GD Stocks (GD)

GD
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Items 13-24 of 284

Set Descending Direction
Name VDRC Id Library Sub-Category CG Number (r6.01) Genotype Construct Id FlyBase gene number Synonyms Left Primer Right Primer Hairpin Length Insertion Site Vector Template Sequence FlyBase Reference Reports RRID Comment Price (net) Add to Cart
11547
11547
GD
CG9210
3374
AC 13E
AC13E
Ac13E
Ac35C
Adenyly cyclase 35C
Adenylyl cyclase 35C
DAC9
adenylyl cyclase
CGCGAATTCCCCTGTTCCGACCATTCCACA
CGCTCTAGAGCCCACTCGCATCTTGACACC
329
genomic
CCCTGTTCCGACCATTCCACATGCACAGCATGGAGAACGTGAGCATTCTATTCGCGGACATCGTTGGCTTCACCCGCATGTCCTCCACGAAAACAGCCGAACAGTTAGTGGAGATACTCAACGATCTCTTCGAGCGTTTTGACGACCTTTGCTCGCTGAGTGGCTGCGAGAAGATCTCCACGCTGGGCGATTGCTACTACTGCGTGTCCGGTTGTCCAGAGCCACGGGCGGATCACGCCATTTGCTGTGTGGAAATGGGTCTGGGCATGATTGATGCCATGCGCTGCTTCGATGCCCAGCGCCACGAGGGTGTCAAGATGCGAGTGGGC
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12372
12372
GD
CG7214
5353
CGCGAATTCCGTTGCCGTAGTCATGTTCGTGTG
GCGTCTAGAGAGGGGAGCGGTGTGGATGG
358
genomic
CGTTGCCGTAGTCATGTTCGTGTGCGCCCTGGCTGGAGCTCATGCCTCGTGGGCCCAGATCGCTCCCGGTGTGTCCTATGTGAGCCCCGTGGCCCATGGAGCCGGTCTGTGGAACGGAGCCTGGAATGGTGCCTGGAACGGTGCCTGGAACGGCGCCTGGAACGGTGCTCCCTGGGGTGCCCCTGCCGCCGTTGCCGTCCATGCCAGCGCTGCTCCCTGGGGTCTGACCGGTGCCGGATGGCACGGCGCTGCTGTTCCCGGAATCAACCTGGCCCAGGGACCCGGTCTCGCCGCCGGCCATGGCCATGAGGGCGTCTATGTGGCCAAGACCCGTGGTGCCATCCACACCGCTCCCCTC
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1603
1603
GD
CG3066
468
MP2
Melanization Protease 2
PAE
PAE1
SP7
Serine protease 7
Sp 7
Sp7
anon-Ryu
proPO-AE
prophenoloxidase-activating enzyme
serine protease 7
sp7
CGCGGATCCCCCGCAAGAGCACCATAAAGCA
CGCTCTAGAGGTCTCCACGATCCAGTCCATGTAGTC
293
genomic
CCCGCAAGAGCACCATAAAGCAGCGATTGGATCTGCCGGTGAATGACCACGATTACTGCGCACGAAAGTTCGCCACGAGGAATATCCACCTGATCAGTTCCCAGCTCTGTGTTGGCGGGGAATTCTACCGCGACAGCTGTGATGGCGACTCCGGCGGACCGCTGATGCGAAGGGGTTTTGACCAGGCTTGGTACCAGGAGGGCGTGGTCTCCTTTGGCAACCGCTGCGGACTAGAGGGTTGGCCAGGTGTCTACACTCGGGTAGCCGACTACATGGACTGGATCGTGGAGACC
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12771
12771
GD
CG8989
4749
H3.3
H3.3B
His3.3
His3.3B
HisH3-3Q
Histone H3-3Q
Histone H3.3B
HistoneH3
PH3
anon-EST:fe1B6
anon-fast-evolving-1B6
dH3.3B
histone H3.3
histone variant 3.3
histone variant H3.3
CGCGAATTCCCGGAGGAAAGGCTCCTCGTAA
GCGTCTAGATGGCGTGGATAGCGCACAAG
312
cDNA
CCGGAGGAAAGGCTCCTCGTAAGCAGCTAGCCACCAAGGCTGCCCGTAAATCGGCGCCATCCACCGGCGGAGTGAAGAAGCCCCATCGTTATCGTCCCGGAACTGTGGCTCTTCGTGAGATCCGTCGTTACCAGAAGTCGACCGAGTTGCTCATCCGCAAGCTGCCCTTCCAGCGTCTGGTTCGTGAAATCGCTCAGGATTTCAAGACCGATCTGCGTTTCCAGTCGGCTGCCATCGGTGCCTTGCAGGAAGCATCTGAGGCGTACCTGGTGGGTCTCTTCGAGGACACCAACTTGTGCGCTATCCACGCCA
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13070
13070
GD
CG7036
4425
Rhinoceros
rhinoceros
rno
CGCGAATTCGCATCACCAGTCGCACCATCC
CGCTCTAGATTGCTTGCCGACTTTGCCAGTT
303
genomic
GCATCACCAGTCGCACCATCCGCCGCCGCAACAGCATCAGCGCAAGGATGTTGAGCCGCAGCCGCCGCCCACCAAGCGGCGCAAAGGTAGGCCACCTAATGGAGCCACTACGGCAGCAGTAGCTGAAGTGACTGGATCGGGTCCAGCTACAGGATCGGAGCGTGTGCCAGTTCTGCCTTTGTGCAAAAGCAAACATGAAGAGCCAGGGGCGGAAGCGGGGGGAGGAGGACAAGGAAGAGCCGCGGCAGGCGCTACCAGCACTAGCAAATCGAAGTCAACGAAACTGGCAAAGTCGGCAAGCAA
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13422
13422
GD
CG4795
5175
77H5
Ag 72H5
Ag72H5
Calphotin
Cpn
Mab77H5
Monoclonal antibody 77H5
calcium-binding protein
calphotin
cap
cpn
CGCGAATTCCAGTCGTTGCCGAGTCCCAAG
GCGTCTAGACAGCCACAGGAGGGAGAACAGG
351
genomic
CAGTCGTTGCCGAGTCCCAAGTTGCTGCGAATACTGTTGTAGCTACACCTCCTACTCCAGCCCCAGAGCCAGAAACCATTGCACCACCTGTTGTTGCAGAAACCCCAGAAGTTGCTTCAGTTGCTGTTGCTGAGACAACACCACCCGTTGTACCTCCTGTGGCCGCAGAATCAATACCAGCGCCAGTCGTTGCCACGACACCAGTTCCTGCAACACTAGCAGTAACGGATCCGGATGTCACTGCATCTGCTGTTCCCGAATTACCTCCGGTGATCGCTCCATCACCCGTTCCTAGTGCTGTTGCTGAAACTCCTGTCGACTTAGCGCCACCTGTTCTCCCTCCTGTGGCTG
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13788
13788
GD
CG9399
4636
CGCGAATTCCGGAAAGGGCATCCACTCCA
CGCTCTAGATGCTGCTCCTGCTTCAGCTTCTC
375
cDNA
CGGAAAGGGCATCCACTCCAAGCTGTACAACGGGATGATTGGCGCCGCCGACAAATTTGTGCCCGCCAAGCTGCGGCCACTGTGGATGCATCCAGCTGGTCCCAAGACGATATTCTTTTGGGCACCCGTCTTCAAATGGGGTCTCGTTGCCGCCGGCCTGAGTGACTTGGCCCGACCGGCCGACACCATCTCCGTGTCTGGATGCGCCGCCCTGGCTGCCACGGGCATCATCTGGTCGCGTTACTCGCTGGTGATCATACCCAAGAACTACAGCCTGTTCGCCGTGAATCTCTTCGTGGGCATCACGCAGGTGGTGCAGCTGGCACGGGCCTACCACTACCACCAGAGTCAGGAGAAGCTGAAGCAGGAGCAGCA
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14167
14167
GD
CG8927
6111
CGCGAATTCCCATCCTGCCTCCTCCTTCCTC
CGCTCTAGAGTCCTCGTTTTCCTCACGCCACTT
400
genomic
CCATCCTGCCTCCTCCTTCCTCGCGCTTCCCCGCTGAACGGCCATCTATTCCGACGCCCCTGAACCGTCCCGCCGCCTTCAATGATTTTGGCATTGGTCGGTTTGAGAACTCGCAGAGATTCGGATTGGAGCGACCTACGCCCACTGCAGCAGCGCCACCACCACCGCAACAACAGCCCCAGCGGGTGGCTGTGATCCGAACAAGACCAGCGTCTTCCGCTGCCCTACGACCTGAATCACCACCACCACAGCCTATGGCCAGGCCACGCCCTAAGCCTGTCCAGCCGCGTCCCATCATTGATCAAAATCAGCTACAGGACGATCACGTTGACCAGCAGCAGCAGCGTCGCCGTCAGCCCGTTTCCCAGACCATTCGCAAGTGGCGTGAGGAAAACGAGGA
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14374
14374
GD
CG5873
6190
CGCGAATTCTGTACTGTTTCGAGGGCGGTGAG
GCGTCTAGACGGAAGGCAGCTCCAGCAAA
331
genomic
TGTACTGTTTCGAGGGCGGTGAGATTCGCGTGAATGAGCAGCTGGTGCTCACGTGCATGCACACCTTGATGGCGCGAGAGCACAATCGACTGGCGACTGCATTGGCGCAGATTAACAAACACTGGGATGATGAGACGCTGTTCCAGGAGGCCAGACGCATCAATATCGCCATAGTTCAGCATGTCACCTTCAACGAATTTCTGCCCATTCTGCTGGGCAAGGAAGTGATGGAGAAGTTCGGTTTGGTGCTCCAGAAAGATGGCTACTGGGATGGTTATGATTCAACAGTGAATCCGGGCATTATTGACTCTTTTGCTGGAGCTGCCTTCCG
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14561
14561
GD
CG15754
6403
CGCGAATTCCTGCTCTGCGCCTTGCTCCT
CGCTCTAGAGTCCTCCTCCTCTTCTGCCTCTTCC
383
genomic
CTGCTCTGCGCCTTGCTCCTGACCTCTGGCCAAAGGACACCGGTTCGCGTTCCGCCGCGAAATCTGCAGGTGCCCAACATTGGGGGCGAGAGCTTCGAGAGATTCGACACCCGATCGGCATCGACGTCGAGCAGCGGAAGCAGCGAGAGCCAGGAGACCAGCGATGAGATGCGGGAGCAACTGAAGCAACTTCTGGGCGACCAGCTGGCCACCGCCTTTGCCCCCTTGGCCACCACGCCATTCACCAGGCGACAGCCGGCCATTGCATCACCCAGCTCGGGGGCGGCTGCCCGTTCCCAGTTCGCCACCGATCCGGATCAGGGCCAGGAAGAAGAGTCCCCGGACCAGGACGGCGAGGCGGAAGAGGCAGAAGAGGAGGAGGA
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14621
14621
GD
CG9686
6460
BcDNA:RH74092
CT6802
anon-EST:Posey3
CGCGAATTCCGCTGGTCCTCCTGCTGCTC
GCGTCTAGACCGCGATCCTTGCTCATCTCC
358
genomic
CGCTGGTCCTCCTGCTGCTCGCCGGAGTTTTTCTTCAAAGTCAGGCGGGTCTCTTCGATTGCGAGGACAAGATACCCGGACTTGGAGATGTGAGCGATAAGATATCGGAGATTACGGGCAGCAGTAGCAGTTCGGAGCACGAGGTGCGCGACTTCTTCAAGAACGTGGGATGCCACATCAAGGAGGGAGCCAAGAAGCTGGGCGAGAAGGCCAAGGACTTGGGCACGGAACTCAAAGAGGGCGCCCAGAAGCTGGGCGAGAAGGCCAAGGTCCTGGGTAGCGATCTCAAGGATCGCTTCGATGACTTCCGCGACAAGCTGGCCAAGGATTCCGCCGAGGAGATGAGCAAGGATCGCGG
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14751
14751
GD
CG4685
6270
DmSSADH
SSADH
Ssadh
Succinic semialdehyde dehydrogenase
anon-WO0118547.428
succinic semialdehyde dehydrogenase
CGCGAATTCGAGATGGTCAGGGTTGCGATGTG
GCGTCTAGAGCGGAGATGATGCCTTCGTTG
388
genomic
GAGATGGTCAGGGTTGCGATGTGCAAATCGGACCACTGATCAACGAGATGCAGTTCAACAAAGTCAGTGGCTTTGTGGAGGACGCCAGGTCGAAGAAGGCGAACATTATTCTGGGCGGACAGCCGTTGCCCGACAAGGGATCCCTTTTCTACGCACCCACAATTGTCACAGATGTGCCACCCTCGGCGCAACTCTACTCGGAGGAGGTCTTTGGTCCAGTGGTCTCCATCATACGGTTCCGAGACGAAGAAGAAGCGGTAAAGAAGGCAAACGACACCAGGAGAGGCCTGGCCGGTTACTTCTACAGCGAGAATCTGCAGCAGGTGTTCCGGGTGGCCAAGCGACTGGAGGTTGGCATGGTCGGCGTCAACGAAGGCATCATCTCCGC
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