Iars2 cDNA ORF clone, Nasonia vitripennis(jewel wasp)

The following Iars2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Iars2 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
ONd17750 NM_001129821.1
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Nasonia vitripennis isoleucyl-tRNA synthetase 2, mitochondrial (Iars2), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
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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 ONd17750
    Clone ID Related Accession (Same CDS sequence) NM_001129821.1
    Accession Version NM_001129821.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2883bp)
    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 1577462400000
    Organism Nasonia vitripennis(jewel wasp)
    Product mitochondrial isoleucine tRNA synthetase
    Comment Comment: INFERRED REFSEQ: This record is predicted by genome sequence analysis and is not yet supported by experimental evidence. The reference sequence was derived from AAZX01008009.1. On Jul 10, 2008 this sequence version replaced XM_001605075.1. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments. ##Evidence-Data-START## CDS exon combination :: GBEB01026483.1 [ECO:0000331] RNAseq introns :: single sample supports all introns SAMN02258476, SAMN02258478 [ECO:0000348] ##Evidence-Data-END## ##RefSeq-Attributes-START## gene product(s) localized to mito. :: inferred from homology ##RefSeq-Attributes-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
    ATGTCGATGA GCTTGAGAAC ATCTTTGTGG AGAGCAAAAG CTTCTCTTTC CTCTCAAGCT 
    CGTGTTCTCT TCAGACTTTA TTCCTCCCAG CGAGAAAAGC CAGTTGAGAA GAGATACACC
    GATACCATTT TACTACCAAA AACAAACTTT CAGGCTAGAA TAACTGGTAA AAAACGAGTT
    GAAATGGATA AATATTTGCA AGACAAATGC GGCTTTTCAG AATTATATAA TTGGCAAAGG
    GCTAATTTAG AAGGTCCTGA TTTTGTACTT CACGACGGAC CTCCCTATGC CAATGGAGAC
    CCTCATATGG GACACACGAT AAACAAAGTA CTAAAAGACA TAACTATTAG AAGTAAAGTG
    ATTAAGGGTC AGAGAGTGCA CTATGTTCCT GGATGGGATT GTCATGGTCT ACCCATAGAG
    CTAAAAGCTC TTACAAGTGC TAAAAAGAGA GTTTCTGAAT TAACACCTAT GCAGATTCGA
    GCACAAGCTC GTAAATTTGC AGAAGATGCT GTTAATAAGC AGAGACAAGT ATTTTCTTCT
    TGGGGAGTTA TGGCTGATTG GAAAGACAAT GGCTGTTACT TCACAAATAC TGTTGCTTAT
    ATAGTCAATC AATTAAATCA ATTTTACAAT CTGTACGAGA AGAATCTGGT ATACCGAGAT
    TTCAAGCCTG TGCATTGGTC TCCTTCATCC AGAACTGCAC TGGCAGAAGC TGAGTTGGAA
    TATAGAGATA ATCACCAAAG TAAATGTGCA ACTGTTCGAC TACCTATAGT TGAGCTGCCT
    TCAAAGTTAG CTGCATTTCA AGGGAAGTCA ATATTTGGTC TCACTTGGAC AACAACTCCT
    TGGACTTTAG TCGCTAATCA AGCGCTAGCC TATTCTCTAG ATGCTGACTA CTGCTTAGCA
    GAGGATGACG AGGGAAATTT GTATATACTT GCAGTAGAAT TACTAGAAAA GAATATTGAA
    AAAATTGGAC AGCTTAATGT TGTTACAACG TTTTCAGGGA ATGATTTGGC TGGAGCAAAG
    TATTCGCATC CAATAACTGG CATCACATTA CCGTTTTTAC CTGGAGATCA CGTAAATACT
    GAACAAGGTA CAGGCTTAGT ACATACTGCT CCTGCACACG GACAAGAAGA TTTTCTCGTA
    GCATTAGAAA ATAGTATACC TGTATTATCA TTGGTCGACG AAGAAGGCAA ATACACAGCA
    GAAGCAGGCT CTGATTTTCA TGGGCTCAAA GTTTTGGAGC AAGGCACGGA CGCAGTGATC
    GCGCGAATCA ATAAGAATAT TCTCCATACC GAGACGATAA GTCACAGCTA TCCTTATGAT
    TGGAGGACAA AGAAGCCTAT AATTGTACGT GCTAGTCATC AGTGGTTCAT CGATACCAAT
    TCTATAAAAG ATCAGGCTAT GAAATGCATA GAGAACGTTA ATATATATCC TGCGCAACAC
    AGGACTTCAT GGACCAATGC GCTGCTCACG CAATTGAAGC AAAGACCATA TTGGTGTATT
    TCTCGCCAAA GAGTCTGGGG TACACCGATA CCCGTTTTGT ACTACAAAGA CACTGGAAAG
    ATTTTCATCA CAAAGGAATG GATTGAGAGA CTGTGTGAAT TATTAGAGAA ATATGGCCCC
    GATTGCTGGT GGGAGTTACC AGTAGAGAAA CTGTTGGGTA AAAGATTATG CGCAGAACTG
    AATCTGTCTG GCTCGGAATT CAGAAAAGGC GATGATATCC TGGATATTTG GTTTGATAGC
    GGTATTTCGT GGTCAGCTGT ACTGCCCGAA AAGAAAGCAA ATCTGTACAT GGAAGGGATG
    GATCAATTCA CTGGCTGGTT CCAGTCGTCA CTTTTAACGT CCGTTGCTTT GCAAGACTGT
    GCACCTTACC AAGATCTATT TGTACACGGA TTCGCCGTTG ACGAAAAGAA CAATAAAATG
    TCGAAATCGC TCGGAAACGT TGTTGATCCA GAGGAGATAG TCAAAGGCGG AAAAGATATG
    AACAAGAAGC CAGCATACGG AGTCGATGTA TTGAGGTGGT GGGTAGCTAA TCACGGAACG
    CAACACACGC TTGTGCCAAT GAAAAATTCG TTGCTGCAGG GAAGCGCAGA TACAGTCCAC
    AAACTTCGTT TAGTTTTTAG ATTTCTCTTA GGTGCCCTAC ACACCTATGA CGAGAACAAA
    AATATCACCG TTGAGCCTCA GTATCACTAT TTGGACAAAT ATATGCTCCA TCAGTTGTAC
    CATTATCATC AAGAGATTCA ATCTCTGTAT GAGAAATATC AGTATCACAA CGTCAGCAAG
    ACGGTCGTCA ATTTTATAAC AAACGACGTA TCGGCAGTAT ACTGTCACAT GATAAAGGAT
    AGGATTTACT GTGAGAAAAT AGATTCGCCT TACAGGTTGG GTGCTTTGGA CGTCATCGGC
    GAAATTCTGT CAATCACCAC TCGGTCCATA GCGCCTATCT TACCTCACTT GGCAGAGGAA
    GTCTGGCTTC ATCACCCCGA AAATCTGGCA TCCGTCCCAA TATTCCACAC TCAGCACAGG
    TCTCTAGAAA GTTGGAACAA TTTGGAGTAT AAGGAGATTA TAGAGAAAGC TCTAGATTTG
    AGGAGTGAAA TAAACAAACT AACCAGTCAA AACACGTGGC TCTCGAAAGC TACAGTCAAG
    GCCAATTCTC AGGACTTTAA ACTACTATCG AGCCTACACA AAGATGAGAC ATCCTCATTA
    TCGGAACTCT GTGATATCTG TCAAGTATCT TCGATAACGT TACTGCAAGA CGATTCTTGT
    GACCACATGA ACGTCAGTCT GGAAGACATC AAGGGTCAGC TATGCAAAAG ATGCCGGCGA
    CATCCGGAAC CTGCACCCGA GGAAATTTGT GACAGATGCA CCGAAGTTTT GAACGATGCG
    TAA

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

    RefSeq NP_001123293.1
    CDS1..2883
    Translation

    Target ORF information:

    RefSeq Version NM_001129821.1
    Organism Nasonia vitripennis(jewel wasp)
    Definition Nasonia vitripennis isoleucyl-tRNA synthetase 2, mitochondrial (Iars2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001129821.1

    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
    ATGTCGATGA GCTTGAGAAC ATCTTTGTGG AGAGCAAAAG CTTCTCTTTC CTCTCAAGCT 
    CGTGTTCTCT TCAGACTTTA TTCCTCCCAG CGAGAAAAGC CAGTTGAGAA GAGATACACC
    GATACCATTT TACTACCAAA AACAAACTTT CAGGCTAGAA TAACTGGTAA AAAACGAGTT
    GAAATGGATA AATATTTGCA AGACAAATGC GGCTTTTCAG AATTATATAA TTGGCAAAGG
    GCTAATTTAG AAGGTCCTGA TTTTGTACTT CACGACGGAC CTCCCTATGC CAATGGAGAC
    CCTCATATGG GACACACGAT AAACAAAGTA CTAAAAGACA TAACTATTAG AAGTAAAGTG
    ATTAAGGGTC AGAGAGTGCA CTATGTTCCT GGATGGGATT GTCATGGTCT ACCCATAGAG
    CTAAAAGCTC TTACAAGTGC TAAAAAGAGA GTTTCTGAAT TAACACCTAT GCAGATTCGA
    GCACAAGCTC GTAAATTTGC AGAAGATGCT GTTAATAAGC AGAGACAAGT ATTTTCTTCT
    TGGGGAGTTA TGGCTGATTG GAAAGACAAT GGCTGTTACT TCACAAATAC TGTTGCTTAT
    ATAGTCAATC AATTAAATCA ATTTTACAAT CTGTACGAGA AGAATCTGGT ATACCGAGAT
    TTCAAGCCTG TGCATTGGTC TCCTTCATCC AGAACTGCAC TGGCAGAAGC TGAGTTGGAA
    TATAGAGATA ATCACCAAAG TAAATGTGCA ACTGTTCGAC TACCTATAGT TGAGCTGCCT
    TCAAAGTTAG CTGCATTTCA AGGGAAGTCA ATATTTGGTC TCACTTGGAC AACAACTCCT
    TGGACTTTAG TCGCTAATCA AGCGCTAGCC TATTCTCTAG ATGCTGACTA CTGCTTAGCA
    GAGGATGACG AGGGAAATTT GTATATACTT GCAGTAGAAT TACTAGAAAA GAATATTGAA
    AAAATTGGAC AGCTTAATGT TGTTACAACG TTTTCAGGGA ATGATTTGGC TGGAGCAAAG
    TATTCGCATC CAATAACTGG CATCACATTA CCGTTTTTAC CTGGAGATCA CGTAAATACT
    GAACAAGGTA CAGGCTTAGT ACATACTGCT CCTGCACACG GACAAGAAGA TTTTCTCGTA
    GCATTAGAAA ATAGTATACC TGTATTATCA TTGGTCGACG AAGAAGGCAA ATACACAGCA
    GAAGCAGGCT CTGATTTTCA TGGGCTCAAA GTTTTGGAGC AAGGCACGGA CGCAGTGATC
    GCGCGAATCA ATAAGAATAT TCTCCATACC GAGACGATAA GTCACAGCTA TCCTTATGAT
    TGGAGGACAA AGAAGCCTAT AATTGTACGT GCTAGTCATC AGTGGTTCAT CGATACCAAT
    TCTATAAAAG ATCAGGCTAT GAAATGCATA GAGAACGTTA ATATATATCC TGCGCAACAC
    AGGACTTCAT GGACCAATGC GCTGCTCACG CAATTGAAGC AAAGACCATA TTGGTGTATT
    TCTCGCCAAA GAGTCTGGGG TACACCGATA CCCGTTTTGT ACTACAAAGA CACTGGAAAG
    ATTTTCATCA CAAAGGAATG GATTGAGAGA CTGTGTGAAT TATTAGAGAA ATATGGCCCC
    GATTGCTGGT GGGAGTTACC AGTAGAGAAA CTGTTGGGTA AAAGATTATG CGCAGAACTG
    AATCTGTCTG GCTCGGAATT CAGAAAAGGC GATGATATCC TGGATATTTG GTTTGATAGC
    GGTATTTCGT GGTCAGCTGT ACTGCCCGAA AAGAAAGCAA ATCTGTACAT GGAAGGGATG
    GATCAATTCA CTGGCTGGTT CCAGTCGTCA CTTTTAACGT CCGTTGCTTT GCAAGACTGT
    GCACCTTACC AAGATCTATT TGTACACGGA TTCGCCGTTG ACGAAAAGAA CAATAAAATG
    TCGAAATCGC TCGGAAACGT TGTTGATCCA GAGGAGATAG TCAAAGGCGG AAAAGATATG
    AACAAGAAGC CAGCATACGG AGTCGATGTA TTGAGGTGGT GGGTAGCTAA TCACGGAACG
    CAACACACGC TTGTGCCAAT GAAAAATTCG TTGCTGCAGG GAAGCGCAGA TACAGTCCAC
    AAACTTCGTT TAGTTTTTAG ATTTCTCTTA GGTGCCCTAC ACACCTATGA CGAGAACAAA
    AATATCACCG TTGAGCCTCA GTATCACTAT TTGGACAAAT ATATGCTCCA TCAGTTGTAC
    CATTATCATC AAGAGATTCA ATCTCTGTAT GAGAAATATC AGTATCACAA CGTCAGCAAG
    ACGGTCGTCA ATTTTATAAC AAACGACGTA TCGGCAGTAT ACTGTCACAT GATAAAGGAT
    AGGATTTACT GTGAGAAAAT AGATTCGCCT TACAGGTTGG GTGCTTTGGA CGTCATCGGC
    GAAATTCTGT CAATCACCAC TCGGTCCATA GCGCCTATCT TACCTCACTT GGCAGAGGAA
    GTCTGGCTTC ATCACCCCGA AAATCTGGCA TCCGTCCCAA TATTCCACAC TCAGCACAGG
    TCTCTAGAAA GTTGGAACAA TTTGGAGTAT AAGGAGATTA TAGAGAAAGC TCTAGATTTG
    AGGAGTGAAA TAAACAAACT AACCAGTCAA AACACGTGGC TCTCGAAAGC TACAGTCAAG
    GCCAATTCTC AGGACTTTAA ACTACTATCG AGCCTACACA AAGATGAGAC ATCCTCATTA
    TCGGAACTCT GTGATATCTG TCAAGTATCT TCGATAACGT TACTGCAAGA CGATTCTTGT
    GACCACATGA ACGTCAGTCT GGAAGACATC AAGGGTCAGC TATGCAAAAG ATGCCGGCGA
    CATCCGGAAC CTGCACCCGA GGAAATTTGT GACAGATGCA CCGAAGTTTT GAACGATGCG
    TAA

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

  • PubMed

    Functional and evolutionary insights from the genomes of three parasitoid Nasonia species.
    Science (New York, N.Y.)327(5963)343-8(2010 Jan)
    Werren JH,Richards S,Desjardins CA,Niehuis O,Gadau J,Colbourne JK,,Werren JH,Richards S,Desjardins CA,Niehuis O,Gadau J,Colbourne JK,Beukeboom LW,Desplan C,Elsik CG,Grimmelikhuijzen CJ,Kitts P,Lynch JA,Murphy T,Oliveira DC,Smith CD,van de Zande L,Worley KC,Zdobnov EM,Aerts M,Albert S,Anaya VH,Anzola JM,Barchuk AR,Behura SK,Bera AN,Berenbaum MR,Bertossa RC,Bitondi MM,Bordenstein SR,Bork P,Bornberg-Bauer E,Brunain M,Cazzamali G,Chaboub L,Chacko J,Chavez D,Childers CP,Choi JH,Clark ME,Claudianos C,Clinton RA,Cree AG,Cristino AS,Dang PM,Darby AC,de Graaf DC,Devreese B,Dinh HH,Edwards R,Elango N,Elhaik E,Ermolaeva O,Evans JD,Foret S,Fowler GR,Gerlach D,Gibson JD,Gilbert DG,Graur D,Gründer S,Hagen DE,Han Y,Hauser F,Hultmark D,Hunter HC 4th,Hurst GD,Jhangian SN,Jiang H,Johnson RM,Jones AK,Junier T,Kadowaki T,Kamping A,Kapustin Y,Kechavarzi B,Kim J,Kim J,Kiryutin B,Koevoets T,Kovar CL,Kriventseva EV,Kucharski R,Lee H,Lee SL,Lees K,Lewis LR,Loehlin DW,Logsdon JM Jr,Lopez JA,Lozado RJ,Maglott D,Maleszka R,Mayampurath A,Mazur DJ,McClure MA,Moore AD,Morgan MB,Muller J,Munoz-Torres MC,Muzny DM,Nazareth LV,Neupert S,Nguyen NB,Nunes FM,Oakeshott JG,Okwuonu GO,Pannebakker BA,Pejaver VR,Peng Z,Pratt SC,Predel R,Pu LL,Ranson H,Raychoudhury R,Rechtsteiner A,Reese JT,Reid JG,Riddle M,Robertson HM,Romero-Severson J,Rosenberg M,Sackton TB,Sattelle DB,Schlüns H,Schmitt T,Schneider M,Schüler A,Schurko AM,Shuker DM,Simões ZL,Sinha S,Smith Z,Solovyev V,Souvorov A,Springauf A,Stafflinger E,Stage DE,Stanke M,Tanaka Y,Telschow A,Trent C,Vattathil S,Verhulst EC,Viljakainen L,Wanner KW,Waterhouse RM,Whitfield JB,Wilkes TE,Williamson M,Willis JH,Wolschin F,Wyder S,Yamada T,Yi SV,Zecher CN,Zhang L,Gibbs RA