UniGene Name: sp_v3.0_unigene57452
Length: 240 nt
This UniGene was originaly assembled in antisense
ACE File: antisense
Fasta: sense
UniGene Fasta (sense) |
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>sp_v3.0_unigene57452
A |
Ace file of the UniGene sp_v3.0_unigene57452 (antisense) |
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Annotations |
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Source | Descriptions | Term | Type | e value | Identity |
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AutoFact | cytochrome P450 enzyme [Pisum sativum] | - | - | 8.0e-17 | 70% |
FL-Next | tr=Cytochrome P450 90A20; Picea sitchensis (Sitka spruce) (Pinus sitchensis). | - | - | 0.0 | 51% |
Sma3 | Cytochrome P450 probable 6-deoxoteasterone to 3-dehydro 6-deoxoteasterone or teasterone to 3-dehydro teasterone | - | - | 9.835e-09 | - |
Source | ECs | Term | Type | e value | Identity |
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Sma3 | Ent-kaurenoic acid oxidase. | EC:1.14.13.79 | - | 1.336e-06 | - |
Source | KEGGs | Term | Type | e value | Identity |
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Sma3 | Diterpenoid biosynthesis | 00904 | 1.336e-06 | % | |
Sma3 | Biosynthesis of terpenoids and steroids | 01062 | 1.336e-06 | % | |
Sma3 | Biosynthesis of plant hormones | 01070 | 1.336e-06 | % | |
Sma3 | Metabolic pathways | 01100 | 1.336e-06 | % | |
Sma3 | Biosynthesis of secondary metabolites | 01110 | 1.336e-06 | % |
Source | Gene names |
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Sma3 | AP22.10; At3g13730; At4g36380; C7A10.980; CYP90C1; CYP90D; CYP90D2; CYP90D5; CYP90D6; D2; F23E13.220; GSVIVT00034159001; LOC_Os01g10040; Os01g0197100; OsI_00765; OsJ_00739; P0419B01.11; POPTRDRAFT_678468; POPTRDRAFT_703918; POPTRDRAFT_802964; RCOM_0312700 |
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 | oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, NADH or NADPH as one donor, and incorporation of one atom of oxygen | GO:0016709 | Molecular Function | 0.0 | - |
Sma3 | heme binding | GO:0020037 | Molecular Function | 0.0 | - |
Sma3 | leaf morphogenesis | GO:0009965 | Biological Process | 0.0 | - |
Sma3 | brassinosteroid homeostasis | GO:0010268 | Biological Process | 0.0 | - |
Sma3 | brassinosteroid biosynthetic process | GO:0016132 | Biological Process | 0.0 | - |
Sma3 | monopolar cell growth | GO:0042814 | Biological Process | 0.0 | - |
Sma3 | leaf development | GO:0048366 | Biological Process | 0.0 | - |
Sma3 | petal development | GO:0048441 | Biological Process | 0.0 | - |
Sma3 | stamen development | GO:0048443 | 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, E-class, group I | IPR002401 | - | 0.0 | - |
Sma3 | Cytochrome P450, E-class, group IV | IPR002403 | - | 0.0 | - |
Sma3 | Sugar transporter, conserved site | IPR005829 | - | 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 | AT4G36380.1 | ROT3 Cytochrome P450 superfamily protein chr4:17187973-17192202 REVERSE LENGTH=524 | 4.0e-21 | 64% |
RefSeq | Arabidopsis thaliana | NP_568002.1 | 3-epi-6-deoxocathasterone 23-monooxygenase [Arabidopsis thaliana] | 6.0e-21 | 64% |
RefSeq | Populus trichocarpa | XP_002327539.1 | cytochrome P450 probable 6-deoxoteasterone to 3-dehydro 6-deoxoteasterone or teasterone to 3-dehydro teasterone [Populus trichocarpa] | 1.0e-21 | 75% |
Full-Lengther Next Prediction |
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Fln status: C-terminus
Fln database: coniferopsida.fasta
Fln subject: A9NWM7
Fln msg: your sequence is shorter than subject: 60 - 487
Fln protein:
G
Protein Length:
61
Fln nts:
A
Fln Alignment:
F5X2MQL01ACYDE___GQRLCPGIDMARLEASIFLHQLVTQYSWE-AEDDSIVSFPTVQMKKRMPIRI
A9NWM7_______________GPRLCPGYELARVEISVFLHHMVTLFSWEVVEEDKLIFFPTTRTVKRYPINL
Biología Molecular y Biotecnología de Plantas, Facultad de Ciencias y Plataforma Andaluza de Bioinformática, Universidad de Málaga, E-29071 Málaga, Spain