PHATRDRAFT_44773 cDNA ORF clone, Phaeodactylum tricornutum CCAP 1055/1

The following PHATRDRAFT_44773 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the PHATRDRAFT_44773 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
OPb03194 XM_002178914.1
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Phaeodactylum tricornutum CCAP 1055/1 predicted protein partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
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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 OPb03194
    Clone ID Related Accession (Same CDS sequence) XM_002178914.1
    Accession Version XM_002178914.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3462bp)
    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 1497456000000
    Organism Phaeodactylum tricornutum CCAP 1055/1
    Product predicted 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_011673). 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
    ATGAGTTCCT ATACGGATCG ACGTGACTAC ACGTCGGGTG GTCATCGTGG AGGTGGCGGG 
    GGATACCGCG GTTCTGGTGG ATACGGGGGC GGTGGTGCAC GGGGTGGAGG ACGCGGTGGT
    GGGTATCGCG GAGGACGGGG TGGATATCAC CGTGGAGGAC GTCAGGCCCA TACCGGAACA
    TCTCCCTACT CGCGTCACAG TGGCGGGACT ACGAACGGTG GACCCCGACG CTCCGGAAAT
    CGTTTCGCCG TGGAATCCAC GCGGCGAGAT CCTCAGCAAG AACTCTTACG CAATCTACTC
    GTCCTTTTGC ATCAAGTAGG AGATCTGCAG TCCACGAATC GCAACAACAA CAACAACAAC
    AACAGTAACA GTAACGACAA TACCTCCCCG GTGCGTACAA TAGTCACAAC GCAGAAGCAA
    AACATTCAAG GATTGACGCA AGTCTTGTGT GGCAACAATC CCGAACTCTT TCTCCAACAC
    GAGGCCGAAG ACAGTCCCGC AAACATTCAG TACGCGGAGC AATTGGCCGG ACCGTTGGCG
    GCGGGATTGG TCCACGCTAT TATGGCGGCG CCACTGCAAA CACCCTGCTA CGTGGGGTTG
    ACTCTGGCGG TTCACGTCAC GGCGCACGCC CGGGACGCAA CCTTGTTTGG TGGATTCGCA
    TCCCGCTGTG TCCGCTACGC CACCAGGGCC ATGGCCCGTG ATCTCGACGC TCTGCTGCTA
    GATTCGGACC CGAATAGCAG TACTAGTAGC ACTACTCATA GCGGTATTGG AGACAGTGGC
    AGCGGTAGTA CTACTACTCG ACAGTCCCGC GTCCCATCCC ATCGATTGGT GGTTCGGGTG
    CGTATGTTGC TCCGCTACCT GGTTCTACTG GCACGCGCGG GTATTCTGCA ACTCGACCAC
    GATACCGCAT ACGCCGTCAC GGGCCCCGCA CACTCCAACC CGGTCAGTGT CTTGGGGCTG
    TTACAAACAA TGGTACAGGC GGCACGGCAA GCCAAGGAGC GTGACGGCAA CCAGTCCGTG
    GCCGTAGTCT TGGCGTCGCT CGTGTTGAGT ACGGTACCCT ACCTGGCGAC CCTTCTTCCT
    TCCGAGACGG TCCGCCAGAC TTTGGTCCAA CCATTGGAAG CAAGCGTCCA ATCATACCGG
    TCCACGTTTG CACCAGGCTT TGGTTGTACC GCAATTCTTC TTCGAGAGGA ACAAATTGAG
    GATATTGGGG CTTCCATTGA AGAAGAAGAC GACGAAGAGG AGGATGACGA CGAAGAAGAA
    GAGGGGTCGG GACAAGTGTG CGACAACTTT CAAGACCTGA TGCGGACCGT ACAGTACTGG
    GTAAAGCAAG AGGACACTAC CGTTGCGTCA CGCCTGGCTC TCTTTCGCGA CGCTCCGTGG
    GAAGGCTTGG AGGCAAAAGT CTCCTCGCTT ACTTCCACAA CCTTGGACGC CAGCGAGATT
    GAGGAATCCG CTCACACTCC GTTAGTCTAT ACGGAGACGC CCTTGACCAT TCCAATATTC
    ACGGATTGCC AGTCCCTGTC GGCTTTGGTG GGTGGTCTTC ACTCGGCGCC CGAGGACGAC
    AGTCTGTTCT GGGCCGAAAT TGATCTCGAC GGAATTTTTG TGGGTCGCTT GCCCATTTTC
    GGACCTCCTC CCGAAGTTGC GGACAATGAC GACGACGAAG ACGACGACCA AGACATGGAG
    GCAGCAGCAC CGGTTAACGA ACGTCTACAA GCGTATCGCT CCGGATACGG CATGGTGGAT
    CGCTACTTTA TACACGAAGC CATCCGCGAT TGCTTGACTA GCCACGAAAG TTACGTGACG
    GATACCGGTG TCGAAATTGG CAACGCCAAG ACGGCTGCGG AGCAGGTGTG GTCTATCATT
    CAAATGGTGA CGGGTGACAG CACCAACGGG TTGGAATATG CAGTTCTGGA AGCGATCTTT
    TCCTTAATTG TACAATCAAA TGCGGTCTCA TCGTTCCGTT TTGTATACCT TTCGCGTGTG
    TTATTGGAAC TAACGAGGCT GGAACCCGCC ATCATGTCGC CCGCCATTGC CATTGCGGTC
    TCGACTTTAT TTCAGGACTA CATGCCAACT CTGGTCCCCA TGGCACGATA CAATCTGAGT
    CGATGGTTCG CCTTTCACTT GGTTAACACC GATTACCAGT GGCCCGCAGC GTACTGGAAA
    CATTGGGAAC CCTTTGTGCA GTACGGTTGG AAGAATAGTC GCGGAGCTTT TGTGAAGGGT
    GCACTGGCAA TTCTGCTGGA AAACGAAAGC GATGCGGGTA TGTTGGTGAA GGAATGCCTG
    CCCAAGAACA GCCTTTTGGT CGACCATTTA CTTCCCGGGC TCACGACGTC GGCTTTACCA
    GACGACAGCG CTTTGGCGTC CTTTGCAAAG GATGTCTCTT CACGTATATG GGATAATCGC
    GAGGACGAAC ATTCGCTGTT GCAATATATT GTAGGGGACG AACTCTCCGA AAGTGTGACG
    ACCGACTTGG CTGGTCTGCC CGTAGGAGAG AGGACGTGGT GGCGGACACA TGCCGTAGCT
    CGAGCTTTGC TGTCGGTGAC CAAGCAAGAG CACACGTATT TGGCCCTATC TATCGCACAA
    GAGCGTACCG CCAACGAGGA CGCAATGGAT GCGACCATTG AAGCACCTGC AGACATTTTG
    TCCTTGCTGC TAGATGCATT GGTGCAGTAC ACGCCACTCC TGCTGGGAGT TCTCGCCAAA
    GATCTCGACG GTCAAGCGAG CGCGGATGCT GCTCCGGTTC AGGGCGAGTT ACATGTCCTC
    CAAGAAATAT CGAATCATGT ATTGTATTCT CGTACCACAC TGGATGCAGT TGTGAGTTCC
    CTGCTTCACC ACAAGGTTGT TTCACCCGAT GCCGTAGTTC GCTGGTCCTT GGGCGATATG
    GGACAGGAGA CTCCCGGGGT CTTGGCAATT CACTGGTGGG ATATGTCAAC TATGGCAATA
    CACTACGGGC TCACCAATCT GTTTGCGGTG ACACCTGCTT CAAACCAGGG CGAGATGCAA
    GTCGAAGACA ATCAAGACGA AAGCCCGACC ATGAAAAATG CACGTTTGTT TCTGGAGCCG
    ATCATCGAGT TGATCTGGTT GAAGGCTTCA AGTGTTTGGT TCGGCAAACA AAAAGCCGCC
    GACGCCGCCA TCGCCTTTGC CGTTGCGTCT CTCCCCGAAC TCCTCCGCTC ATCGTCTAAG
    CACAGCGCTA CAAAAGTTTT CGAACTCTGC AAGCGCCTCT CCGAACGCAA AGCCACCGCT
    TCAAAATTCA AAGATGACTC CTCCCTTCCG AAATCGGTGC GGATCCGACC GTCTCCGCAC
    GGTTCGCGGG CAGCCATGAA GACCGCGGAA TTTACTGAAG CTGCTCAAAG TATTCAAGAA
    CTTCACCGGA CTTACCGCCT TGGGATGAAA GCTCAATTCT TGAAACTTGT CAATCTTGAA
    GTCAAGGTTC TCCGTGACGA ACTGTCAACC CTTTTTGCCT AG

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

    RefSeq XP_002178950.1
    CDS1..3462
    Translation

    Target ORF information:

    RefSeq Version XM_002178914.1
    Organism Phaeodactylum tricornutum CCAP 1055/1
    Definition Phaeodactylum tricornutum CCAP 1055/1 predicted protein partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002178914.1

    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
    ATGAGTTCCT ATACGGATCG ACGTGACTAC ACGTCGGGTG GTCATCGTGG AGGTGGCGGG 
    GGATACCGCG GTTCTGGTGG ATACGGGGGC GGTGGTGCAC GGGGTGGAGG ACGCGGTGGT
    GGGTATCGCG GAGGACGGGG TGGATATCAC CGTGGAGGAC GTCAGGCCCA TACCGGAACA
    TCTCCCTACT CGCGTCACAG TGGCGGGACT ACGAACGGTG GACCCCGACG CTCCGGAAAT
    CGTTTCGCCG TGGAATCCAC GCGGCGAGAT CCTCAGCAAG AACTCTTACG CAATCTACTC
    GTCCTTTTGC ATCAAGTAGG AGATCTGCAG TCCACGAATC GCAACAACAA CAACAACAAC
    AACAGTAACA GTAACGACAA TACCTCCCCG GTGCGTACAA TAGTCACAAC GCAGAAGCAA
    AACATTCAAG GATTGACGCA AGTCTTGTGT GGCAACAATC CCGAACTCTT TCTCCAACAC
    GAGGCCGAAG ACAGTCCCGC AAACATTCAG TACGCGGAGC AATTGGCCGG ACCGTTGGCG
    GCGGGATTGG TCCACGCTAT TATGGCGGCG CCACTGCAAA CACCCTGCTA CGTGGGGTTG
    ACTCTGGCGG TTCACGTCAC GGCGCACGCC CGGGACGCAA CCTTGTTTGG TGGATTCGCA
    TCCCGCTGTG TCCGCTACGC CACCAGGGCC ATGGCCCGTG ATCTCGACGC TCTGCTGCTA
    GATTCGGACC CGAATAGCAG TACTAGTAGC ACTACTCATA GCGGTATTGG AGACAGTGGC
    AGCGGTAGTA CTACTACTCG ACAGTCCCGC GTCCCATCCC ATCGATTGGT GGTTCGGGTG
    CGTATGTTGC TCCGCTACCT GGTTCTACTG GCACGCGCGG GTATTCTGCA ACTCGACCAC
    GATACCGCAT ACGCCGTCAC GGGCCCCGCA CACTCCAACC CGGTCAGTGT CTTGGGGCTG
    TTACAAACAA TGGTACAGGC GGCACGGCAA GCCAAGGAGC GTGACGGCAA CCAGTCCGTG
    GCCGTAGTCT TGGCGTCGCT CGTGTTGAGT ACGGTACCCT ACCTGGCGAC CCTTCTTCCT
    TCCGAGACGG TCCGCCAGAC TTTGGTCCAA CCATTGGAAG CAAGCGTCCA ATCATACCGG
    TCCACGTTTG CACCAGGCTT TGGTTGTACC GCAATTCTTC TTCGAGAGGA ACAAATTGAG
    GATATTGGGG CTTCCATTGA AGAAGAAGAC GACGAAGAGG AGGATGACGA CGAAGAAGAA
    GAGGGGTCGG GACAAGTGTG CGACAACTTT CAAGACCTGA TGCGGACCGT ACAGTACTGG
    GTAAAGCAAG AGGACACTAC CGTTGCGTCA CGCCTGGCTC TCTTTCGCGA CGCTCCGTGG
    GAAGGCTTGG AGGCAAAAGT CTCCTCGCTT ACTTCCACAA CCTTGGACGC CAGCGAGATT
    GAGGAATCCG CTCACACTCC GTTAGTCTAT ACGGAGACGC CCTTGACCAT TCCAATATTC
    ACGGATTGCC AGTCCCTGTC GGCTTTGGTG GGTGGTCTTC ACTCGGCGCC CGAGGACGAC
    AGTCTGTTCT GGGCCGAAAT TGATCTCGAC GGAATTTTTG TGGGTCGCTT GCCCATTTTC
    GGACCTCCTC CCGAAGTTGC GGACAATGAC GACGACGAAG ACGACGACCA AGACATGGAG
    GCAGCAGCAC CGGTTAACGA ACGTCTACAA GCGTATCGCT CCGGATACGG CATGGTGGAT
    CGCTACTTTA TACACGAAGC CATCCGCGAT TGCTTGACTA GCCACGAAAG TTACGTGACG
    GATACCGGTG TCGAAATTGG CAACGCCAAG ACGGCTGCGG AGCAGGTGTG GTCTATCATT
    CAAATGGTGA CGGGTGACAG CACCAACGGG TTGGAATATG CAGTTCTGGA AGCGATCTTT
    TCCTTAATTG TACAATCAAA TGCGGTCTCA TCGTTCCGTT TTGTATACCT TTCGCGTGTG
    TTATTGGAAC TAACGAGGCT GGAACCCGCC ATCATGTCGC CCGCCATTGC CATTGCGGTC
    TCGACTTTAT TTCAGGACTA CATGCCAACT CTGGTCCCCA TGGCACGATA CAATCTGAGT
    CGATGGTTCG CCTTTCACTT GGTTAACACC GATTACCAGT GGCCCGCAGC GTACTGGAAA
    CATTGGGAAC CCTTTGTGCA GTACGGTTGG AAGAATAGTC GCGGAGCTTT TGTGAAGGGT
    GCACTGGCAA TTCTGCTGGA AAACGAAAGC GATGCGGGTA TGTTGGTGAA GGAATGCCTG
    CCCAAGAACA GCCTTTTGGT CGACCATTTA CTTCCCGGGC TCACGACGTC GGCTTTACCA
    GACGACAGCG CTTTGGCGTC CTTTGCAAAG GATGTCTCTT CACGTATATG GGATAATCGC
    GAGGACGAAC ATTCGCTGTT GCAATATATT GTAGGGGACG AACTCTCCGA AAGTGTGACG
    ACCGACTTGG CTGGTCTGCC CGTAGGAGAG AGGACGTGGT GGCGGACACA TGCCGTAGCT
    CGAGCTTTGC TGTCGGTGAC CAAGCAAGAG CACACGTATT TGGCCCTATC TATCGCACAA
    GAGCGTACCG CCAACGAGGA CGCAATGGAT GCGACCATTG AAGCACCTGC AGACATTTTG
    TCCTTGCTGC TAGATGCATT GGTGCAGTAC ACGCCACTCC TGCTGGGAGT TCTCGCCAAA
    GATCTCGACG GTCAAGCGAG CGCGGATGCT GCTCCGGTTC AGGGCGAGTT ACATGTCCTC
    CAAGAAATAT CGAATCATGT ATTGTATTCT CGTACCACAC TGGATGCAGT TGTGAGTTCC
    CTGCTTCACC ACAAGGTTGT TTCACCCGAT GCCGTAGTTC GCTGGTCCTT GGGCGATATG
    GGACAGGAGA CTCCCGGGGT CTTGGCAATT CACTGGTGGG ATATGTCAAC TATGGCAATA
    CACTACGGGC TCACCAATCT GTTTGCGGTG ACACCTGCTT CAAACCAGGG CGAGATGCAA
    GTCGAAGACA ATCAAGACGA AAGCCCGACC ATGAAAAATG CACGTTTGTT TCTGGAGCCG
    ATCATCGAGT TGATCTGGTT GAAGGCTTCA AGTGTTTGGT TCGGCAAACA AAAAGCCGCC
    GACGCCGCCA TCGCCTTTGC CGTTGCGTCT CTCCCCGAAC TCCTCCGCTC ATCGTCTAAG
    CACAGCGCTA CAAAAGTTTT CGAACTCTGC AAGCGCCTCT CCGAACGCAA AGCCACCGCT
    TCAAAATTCA AAGATGACTC CTCCCTTCCG AAATCGGTGC GGATCCGACC GTCTCCGCAC
    GGTTCGCGGG CAGCCATGAA GACCGCGGAA TTTACTGAAG CTGCTCAAAG TATTCAAGAA
    CTTCACCGGA CTTACCGCCT TGGGATGAAA GCTCAATTCT TGAAACTTGT CAATCTTGAA
    GTCAAGGTTC TCCGTGACGA ACTGTCAACC CTTTTTGCCT AG

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

  • PubMed

    The Phaeodactylum genome reveals the evolutionary history of diatom genomes.
    Nature456(7219)239-44(2008 Nov)
    Bowler C,Allen AE,Badger JH,Grimwood J,Jabbari K,Kuo A,Maheswari U,Martens C,Maumus F,Otillar RP,Rayko E,Salamov A,Vandepoele K,Beszteri B,Gruber A,Heijde M,Katinka M,Mock T,Valentin K,Verret F,Berges JA,Brownlee C,Cadoret JP,Chiovitti A,Choi CJ,Coesel S,De Martino A,Detter JC,Durkin C,Falciatore A,Fournet J,Haruta M,Huysman MJ,Jenkins BD,Jiroutova K,Jorgensen RE,Joubert Y,Kaplan A,Kröger N,Kroth PG,La Roche J,Lindquist E,Lommer M,Martin-Jézéquel V,Lopez PJ,Lucas S,Mangogna M,McGinnis K,Medlin LK,Montsant A,Oudot-Le Secq MP,Napoli C,Obornik M,Parker MS,Petit JL,Porcel BM,Poulsen N,Robison M,Rychlewski L,Rynearson TA,Schmutz J,Shapiro H,Siaut M,Stanley M,Sussman MR,Taylor AR,Vardi A,von Dassow P,Vyverman W,Willis A,Wyrwicz LS,Rokhsar DS,Weissenbach J,Armbrust EV,Green BR,Van de Peer Y,Grigoriev IV