NEF1-2 cDNA ORF clone, Selaginella moellendorffii

The following NEF1-2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the NEF1-2 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
OSb16407 XM_002985260.1
Latest version!
Selaginella moellendorffii hypothetical protein (NEF1-2), partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OSb52244 XM_002985260.2
Latest version!
Selaginella moellendorffii uncharacterized LOC9649684 (LOC9649684), 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 OSb16407
    Clone ID Related Accession (Same CDS sequence) XM_002985260.1
    Accession Version XM_002985260.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3168bp)
    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_003314327). ##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
    2881
    2941
    3001
    3061
    3121
    ATGGCGGCGT CGAGGCGCCC GCCCGTGGAC GAGCTCCGAT CCACGGGCTT CAAGCACAAT 
    GCGAGGATGG GCATGGCGCT GGCACCGTGC GCGGCTCTGA TGCTCGGGAT GGGCGGCAAG
    CCGGTGTCGG CCACGCTCAC GGTAGGACTC ATGATCTCCT ACATTCTAGA TTCTCTCCTC
    CTCAAGCGCG CGGCCTTCTT CGGGGTCTGG GGGTCGCTGT TCGCGGCCGG GATCGCGTTT
    TTCGTCACAG GGATCAACCT CTCCAGCTCC AGCTGGGCTC TCCAGGGATT GGGACTGCTC
    GTGCTCATGG AGCTCATCTT TCTCATTGGC GTCTGGGCAT CGCTCCAATT CCGCTGGCTG
    CAGCTCGAGA ATCCCTCGGT GGTGATCGCG CTGGAGAGAT TGCTCTTCGC GACCACACCG
    ATCGTCGCCG GCGCGTGCCA GACGTGGGGA ATTGTGGCGG CGGCGGGGGT GGAGCACGCC
    GCGTTCTATC TCATGGCCGT CCAGTTCGTC CTCTACTGGC TCTTCTCGCT GCCTAGGACG
    TCCTCGTTTA AGTCCAAGCC CGAGAAGAGC TATGGCGGAC AGATCCCCGA AGAGTCCCTA
    CTCATCGGGC CTCTGGAAGG ATGTCTCCAC ACTTTGATGC TACTGTTTCT CCCACTGGCG
    CTCCATCTCG GGATCCACCA CCGCCGGCTT GGATCCGCCA ACGCCATCGC CGAGCTCGTC
    CTCCTCTTCT TCGTGCCTTT GCTCTTCCAG CTCTACGCAT CCACGAAAGG AGCTCTGTGG
    TGGCTGGCCA AAGATCACAG GCAACTCGAC CACTTTCGCC TCGTCAATGG CGCGATCGCT
    CTGGTGGCGG TGATCCTCAG TCTCGAGGTC CGGGTGGTGT TCTTCGCGTT CCACCAGTAC
    ATCCAGATCC CGCCACCTTT CAACTATCTG CTCGTCACGC TCGGCCTCTT GGGAGGAGCT
    GCCGCTGTTG GATTGTTCCT CCTCGGCCGC GTTGGAAACG CTCCTCTCAC CGCTCTCCTC
    CTCGTCGCCG CGCTCTCGTC CTCGCTCGTC CTTGGCATGC CACTCAAGTT TCTCCCAGCT
    CCGATCATCT CCGCCGCGTT CCTGGGCCAC TACCTCGCGT CCAGAAACCT TGGATCGTAT
    TTTCTCTTCG CGGTTTCGGC AAGCGTTTCA GTCACCTGGT TTGTGTTCCA CAACTACTGG
    TCACTGAGCA TCTGGGTTGG AGGAAGCGAA ATCAAGTCGA TTTGCAAGCT TCTCATTGCC
    AGCGCGAGCA TTGCCTTGGC AGTTCCAGGG CTGAGCACTC TTCCCGGCAA GGCTCGCTAC
    CTCACCGACA TTTCTTTGAT CGGGCATGCC GCGCTGGTTT GCAACCTCGA GAACAAGCTC
    TACAACTACC CCGGGATCTA CTATGGCTAC ACGGACGACG TTATTTATCC AAGCTATGCG
    GTGGTGCTCT CCACCACCTT TGGATTGCTA GTCACTCGAA GATTGGCTGC TAACAATTTT
    GTCACATCTC TCGGAGCTTG GGTGATCTAT TGCCTCTACG CTTCCAAGCT TGGGATGCTG
    CTGTTATCTT CCAGAACTGT GCTGTGGTCC TCGGTGGTGT TGCTTCTGGC CGTCTCGCCA
    CCCGTTCTTC TCTACAAACA AAAAGGAAAA ACTGGAAGTC GGATGAAACC ATGGCAAGGA
    ATCGCTCACG CAGTCGTTAT TCTCGCGGCT GTATTCTGGT GCCAGTCGAC AATCATCGAG
    GCTCTCGAGT GGTCTTTCGG TCGACGTCCC TCGGACAGTG TTATTCTCGG TTCCATGATA
    CTCTTGGCGG GTTTTGCCAG CGCCCCGATC GTAGTCCAGC ATTTCAACCA CTTGCAGGCA
    GCGAGAAGAT CACTCGTCCT GGTCCTGGCA ACCGGCCTGC TGTTCATGCT CTTGCAGCCG
    CCTCTCCCGT GGTCCTTTTC GAGGCGAACG TTTTACGTGA GGGAGATCGA CTATTCTGAC
    GACGAGGCGA TCTATGGCGG AATAGCAGCA GTGCCGACTT GGTCGACATG GCTCCTCCTC
    GCCACGGCGA TCACGACCCT GGCGGCGCTG TCCTCGGCTC TCCCGGTCCA GCACTTCGTC
    ACACTTCGCT TCTTCTACGC GATCGGCGTG GGTGCCAACC TGGGGATCTA CATCGCGGCG
    CGCTACTTCC CTGAGCTCGT GATCATCGGC GTCCTCCTGG TAGTGGCGAT GGTGTCGGCC
    TCGCTCTTCC TCGTCTTCGT GCTGCTACCA TCGGCCTCCA GCCCCCGCTT CGTGCCGTGG
    CTGTTTGGAC TCCTCGTCTC GCTGCTTCCG GTCATGTATC TCCTCGAAGG CCAGCTCCGG
    GGAGGATGGG ATCAAACAGG TGGCGATGGC GACGAGAAGC TCGTCTCGAT ACTGGCTCTC
    CGAGGAGCAC GCAGCTCGCT GCTGGGTCTC TACGCCGCAA TCTTCATGCT CATCGCGCTG
    GTGATCAAGC TCCAGCTCGC TTCGATCCTC CGAGAAAAGG GAGGAGTCCA CACCGGAGGA
    GGAGGAGCTG GATTCGTGCC AAAGCACCGG CTTTTACAGC AGCAGCGAGC TTCTCACATG
    AGCCCTCTCA CTGTGAAGAA GCTCTCGGCG GAGGGGGCGT GGATGCCAGC GGTGGGGAAC
    ATCGCCACCA TCGGGAGCTT CCTCCTGTGC ATCGTCCTCA ACCGGCACCT CACCGGCGGA
    TCCGATCGAG CGGTGCTGTT CCTGGCGCCG ATCCTCCTGC TGCTCAACCA GGATACTAAT
    CTCGTCACCG GATTCGGCGA TCGGCAGCGC TACCTCCCGC TGTGCGCCGC GGTGTCGATC
    TACCTCGCCA TCTCCTCGGC GATCAAGGTG TGGGGCGAGG TGTGGCACGG GCACGAGAGC
    TCGTCGTGGG GGATGGAGAT GGGCGGGGCG GGGGTGATCT ACGCGGCCAA GAACACGGTG
    CTGCTGGCGA TGGCGATCCC CAGTCACGCG GTGTTCAATC TCTTCCTGTG GAACCAGGCG
    CGGGCGTCGG ACATGGCGCT GCTGGTGACG AGTCCGCTCA ACGCGCCCGC TATCGTGGCG
    GCGGACGTGG GCAGCATCCG GGGGCTGGCG CTGCTGGGCG TGATCTACGC GCTCCTCCAG
    TTCATGATCT CGCGCCGGAT TAGGATCGCT GGAATGAAGT ACATTTGA

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

    RefSeq XP_002985306.1
    CDS1..3168
    Translation

    Target ORF information:

    RefSeq Version XM_002985260.1
    Organism Selaginella moellendorffii
    Definition Selaginella moellendorffii hypothetical protein (NEF1-2), partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002985260.1

    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
    ATGGCGGCGT CGAGGCGCCC GCCCGTGGAC GAGCTCCGAT CCACGGGCTT CAAGCACAAT 
    GCGAGGATGG GCATGGCGCT GGCACCGTGC GCGGCTCTGA TGCTCGGGAT GGGCGGCAAG
    CCGGTGTCGG CCACGCTCAC GGTAGGACTC ATGATCTCCT ACATTCTAGA TTCTCTCCTC
    CTCAAGCGCG CGGCCTTCTT CGGGGTCTGG GGGTCGCTGT TCGCGGCCGG GATCGCGTTT
    TTCGTCACAG GGATCAACCT CTCCAGCTCC AGCTGGGCTC TCCAGGGATT GGGACTGCTC
    GTGCTCATGG AGCTCATCTT TCTCATTGGC GTCTGGGCAT CGCTCCAATT CCGCTGGCTG
    CAGCTCGAGA ATCCCTCGGT GGTGATCGCG CTGGAGAGAT TGCTCTTCGC GACCACACCG
    ATCGTCGCCG GCGCGTGCCA GACGTGGGGA ATTGTGGCGG CGGCGGGGGT GGAGCACGCC
    GCGTTCTATC TCATGGCCGT CCAGTTCGTC CTCTACTGGC TCTTCTCGCT GCCTAGGACG
    TCCTCGTTTA AGTCCAAGCC CGAGAAGAGC TATGGCGGAC AGATCCCCGA AGAGTCCCTA
    CTCATCGGGC CTCTGGAAGG ATGTCTCCAC ACTTTGATGC TACTGTTTCT CCCACTGGCG
    CTCCATCTCG GGATCCACCA CCGCCGGCTT GGATCCGCCA ACGCCATCGC CGAGCTCGTC
    CTCCTCTTCT TCGTGCCTTT GCTCTTCCAG CTCTACGCAT CCACGAAAGG AGCTCTGTGG
    TGGCTGGCCA AAGATCACAG GCAACTCGAC CACTTTCGCC TCGTCAATGG CGCGATCGCT
    CTGGTGGCGG TGATCCTCAG TCTCGAGGTC CGGGTGGTGT TCTTCGCGTT CCACCAGTAC
    ATCCAGATCC CGCCACCTTT CAACTATCTG CTCGTCACGC TCGGCCTCTT GGGAGGAGCT
    GCCGCTGTTG GATTGTTCCT CCTCGGCCGC GTTGGAAACG CTCCTCTCAC CGCTCTCCTC
    CTCGTCGCCG CGCTCTCGTC CTCGCTCGTC CTTGGCATGC CACTCAAGTT TCTCCCAGCT
    CCGATCATCT CCGCCGCGTT CCTGGGCCAC TACCTCGCGT CCAGAAACCT TGGATCGTAT
    TTTCTCTTCG CGGTTTCGGC AAGCGTTTCA GTCACCTGGT TTGTGTTCCA CAACTACTGG
    TCACTGAGCA TCTGGGTTGG AGGAAGCGAA ATCAAGTCGA TTTGCAAGCT TCTCATTGCC
    AGCGCGAGCA TTGCCTTGGC AGTTCCAGGG CTGAGCACTC TTCCCGGCAA GGCTCGCTAC
    CTCACCGACA TTTCTTTGAT CGGGCATGCC GCGCTGGTTT GCAACCTCGA GAACAAGCTC
    TACAACTACC CCGGGATCTA CTATGGCTAC ACGGACGACG TTATTTATCC AAGCTATGCG
    GTGGTGCTCT CCACCACCTT TGGATTGCTA GTCACTCGAA GATTGGCTGC TAACAATTTT
    GTCACATCTC TCGGAGCTTG GGTGATCTAT TGCCTCTACG CTTCCAAGCT TGGGATGCTG
    CTGTTATCTT CCAGAACTGT GCTGTGGTCC TCGGTGGTGT TGCTTCTGGC CGTCTCGCCA
    CCCGTTCTTC TCTACAAACA AAAAGGAAAA ACTGGAAGTC GGATGAAACC ATGGCAAGGA
    ATCGCTCACG CAGTCGTTAT TCTCGCGGCT GTATTCTGGT GCCAGTCGAC AATCATCGAG
    GCTCTCGAGT GGTCTTTCGG TCGACGTCCC TCGGACAGTG TTATTCTCGG TTCCATGATA
    CTCTTGGCGG GTTTTGCCAG CGCCCCGATC GTAGTCCAGC ATTTCAACCA CTTGCAGGCA
    GCGAGAAGAT CACTCGTCCT GGTCCTGGCA ACCGGCCTGC TGTTCATGCT CTTGCAGCCG
    CCTCTCCCGT GGTCCTTTTC GAGGCGAACG TTTTACGTGA GGGAGATCGA CTATTCTGAC
    GACGAGGCGA TCTATGGCGG AATAGCAGCA GTGCCGACTT GGTCGACATG GCTCCTCCTC
    GCCACGGCGA TCACGACCCT GGCGGCGCTG TCCTCGGCTC TCCCGGTCCA GCACTTCGTC
    ACACTTCGCT TCTTCTACGC GATCGGCGTG GGTGCCAACC TGGGGATCTA CATCGCGGCG
    CGCTACTTCC CTGAGCTCGT GATCATCGGC GTCCTCCTGG TAGTGGCGAT GGTGTCGGCC
    TCGCTCTTCC TCGTCTTCGT GCTGCTACCA TCGGCCTCCA GCCCCCGCTT CGTGCCGTGG
    CTGTTTGGAC TCCTCGTCTC GCTGCTTCCG GTCATGTATC TCCTCGAAGG CCAGCTCCGG
    GGAGGATGGG ATCAAACAGG TGGCGATGGC GACGAGAAGC TCGTCTCGAT ACTGGCTCTC
    CGAGGAGCAC GCAGCTCGCT GCTGGGTCTC TACGCCGCAA TCTTCATGCT CATCGCGCTG
    GTGATCAAGC TCCAGCTCGC TTCGATCCTC CGAGAAAAGG GAGGAGTCCA CACCGGAGGA
    GGAGGAGCTG GATTCGTGCC AAAGCACCGG CTTTTACAGC AGCAGCGAGC TTCTCACATG
    AGCCCTCTCA CTGTGAAGAA GCTCTCGGCG GAGGGGGCGT GGATGCCAGC GGTGGGGAAC
    ATCGCCACCA TCGGGAGCTT CCTCCTGTGC ATCGTCCTCA ACCGGCACCT CACCGGCGGA
    TCCGATCGAG CGGTGCTGTT CCTGGCGCCG ATCCTCCTGC TGCTCAACCA GGATACTAAT
    CTCGTCACCG GATTCGGCGA TCGGCAGCGC TACCTCCCGC TGTGCGCCGC GGTGTCGATC
    TACCTCGCCA TCTCCTCGGC GATCAAGGTG TGGGGCGAGG TGTGGCACGG GCACGAGAGC
    TCGTCGTGGG GGATGGAGAT GGGCGGGGCG GGGGTGATCT ACGCGGCCAA GAACACGGTG
    CTGCTGGCGA TGGCGATCCC CAGTCACGCG GTGTTCAATC TCTTCCTGTG GAACCAGGCG
    CGGGCGTCGG ACATGGCGCT GCTGGTGACG AGTCCGCTCA ACGCGCCCGC TATCGTGGCG
    GCGGACGTGG GCAGCATCCG GGGGCTGGCG CTGCTGGGCG TGATCTACGC GCTCCTCCAG
    TTCATGATCT CGCGCCGGAT TAGGATCGCT GGAATGAAGT ACATTTGA

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

    CloneID OSb52244
    Clone ID Related Accession (Same CDS sequence) XM_002985260.2
    Accession Version XM_002985260.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3192bp)
    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 uncharacterized protein LOC9649684
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003314327.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Apr 12, 2018 this sequence version replaced XM_002985260.1. ##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
    3061
    3121
    3181
    ATGAGCTCTT CCTCAAGAAC AGGGATGGCG GCGTCGAGGC GCCCGCCCGT GGACGAGCTC 
    CGATCCACGG GCTTCAAGCA CAATGCGAGG ATGGGCATGG CGCTGGCACC GTGCGCGGCT
    CTGATGCTCG GGATGGGCGG CAAGCCGGTG TCGGCCACGC TCACGGTAGG ACTCATGATC
    TCCTACATTC TAGATTCTCT CCTCCTCAAG CGCGCGGCCT TCTTCGGGGT CTGGGGGTCG
    CTGTTCGCGG CCGGGATCGC GTTTTTCGTC ACAGGGATCA ACCTCTCCAG CTCCAGCTGG
    GCTCTCCAGG GATTGGGACT GCTCGTGCTC ATGGAGCTCA TCTTTCTCAT TGGCGTCTGG
    GCATCGCTCC AATTCCGCTG GCTGCAGCTC GAGAATCCCT CGGTGGTGAT CGCGCTGGAG
    AGATTGCTCT TCGCGACCAC ACCGATCGTC GCCGGCGCGT GCCAGACGTG GGGAATTGTG
    GCGGCGGCGG GGGTGGAGCA CGCCGCGTTC TATCTCATGG CCGTCCAGTT CGTCCTCTAC
    TGGCTCTTCT CGCTGCCTAG GACGTCCTCG TTTAAGTCCA AGCCCGAGAA GAGCTATGGC
    GGACAGATCC CCGAAGAGTC CCTACTCATC GGGCCTCTGG AAGGATGTCT CCACACTTTG
    ATGCTACTGT TTCTCCCACT GGCGCTCCAT CTCGGGATCC ACCACCGCCG GCTTGGATCC
    GCCAACGCCA TCGCCGAGCT CGTCCTCCTC TTCTTCGTGC CTTTGCTCTT CCAGCTCTAC
    GCATCCACGA AAGGAGCTCT GTGGTGGCTG GCCAAAGATC ACAGGCAACT CGACCACTTT
    CGCCTCGTCA ATGGCGCGAT CGCTCTGGTG GCGGTGATCC TCAGTCTCGA GGTCCGGGTG
    GTGTTCTTCG CGTTCCACCA GTACATCCAG ATCCCGCCAC CTTTCAACTA TCTGCTCGTC
    ACGCTCGGCC TCTTGGGAGG AGCTGCCGCT GTTGGATTGT TCCTCCTCGG CCGCGTTGGA
    AACGCTCCTC TCACCGCTCT CCTCCTCGTC GCCGCGCTCT CGTCCTCGCT CGTCCTTGGC
    ATGCCACTCA AGTTTCTCCC AGCTCCGATC ATCTCCGCCG CGTTCCTGGG CCACTACCTC
    GCGTCCAGAA ACCTTGGATC GTATTTTCTC TTCGCGGTTT CGGCAAGCGT TTCAGTCACC
    TGGTTTGTGT TCCACAACTA CTGGTCACTG AGCATCTGGG TTGGAGGAAG CGAAATCAAG
    TCGATTTGCA AGCTTCTCAT TGCCAGCGCG AGCATTGCCT TGGCAGTTCC AGGGCTGAGC
    ACTCTTCCCG GCAAGGCTCG CTACCTCACC GACATTTCTT TGATCGGGCA TGCCGCGCTG
    GTTTGCAACC TCGAGAACAA GCTCTACAAC TACCCCGGGA TCTACTATGG CTACACGGAC
    GACGTTATTT ATCCAAGCTA TGCGGTGGTG CTCTCCACCA CCTTTGGATT GCTAGTCACT
    CGAAGATTGG CTGCTAACAA TTTTGTCACA TCTCTCGGAG CTTGGGTGAT CTATTGCCTC
    TACGCTTCCA AGCTTGGGAT GCTGCTGTTA TCTTCCAGAA CTGTGCTGTG GTCCTCGGTG
    GTGTTGCTTC TGGCCGTCTC GCCACCCGTT CTTCTCTACA AACAAAAAGG AAAAACTGGA
    AGTCGGATGA AACCATGGCA AGGAATCGCT CACGCAGTCG TTATTCTCGC GGCTGTATTC
    TGGTGCCAGT CGACAATCAT CGAGGCTCTC GAGTGGTCTT TCGGTCGACG TCCCTCGGAC
    AGTGTTATTC TCGGTTCCAT GATACTCTTG GCGGGTTTTG CCAGCGCCCC GATCGTAGTC
    CAGCATTTCA ACCACTTGCA GGCAGCGAGA AGATCACTCG TCCTGGTCCT GGCAACCGGC
    CTGCTGTTCA TGCTCTTGCA GCCGCCTCTC CCGTGGTCCT TTTCGAGGCG AACGTTTTAC
    GTGAGGGAGA TCGACTATTC TGACGACGAG GCGATCTATG GCGGAATAGC AGCAGTGCCG
    ACTTGGTCGA CATGGCTCCT CCTCGCCACG GCGATCACGA CCCTGGCGGC GCTGTCCTCG
    GCTCTCCCGG TCCAGCACTT CGTCACACTT CGCTTCTTCT ACGCGATCGG CGTGGGTGCC
    AACCTGGGGA TCTACATCGC GGCGCGCTAC TTCCCTGAGC TCGTGATCAT CGGCGTCCTC
    CTGGTAGTGG CGATGGTGTC GGCCTCGCTC TTCCTCGTCT TCGTGCTGCT ACCATCGGCC
    TCCAGCCCCC GCTTCGTGCC GTGGCTGTTT GGACTCCTCG TCTCGCTGCT TCCGGTCATG
    TATCTCCTCG AAGGCCAGCT CCGGGGAGGA TGGGATCAAA CAGGTGGCGA TGGCGACGAG
    AAGCTCGTCT CGATACTGGC TCTCCGAGGA GCACGCAGCT CGCTGCTGGG TCTCTACGCC
    GCAATCTTCA TGCTCATCGC GCTGGTGATC AAGCTCCAGC TCGCTTCGAT CCTCCGAGAA
    AAGGGAGGAG TCCACACCGG AGGAGGAGGA GCTGGATTCG TGCCAAAGCA CCGGCTTTTA
    CAGCAGCAGC GAGCTTCTCA CATGAGCCCT CTCACTGTGA AGAAGCTCTC GGCGGAGGGG
    GCGTGGATGC CAGCGGTGGG GAACATCGCC ACCATCGGGA GCTTCCTCCT GTGCATCGTC
    CTCAACCGGC ACCTCACCGG CGGATCCGAT CGAGCGGTGC TGTTCCTGGC GCCGATCCTC
    CTGCTGCTCA ACCAGGATAC TAATCTCGTC ACCGGATTCG GCGATCGGCA GCGCTACCTC
    CCGCTGTGCG CCGCGGTGTC GATCTACCTC GCCATCTCCT CGGCGATCAA GGTGTGGGGC
    GAGGTGTGGC ACGGGCACGA GAGCTCGTCG TGGGGGATGG AGATGGGCGG GGCGGGGGTG
    ATCTACGCGG CCAAGAACAC GGTGCTGCTG GCGATGGCGA TCCCCAGTCA CGCGGTGTTC
    AATCTCTTCC TGTGGAACCA GGCGCGGGCG TCGGACATGG CGCTGCTGGT GACGAGTCCG
    CTCAACGCGC CCGCTATCGT GGCGGCGGAC GTGGGCAGCA TCCGGGGGCT GGCGCTGCTG
    GGCGTGATCT ACGCGCTCCT CCAGTTCATG ATCTCGCGCC GGATTAGGAT CGCTGGAATG
    AAGTACATTT GA

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

    RefSeq XP_002985306.2
    CDS5..3196
    Translation

    Target ORF information:

    RefSeq Version XM_002985260.2
    Organism Selaginella moellendorffii
    Definition Selaginella moellendorffii uncharacterized LOC9649684 (LOC9649684), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002985260.2

    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
    ATGAGCTCTT CCTCAAGAAC AGGGATGGCG GCGTCGAGGC GCCCGCCCGT GGACGAGCTC 
    CGATCCACGG GCTTCAAGCA CAATGCGAGG ATGGGCATGG CGCTGGCACC GTGCGCGGCT
    CTGATGCTCG GGATGGGCGG CAAGCCGGTG TCGGCCACGC TCACGGTAGG ACTCATGATC
    TCCTACATTC TAGATTCTCT CCTCCTCAAG CGCGCGGCCT TCTTCGGGGT CTGGGGGTCG
    CTGTTCGCGG CCGGGATCGC GTTTTTCGTC ACAGGGATCA ACCTCTCCAG CTCCAGCTGG
    GCTCTCCAGG GATTGGGACT GCTCGTGCTC ATGGAGCTCA TCTTTCTCAT TGGCGTCTGG
    GCATCGCTCC AATTCCGCTG GCTGCAGCTC GAGAATCCCT CGGTGGTGAT CGCGCTGGAG
    AGATTGCTCT TCGCGACCAC ACCGATCGTC GCCGGCGCGT GCCAGACGTG GGGAATTGTG
    GCGGCGGCGG GGGTGGAGCA CGCCGCGTTC TATCTCATGG CCGTCCAGTT CGTCCTCTAC
    TGGCTCTTCT CGCTGCCTAG GACGTCCTCG TTTAAGTCCA AGCCCGAGAA GAGCTATGGC
    GGACAGATCC CCGAAGAGTC CCTACTCATC GGGCCTCTGG AAGGATGTCT CCACACTTTG
    ATGCTACTGT TTCTCCCACT GGCGCTCCAT CTCGGGATCC ACCACCGCCG GCTTGGATCC
    GCCAACGCCA TCGCCGAGCT CGTCCTCCTC TTCTTCGTGC CTTTGCTCTT CCAGCTCTAC
    GCATCCACGA AAGGAGCTCT GTGGTGGCTG GCCAAAGATC ACAGGCAACT CGACCACTTT
    CGCCTCGTCA ATGGCGCGAT CGCTCTGGTG GCGGTGATCC TCAGTCTCGA GGTCCGGGTG
    GTGTTCTTCG CGTTCCACCA GTACATCCAG ATCCCGCCAC CTTTCAACTA TCTGCTCGTC
    ACGCTCGGCC TCTTGGGAGG AGCTGCCGCT GTTGGATTGT TCCTCCTCGG CCGCGTTGGA
    AACGCTCCTC TCACCGCTCT CCTCCTCGTC GCCGCGCTCT CGTCCTCGCT CGTCCTTGGC
    ATGCCACTCA AGTTTCTCCC AGCTCCGATC ATCTCCGCCG CGTTCCTGGG CCACTACCTC
    GCGTCCAGAA ACCTTGGATC GTATTTTCTC TTCGCGGTTT CGGCAAGCGT TTCAGTCACC
    TGGTTTGTGT TCCACAACTA CTGGTCACTG AGCATCTGGG TTGGAGGAAG CGAAATCAAG
    TCGATTTGCA AGCTTCTCAT TGCCAGCGCG AGCATTGCCT TGGCAGTTCC AGGGCTGAGC
    ACTCTTCCCG GCAAGGCTCG CTACCTCACC GACATTTCTT TGATCGGGCA TGCCGCGCTG
    GTTTGCAACC TCGAGAACAA GCTCTACAAC TACCCCGGGA TCTACTATGG CTACACGGAC
    GACGTTATTT ATCCAAGCTA TGCGGTGGTG CTCTCCACCA CCTTTGGATT GCTAGTCACT
    CGAAGATTGG CTGCTAACAA TTTTGTCACA TCTCTCGGAG CTTGGGTGAT CTATTGCCTC
    TACGCTTCCA AGCTTGGGAT GCTGCTGTTA TCTTCCAGAA CTGTGCTGTG GTCCTCGGTG
    GTGTTGCTTC TGGCCGTCTC GCCACCCGTT CTTCTCTACA AACAAAAAGG AAAAACTGGA
    AGTCGGATGA AACCATGGCA AGGAATCGCT CACGCAGTCG TTATTCTCGC GGCTGTATTC
    TGGTGCCAGT CGACAATCAT CGAGGCTCTC GAGTGGTCTT TCGGTCGACG TCCCTCGGAC
    AGTGTTATTC TCGGTTCCAT GATACTCTTG GCGGGTTTTG CCAGCGCCCC GATCGTAGTC
    CAGCATTTCA ACCACTTGCA GGCAGCGAGA AGATCACTCG TCCTGGTCCT GGCAACCGGC
    CTGCTGTTCA TGCTCTTGCA GCCGCCTCTC CCGTGGTCCT TTTCGAGGCG AACGTTTTAC
    GTGAGGGAGA TCGACTATTC TGACGACGAG GCGATCTATG GCGGAATAGC AGCAGTGCCG
    ACTTGGTCGA CATGGCTCCT CCTCGCCACG GCGATCACGA CCCTGGCGGC GCTGTCCTCG
    GCTCTCCCGG TCCAGCACTT CGTCACACTT CGCTTCTTCT ACGCGATCGG CGTGGGTGCC
    AACCTGGGGA TCTACATCGC GGCGCGCTAC TTCCCTGAGC TCGTGATCAT CGGCGTCCTC
    CTGGTAGTGG CGATGGTGTC GGCCTCGCTC TTCCTCGTCT TCGTGCTGCT ACCATCGGCC
    TCCAGCCCCC GCTTCGTGCC GTGGCTGTTT GGACTCCTCG TCTCGCTGCT TCCGGTCATG
    TATCTCCTCG AAGGCCAGCT CCGGGGAGGA TGGGATCAAA CAGGTGGCGA TGGCGACGAG
    AAGCTCGTCT CGATACTGGC TCTCCGAGGA GCACGCAGCT CGCTGCTGGG TCTCTACGCC
    GCAATCTTCA TGCTCATCGC GCTGGTGATC AAGCTCCAGC TCGCTTCGAT CCTCCGAGAA
    AAGGGAGGAG TCCACACCGG AGGAGGAGGA GCTGGATTCG TGCCAAAGCA CCGGCTTTTA
    CAGCAGCAGC GAGCTTCTCA CATGAGCCCT CTCACTGTGA AGAAGCTCTC GGCGGAGGGG
    GCGTGGATGC CAGCGGTGGG GAACATCGCC ACCATCGGGA GCTTCCTCCT GTGCATCGTC
    CTCAACCGGC ACCTCACCGG CGGATCCGAT CGAGCGGTGC TGTTCCTGGC GCCGATCCTC
    CTGCTGCTCA ACCAGGATAC TAATCTCGTC ACCGGATTCG GCGATCGGCA GCGCTACCTC
    CCGCTGTGCG CCGCGGTGTC GATCTACCTC GCCATCTCCT CGGCGATCAA GGTGTGGGGC
    GAGGTGTGGC ACGGGCACGA GAGCTCGTCG TGGGGGATGG AGATGGGCGG GGCGGGGGTG
    ATCTACGCGG CCAAGAACAC GGTGCTGCTG GCGATGGCGA TCCCCAGTCA CGCGGTGTTC
    AATCTCTTCC TGTGGAACCA GGCGCGGGCG TCGGACATGG CGCTGCTGGT GACGAGTCCG
    CTCAACGCGC CCGCTATCGT GGCGGCGGAC GTGGGCAGCA TCCGGGGGCT GGCGCTGCTG
    GGCGTGATCT ACGCGCTCCT CCAGTTCATG ATCTCGCGCC GGATTAGGAT CGCTGGAATG
    AAGTACATTT GA

    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