LOC9645532 cDNA ORF clone, Selaginella moellendorffii

The following LOC9645532 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC9645532 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
OSb13107 XM_002969983.1
Latest version!
Selaginella moellendorffii hypothetical protein partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OSb37038 XM_024674804.1
Latest version!
Selaginella moellendorffii probable copper-transporting ATPase HMA5 (LOC9645532), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OSb37037 XM_002969983.2
Latest version!
Selaginella moellendorffii probable copper-transporting ATPase HMA5 (LOC9645532), transcript variant X1, 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 OSb13107
    Clone ID Related Accession (Same CDS sequence) XM_002969983.1
    Accession Version XM_002969983.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2862bp)
    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 1490112000000
    Organism Selaginella moellendorffii
    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_003314274). ##Metadata-START## Organism Display Name :: Selaginella moellendorfii GOLD Stamp ID :: Gi00760 Genome size :: 212.5 Mb ##Metadata-END## 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
    ATGCCGAGGT ATCCTCCCTC TCCGCCCAGG CGGGACATCG ACGCCGCGCA AACCCAGAGC 
    GTGTCCTTCA AGGTAACTGG CATGGAATGC ACTGCCTGTG CCGGATCTAT CGAGAAGGCC
    CTCAAGAGGC TCCCGGGCAT CAAAGAAGCG GCTGTGGCAG TGATCCAAGA GAAGGCCCAG
    GTCGTCTTTC ATCCAGCGTT TGTTCAAGTA GAGACTATCC GCGAAGCCAT TGTTGACGCT
    GGATTCGACG CGACCGTCTT GAAAGATTCT ATCGAGCAGT CGCGCAACTC AGTGTGCCGG
    ATCCGGGTGA GAGGTATGAC TTGCACGTCG TGCTCGGGTG CCATTGAGGC GGCGCTCAGG
    AAAATCCCAG GGGTGGTGAG TGCGGTGGTG GCCCTTGCGA CCGAGCAAGC CGAAATCTTT
    CACGACGCCA GCGTGGTTAG CTACTCGAAA CTCATCGAAG CCGTGGAGGA GGCTGGCTTC
    GTGGCCGAGC TGGTGAGCGC TGGAGAGGAA AGAAACAAGG TCCATTTGCA GCTGGAAGGT
    GTGCATTCAC GGGAAGGCTT TAGAAACATC GTTACCTCGC TGGAGGCTCT GGCTGGGGTG
    ACGGAGGTGG AGCTTTTTCT CAAGGAGGAA AGGCTGGTGG TTTCTTACGA TCCCGACTTA
    ACAGGCCCGC GATGCTTCAT AGAGATTATC GAGCAGACAG GACCGGCGAA TGTATACAAG
    GCGAGTTTGG CTATGGGAGC AGACCGTCGA GCAGATATGA AGAGCGAGAT CAAGCACTAT
    TGGAATCTCT TCTTATGGAG CATTGTCTTC ACGGTTCCGG TGTTCTTCCT GGGGATGGTG
    TTTATGTACA CTCCGGGCAC GATGAAGAGA TACGTCGGGT GGAAGGTGAT CAACATGCTC
    ACCGTCGGGC AGATACTGAG ATGGAGTTTG TCTACGCCTG TCCAGTTCGT CATCGGGTGG
    CGGTTCTACG TTGGGGCTTA CAATGCTCTA CGCCATGGTT CGGCCAACAT GGACGTTCTC
    ATAGCTCTCG GGACGAATGC TGCGTACTTC TACTCCGTCT ACTCCGCTTT AAGATCTGCG
    ACGTCTGACT CGTTTGAAGG GACGGACTTT TTCGAGACGA GTTCTATGCT CATATCGTTT
    ATTCTTCTGG GGAAGTTCCT GGAGGTTCTG GCCAAAGGGA AAACGTCTGA AGCCATCGCG
    AAGCTTATGA ATCTCACGCC TGATACGGCC ATTCTCCTGA CGCTGGACGA GAAGGGAAAC
    GTTACTTTCG AGCGAGAAAT CATTACGCAG CTCGTACAAC GGAACGACGT CGTCAAAGTT
    TTGCCTGGCT CCAAAGTGCC AACTGATGGA GAGGTGATTT GGGGACAGAG TCATGTGAAC
    GAGAGCATGA TCACTGGTGA AGCCCGGCCG GTCGCAAAAC GAAGTGGTGA CAAAGTCATT
    GGTGGGACTA TGAACGAAAA CGGAGTGTTA CATGTCCGCG CAACGCATGT TGGATCTGAG
    ACGGCTCTTG CGCAGATAGT TAGGCTGGTG GAAGCGGCAC AGATGGCTAA AGCTCCCGTT
    CAAAAGTTTG CTGACCGTAT ATCTCAATAC TTCGTTCCCA TGGTTGTTGG CGCATCAGTT
    CTCACATGGA GCTTCTGGTT CTGTGCTGGG AAAGCTAGCT GGTATCCCAA GTCTTGGATC
    CCACCGAGCA TGGATGAATT TGAGCTAGCA CTTCAGTTTG GTATTGCTGT GCTTGTCATT
    GCTTGTCCTT GCGCCTTGGG GCTGGCCACG CCTACTGCTG TCATGGTTTC AACTGGAAAA
    GGAGCCACGC AAGGCGTCCT TATCAAAGGT GGTGCTGCTT TGGAGACAGC ACGCAAGGTT
    GACTGCATTG TGTTTGACAA AACGGGTACT CTCACGAAAG GAGAGCCGAG TGTTGTTAAC
    ACGAAGCTAT TTCGGTACAT TGCTCTGAAG GTCTTCTTCA GCATTGTTGC TAGTGTGGAG
    GCCAACAGCG AGCATCCTCT GGCCAAGGCA ATAGTTGAAT TCGCAAAAGG TCTGAGACTT
    CAAGAACCAC TCGAGCAGCA CCAAGTACAG GACTTTAGAG CTGTTCCTGG TCAGGGAGTT
    CAAGCAGTGG TGACCGGAAA ACGAGTTTTG GTGGGGAACT ACAAGCTCAT ATCGGAGAAC
    GGCATTTCAC TTCCTCCGCA AGCCTCAGAG CAGCTCCAAG ACGTTGAGGT GCTGGCCAGG
    ACCGCCGTGC TGGTTGCGAT CGACGGAGAA CTCACGGGCC TTATCTCGGT CGCAGACCCG
    ATGAAACCAG AGGCACCGGC CGTGATCTCC ACGCTCAAGC TGATGAACAT CAAGAGCGTC
    ATAGTGACTG GAGATAACCG AGGCACAGCT CTCGCCGTTG CTAGAGAAGT TGGCATCCAG
    CCGAAAGACG TCATCGCCGA GGCCGATCCC AAAGCAAAGG CTGACAGAGT GAAGGAGTTG
    CAAAGCGCGG GCATGGTGGT CGCGATGGTC GGAGATGGTA TCAACGATTC CCCGGCTCTG
    GTTGCCGCGG ACGTTGGAGT GGCCATCGGT GCCGGCACCG ACATAGCGAT TGAGGCGGCG
    GACATTGTCC TCATGAAGAG CCACCTGGAA GACGTGGTCA CCGCCATCGA CTTGTCCAGG
    AAAACGTTCT CGAGGATTCG TCTTAACTAC GTGTGGGCTC TGGGATACAA CGTCCTGGGA
    ATTCCAATCG CGGCCGGGGT GCTCTATCCT TGCTCGAGAT TCCGGCTTCC ACCATGGATC
    GCCGGTGCCG CTATGGCCGC CTCGTCCGTG AGCGTGGTTT GCTCCTCGCT GCTACTCAAG
    TATTACAAGC GACCAAAGAA ACTGGAGCTC ATCGTCCACT AG

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

    RefSeq XP_002970029.1
    CDS1..2862
    Translation

    Target ORF information:

    RefSeq Version XM_002969983.1
    Organism Selaginella moellendorffii
    Definition Selaginella moellendorffii hypothetical protein partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002969983.1

    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
    ATGCCGAGGT ATCCTCCCTC TCCGCCCAGG CGGGACATCG ACGCCGCGCA AACCCAGAGC 
    GTGTCCTTCA AGGTAACTGG CATGGAATGC ACTGCCTGTG CCGGATCTAT CGAGAAGGCC
    CTCAAGAGGC TCCCGGGCAT CAAAGAAGCG GCTGTGGCAG TGATCCAAGA GAAGGCCCAG
    GTCGTCTTTC ATCCAGCGTT TGTTCAAGTA GAGACTATCC GCGAAGCCAT TGTTGACGCT
    GGATTCGACG CGACCGTCTT GAAAGATTCT ATCGAGCAGT CGCGCAACTC AGTGTGCCGG
    ATCCGGGTGA GAGGTATGAC TTGCACGTCG TGCTCGGGTG CCATTGAGGC GGCGCTCAGG
    AAAATCCCAG GGGTGGTGAG TGCGGTGGTG GCCCTTGCGA CCGAGCAAGC CGAAATCTTT
    CACGACGCCA GCGTGGTTAG CTACTCGAAA CTCATCGAAG CCGTGGAGGA GGCTGGCTTC
    GTGGCCGAGC TGGTGAGCGC TGGAGAGGAA AGAAACAAGG TCCATTTGCA GCTGGAAGGT
    GTGCATTCAC GGGAAGGCTT TAGAAACATC GTTACCTCGC TGGAGGCTCT GGCTGGGGTG
    ACGGAGGTGG AGCTTTTTCT CAAGGAGGAA AGGCTGGTGG TTTCTTACGA TCCCGACTTA
    ACAGGCCCGC GATGCTTCAT AGAGATTATC GAGCAGACAG GACCGGCGAA TGTATACAAG
    GCGAGTTTGG CTATGGGAGC AGACCGTCGA GCAGATATGA AGAGCGAGAT CAAGCACTAT
    TGGAATCTCT TCTTATGGAG CATTGTCTTC ACGGTTCCGG TGTTCTTCCT GGGGATGGTG
    TTTATGTACA CTCCGGGCAC GATGAAGAGA TACGTCGGGT GGAAGGTGAT CAACATGCTC
    ACCGTCGGGC AGATACTGAG ATGGAGTTTG TCTACGCCTG TCCAGTTCGT CATCGGGTGG
    CGGTTCTACG TTGGGGCTTA CAATGCTCTA CGCCATGGTT CGGCCAACAT GGACGTTCTC
    ATAGCTCTCG GGACGAATGC TGCGTACTTC TACTCCGTCT ACTCCGCTTT AAGATCTGCG
    ACGTCTGACT CGTTTGAAGG GACGGACTTT TTCGAGACGA GTTCTATGCT CATATCGTTT
    ATTCTTCTGG GGAAGTTCCT GGAGGTTCTG GCCAAAGGGA AAACGTCTGA AGCCATCGCG
    AAGCTTATGA ATCTCACGCC TGATACGGCC ATTCTCCTGA CGCTGGACGA GAAGGGAAAC
    GTTACTTTCG AGCGAGAAAT CATTACGCAG CTCGTACAAC GGAACGACGT CGTCAAAGTT
    TTGCCTGGCT CCAAAGTGCC AACTGATGGA GAGGTGATTT GGGGACAGAG TCATGTGAAC
    GAGAGCATGA TCACTGGTGA AGCCCGGCCG GTCGCAAAAC GAAGTGGTGA CAAAGTCATT
    GGTGGGACTA TGAACGAAAA CGGAGTGTTA CATGTCCGCG CAACGCATGT TGGATCTGAG
    ACGGCTCTTG CGCAGATAGT TAGGCTGGTG GAAGCGGCAC AGATGGCTAA AGCTCCCGTT
    CAAAAGTTTG CTGACCGTAT ATCTCAATAC TTCGTTCCCA TGGTTGTTGG CGCATCAGTT
    CTCACATGGA GCTTCTGGTT CTGTGCTGGG AAAGCTAGCT GGTATCCCAA GTCTTGGATC
    CCACCGAGCA TGGATGAATT TGAGCTAGCA CTTCAGTTTG GTATTGCTGT GCTTGTCATT
    GCTTGTCCTT GCGCCTTGGG GCTGGCCACG CCTACTGCTG TCATGGTTTC AACTGGAAAA
    GGAGCCACGC AAGGCGTCCT TATCAAAGGT GGTGCTGCTT TGGAGACAGC ACGCAAGGTT
    GACTGCATTG TGTTTGACAA AACGGGTACT CTCACGAAAG GAGAGCCGAG TGTTGTTAAC
    ACGAAGCTAT TTCGGTACAT TGCTCTGAAG GTCTTCTTCA GCATTGTTGC TAGTGTGGAG
    GCCAACAGCG AGCATCCTCT GGCCAAGGCA ATAGTTGAAT TCGCAAAAGG TCTGAGACTT
    CAAGAACCAC TCGAGCAGCA CCAAGTACAG GACTTTAGAG CTGTTCCTGG TCAGGGAGTT
    CAAGCAGTGG TGACCGGAAA ACGAGTTTTG GTGGGGAACT ACAAGCTCAT ATCGGAGAAC
    GGCATTTCAC TTCCTCCGCA AGCCTCAGAG CAGCTCCAAG ACGTTGAGGT GCTGGCCAGG
    ACCGCCGTGC TGGTTGCGAT CGACGGAGAA CTCACGGGCC TTATCTCGGT CGCAGACCCG
    ATGAAACCAG AGGCACCGGC CGTGATCTCC ACGCTCAAGC TGATGAACAT CAAGAGCGTC
    ATAGTGACTG GAGATAACCG AGGCACAGCT CTCGCCGTTG CTAGAGAAGT TGGCATCCAG
    CCGAAAGACG TCATCGCCGA GGCCGATCCC AAAGCAAAGG CTGACAGAGT GAAGGAGTTG
    CAAAGCGCGG GCATGGTGGT CGCGATGGTC GGAGATGGTA TCAACGATTC CCCGGCTCTG
    GTTGCCGCGG ACGTTGGAGT GGCCATCGGT GCCGGCACCG ACATAGCGAT TGAGGCGGCG
    GACATTGTCC TCATGAAGAG CCACCTGGAA GACGTGGTCA CCGCCATCGA CTTGTCCAGG
    AAAACGTTCT CGAGGATTCG TCTTAACTAC GTGTGGGCTC TGGGATACAA CGTCCTGGGA
    ATTCCAATCG CGGCCGGGGT GCTCTATCCT TGCTCGAGAT TCCGGCTTCC ACCATGGATC
    GCCGGTGCCG CTATGGCCGC CTCGTCCGTG AGCGTGGTTT GCTCCTCGCT GCTACTCAAG
    TATTACAAGC GACCAAAGAA ACTGGAGCTC ATCGTCCACT AG

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

    CloneID OSb37038
    Clone ID Related Accession (Same CDS sequence) XM_024674804.1
    Accession Version XM_024674804.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2949bp)
    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 1523376000000
    Organism Selaginella moellendorffii
    Product probable copper-transporting ATPase HMA5 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003314274.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Selaginella moellendorffii Annotation Release 100 Annotation Version :: 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    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
    ATGTCGAGCT GCGGCATCTA CATGGTTTTA CCCAAGGATC GCGATGAGTC CTCGCTTTCG 
    GAATCCCTGC TCGCTCGCTA TCCGTCCATG CCGAGGTATC CTCCCTCTCC GCCCAGGCGG
    GACATCGACG CCGCGCAAAC CCAGAGCGTG TCCTTCAAGG TAACTGGCAT GGAATGCACT
    GCCTGTGCCG GATCTATCGA GAAGGCCCTC AAGAGGCTCC CGGGCATCAA AGAAGCGGCT
    GTGGCAGTGA TCCAAGAGAA GGCCCAGGTC GTCTTTCATC CAGCGTTTGT TCAAGTAGAG
    ACTATCCGCG AAGCCATTGT TGACGCTGGA TTCGACGCGA CCGTCTTGAA AGATTCTATC
    GAGCAGTCGC GCAACTCAGT GTGCCGGATC CGGGTGAGAG GTATGACTTG CACGTCGTGC
    TCGGGTGCCA TTGAGGCGGC GCTCAGGAAA ATCCCAGGGG TGGTGAGTGC GGTGGTGGCC
    CTTGCGACCG AGCAAGCCGA AATCTTTCAC GACGCCAGCG TGGTTAGCTA CTCGAAACTC
    ATCGAAGCCG TGGAGGAGGC TGGCTTCGTG GCCGAGCTGG TGAGCGCTGG AGAGGAAAGA
    AACAAGGTCC ATTTGCAGCT GGAAGGTGTG CATTCACGGG AAGGCTTTAG AAACATCGTT
    ACCTCGCTGG AGGCTCTGGC TGGGGTGACG GAGGTGGAGC TTTTTCTCAA GGAGGAAAGG
    CTGGTGGTTT CTTACGATCC CGACTTAACA GGCCCGCGAT GCTTCATAGA GATTATCGAG
    CAGACAGGAC CGGCGAATGT ATACAAGGCG AGTTTGGCTA TGGGAGCAGA CCGTCGAGCA
    GATATGAAGA GCGAGATCAA GCACTATTGG AATCTCTTCT TATGGAGCAT TGTCTTCACG
    GTTCCGGTGT TCTTCCTGGG GATGGTGTTT ATGTACACTC CGGGCACGAT GAAGAGATAC
    GTCGGGTGGA AGGTGATCAA CATGCTCACC GTCGGGCAGA TACTGAGATG GAGTTTGTCT
    ACGCCTGTCC AGTTCGTCAT CGGGTGGCGG TTCTACGTTG GGGCTTACAA TGCTCTACGC
    CATGGTTCGG CCAACATGGA CGTTCTCATA GCTCTCGGGA CGAATGCTGC GTACTTCTAC
    TCCGTCTACT CCGCTTTAAG ATCTGCGACG TCTGACTCGT TTGAAGGGAC GGACTTTTTC
    GAGACGAGTT CTATGCTCAT ATCGTTTATT CTTCTGGGGA AGTTCCTGGA GGTTCTGGCC
    AAAGGGAAAA CGTCTGAAGC CATCGCGAAG CTTATGAATC TCACGCCTGA TACGGCCATT
    CTCCTGACGC TGGACGAGAA GGGAAACGTT ACTTTCGAGC GAGAAATCAT TACGCAGCTC
    GTACAACGGA ACGACGTCGT CAAAGTTTTG CCTGGCTCCA AAGTGCCAAC TGATGGAGAG
    GTGATTTGGG GACAGAGTCA TGTGAACGAG AGCATGATCA CTGGTGAAGC CCGGCCGGTC
    GCAAAACGAA GTGGTGACAA AGTCATTGGT GGGACTATGA ACGAAAACGG AGTGTTACAT
    GTCCGCGCAA CGCATGTTGG ATCTGAGACG GCTCTTGCGC AGATAGTTAG GCTGGTGGAA
    GCGGCACAGA TGGCTAAAGC TCCCGTTCAA AAGTTTGCTG ACCGTATATC TCAATACTTC
    GTTCCCATGG TTGTTGGCGC ATCAGTTCTC ACATGGAGCT TCTGGTTCTG TGCTGGGAAA
    GCTAGCTGGT ATCCCAAGTC TTGGATCCCA CCGAGCATGG ATGAATTTGA GCTAGCACTT
    CAGTTTGGTA TTGCTGTGCT TGTCATTGCT TGTCCTTGCG CCTTGGGGCT GGCCACGCCT
    ACTGCTGTCA TGGTTTCAAC TGGAAAAGGA GCCACGCAAG GCGTCCTTAT CAAAGGTGGT
    GCTGCTTTGG AGACAGCACG CAAGGTTGAC TGCATTGTGT TTGACAAAAC GGGTACTCTC
    ACGAAAGGAG AGCCGAGTGT TGTTAACACG AAGCTATTTC GGTACATTGC TCTGAAGGTC
    TTCTTCAGCA TTGTTGCTAG TGTGGAGGCC AACAGCGAGC ATCCTCTGGC CAAGGCAATA
    GTTGAATTCG CAAAAGGTCT GAGACTTCAA GAACCACTCG AGCAGCACCA AGTACAGGAC
    TTTAGAGCTG TTCCTGGTCA GGGAGTTCAA GCAGTGGTGA CCGGAAAACG AGTTTTGGTG
    GGGAACTACA AGCTCATATC GGAGAACGGC ATTTCACTTC CTCCGCAAGC CTCAGAGCAG
    CTCCAAGACG TTGAGGTGCT GGCCAGGACC GCCGTGCTGG TTGCGATCGA CGGAGAACTC
    ACGGGCCTTA TCTCGGTCGC AGACCCGATG AAACCAGAGG CACCGGCCGT GATCTCCACG
    CTCAAGCTGA TGAACATCAA GAGCGTCATA GTGACTGGAG ATAACCGAGG CACAGCTCTC
    GCCGTTGCTA GAGAAGTTGG CATCCAGCCG AAAGACGTCA TCGCCGAGGC CGATCCCAAA
    GCAAAGGCTG ACAGAGTGAA GGAGTTGCAA AGCGCGGGCA TGGTGGTCGC GATGGTCGGA
    GATGGTATCA ACGATTCCCC GGCTCTGGTT GCCGCGGACG TTGGAGTGGC CATCGGTGCC
    GGCACCGACA TAGCGATTGA GGCGGCGGAC ATTGTCCTCA TGAAGAGCCA CCTGGAAGAC
    GTGGTCACCG CCATCGACTT GTCCAGGAAA ACGTTCTCGA GGATTCGTCT TAACTACGTG
    TGGGCTCTGG GATACAACGT CCTGGGAATT CCAATCGCGG CCGGGGTGCT CTATCCTTGC
    TCGAGATTCC GGCTTCCACC ATGGATCGCC GGTGCCGCTA TGGCCGCCTC GTCCGTGAGC
    GTGGTTTGCT CCTCGCTGCT ACTCAAGTAT TACAAGCGAC CAAAGAAACT GGAGCTCATC
    GTCCACTAG

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

    RefSeq XP_024530572.1
    CDS92..3040
    Translation

    Target ORF information:

    RefSeq Version XM_024674804.1
    Organism Selaginella moellendorffii
    Definition Selaginella moellendorffii probable copper-transporting ATPase HMA5 (LOC9645532), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_024674804.1

    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
    ATGTCGAGCT GCGGCATCTA CATGGTTTTA CCCAAGGATC GCGATGAGTC CTCGCTTTCG 
    GAATCCCTGC TCGCTCGCTA TCCGTCCATG CCGAGGTATC CTCCCTCTCC GCCCAGGCGG
    GACATCGACG CCGCGCAAAC CCAGAGCGTG TCCTTCAAGG TAACTGGCAT GGAATGCACT
    GCCTGTGCCG GATCTATCGA GAAGGCCCTC AAGAGGCTCC CGGGCATCAA AGAAGCGGCT
    GTGGCAGTGA TCCAAGAGAA GGCCCAGGTC GTCTTTCATC CAGCGTTTGT TCAAGTAGAG
    ACTATCCGCG AAGCCATTGT TGACGCTGGA TTCGACGCGA CCGTCTTGAA AGATTCTATC
    GAGCAGTCGC GCAACTCAGT GTGCCGGATC CGGGTGAGAG GTATGACTTG CACGTCGTGC
    TCGGGTGCCA TTGAGGCGGC GCTCAGGAAA ATCCCAGGGG TGGTGAGTGC GGTGGTGGCC
    CTTGCGACCG AGCAAGCCGA AATCTTTCAC GACGCCAGCG TGGTTAGCTA CTCGAAACTC
    ATCGAAGCCG TGGAGGAGGC TGGCTTCGTG GCCGAGCTGG TGAGCGCTGG AGAGGAAAGA
    AACAAGGTCC ATTTGCAGCT GGAAGGTGTG CATTCACGGG AAGGCTTTAG AAACATCGTT
    ACCTCGCTGG AGGCTCTGGC TGGGGTGACG GAGGTGGAGC TTTTTCTCAA GGAGGAAAGG
    CTGGTGGTTT CTTACGATCC CGACTTAACA GGCCCGCGAT GCTTCATAGA GATTATCGAG
    CAGACAGGAC CGGCGAATGT ATACAAGGCG AGTTTGGCTA TGGGAGCAGA CCGTCGAGCA
    GATATGAAGA GCGAGATCAA GCACTATTGG AATCTCTTCT TATGGAGCAT TGTCTTCACG
    GTTCCGGTGT TCTTCCTGGG GATGGTGTTT ATGTACACTC CGGGCACGAT GAAGAGATAC
    GTCGGGTGGA AGGTGATCAA CATGCTCACC GTCGGGCAGA TACTGAGATG GAGTTTGTCT
    ACGCCTGTCC AGTTCGTCAT CGGGTGGCGG TTCTACGTTG GGGCTTACAA TGCTCTACGC
    CATGGTTCGG CCAACATGGA CGTTCTCATA GCTCTCGGGA CGAATGCTGC GTACTTCTAC
    TCCGTCTACT CCGCTTTAAG ATCTGCGACG TCTGACTCGT TTGAAGGGAC GGACTTTTTC
    GAGACGAGTT CTATGCTCAT ATCGTTTATT CTTCTGGGGA AGTTCCTGGA GGTTCTGGCC
    AAAGGGAAAA CGTCTGAAGC CATCGCGAAG CTTATGAATC TCACGCCTGA TACGGCCATT
    CTCCTGACGC TGGACGAGAA GGGAAACGTT ACTTTCGAGC GAGAAATCAT TACGCAGCTC
    GTACAACGGA ACGACGTCGT CAAAGTTTTG CCTGGCTCCA AAGTGCCAAC TGATGGAGAG
    GTGATTTGGG GACAGAGTCA TGTGAACGAG AGCATGATCA CTGGTGAAGC CCGGCCGGTC
    GCAAAACGAA GTGGTGACAA AGTCATTGGT GGGACTATGA ACGAAAACGG AGTGTTACAT
    GTCCGCGCAA CGCATGTTGG ATCTGAGACG GCTCTTGCGC AGATAGTTAG GCTGGTGGAA
    GCGGCACAGA TGGCTAAAGC TCCCGTTCAA AAGTTTGCTG ACCGTATATC TCAATACTTC
    GTTCCCATGG TTGTTGGCGC ATCAGTTCTC ACATGGAGCT TCTGGTTCTG TGCTGGGAAA
    GCTAGCTGGT ATCCCAAGTC TTGGATCCCA CCGAGCATGG ATGAATTTGA GCTAGCACTT
    CAGTTTGGTA TTGCTGTGCT TGTCATTGCT TGTCCTTGCG CCTTGGGGCT GGCCACGCCT
    ACTGCTGTCA TGGTTTCAAC TGGAAAAGGA GCCACGCAAG GCGTCCTTAT CAAAGGTGGT
    GCTGCTTTGG AGACAGCACG CAAGGTTGAC TGCATTGTGT TTGACAAAAC GGGTACTCTC
    ACGAAAGGAG AGCCGAGTGT TGTTAACACG AAGCTATTTC GGTACATTGC TCTGAAGGTC
    TTCTTCAGCA TTGTTGCTAG TGTGGAGGCC AACAGCGAGC ATCCTCTGGC CAAGGCAATA
    GTTGAATTCG CAAAAGGTCT GAGACTTCAA GAACCACTCG AGCAGCACCA AGTACAGGAC
    TTTAGAGCTG TTCCTGGTCA GGGAGTTCAA GCAGTGGTGA CCGGAAAACG AGTTTTGGTG
    GGGAACTACA AGCTCATATC GGAGAACGGC ATTTCACTTC CTCCGCAAGC CTCAGAGCAG
    CTCCAAGACG TTGAGGTGCT GGCCAGGACC GCCGTGCTGG TTGCGATCGA CGGAGAACTC
    ACGGGCCTTA TCTCGGTCGC AGACCCGATG AAACCAGAGG CACCGGCCGT GATCTCCACG
    CTCAAGCTGA TGAACATCAA GAGCGTCATA GTGACTGGAG ATAACCGAGG CACAGCTCTC
    GCCGTTGCTA GAGAAGTTGG CATCCAGCCG AAAGACGTCA TCGCCGAGGC CGATCCCAAA
    GCAAAGGCTG ACAGAGTGAA GGAGTTGCAA AGCGCGGGCA TGGTGGTCGC GATGGTCGGA
    GATGGTATCA ACGATTCCCC GGCTCTGGTT GCCGCGGACG TTGGAGTGGC CATCGGTGCC
    GGCACCGACA TAGCGATTGA GGCGGCGGAC ATTGTCCTCA TGAAGAGCCA CCTGGAAGAC
    GTGGTCACCG CCATCGACTT GTCCAGGAAA ACGTTCTCGA GGATTCGTCT TAACTACGTG
    TGGGCTCTGG GATACAACGT CCTGGGAATT CCAATCGCGG CCGGGGTGCT CTATCCTTGC
    TCGAGATTCC GGCTTCCACC ATGGATCGCC GGTGCCGCTA TGGCCGCCTC GTCCGTGAGC
    GTGGTTTGCT CCTCGCTGCT ACTCAAGTAT TACAAGCGAC CAAAGAAACT GGAGCTCATC
    GTCCACTAG

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

    CloneID OSb37037
    Clone ID Related Accession (Same CDS sequence) XM_002969983.2
    Accession Version XM_002969983.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3036bp)
    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 1523376000000
    Organism Selaginella moellendorffii
    Product probable copper-transporting ATPase HMA5 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003314274.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Apr 12, 2018 this sequence version replaced XM_002969983.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Selaginella moellendorffii Annotation Release 100 Annotation Version :: 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    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
    ATGGTGGAAA TCCCCAGGAG TCTAGGATTT CGTCCTGAAA TTTCATCTTC GATGTCCAGA 
    TCGATCAATC CAGTGGCGCG GCCGGCAATG TCGAGCTGCG GCATCTACAT GGTTTTACCC
    AAGGATCGCG ATGAGTCCTC GCTTTCGGAA TCCCTGCTCG CTCGCTATCC GTCCATGCCG
    AGGTATCCTC CCTCTCCGCC CAGGCGGGAC ATCGACGCCG CGCAAACCCA GAGCGTGTCC
    TTCAAGGTAA CTGGCATGGA ATGCACTGCC TGTGCCGGAT CTATCGAGAA GGCCCTCAAG
    AGGCTCCCGG GCATCAAAGA AGCGGCTGTG GCAGTGATCC AAGAGAAGGC CCAGGTCGTC
    TTTCATCCAG CGTTTGTTCA AGTAGAGACT ATCCGCGAAG CCATTGTTGA CGCTGGATTC
    GACGCGACCG TCTTGAAAGA TTCTATCGAG CAGTCGCGCA ACTCAGTGTG CCGGATCCGG
    GTGAGAGGTA TGACTTGCAC GTCGTGCTCG GGTGCCATTG AGGCGGCGCT CAGGAAAATC
    CCAGGGGTGG TGAGTGCGGT GGTGGCCCTT GCGACCGAGC AAGCCGAAAT CTTTCACGAC
    GCCAGCGTGG TTAGCTACTC GAAACTCATC GAAGCCGTGG AGGAGGCTGG CTTCGTGGCC
    GAGCTGGTGA GCGCTGGAGA GGAAAGAAAC AAGGTCCATT TGCAGCTGGA AGGTGTGCAT
    TCACGGGAAG GCTTTAGAAA CATCGTTACC TCGCTGGAGG CTCTGGCTGG GGTGACGGAG
    GTGGAGCTTT TTCTCAAGGA GGAAAGGCTG GTGGTTTCTT ACGATCCCGA CTTAACAGGC
    CCGCGATGCT TCATAGAGAT TATCGAGCAG ACAGGACCGG CGAATGTATA CAAGGCGAGT
    TTGGCTATGG GAGCAGACCG TCGAGCAGAT ATGAAGAGCG AGATCAAGCA CTATTGGAAT
    CTCTTCTTAT GGAGCATTGT CTTCACGGTT CCGGTGTTCT TCCTGGGGAT GGTGTTTATG
    TACACTCCGG GCACGATGAA GAGATACGTC GGGTGGAAGG TGATCAACAT GCTCACCGTC
    GGGCAGATAC TGAGATGGAG TTTGTCTACG CCTGTCCAGT TCGTCATCGG GTGGCGGTTC
    TACGTTGGGG CTTACAATGC TCTACGCCAT GGTTCGGCCA ACATGGACGT TCTCATAGCT
    CTCGGGACGA ATGCTGCGTA CTTCTACTCC GTCTACTCCG CTTTAAGATC TGCGACGTCT
    GACTCGTTTG AAGGGACGGA CTTTTTCGAG ACGAGTTCTA TGCTCATATC GTTTATTCTT
    CTGGGGAAGT TCCTGGAGGT TCTGGCCAAA GGGAAAACGT CTGAAGCCAT CGCGAAGCTT
    ATGAATCTCA CGCCTGATAC GGCCATTCTC CTGACGCTGG ACGAGAAGGG AAACGTTACT
    TTCGAGCGAG AAATCATTAC GCAGCTCGTA CAACGGAACG ACGTCGTCAA AGTTTTGCCT
    GGCTCCAAAG TGCCAACTGA TGGAGAGGTG ATTTGGGGAC AGAGTCATGT GAACGAGAGC
    ATGATCACTG GTGAAGCCCG GCCGGTCGCA AAACGAAGTG GTGACAAAGT CATTGGTGGG
    ACTATGAACG AAAACGGAGT GTTACATGTC CGCGCAACGC ATGTTGGATC TGAGACGGCT
    CTTGCGCAGA TAGTTAGGCT GGTGGAAGCG GCACAGATGG CTAAAGCTCC CGTTCAAAAG
    TTTGCTGACC GTATATCTCA ATACTTCGTT CCCATGGTTG TTGGCGCATC AGTTCTCACA
    TGGAGCTTCT GGTTCTGTGC TGGGAAAGCT AGCTGGTATC CCAAGTCTTG GATCCCACCG
    AGCATGGATG AATTTGAGCT AGCACTTCAG TTTGGTATTG CTGTGCTTGT CATTGCTTGT
    CCTTGCGCCT TGGGGCTGGC CACGCCTACT GCTGTCATGG TTTCAACTGG AAAAGGAGCC
    ACGCAAGGCG TCCTTATCAA AGGTGGTGCT GCTTTGGAGA CAGCACGCAA GGTTGACTGC
    ATTGTGTTTG ACAAAACGGG TACTCTCACG AAAGGAGAGC CGAGTGTTGT TAACACGAAG
    CTATTTCGGT ACATTGCTCT GAAGGTCTTC TTCAGCATTG TTGCTAGTGT GGAGGCCAAC
    AGCGAGCATC CTCTGGCCAA GGCAATAGTT GAATTCGCAA AAGGTCTGAG ACTTCAAGAA
    CCACTCGAGC AGCACCAAGT ACAGGACTTT AGAGCTGTTC CTGGTCAGGG AGTTCAAGCA
    GTGGTGACCG GAAAACGAGT TTTGGTGGGG AACTACAAGC TCATATCGGA GAACGGCATT
    TCACTTCCTC CGCAAGCCTC AGAGCAGCTC CAAGACGTTG AGGTGCTGGC CAGGACCGCC
    GTGCTGGTTG CGATCGACGG AGAACTCACG GGCCTTATCT CGGTCGCAGA CCCGATGAAA
    CCAGAGGCAC CGGCCGTGAT CTCCACGCTC AAGCTGATGA ACATCAAGAG CGTCATAGTG
    ACTGGAGATA ACCGAGGCAC AGCTCTCGCC GTTGCTAGAG AAGTTGGCAT CCAGCCGAAA
    GACGTCATCG CCGAGGCCGA TCCCAAAGCA AAGGCTGACA GAGTGAAGGA GTTGCAAAGC
    GCGGGCATGG TGGTCGCGAT GGTCGGAGAT GGTATCAACG ATTCCCCGGC TCTGGTTGCC
    GCGGACGTTG GAGTGGCCAT CGGTGCCGGC ACCGACATAG CGATTGAGGC GGCGGACATT
    GTCCTCATGA AGAGCCACCT GGAAGACGTG GTCACCGCCA TCGACTTGTC CAGGAAAACG
    TTCTCGAGGA TTCGTCTTAA CTACGTGTGG GCTCTGGGAT ACAACGTCCT GGGAATTCCA
    ATCGCGGCCG GGGTGCTCTA TCCTTGCTCG AGATTCCGGC TTCCACCATG GATCGCCGGT
    GCCGCTATGG CCGCCTCGTC CGTGAGCGTG GTTTGCTCCT CGCTGCTACT CAAGTATTAC
    AAGCGACCAA AGAAACTGGA GCTCATCGTC CACTAG

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

    RefSeq XP_002970029.2
    CDS66..3101
    Translation

    Target ORF information:

    RefSeq Version XM_002969983.2
    Organism Selaginella moellendorffii
    Definition Selaginella moellendorffii probable copper-transporting ATPase HMA5 (LOC9645532), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002969983.2

    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
    ATGGTGGAAA TCCCCAGGAG TCTAGGATTT CGTCCTGAAA TTTCATCTTC GATGTCCAGA 
    TCGATCAATC CAGTGGCGCG GCCGGCAATG TCGAGCTGCG GCATCTACAT GGTTTTACCC
    AAGGATCGCG ATGAGTCCTC GCTTTCGGAA TCCCTGCTCG CTCGCTATCC GTCCATGCCG
    AGGTATCCTC CCTCTCCGCC CAGGCGGGAC ATCGACGCCG CGCAAACCCA GAGCGTGTCC
    TTCAAGGTAA CTGGCATGGA ATGCACTGCC TGTGCCGGAT CTATCGAGAA GGCCCTCAAG
    AGGCTCCCGG GCATCAAAGA AGCGGCTGTG GCAGTGATCC AAGAGAAGGC CCAGGTCGTC
    TTTCATCCAG CGTTTGTTCA AGTAGAGACT ATCCGCGAAG CCATTGTTGA CGCTGGATTC
    GACGCGACCG TCTTGAAAGA TTCTATCGAG CAGTCGCGCA ACTCAGTGTG CCGGATCCGG
    GTGAGAGGTA TGACTTGCAC GTCGTGCTCG GGTGCCATTG AGGCGGCGCT CAGGAAAATC
    CCAGGGGTGG TGAGTGCGGT GGTGGCCCTT GCGACCGAGC AAGCCGAAAT CTTTCACGAC
    GCCAGCGTGG TTAGCTACTC GAAACTCATC GAAGCCGTGG AGGAGGCTGG CTTCGTGGCC
    GAGCTGGTGA GCGCTGGAGA GGAAAGAAAC AAGGTCCATT TGCAGCTGGA AGGTGTGCAT
    TCACGGGAAG GCTTTAGAAA CATCGTTACC TCGCTGGAGG CTCTGGCTGG GGTGACGGAG
    GTGGAGCTTT TTCTCAAGGA GGAAAGGCTG GTGGTTTCTT ACGATCCCGA CTTAACAGGC
    CCGCGATGCT TCATAGAGAT TATCGAGCAG ACAGGACCGG CGAATGTATA CAAGGCGAGT
    TTGGCTATGG GAGCAGACCG TCGAGCAGAT ATGAAGAGCG AGATCAAGCA CTATTGGAAT
    CTCTTCTTAT GGAGCATTGT CTTCACGGTT CCGGTGTTCT TCCTGGGGAT GGTGTTTATG
    TACACTCCGG GCACGATGAA GAGATACGTC GGGTGGAAGG TGATCAACAT GCTCACCGTC
    GGGCAGATAC TGAGATGGAG TTTGTCTACG CCTGTCCAGT TCGTCATCGG GTGGCGGTTC
    TACGTTGGGG CTTACAATGC TCTACGCCAT GGTTCGGCCA ACATGGACGT TCTCATAGCT
    CTCGGGACGA ATGCTGCGTA CTTCTACTCC GTCTACTCCG CTTTAAGATC TGCGACGTCT
    GACTCGTTTG AAGGGACGGA CTTTTTCGAG ACGAGTTCTA TGCTCATATC GTTTATTCTT
    CTGGGGAAGT TCCTGGAGGT TCTGGCCAAA GGGAAAACGT CTGAAGCCAT CGCGAAGCTT
    ATGAATCTCA CGCCTGATAC GGCCATTCTC CTGACGCTGG ACGAGAAGGG AAACGTTACT
    TTCGAGCGAG AAATCATTAC GCAGCTCGTA CAACGGAACG ACGTCGTCAA AGTTTTGCCT
    GGCTCCAAAG TGCCAACTGA TGGAGAGGTG ATTTGGGGAC AGAGTCATGT GAACGAGAGC
    ATGATCACTG GTGAAGCCCG GCCGGTCGCA AAACGAAGTG GTGACAAAGT CATTGGTGGG
    ACTATGAACG AAAACGGAGT GTTACATGTC CGCGCAACGC ATGTTGGATC TGAGACGGCT
    CTTGCGCAGA TAGTTAGGCT GGTGGAAGCG GCACAGATGG CTAAAGCTCC CGTTCAAAAG
    TTTGCTGACC GTATATCTCA ATACTTCGTT CCCATGGTTG TTGGCGCATC AGTTCTCACA
    TGGAGCTTCT GGTTCTGTGC TGGGAAAGCT AGCTGGTATC CCAAGTCTTG GATCCCACCG
    AGCATGGATG AATTTGAGCT AGCACTTCAG TTTGGTATTG CTGTGCTTGT CATTGCTTGT
    CCTTGCGCCT TGGGGCTGGC CACGCCTACT GCTGTCATGG TTTCAACTGG AAAAGGAGCC
    ACGCAAGGCG TCCTTATCAA AGGTGGTGCT GCTTTGGAGA CAGCACGCAA GGTTGACTGC
    ATTGTGTTTG ACAAAACGGG TACTCTCACG AAAGGAGAGC CGAGTGTTGT TAACACGAAG
    CTATTTCGGT ACATTGCTCT GAAGGTCTTC TTCAGCATTG TTGCTAGTGT GGAGGCCAAC
    AGCGAGCATC CTCTGGCCAA GGCAATAGTT GAATTCGCAA AAGGTCTGAG ACTTCAAGAA
    CCACTCGAGC AGCACCAAGT ACAGGACTTT AGAGCTGTTC CTGGTCAGGG AGTTCAAGCA
    GTGGTGACCG GAAAACGAGT TTTGGTGGGG AACTACAAGC TCATATCGGA GAACGGCATT
    TCACTTCCTC CGCAAGCCTC AGAGCAGCTC CAAGACGTTG AGGTGCTGGC CAGGACCGCC
    GTGCTGGTTG CGATCGACGG AGAACTCACG GGCCTTATCT CGGTCGCAGA CCCGATGAAA
    CCAGAGGCAC CGGCCGTGAT CTCCACGCTC AAGCTGATGA ACATCAAGAG CGTCATAGTG
    ACTGGAGATA ACCGAGGCAC AGCTCTCGCC GTTGCTAGAG AAGTTGGCAT CCAGCCGAAA
    GACGTCATCG CCGAGGCCGA TCCCAAAGCA AAGGCTGACA GAGTGAAGGA GTTGCAAAGC
    GCGGGCATGG TGGTCGCGAT GGTCGGAGAT GGTATCAACG ATTCCCCGGC TCTGGTTGCC
    GCGGACGTTG GAGTGGCCAT CGGTGCCGGC ACCGACATAG CGATTGAGGC GGCGGACATT
    GTCCTCATGA AGAGCCACCT GGAAGACGTG GTCACCGCCA TCGACTTGTC CAGGAAAACG
    TTCTCGAGGA TTCGTCTTAA CTACGTGTGG GCTCTGGGAT ACAACGTCCT GGGAATTCCA
    ATCGCGGCCG GGGTGCTCTA TCCTTGCTCG AGATTCCGGC TTCCACCATG GATCGCCGGT
    GCCGCTATGG CCGCCTCGTC CGTGAGCGTG GTTTGCTCCT CGCTGCTACT CAAGTATTAC
    AAGCGACCAA AGAAACTGGA GCTCATCGTC CACTAG

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

  • PubMed

    The Selaginella genome identifies genetic changes associated with the evolution of vascular plants.
    Science (New York, N.Y.)332(6032)960-3(2011 May)
    Banks JA,Nishiyama T,Hasebe M,Bowman JL,Gribskov M,dePamphilis C,Albert VA,Aono N,Aoyama T,Ambrose BA,Ashton NW,Axtell MJ,Barker E,Barker MS,Bennetzen JL,Bonawitz ND,Chapple C,Cheng C,Correa LG,Dacre M,DeBarry J,Dreyer I,Elias M,Engstrom EM,Estelle M,Feng L,Finet C,Floyd SK,Frommer WB,Fujita T,Gramzow L,Gutensohn M,Harholt J,Hattori M,Heyl A,Hirai T,Hiwatashi Y,Ishikawa M,Iwata M,Karol KG,Koehler B,Kolukisaoglu U,Kubo M,Kurata T,Lalonde S,Li K,Li Y,Litt A,Lyons E,Manning G,Maruyama T,Michael TP,Mikami K,Miyazaki S,Morinaga S,Murata T,Mueller-Roeber B,Nelson DR,Obara M,Oguri Y,Olmstead RG,Onodera N,Petersen BL,Pils B,Prigge M,Rensing SA,Riaño-Pachón DM,Roberts AW,Sato Y,Scheller HV,Schulz B,Schulz C,Shakirov EV,Shibagaki N,Shinohara N,Shippen DE,Sørensen I,Sotooka R,Sugimoto N,Sugita M,Sumikawa N,Tanurdzic M,Theissen G,Ulvskov P,Wakazuki S,Weng JK,Willats WW,Wipf D,Wolf PG,Yang L,Zimmer AD,Zhu Q,Mitros T,Hellsten U,Loqué D,Otillar R,Salamov A,Schmutz J,Shapiro H,Lindquist E,Lucas S,Rokhsar D,Grigoriev IV