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Last updated: 2022/11/18
NameA_TrvaFAMAMG_TR17438c0_g1_i1
Scaffold_id
NCBI non-redundant
(nr)
PREDICTED:_CAD_protein_isoform_X1_[Amyelois_transitella]
Ontology
GO:0000050 P urea cycle
GO:0000166 F nucleotide binding
GO:0003824 F catalytic activity
GO:0004070 F aspartate carbamoyltransferase activity
GO:0004087 F carbamoyl-phosphate synthase (ammonia) activity
GO:0004088 F carbamoyl-phosphate synthase (glutamine-hydrolyzing) activity
GO:0004151 F dihydroorotase activity
GO:0005524 F ATP binding
GO:0005737 C cytoplasm
GO:0006207 P 'de novo' pyrimidine nucleobase biosynthetic process
GO:0006221 P pyrimidine nucleotide biosynthetic process
GO:0006520 P cellular amino acid metabolic process
GO:0006526 P arginine biosynthetic process
GO:0006541 P glutamine metabolic process
GO:0006807 P nitrogen compound metabolic process
GO:0008152 P metabolic process
GO:0016597 F amino acid binding
GO:0016740 F transferase activity
GO:0016743 F carboxyl- or carbamoyltransferase activity
GO:0016787 F hydrolase activity
GO:0016810 F hydrolase activity, acting on carbon-nitrogen (but not peptide) bonds
GO:0016812 F hydrolase activity, acting on carbon-nitrogen (but not peptide) bonds, in cyclic amides
GO:0016874 F ligase activity
GO:0044205 P 'de novo' UMP biosynthetic process
GO:0046872 F metal ion binding
GO:0070406 F glutamine binding
Transcript
Level
FPKM:1.64 TPM:1.61
ORF EntryO_TrvaFAMAMG20587_3prime_partial:A_TrvaFAMAMG_TR17438c0_g1_i1
Sequence
(Nucleotide)
GTCAGCGACAGCGTCGGTCGGATCTTCCGGACCGGTCTTTTAAAACACCACGTGGCCGAT
ATCTCTGAACCTAAAAAATGGCGAATGATGATTTAAGCTGCGATGTAGGGCCACCGTGTT
GCCTTGTGCTAGCGGATGGTACAACACTTCATGGTAGAAGTTTTGGAGCCCAAGTGCCAG
TTGAAGGCGAAATTGTTTTTCAGACGGGTATGGTAGGATATCCCGAGTCTCTAACAGATC
CATCTTATCACGCACAACTACTAGTATTGACATATCCACTAATAGGTAACTATGGAGTCC
CTGATGAACTCGAGCGAGATGAAAACGGTATTAGTAGGTGGTTTGAATCAGACCGTATCT
GGGCTGCGGGATTGATAGTTGGCGAAGTCAGTACCCGCGCTTGTCACTGGCGGGCCAAGT
ACTCCTTAGGCACATGGTTAGCCAAACATAAGATACCAGGTATATGTGACATAGACACAC
GAGCTCTCACTCGACGTCTACGAGAAGGTGTAACTCTAGGAAGGATCATACAAGGTCTAC
AGCCACCATCACCTCTTCCTCCACTTGTAGATCCTAATCTACGTAATTTGGTTGCTGAAG
TGTCAGTAAAGGAACCACGAACTTTTAACAAAAATGGGGAATTCACAATATTGGCTATTG
ATTGCGGTTTAAAATACAATCAAATTAGATGTTTGATAAAAAGAAATGCCAAAGTGATTT
TAGTGCCATGGGATTACAAACCTGATCCAAATGAATACGATGGTTTATTTATAAGCAACG
GTCCAGGTGATCCAGAAATGTGCAAAAAAGTTGTAGAAAACTTAAAATCAGTTATCCAAA
GTAAAACCATAAAACCTGTATTTGGTATTTGCCTTGGACATCAACTTTTATCTACTGCTG
CTGGATGTAAAACATACAAAACTAAATATGGGAATCGTGGTCATAACTTGCCGTGTACCC
ACAGCGGCACTAGCAGATGTTTTATGACATCACAGAATCATGGATATGCAGTTGACGTTG
ACACCCTTCCCGATGGATGGAAAATATTATTTACAAATGAAAACGATAAAACAAATGAAG
GAATAATCCACCAATCGGCTCCTTATTTCAGCGTTCAATTTCACCCTGAACACACAGCCG
GACCTACAGATTTAGAATGTTTATTTGACATATTTGTTAACGCAGTTAAAAAATATAAAA
ATCATGAACAATGCATCATAGATGAAATGATCAATGAAAAGTTAAGTTATACTCCTACTA
TTCACGAAAGACCGAAAAAAGTGTTAATTTTAGGTTCTGGAGGTTTGTCAATAGGACAAG
CCGGAGAGTTTGATTATTCTGGCTCACAAGGTGTTAAGGCAATGCAGGAAGAAAAAATAC
TAACAGTACTGATCAATCCCAACATTGCTACTGTACAGACTTCAAAAGGTTTAGCAGATA
AGGTATATTTCTTACCAATCACTCCTGAATATGTTGAACAAGTCATAAAAGCAGAAAGAC
CAACAGGAATATTGTTAACTTTCGGTGGTCAAACTGCTCTTAATTGTGGCGTAGAACTGG
AAAAATCTAAAATATTAGAAAAATACAATGTTAGTGTTTTGGGAACGCCTATTCAATCAA
TAGTCGATACAGAAGATAGGAAAATATTTGCAGAAAAAATCCATGCAATAGGGGAAAAAG
TAGCACCTAGTGCTGCAGTAACGTCAGTAGAAGAAGCACTCGAAGCTGCTTTGCATATTG
GATATCCTGTAATGGCACGTTCAGCATTTTCTTTAGGAGGATTAGGGTCAGGTTTTGCTA
ATAATGAAGAGGAACTGAAATTATTAGCTCATCAAGCACTTTCACATTCTGATCAACTCA
TTATAGACAAATCGTTAAAAGGATGGAAAGAAGTTGAATATGAAGTCGTAAGAGATGCTT
ATGATAACTGTATAACCGTTTGCAATATGGAAAATGTCGATCCATTAGGAATACACACTG
GAGAATCTATTGTGGTGGCACCTAGTCAAACATTGTCGAACAGAGAGTATTATATGCTGC
GAAATACAGCCATAAAAGTTATAAGACATTTTGGTATTGTGGGTGAATGTAATATACAAT
ATGCCCTGAATCCCAATTCGGAAGAATTTTATATAATTGAAGTCAATGCAAGACTTTCTA
GAAGTTCTGCTCTAGCAAGTAAAGCAACAGGTTATCCACTGGCCTACGTAGCAGCAAAAC
TTGCCCTCGGTATTCCATTACCTGTCATAAAAAATTCAGTTACTGGTGTCACCACCGCTT
GTTTTGAACCAAGTCTGGATTATTGTGTTGTAAAAATTCCGAGATGGGACTTAGCCAAAT
TTAACAAAGTTAGTAAAAAAATTGGAAGTTCAATGAAAAGTGTGGGAGAAGTAATGTCGA
TAGGCAGAACTTTTGAAGAAGCATTTCAAAAAGCTTTACGCATGGTAGATGAAAATACAA
ATGGTTTTGATCCAAATATTAAAAAAGTTAATGAAGATGAATTAAAAGAACCAACAGATA
AACGCATGTTTGTATTAGCTGCAGCACTTAAAAATGGGTACAGTATTGATAAATTATATG
AATTAACTAAGATAGATAAATGGTTTTTAGAAAAATTCAAAAATATCATTGATTACTATA
AAACTCTCGAAACATTAGGTTCTGGTACAATAACATTAGAGATTTTAAAACAAGCTAAGA
AACTTGGATACTCTGATAAACAAGTTGCTTCTGCTATAAAAAGTACAGAAGTGGCGATCA
GAAAGTTGAGAGAAGAGTACAAAATAACACCATTTGTGAAACAAATTGACACAGTTGCTG
CAGAATGGCCAGCAACAACAAACTATCTATACCTAACCTACAATGGTAGTTCACATGACA
TTGTATTCCCTGGTGAATATATTATGGTCTTGGGTTCTGGGGTATATAGAATTGGCAGTT
CAGTGGAATTTGATTGGTGTGCTGTAGGCTGTCTAAGGGAAGTAAGAAATCAGGGTAAAA
AAACCATTATGATAAATTATAATCCTGAAACAGTCAGTACTGATTATGACATGAGCGACC
GACTCTATTTTGAAGAAATATCATTTGAAGTCGTTATGGATATTTACAACATTGAACATC
CCAGTGGTGTTATATTATCAATGGGAGGACAACTGCCTAACAACATTGCGATGGATCTTC
ATCGACAACAAGCAACAATCTTGGGAACGTCTCCGGATATGATTGATGGTGCTGAAAACA
GATTTAAATTTTCTAGAATGTTAGATCGCAAAGGAATTATGCAACCGCGATGGAAAGAGC
TAACAAATTTGGAATCTGCCATTGGATTTTGTGAAGAAGTAGGCTATCCGTGCTTAGTTC
GTCCTTCGTACGTTTTGAGTGGAGCAGCTATGAATGTAGCTAATTCTCATCAAGAACTAG
AGACTTATTTAAAATCTGCTAGTCAGTTGAGCAAAGAACATCCAGTTGTAATTTCTAAAT
TTATAATGGATGCAAAAGAGATCGACGTGGATGTAGTAGCAGCTGATGGTATAATATACT
GTATGGCTGTCTCCGAACATGTTGAAAACGCTGGAGTTCATTCTGGAGATGCCACTCTAG
TTACTCCACCGCAGGACATTAATAATGAAACTTTAGAAAAAATAAAAGAAATTTCTGGAA
TTATAGCGGAAACTTTAGATGTCACTGGTCCTTTTAATATGCAACTCATTGCTAAAGATA
ACGAGTTGAAAGTAATCGAATGCAATGTGAGAGTTTCCAGATCATTTCCATTTGTGTCTA
AAACATTAGACCACGATTTTGTGGCTATGGCTACAAAACTCATTCTGGGATTACCAGTTG
AACCAGTTGATGTAATGACAGGTTGTGGGAAGGTAGGAGTTAAAGTGCCGCAGTTTTCCT
TTTCAAGGCTAGCTGGCGCAGATGTAACTTTAGGTGTGGAAATGGCTTCCACCGGA
(3956 bp)

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