MGG_12644 cDNA ORF clone, Pyricularia oryzae 70-15

The following MGG_12644 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the MGG_12644 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
OMe09165 XM_003721116.1
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Pyricularia oryzae 70-15 Rho1 guanine nucleotide exchange factor 1 (MGG_12644), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $1021.30
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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 OMe09165
    Clone ID Related Accession (Same CDS sequence) XM_003721116.1
    Accession Version XM_003721116.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5043bp)
    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 2019-11-28
    Organism Pyricularia oryzae 70-15
    Product Rho1 guanine nucleotide exchange factor 1
    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_017854).

    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
    5041
    ATGTCATTCA ACGACGGGCG CCGCTACGGC CATGTGCCTC CGGCGCAGTA CCCCGTCCAG 
    AACACACAAT CGCAAGACCC CGCCCGTCGG TCCAGCTTCC ACCGTGGCGA CGACTCCAGC
    TTTCTTGATC AGCAGGGTAA CGGCATGGTT CGCGCCGATG ACGAGCTTTT CGTCTCCAGC
    CCGGTTGAGA CACATAACTC TGCGAGCACG AGACCACCGA CGGGTTACGG TGCTACCGCG
    AACGTTGGCA TGGCTGGCTA CCAACACCAG TACCAGGCGC CGCCTACGCC AACATCCTAC
    AACCCTGCAC AATTTGCAAC GCAGCCGTTG TCTACGGCTG GCTTTGGCAG GTCTTTGAGT
    ACAAACCAAG TACCCAGCAC CACTAGATCC TCTTACAACA CTCCGGCATC CCCTACCTAC
    GGCGGTCTTG CGTCGCCAAC AAGCTACACT CCCCAGGCCT ACAACCCAGC AGCGTATGCG
    AACACCCGCA CAGCGGCCGC TCCGCAGAGG CAGGCGACAT ATCACGGCTA CAACAACTAT
    ACTCCTAACT ATAATCCTGC CGCCCCTCTC CAGCCATCCT TGGCTTCTGC CGCTCCGACC
    TACGGGTACG GGTCGCCACA GGCGCAACAG ATCGCTCAGC CCTCATTTGA GCAACCGGCG
    AGCAACCATC AGTACAGGTC ATCGAATGCA TCGAATTACT CCCAGCACTC GTCAAATGCC
    TCCTACTCCT CTCAGTACAG TGTCCCTTAC GGCTCTTCGG CTTATCCCAG CTCGTACACA
    GGAAGTAACA ACGCGTACGG CGGCAGTTAT TCGGCAAATG GGGGTGCGTC GTCATCAAGC
    CCTTATCAGC CCGGTGCTCC GCAGACGCCA TACCCCATGG ATGATCAAAT ACCAGTAGGG
    CCGAACTACT CCTCCGAAAG CCTCAACCGT CCACGGTCTA CTTCACAGAG CTCTCCCCTA
    CCATCGCCGC AGTATCAGCC ACCTCAGCCC TCCGGAGGGG GTCTCCAACG ACACCCAACG
    AACGCGCCGC TGCCGAACAG ACCGATGGAC GATGTACCGG AAGAGTGGGA CCCAAGCGGG
    CCGACTGTCG ACGACGGCCG CCTCACTCAA GATAACCTTC TTCGGGAGAT AGAGGCCGAC
    CTTGGAATGC TACAGCACTC AACCTCACAA GCATCGTCAT CTCAGTCTAG GCGGCCCAGG
    CCGATCAACG GCAACATTTC TGATGACGAG CGGAATCTTC TTCGGGAGTC ACGTCTCGCC
    GACAGTCAGG GTGCCTTCAG CACCCACGAG ATGAGCTCAG CATTGAGAGA AGACACGAGA
    TTCCAGCAGG GTTCGACACT TGCTCCGCCA GCAGCACCGC CGGATGACAG TCTTAGCGAT
    AATGAGTGGG CTGGTGGCAT GGATTTTGGC GGCATGGACC TCGGGTCTTT GGGCGGAGGT
    TACGCAGGGA CCTTGTCCTA CGACAACAAC ATCAGCTCCC CTCCAGCCGA CAACCAATCC
    GGTGCGTTTG CAGACGCCGA TGTAGATTTC GGGGGAACTG GTGGCCTTCA GTCGGCCTCA
    CTCGCACGAG CACCGAGCTT TGACCAGGGC GACGAAGAGG TGTCTGTTCG ATCCAGGAGA
    AGCGGGAGCG AGTCGCCCTA TAAGGAGGAT GATAACTTCG ATATGCCTGA TATGTTCTAC
    CATCCGGGTC TATCCAGCAG GCCGCTTCCA GCGATCCCGC CAACTGGTTC CGATAGCAGC
    TCGATGATCT CAGCCCACCC CTCCACCCGC TCACAGCACC ATGGCTACTC GCAGAGCTCC
    GACGCAGCAC CTGGTCTGCA TAACCAACTA CAACAACAGC AGCAGCAAGT CGAACGATCA
    ATATCACTAT CTAACCACAG CAGCACCCCA ACCGTAACTT TGCCTGGTCG GTCGAGGACT
    GATGCCGCAG AGGAGAGAAA GAAAGCACAC AGGACCATGG CCCAACAGGC ACAGATGTCC
    AGTGCGGCCA ATATACCCTA CGACGGGTTT GAAAGTGCAA CACCGTCTTC TGCGATTACT
    TATGATGCCA TCACACTTCC TACTGGACGA CGACGCAAGT TTGTGCCTGC CAAGTTGACC
    TCTGGTGATC TTCGTCGCTG CCTGGAGCCA TGGGCTCTCA GTGGTATTGC TTCCTGGATC
    CGTGAGATGG CTGAGGGCGA GCCGGATCTC AAGCAGAAGA CGATTGAGGA GGGTCTCATC
    AAGTTATTTA CTACCAAGGT CCCAACCATG AATGTTGCCG ATGCGGAAAC ACTGGCCAGC
    AAGGTCTTTG ACAGGATGTT ATCGGCAGGC ATCATAGTTC GCGAGGAGGA ATGGGTCAAG
    TTTGGCCCAG GGACCATATC TGGCGTGCTT ACACAACTTA CTGGCCACGG CTGCTATGCG
    GCCAAGCTCC ACGACGAAGA GATCCCAGGC AGGTGCTACA GCTATTACTG CACGAGAACT
    CTCAAGAAGG CCAATTTGGA CGACCTGATG TCGGGAGAGA CCATCAAGAA GACAGACTGG
    AAGGAGTATC ACGATCTCAC GGATACCGTC ATGATTTCTC GAGGAAAGAA GGAAGTCGAG
    CGTCAGAATA ACTTGCATGA GATTGTGTAC AGCGAGGAGG TCTTCATGAA CCACATGGAG
    GTTCTTCGTG TGCTGTACAA GGAGCAGCTC AAGGCATGGC AGCCACCAAT CATCACCCCA
    AACAGGCTCG GCAAGTTTAT CGACAACGTC TTTGGTAAAG CCGAGGCAGT GCAGCAGACA
    AACAAGGAGT ACTTGCTCGC ACAACTCAAG TACAGGCAAG CGGAGCAAGG TCCATGGATC
    CATGGCTTCA GTGACATTTT CCGCGAGTGG ATTCGGAAGG CCAGGGAACC GTATATTGCA
    TTCTCGGCAT CGTACCCTTA CGCGCAGTTC CTCGTCCGAC GCGAGAAGGA CCGCAACGTG
    CTTTTCCGGC AATTCCTTGA TCATGTGCGA AGCCACCGAA GATCCGAGAG GCTGGGCTGG
    GATACGTATC TCAAAGCCCC CATCACACGA CTGCAACGAT ATTCTTTACT GCTTCAGACG
    GTCCACAAGA ATTCGGTCAA AGATGACGAG GAAAAGGCAA ACCTGGGTAG AGCCATCGAG
    GAAATCAAGG CGGTGACCAT GGAGTGTGAT AAGCTCGTAG ATGACATGAC GAGACAAGTG
    GCACTCATCG AGCTGCAGTC CTCATTGGTT CTACGCCCCG GGTTCCAGTC CAAGCTCAAC
    CTTGATCACT TGGGTCGCGA GCTCAAGATG CAGGGAGACC TTCAGCGTAT GGGATCTCGA
    GGCGTGCGAT GGGTTGAGAC GCATGCGCTG TTATTTGACC ACTATTTCAT TCTAGCCAAG
    ATCATCCCGA GCAAGGATGG GCGAAGTGAG AAGAAATACG ATGTGTCGAA AGAGCCAATA
    CCAATGCCTT TGTTGTTCCT CGAGAGCATG AATGATGATC CGGTTTCGAA ACAAAAGGGC
    ATAACTGCTC CACTGAACCG TGCAGCACCA ACAGCTGGGT CAGGGACTCA GCTAAATAAG
    GTCATGTCGA ACGGCGGTGA TCGACCAGGT CTCGAACACT CGAATACAAG CTCGTCTGCC
    TCATCGATGC AGCCTGTGAC GCGGCTCAAC ACTACCAACT CATACGAAGA AGGGAAGATC
    CTCTACCCTT TCAGGGTCAA GCACCTGGGT CATGAAGTCT ATACGCTATA CGCCACGACA
    GCGCAGAACC GACAGGAGTG GTGCAACCAA CTGATCGAGG CCAAGACAAA TTATGCCAGG
    GCATTGCACG CACAAAACGC GGAGCCTTTC CGGCTGCGTG TTGTGGCCGA TGGAGCTTTT
    GCTTACGATT CTATCTCCGC CATGGGAAGG ACAGCAGGAG TGCCAATCCG TGGAACACCC
    CTGGATCGTG CCATTAGAGA AATGGAGCAG GTTTACGGGC CTGGCCGAGG TCCGGCAGCA
    GTATGTCGGG CACAGGTCAA CTGTGCGACG GCATTCAATG CCTATGGCAA GTCGATCATC
    GCGATTGGAA CTGACTTTGG CGTCTACATC TCGGAGGCCA GCAACCCGCG TGGCTGGACG
    CGTTCTGTGC AGATAAGCAA AGTGACACAG ATCGCGGTGT TGGAGGAATT CTCGGTTTGT
    TTGATCATTG CCGACAAGTC GCTCATCTCA TATCCTCTGG ACGTCATAGC TCCCGTTTCC
    AACTTCCCGG CACCGTCTCA TGATAGTCCT CGCCGAGCTC CGGTGCGTCT AGCCAAGGAT
    GTCAGCTTCT TTGCAACAGC GCGTATGAAG GATCGGATGT TGGTTTTCTT CAAGCGAAAA
    GAAGGAATGC ACAACACATT TAAGGTTCTT GAGCCTGTGT TTCAAAAGTC GTCAGAAAAG
    AAGTCACGTC TGTTCGGCGG TAGGAAGGGA GGCTCAGGAA GTACCGAGTA CTTCCGTGAC
    TTTGACGAGT TTTACCTCCC TACAGAATGC TACTCGCTCA ACCTGCTGCA GACGTACATC
    GCGGTGTCCA CGGCCAAGGG CTTCGAGCTT TTGACGCTTG ACAAGAAGCA GACCATGTCA
    ATACCGCGAG ACCTGACCCT GCCGGCCATC GCCGACATTG CGCAGCGCAT CCAGAGCCAG
    CGGCCCCTAG GCATGTTCAA GCTTAACGAC CAAGAATTCT TGCTCACTTA CGAGGACTGC
    GCTGTGTACA TGGACAAGCA TGGCGAGGTC TCGCGAACGC TGATCATGGA ATACAGCGGC
    AAGCAAAAGA AGGCCCGCGC GGCCACCATG TTTGGCCAGT ACCTACTCCT GTTCAACGAG
    GACTACGTCG AGGTGCGCAA CGCGGAGAAC GGCCGCCTCA GACAGATAAT CGCGGGCCGC
    GACGTCAGGT GTCTCGACTA CGGTTATCGC GGACCGACCG GGCCCGGACA GGGCGTGGCC
    ACAGGCGCAC TGCCGGTGGA TTCTCAAGGG ACCGTCAAGA TCTGCATGAG CCACCCCGAG
    GTCCCTGGCA GTCAGATTGT GTTGGAGATG GCGTTGAACG ATGGACATTT AGAGAAGTCA
    TAA

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

    RefSeq XP_003721164.1
    CDS988..6030
    Translation

    Target ORF information:

    RefSeq Version XM_003721116.1
    Organism Pyricularia oryzae 70-15
    Definition Pyricularia oryzae 70-15 Rho1 guanine nucleotide exchange factor 1 (MGG_12644), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003721116.1

    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
    5041
    ATGTCATTCA ACGACGGGCG CCGCTACGGC CATGTGCCTC CGGCGCAGTA CCCCGTCCAG 
    AACACACAAT CGCAAGACCC CGCCCGTCGG TCCAGCTTCC ACCGTGGCGA CGACTCCAGC
    TTTCTTGATC AGCAGGGTAA CGGCATGGTT CGCGCCGATG ACGAGCTTTT CGTCTCCAGC
    CCGGTTGAGA CACATAACTC TGCGAGCACG AGACCACCGA CGGGTTACGG TGCTACCGCG
    AACGTTGGCA TGGCTGGCTA CCAACACCAG TACCAGGCGC CGCCTACGCC AACATCCTAC
    AACCCTGCAC AATTTGCAAC GCAGCCGTTG TCTACGGCTG GCTTTGGCAG GTCTTTGAGT
    ACAAACCAAG TACCCAGCAC CACTAGATCC TCTTACAACA CTCCGGCATC CCCTACCTAC
    GGCGGTCTTG CGTCGCCAAC AAGCTACACT CCCCAGGCCT ACAACCCAGC AGCGTATGCG
    AACACCCGCA CAGCGGCCGC TCCGCAGAGG CAGGCGACAT ATCACGGCTA CAACAACTAT
    ACTCCTAACT ATAATCCTGC CGCCCCTCTC CAGCCATCCT TGGCTTCTGC CGCTCCGACC
    TACGGGTACG GGTCGCCACA GGCGCAACAG ATCGCTCAGC CCTCATTTGA GCAACCGGCG
    AGCAACCATC AGTACAGGTC ATCGAATGCA TCGAATTACT CCCAGCACTC GTCAAATGCC
    TCCTACTCCT CTCAGTACAG TGTCCCTTAC GGCTCTTCGG CTTATCCCAG CTCGTACACA
    GGAAGTAACA ACGCGTACGG CGGCAGTTAT TCGGCAAATG GGGGTGCGTC GTCATCAAGC
    CCTTATCAGC CCGGTGCTCC GCAGACGCCA TACCCCATGG ATGATCAAAT ACCAGTAGGG
    CCGAACTACT CCTCCGAAAG CCTCAACCGT CCACGGTCTA CTTCACAGAG CTCTCCCCTA
    CCATCGCCGC AGTATCAGCC ACCTCAGCCC TCCGGAGGGG GTCTCCAACG ACACCCAACG
    AACGCGCCGC TGCCGAACAG ACCGATGGAC GATGTACCGG AAGAGTGGGA CCCAAGCGGG
    CCGACTGTCG ACGACGGCCG CCTCACTCAA GATAACCTTC TTCGGGAGAT AGAGGCCGAC
    CTTGGAATGC TACAGCACTC AACCTCACAA GCATCGTCAT CTCAGTCTAG GCGGCCCAGG
    CCGATCAACG GCAACATTTC TGATGACGAG CGGAATCTTC TTCGGGAGTC ACGTCTCGCC
    GACAGTCAGG GTGCCTTCAG CACCCACGAG ATGAGCTCAG CATTGAGAGA AGACACGAGA
    TTCCAGCAGG GTTCGACACT TGCTCCGCCA GCAGCACCGC CGGATGACAG TCTTAGCGAT
    AATGAGTGGG CTGGTGGCAT GGATTTTGGC GGCATGGACC TCGGGTCTTT GGGCGGAGGT
    TACGCAGGGA CCTTGTCCTA CGACAACAAC ATCAGCTCCC CTCCAGCCGA CAACCAATCC
    GGTGCGTTTG CAGACGCCGA TGTAGATTTC GGGGGAACTG GTGGCCTTCA GTCGGCCTCA
    CTCGCACGAG CACCGAGCTT TGACCAGGGC GACGAAGAGG TGTCTGTTCG ATCCAGGAGA
    AGCGGGAGCG AGTCGCCCTA TAAGGAGGAT GATAACTTCG ATATGCCTGA TATGTTCTAC
    CATCCGGGTC TATCCAGCAG GCCGCTTCCA GCGATCCCGC CAACTGGTTC CGATAGCAGC
    TCGATGATCT CAGCCCACCC CTCCACCCGC TCACAGCACC ATGGCTACTC GCAGAGCTCC
    GACGCAGCAC CTGGTCTGCA TAACCAACTA CAACAACAGC AGCAGCAAGT CGAACGATCA
    ATATCACTAT CTAACCACAG CAGCACCCCA ACCGTAACTT TGCCTGGTCG GTCGAGGACT
    GATGCCGCAG AGGAGAGAAA GAAAGCACAC AGGACCATGG CCCAACAGGC ACAGATGTCC
    AGTGCGGCCA ATATACCCTA CGACGGGTTT GAAAGTGCAA CACCGTCTTC TGCGATTACT
    TATGATGCCA TCACACTTCC TACTGGACGA CGACGCAAGT TTGTGCCTGC CAAGTTGACC
    TCTGGTGATC TTCGTCGCTG CCTGGAGCCA TGGGCTCTCA GTGGTATTGC TTCCTGGATC
    CGTGAGATGG CTGAGGGCGA GCCGGATCTC AAGCAGAAGA CGATTGAGGA GGGTCTCATC
    AAGTTATTTA CTACCAAGGT CCCAACCATG AATGTTGCCG ATGCGGAAAC ACTGGCCAGC
    AAGGTCTTTG ACAGGATGTT ATCGGCAGGC ATCATAGTTC GCGAGGAGGA ATGGGTCAAG
    TTTGGCCCAG GGACCATATC TGGCGTGCTT ACACAACTTA CTGGCCACGG CTGCTATGCG
    GCCAAGCTCC ACGACGAAGA GATCCCAGGC AGGTGCTACA GCTATTACTG CACGAGAACT
    CTCAAGAAGG CCAATTTGGA CGACCTGATG TCGGGAGAGA CCATCAAGAA GACAGACTGG
    AAGGAGTATC ACGATCTCAC GGATACCGTC ATGATTTCTC GAGGAAAGAA GGAAGTCGAG
    CGTCAGAATA ACTTGCATGA GATTGTGTAC AGCGAGGAGG TCTTCATGAA CCACATGGAG
    GTTCTTCGTG TGCTGTACAA GGAGCAGCTC AAGGCATGGC AGCCACCAAT CATCACCCCA
    AACAGGCTCG GCAAGTTTAT CGACAACGTC TTTGGTAAAG CCGAGGCAGT GCAGCAGACA
    AACAAGGAGT ACTTGCTCGC ACAACTCAAG TACAGGCAAG CGGAGCAAGG TCCATGGATC
    CATGGCTTCA GTGACATTTT CCGCGAGTGG ATTCGGAAGG CCAGGGAACC GTATATTGCA
    TTCTCGGCAT CGTACCCTTA CGCGCAGTTC CTCGTCCGAC GCGAGAAGGA CCGCAACGTG
    CTTTTCCGGC AATTCCTTGA TCATGTGCGA AGCCACCGAA GATCCGAGAG GCTGGGCTGG
    GATACGTATC TCAAAGCCCC CATCACACGA CTGCAACGAT ATTCTTTACT GCTTCAGACG
    GTCCACAAGA ATTCGGTCAA AGATGACGAG GAAAAGGCAA ACCTGGGTAG AGCCATCGAG
    GAAATCAAGG CGGTGACCAT GGAGTGTGAT AAGCTCGTAG ATGACATGAC GAGACAAGTG
    GCACTCATCG AGCTGCAGTC CTCATTGGTT CTACGCCCCG GGTTCCAGTC CAAGCTCAAC
    CTTGATCACT TGGGTCGCGA GCTCAAGATG CAGGGAGACC TTCAGCGTAT GGGATCTCGA
    GGCGTGCGAT GGGTTGAGAC GCATGCGCTG TTATTTGACC ACTATTTCAT TCTAGCCAAG
    ATCATCCCGA GCAAGGATGG GCGAAGTGAG AAGAAATACG ATGTGTCGAA AGAGCCAATA
    CCAATGCCTT TGTTGTTCCT CGAGAGCATG AATGATGATC CGGTTTCGAA ACAAAAGGGC
    ATAACTGCTC CACTGAACCG TGCAGCACCA ACAGCTGGGT CAGGGACTCA GCTAAATAAG
    GTCATGTCGA ACGGCGGTGA TCGACCAGGT CTCGAACACT CGAATACAAG CTCGTCTGCC
    TCATCGATGC AGCCTGTGAC GCGGCTCAAC ACTACCAACT CATACGAAGA AGGGAAGATC
    CTCTACCCTT TCAGGGTCAA GCACCTGGGT CATGAAGTCT ATACGCTATA CGCCACGACA
    GCGCAGAACC GACAGGAGTG GTGCAACCAA CTGATCGAGG CCAAGACAAA TTATGCCAGG
    GCATTGCACG CACAAAACGC GGAGCCTTTC CGGCTGCGTG TTGTGGCCGA TGGAGCTTTT
    GCTTACGATT CTATCTCCGC CATGGGAAGG ACAGCAGGAG TGCCAATCCG TGGAACACCC
    CTGGATCGTG CCATTAGAGA AATGGAGCAG GTTTACGGGC CTGGCCGAGG TCCGGCAGCA
    GTATGTCGGG CACAGGTCAA CTGTGCGACG GCATTCAATG CCTATGGCAA GTCGATCATC
    GCGATTGGAA CTGACTTTGG CGTCTACATC TCGGAGGCCA GCAACCCGCG TGGCTGGACG
    CGTTCTGTGC AGATAAGCAA AGTGACACAG ATCGCGGTGT TGGAGGAATT CTCGGTTTGT
    TTGATCATTG CCGACAAGTC GCTCATCTCA TATCCTCTGG ACGTCATAGC TCCCGTTTCC
    AACTTCCCGG CACCGTCTCA TGATAGTCCT CGCCGAGCTC CGGTGCGTCT AGCCAAGGAT
    GTCAGCTTCT TTGCAACAGC GCGTATGAAG GATCGGATGT TGGTTTTCTT CAAGCGAAAA
    GAAGGAATGC ACAACACATT TAAGGTTCTT GAGCCTGTGT TTCAAAAGTC GTCAGAAAAG
    AAGTCACGTC TGTTCGGCGG TAGGAAGGGA GGCTCAGGAA GTACCGAGTA CTTCCGTGAC
    TTTGACGAGT TTTACCTCCC TACAGAATGC TACTCGCTCA ACCTGCTGCA GACGTACATC
    GCGGTGTCCA CGGCCAAGGG CTTCGAGCTT TTGACGCTTG ACAAGAAGCA GACCATGTCA
    ATACCGCGAG ACCTGACCCT GCCGGCCATC GCCGACATTG CGCAGCGCAT CCAGAGCCAG
    CGGCCCCTAG GCATGTTCAA GCTTAACGAC CAAGAATTCT TGCTCACTTA CGAGGACTGC
    GCTGTGTACA TGGACAAGCA TGGCGAGGTC TCGCGAACGC TGATCATGGA ATACAGCGGC
    AAGCAAAAGA AGGCCCGCGC GGCCACCATG TTTGGCCAGT ACCTACTCCT GTTCAACGAG
    GACTACGTCG AGGTGCGCAA CGCGGAGAAC GGCCGCCTCA GACAGATAAT CGCGGGCCGC
    GACGTCAGGT GTCTCGACTA CGGTTATCGC GGACCGACCG GGCCCGGACA GGGCGTGGCC
    ACAGGCGCAC TGCCGGTGGA TTCTCAAGGG ACCGTCAAGA TCTGCATGAG CCACCCCGAG
    GTCCCTGGCA GTCAGATTGT GTTGGAGATG GCGTTGAACG ATGGACATTT AGAGAAGTCA
    TAA

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

  • PubMed

    The genome sequence of the rice blast fungus Magnaporthe grisea.
    Nature434(7036)980-6(2005 Apr)
    Dean RA,Talbot NJ,Ebbole DJ,Farman ML,Mitchell TK,Orbach MJ,Thon M,Kulkarni R,Xu JR,Pan H,Read ND,Lee YH,Carbone I,Brown D,Oh YY,Donofrio N,Jeong JS,Soanes DM,Djonovic S,Kolomiets E,Rehmeyer C,Li W,Harding M,Kim S,Lebrun MH,Bohnert H,Coughlan S,Butler J,Calvo S,Ma LJ,Nicol R,Purcell S,Nusbaum C,Galagan JE,Birren BW