCTG GTCATCCACC TCGGGTGCAT GGTCTACGCC
    GTTCGTCTCG TGAAGGCGGC CACCGGCGAG GAGGCTGAGT TCCCGGAGAA CATCCCAGTC
    GCGATTATCC CCGAGGAGCT AAAGGCTAAC GCCACCGAGG AGCAGCGATC GTTCTGGGAG
    CAGGGCCCGC CGTTCAAGCC GTCGCTGCTC AACACCGTGG TGTTTTTGGT GGAGACTGTT
    CAGAGGGTGT GCGTCATGCT GGTCAACTAC AAGGGCCGCC CGTTCATGAT GGGCGCGATC
    GAGAACAAGA CGTTTCTTCT GTCGATTGCC TCGATGGTCA TCGGTGCGTT TGTGTGCGCG
    TTCGAGGTCA TACCGTGGCT CAACAACTGG CTGCAACTGG TGACGATGCC GGACACCGCG
    TTCAGGACCA CGATCCTATC CATTCTGGCG GTCTCCGTCG TGGGAACCGT CGCCTGGGAC
    CAGCTCATGC TGCTCATCTT TGCGCCCGAT ATCTTGTTCA CGGCGTACAG GGACACGATC
    CGGGCGTTGC CCACCCCCGC GGACATGGTG AAACAGTCGA AGAAGCCGCT GTTCGGTGCG
    TTGATGGCGT ACCTCTATTT CTTCAACCCA GCGACCGCGG GTAACGGGAT CTTACTCGTC
    GGCGGCTTCT ACGCGATGAG GCATCCGTTT TTCCGCAACT GA

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

  • PubMed

    Green evolution and dynamic adaptations revealed by genomes of the marine picoeukaryotes Micromonas.
    Science (New York, N.Y.)324(5924)268-72(2009 Apr)
    Worden AZ,Lee JH,Mock T,Rouzé P,Simmons MP,Aerts AL,Allen AE,Cuvelier ML,Derelle E,Everett MV,Foulon E,Grimwood J,Gundlach H,Henrissat B,Napoli C,McDonald SM,Parker MS,Rombauts S,Salamov A,Von Dassow P,Badger JH,Coutinho PM,Demir E,Dubchak I,Gentemann C,Eikrem W,Gready JE,John U,Lanier W,Lindquist EA,Lucas S,Mayer KF,Moreau H,Not F,Otillar R,Panaud O,Pangilinan J,Paulsen I,Piegu B,Poliakov A,Robbens S,Schmutz J,Toulza E,Wyss T,Zelensky A,Zhou K,Armbrust EV,Bhattacharya D,Goodenough UW,Van de Peer Y,Grigoriev IV