Table 4 |
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Fire ant assembled sequences putatively involved in behavior |
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Fire ant assembled sequence |
Drosophila polypeptide ID |
Gene name and behavior in Drosophila |
E-value |
|
|
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|
SI.CL.10.cl.1087.Contig1 |
CG5670-PB |
Na pump alpha subunit |
1.0e-134 |
|
SI.CL.13.cl.1344.SiJWC08BDJ.scf |
CG4443-PA |
courtless (courtship behavior) |
1.0e-73 |
|
SI.CL.13.cl.1344.Contig1 |
CG4443-PA |
courtless (courtship behavior) |
5.0e-73 |
|
SiJWE02ABO.scf |
CG3263-PG |
cAMP-dependent protein kinase R1 (olfactory learning) |
4.0e-66 |
|
SiJWA12BCM.scf |
CG2212-PA |
swiss cheese |
1.0e-65 |
|
SiJWC02AAC2.scf |
CG3966-PA |
neither inactivation nor afterpotential A |
3.0e-55 |
|
SiJWB06ABV.scf |
CG4379-PB |
cAMP-dependent protein kinase 1 (locomotor rhythm, memory, olfactory learning and rhythmic behavior) |
2.0e-42 |
|
SI.CL.3.cl.316.Contig1 |
CG8472-PB |
calmodulin |
2.0e-42 |
|
SI.CL.20.cl.2069.Contig1 |
CG2212-PB |
swiss cheese |
5.0e-42 |
|
SiJWH05AEA.scf |
CG2048-PC |
discs overgrown (altered behavioral response to cocaine) |
4.0e-40 |
|
SiJWH06BAG.scf |
CG8472-PB |
calmodulin |
4.0e-39 |
|
SI.CL.9.cl.956.Contig1 |
CG14724-PB |
cytochrome c oxidase subunit Va |
6.0e-38 |
|
SiJWA04BDS2.scf |
CG3331-PA |
ebony (locomotor rhythm) |
7.0e-38 |
|
SiJWG01ADR.scf |
CG7826-PC |
minibrain (circadian rhythm and olfactory learning) |
1.0e-24 |
|
SiJWD02ACW.scf |
CG7758-PA |
pumpless |
1.0e-24 |
|
SI.CL.31.cl.3101.Contig1 |
CG1232-PB |
temperature-induced paralytic E |
3.0e-16 |
|
SiJWG06BCF2.scf |
CG5670-PA |
Na pump alpha subunit |
8.0e-15 |
|
SiJWF02BDZ.scf |
CG32688-PA |
hyperkinetic (flight behavior) |
1.0e-13 |
|
SiJWB11ABH.scf |
CG10033-PG |
foraging* |
1.0e-11 |
|
SiJWB03ACL.scf |
CG7100-PH |
cadherin-N |
2.0e-11 |
|
SiJWD03ACB.scf |
CG10697-PA |
aromatic-L-amino-acid decarboxylase (courtship behavior and learning and/or memory) |
1.0e-07 |
|
|
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*Although the best hit for SiJWB11ABH.scf is foraging, a type I cGMP-dependent protein kinase (PKG), when using blastx analysis with only the Drosophila predicted proteins, closer inspection using all the nr sequences suggests that it is actually a type II PKG. |
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Wang et al. Genome Biology 2007 8:R9 doi:10.1186/gb-2007-8-1-r9 |
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