GD DNA Plasmids (GD-DNA)

GD-DNA
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Set Descending Direction
Name VDRC Id Library Sub-Category CG Number (r6.01) Genotype Comment Construct Id Publication Provider Scientist Provider Organization Gene Symbol CG Number (r6.01) Synonyms Left Primer Right Primer Hairpin Length Insertion Site Vector Template Sequence FlyBase Reference Reports RRID Comment Gene Name Keywords Price (net) Add to Cart
dna3278
dna3278
GD-DNA
3278
CGCGAATTCACAACGGCAGCAACGCCAAC
CGCTCTAGAAGTTCCTCGCGCTTGGTCACA
340
genomic
ACAACGGCAGCAACGCCAACAGCAATGACATCTACAACATTGTCCTGCTGGTGGTTGACATCGTGATGCTGATCGTCAAATTCTGGCTCGCCATTGCGGAAGCTATCGTTGGACTTTTCCGCGCGCCGCCGCTCGATGATGTCAATGGCAAGGTGGTCCTGATCACCGGCACTGGCCACGGCATGGGCAAGGAGATGGCACTGCAGTACGCCAAGCTGGGCGCCACCATTCTCTGCTGGGATGTCAATGAGCAGACCAATAACCAGACCGTCAAGGAGATCAAGAACAATGGTGGCAAGGCCTTTGGCTACGTTTGCAATGTGACCAAGCGCGAGGAACT
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dna3352
dna3352
GD-DNA
3352
CG11096
CG11102
CG11104
CG15761
CG32630
EP(X)1101
inaE
inactivation no afterpotential E
CGCGAATTCGCGAGACGCCCTTCTTTGTGG
CGCTCTAGACTGAAGCACTGGAGCGTTGGATG
355
genomic
GCGAGACGCCCTTCTTTGTGGCCATCGACTATACACATCGGGCGGTTGTGATCAGCATACGTGGTACCCTTAGCATGAAGGACATACTTACGGATCTGAACGCCGAGGGCGAAGTTCTGCCGCTGCAGCCGCCGCGTGACGATTGGCTGGGCCACAAGGGAATGGTGCAAGCGGCGATCTACATACGCAACAAGCTGCAGGAGGAGAATCTCATCGAGAGGGCACTGCAACGGAATCCGGACCGTCAGACGCACACCTTTGATCTGGTGCTGGTGGGCCATTCGCTGGGCGCCGGAACAGCGGCCATACTCGCCATTCTCCTTAAGCCCGAGCATCCAACGCTCCAGTGCTTCAG
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dna3373
dna3373
GD-DNA
3373
CGCGAATTCTGCTGGTGGCCTACGTTTTGG
CGCTCTAGAGTCGCTTTTGCTCATTGGTCGTG
374
genomic
TGCTGGTGGCCTACGTTTTGGCGGTGTCCGCTGAATCCGTACGCCTATACGCCGGCTACTCGGTGAACCTGTGCTCTGGCGCCACCGCCATGTGGATGCTGCTCACCGTGACACCATGCATCCTGCTGCCCGCCATGGTCTTTCTTCGCCTCTCAGCTGCCGGACGCAGTTTGTGGCTACGCATCATCACGAACGCCGTGTTCGCGCTAATAGTTCTCGAGGTGATCGTGTCTCTGGTGCACTTTGTTATCTGCAAGCCAGGCTGTAAGCTGCCGCTGCCGCTAGAAGGGAACGAGCAGCTGCCGGAGGAGGATGAGGAGGAGCAGCAGCAATCCGCCAGTGTGGGCACACCCACGACCAATGAGCAAAAGCGA
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dna3374
dna3374
GD-DNA
3374
AC 13E
AC13E
Ac13E
Ac35C
Adenyly cyclase 35C
Adenylyl cyclase 35C
DAC9
HD12aCFD0552
adenylyl cyclase
CGCGAATTCCCCTGTTCCGACCATTCCACA
CGCTCTAGAGCCCACTCGCATCTTGACACC
329
genomic
CCCTGTTCCGACCATTCCACATGCACAGCATGGAGAACGTGAGCATTCTATTCGCGGACATCGTTGGCTTCACCCGCATGTCCTCCACGAAAACAGCCGAACAGTTAGTGGAGATACTCAACGATCTCTTCGAGCGTTTTGACGACCTTTGCTCGCTGAGTGGCTGCGAGAAGATCTCCACGCTGGGCGATTGCTACTACTGCGTGTCCGGTTGTCCAGAGCCACGGGCGGATCACGCCATTTGCTGTGTGGAAATGGGTCTGGGCATGATTGATGCCATGCGCTGCTTCGATGCCCAGCGCCACGAGGGTGTCAAGATGCGAGTGGGC
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dna3378
dna3378
GD-DNA
3378
CGCGAATTCCCACGCTCTCATCCCCATCCT
CGCTCTAGACTGTGCCGCTGTGCGTCTTC
389
genomic
CCACGCTCTCATCCCCATCCTTGCGCTATCTGTTCCCATGGTGGAGCAAGTGCAGCCGGCGGACGAGCTGCTATCGTCGCATTGGCTAAGACAGGCGCAGTCTCAGTTGCGCGAACGTCTGGCCAGAACCAAGGACTCCATCGCCGACGTCCGACAGGCCAAGAATGTGGTGATGCTCCTGGGCGATGGACTGTCCATCACCACCTTAACGGCCGCTCGCATCCTAAAGGGGCAACGTCGCGGCGGACGCGGAGAGGATGCACAGCTGGCCGTGGAACAATTCCCCTTCAGCGGACTGAGCAAGACATACTGCATCGACGAGCAGACACCGGACTCCGCCTGCACGGCCACCGCCTATTTCGGCGGTGTGAAGACGCACAGCGGCACAG
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dna3397
dna3397
GD-DNA
3397
Aberrant X segregation
Abnormal X segregation
Axs
abnormal X segregation
axs
CGCGAATTCCACCAACCTGGAGAACCATCGAAC
CGCTCTAGAGCAAACAGGACCACGAATCCAAAC
396
genomic
CACCAACCTGGAGAACCATCGAACTCGATCGCAGTACGATCGTCATCGGGTCAATAAGCTGATGCTCTTCGAGATCGTGAATAACTTCTTCTCGCAGTTCTATATTGCCTTCGTGCTGCACGATCTGCGCCAGCTGAAGTACCAGTTGATGATGCAACTGCTGGTCTTCCAGCTGCTGTGCATCGCCCAGGAGATTGGTATACCGCTGCTGGCGGTGCTGCGCCAGAAGTACGCCGAGTTCCGTCATCGCGAGGTGGCCGAGGAGAAGCTGCGATCCATCAGTGATCTGCCGCGCTACGAGCAATCGTTCTACGAATCCGGACTAGATGAATATCATTCCACGTACGAGGACTACCTGCAGGTATGCATCCAGTTTGGATTCGTGGTCCTGTTTGC
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dna3441
dna3441
GD-DNA
3441
CGCGAATTCGATGGCTGGACGGAGCAGGA
CGCTCTAGATTGTGGTGGGCGGTGTATTGG
397
genomic
GATGGCTGGACGGAGCAGGAGTACAACTCGCTGTCGCATCGACCCAGCACACCCACGATTCGAGGAAGATCCAAGCACATACCGTCCGAGTATCTGACCACCACTACCACAACTCCAGCGCCGTTATCGCAGCGCCAGTCGAAAACCACTCGGGGCGAGGGATTCGAGCTGGGTGGCGCTCCACCCACTGATGCCGGTGATCTGTCCACTTCCATCAACAATCTGGAGCAACTGCATCTGCTCGGTGAGCGGGGATCGAAGGGCTTTCAGCCCATCGAAGACAACCGCCTGCATTTCGACTACTACGATGCCCAACAGCGACCAAGATCCACGTCGGCCATGACCACCATCAGTCCGCCCAGCACCACAACCACCACCAATACACCGCCCACCACAA
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dna3451
dna3451
GD-DNA
3451
CGCGAATTCCACGTCAACCGGGGCAAGTC
CGCTCTAGATGTGGAAGATGTAGGCGGAGTAGGATAG
304
genomic
CACGTCAACCGGGGCAAGTCCTTCAAGCTCAGCCCCATTACAGTCGTCCTGGGTTGGCTGACCAGCCTGGCGTTGCTCTTCAGCTGCTTGTTTGCCGTCTACGGTTATGCCGCGGATGCGGAAATACCACCCATTGTGGAGGAGGCCTTCTATCTGACCTTCACCCGGATCGCCTGGCCTCTCGGTCTCTGCTGGGTGGTTTTCGCCTGCATGCACGGCTACGGAGGACTGGCCAACAGCTTCCTTTCCTCTCCCCTTTGGCAGCCGCTGTCCAAGCTATCCTACTCCGCCTACATCTTCCACA
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dna3458
dna3458
GD-DNA
3458
Cpr49Ac
Cuticular protein 49Ac
CGCGAATTCGGCACACATGCCAAGGGATTCT
CGCTCTAGACTCCTCGCGCTCCTCCTCCT
339
genomic
GGCACACATGCCAAGGGATTCTATGAGTACACCGGTGACGATGGCAAGCTTTATCGCGTAAACTACGCCTCCAACGATGGCGGCTTCATGCCCCAGGGAGACCACATTCACCCGATCCCCGATGCCATTGTCCGTGCCCTCAAGTACGTGGAGGAGCAGCACAAGATCAACGGTGGGGCTCAGTTCGACCATCGCGGCTTCCGCATCAATCACATGACCAAGGACCTTAAGGCGCAGATCAAGGCGATCCATCTGGAGGAGATGCCCAAGGAGCTGACCGAGCAGATCCATATGCTGGAGCACGAGGTGGAGCTCGCCGAGGAGGAGGAGCGCGAGGAG
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dna8233
dna8233
GD-DNA
8233
1479/10
Ver
Verrocchio
anon-WO0172774.86
anon-WO0172774.87
anon-WO0172774.89
l(3)S147910
lethal (3) S147910
ver
verrocchio
CGCGAATTCGGCAATGGAACGCACAACGA
GCGTCTAGAGGCCGCTGTCTATGAAGAACTGAAAA
316
genomic
GGCAATGGAACGCACAACGAGTCGTTCATGAAGTTCATGATCGATGATGGCACCGGCTCCCTGGAGGCCAGCATCACCAAAAAACCCTTCAATGGACGCGTGATCAGCAGCCTGTACAGTGAAGCCAGTTCGCTGGCCTCGTCCGAGGCCTACAAGAGCATTGCCGTGAGCATGATGCGGCTGCTGCAGGTCTCCATGGAGTACATTGATCCCACGCGCATCTCGAGGGGCCACAGCCTATTCCTGCGCGGTCGTCCGAATAGGTTCCGCGGCAAGATGGGTCTGGACGCTTTTCAGTTCTTCATAGACAGCGGCC
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dna8240
dna8240
GD-DNA
8240
CGCGAATTCACTCAAGACGCCCAACTATCCCATTT
GCGTCTAGACCACTAGCAGCACCACCAACACC
354
genomic
ACTCAAGACGCCCAACTATCCCATTTGGATAACCAGCTGCACGGGTCACTTTGGCGTGATCTTTAACAAGAATCCGGATCTGTTGCGCAATTACCATGCGGAGTCGCGTTTCGATGTTAACTACTACAGCTGCTCCGGTCATCAGATACTGATGACCATCGACAATCGCACGTACAACGAGCAGGCATTGGTCATGTTGGAGCGGCAACCAATCACGCCGGAGAGTACCTCGATGTCCGGAAAGGAGGATGGCGGGGGCGCAACGTCGCCAACGACCGTTTCCGGTGGAGGAGGTGCTGCTGCCGGCGGCGGTGTGGGTGGCGCTAGCGGCGGTGTTGGTGGTGCTGCTAGTGG
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dna8247
dna8247
GD-DNA
8247
CGCGAATTCGCAGAACGACGAGGAACCAGCA
GCGTCTAGAGCCATTCCGTAGACCGTGTCGTC
312
genomic
GCAGAACGACGAGGAACCAGCAGCTGCAGCCGGAACTTCGGGGCTAAGCAATGGAGAATCCTTGCGGAGTCCACCGGCCCCGGCTCCACGACGACCCAAGCCAGGTATCCTGCGACTGGACATCGGCAAACCGCGACGCTCATCAGGTGGTTCCGTCGATTTCCGATGCGTGGGCAGCAGCAGCAGCAATGGGAACACCAGCAACGTGGCCACTGGCGCCAACAGTGAGGTAAGTGAGCATGATTTACGGCCCATTCGGGAGTGCTTACGATTTGGCCTGACCAACAACGACGACACGGTCTACGGAATGGC
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