UniGene Name: sp_v3.0_unigene123969
Length: 131 nt
This UniGene was originaly assembled in antisense
ACE File: antisense
Fasta: sense
UniGene Fasta (sense) |
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>sp_v3.0_unigene123969
C |
Ace file of the UniGene sp_v3.0_unigene123969 (antisense) |
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Annotations |
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Source | Descriptions | Term | Type | e value | Identity |
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AutoFact | ABA 8'-hydroxylase CYP707A1 n=1 Tax=Solanum tuberosum RepID=Q3HNF4_SOLTU | - | - | 7.0e-15 | 79% |
FL-Next | tr=Putative uncharacterized protein; Picea sitchensis (Sitka spruce) (Pinus sitchensis). | - | - | 0.0 | 100% |
Sma3 | ABA 8-oxidase | - | - | 5.769e-15 | - |
Source | ECs | Term | Type | e value | Identity |
---|---|---|---|---|---|
Sma3 | Ent-kaurenoic acid oxidase. | EC:1.14.13.79 | - | 1.369e-11 | - |
Source | KEGGs | Term | Type | e value | Identity |
---|---|---|---|---|---|
Sma3 | Diterpenoid biosynthesis | 00904 | 1.369e-11 | % | |
Sma3 | Biosynthesis of terpenoids and steroids | 01062 | 1.369e-11 | % | |
Sma3 | Biosynthesis of plant hormones | 01070 | 1.369e-11 | % | |
Sma3 | Metabolic pathways | 01100 | 1.369e-11 | % | |
Sma3 | Biosynthesis of secondary metabolites | 01110 | 1.369e-11 | % | |
Sma3 | (+)-abscisic acid 8'-hydroxylase. | EC:1.14.13.93 | - | 3.984e-16 | - |
Source | KEGGs | Term | Type | e value | Identity |
---|---|---|---|---|---|
Sma3 | Carotenoid biosynthesis | 00906 | 3.984e-16 | % |
Source | Gene names |
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Sma3 | ABA8OX1; ABA8OX3; At2g29090; At4g19230; At5g45340; CYP707A1; CYP707A10; CYP707A12v1; CYP707A12v2; CYP707A13; CYP707A14; CYP707A2; CYP707A3; CYP707A5; CYP707A7; Cytp450-1; GSVIVT00001184001; GSVIVT00014818001; GSVIVT00019486001; GSVIVT00024287001; GSVIVT00 |
Source | GOs | Term | Type | e value | Identity |
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Sma3 | endoplasmic reticulum membrane | GO:0005789 | Cellular Component | 0.0 | - |
Sma3 | integral to membrane | GO:0016021 | Cellular Component | 0.0 | - |
Sma3 | monooxygenase activity | GO:0004497 | Molecular Function | 0.0 | - |
Sma3 | iron ion binding | GO:0005506 | Molecular Function | 0.0 | - |
Sma3 | electron carrier activity | GO:0009055 | Molecular Function | 0.0 | - |
Sma3 | (+)-abscisic acid 8'-hydroxylase activity | GO:0010295 | Molecular Function | 0.0 | - |
Sma3 | heme binding | GO:0020037 | Molecular Function | 0.0 | - |
Sma3 | response to stress | GO:0006950 | Biological Process | 0.0 | - |
Sma3 | response to water deprivation | GO:0009414 | Biological Process | 0.0 | - |
Sma3 | response to red or far red light | GO:0009639 | Biological Process | 0.0 | - |
Sma3 | abscisic acid metabolic process | GO:0009687 | Biological Process | 0.0 | - |
Sma3 | response to red light | GO:0010114 | Biological Process | 0.0 | - |
Sma3 | abscisic acid catabolic process | GO:0046345 | Biological Process | 0.0 | - |
Sma3 | release of seed from dormancy | GO:0048838 | Biological Process | 0.0 | - |
Sma3 | oxidation-reduction process | GO:0055114 | Biological Process | 0.0 | - |
Source | InterPros | Term | Type | e value | Identity |
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Sma3 | Cytochrome P450 | IPR001128 | - | 0.0 | - |
Sma3 | Cytochrome P450, B-class | IPR002397 | - | 0.0 | - |
Sma3 | Cytochrome P450, E-class, group I | IPR002401 | - | 0.0 | - |
Sma3 | Cytochrome P450, conserved site | IPR017972 | - | 0.0 | - |
Sma3 | IPR017973 | - | 0.0 | - |
Source | Species | ID | Description | e value | Identity |
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ATG | Arabidoptis thaliana | AT2G29090.1 | CYP707A2 cytochrome P450, family 707, subfamily A, polypeptide 2 chr2:12495038-12499080 REVERSE LENGTH=482 | 2.0e-20 | 79% |
RefSeq | Arabidopsis thaliana | NP_180473.1 | abscisic acid 8'-hydroxylase 2 [Arabidopsis thaliana] | 2.0e-20 | 79% |
RefSeq | Populus trichocarpa | XP_002335944.1 | cytochrome P450 [Populus trichocarpa] | 1.0e-21 | 72% |
Full-Lengther Next Prediction |
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Fln status: Internal
Fln database: coniferopsida.fasta
Fln subject: D5AC99
Fln msg: Distance to subject end: 28 aas, your sequence is shorter than subject: 43 - 270
Fln protein:
P
Protein Length:
44
Fln nts:
C
Fln Alignment:
AllPine_a_c60466___PFGNGAHSCPGSELAKLEMLILIHHLTTKYRWDILGSENGIQY
D5AC99________________PFGNGAHSCPGSELAKLEMLILIHHLTTKYRWDILGSENGIQY
Biología Molecular y Biotecnología de Plantas, Facultad de Ciencias y Plataforma Andaluza de Bioinformática, Universidad de Málaga, E-29071 Málaga, Spain