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Last updated: 2022/11/18
NameA_BomoFB_comp9856_c0_seq2
Scaffold_idBomo_Chr11
NCBI non-redundant
(nr)
PREDICTED:_alanine--glyoxylate_aminotransferase_2,_mitochondrial_[Plutella_xylostella]
Ontology
GO:0003824 F catalytic activity
GO:0005739 C mitochondrion
GO:0005759 C mitochondrial matrix
GO:0008453 F alanine-glyoxylate transaminase activity
GO:0008483 F transaminase activity
GO:0009436 P glyoxylate catabolic process
GO:0016223 F beta-alanine-pyruvate transaminase activity
GO:0016740 F transferase activity
GO:0019265 P glycine biosynthetic process, by transamination of glyoxylate
GO:0019481 P L-alanine catabolic process, by transamination
GO:0030170 F pyridoxal phosphate binding
GO:0042802 F identical protein binding
GO:0045429 P positive regulation of nitric oxide biosynthetic process
GO:0046487 P glyoxylate metabolic process
GO:0047305 F (R)-3-amino-2-methylpropionate-pyruvate transaminase activity
Transcript
Level
FPKM:12.84 TPM:14.06
ORF EntryO_BomoFB10748_complete:A_BomoFB_comp9856_c0_seq2
Sequence
(Nucleotide)
CGTACGGTAGTGATAGCACATTCTGTTTAAATGGCCAATAGAGGACGACTGTGCAATGTG
GTTGGCAGGGCGTATAGTACAGCTAAAATGCCCTCCACCGGGTTTACACCCAAAGAGTAT
AAGGGCCCAACATACGAACAACTGGAACATTTGAAGTCGAAACATATGCCGCCAGCGATA
CCTAATTCTTACAAGAAGCCGGTGCTATTACACCAGGGTCACATGCAGTGGCTCTTCGAC
CACGAGGGCAAAAGATACTTGGACCTGTTCGGCGGAGTCGTTACTGTCTCAGTTGGAAAT
AGTCATCCGAAGCTAAACGCAGCTCTCAAAGAACAAATCGATTTAATATGGCACACGACG
AACTTGTACCGGCATCCAAGAATATATGAATACATTGAGAAATTGTCGTCTAAATTACCC
GATGATCTTAACGTCGTCTACTTAGTGAACAGTGGAACAGAAGCGAACGATCTGGCCACG
ATCCTGGCAAAGGCGTACACGGGTAACTTGGACGTGATATCACTCCAGACCAGCTATCAT
GGATACAACAGCAGCCTCATGGGGCTATCTGCTACACAGTCGTACAGAATGAACCTCCCC
GTACCGCCGGGATTTTATCACGCGGCACATCCAGATCCGTACCGAGGGAGCTGGGGCGGC
TGCAGAGACTCCATTTCGCAGGTGGCCGGCGCGTGCTCGTGTCCCGGCGAATGCGTTAGC
ACCGAAAAATACATTCATCAACTCGACGAGCTCCTAGGTAATTCTGTACCAGCCGGCAGA
GTAGCAGCGTTCTTCGCGGAATCTATCCAGGGTGCTGGTGGAGTGGTGCAGTTCCCTAAG
GGATACCTGAAGAGAGCTCAAGAGCTAATCAAGAAGAATGGCGGCTTGTATGTAGCTGAT
GAGGTCCAGACGGGTTTCGGTCGTACCGGAGACCACTACTGGGGCTTCGAGACACACGGC
GTGAAGCCTGATATCGTGACGATGGCTAAGGGGATCGGCAACGGTTTCCCTCTGGCCGCT
GTCGTCACCACTAAAGAGATAGCAGCCAATCACGCGAAGGCTGCCTACTTTAACACTTTC
GGTGGAAACCCGATGGCTTCGACTGTTGGAAAAGCTGTATTGGAGGTTATTGAAGAAGAA
GGACTGCAACAGAACAGTAAGGTAGTCGGCGAATACTTCATCAGGCAGTTGATGGAGCTA
CAGAAGCAGCATCCAGTGATTGGCGATGTGAGAGGACAGGGCCTCATGATCGGGGTCGAG
CTGGTCGAGCCTGGCACTAAGAAACCCCTGCCGGTGTCCCTTGTGAAAGATATACACGAA
GAGATTAAAGACAATGGAGTTCTAGTCGTACTTGGCGGGCGGTGGAGTAATGTGTTCAGA
ATGAAGCCGCCGATGTGCATCACGAAGGCAGATGTTGATTTTGGTATTTCAGTTATCGAC
GACGCCATTAAAAAGGTCACGAAGAAATGATAATTGTTTTGAAACGGATTACTGAGATTT
TGGCGGAAACGCTGTGAAGCGAACTTTAGATGATTTTTATAATTTGTTAAGTTTAGTGAT
TGTTGACGTATTATTAGACGTTTAAACCTGAAGAATCACTAAACTTAACAAATTATAAAA
ATCATCTAAAGTTCGCTTCACAGCGTTTCCGCCAAAATCTCAGTAATCCGTTTCAAAACA
ATTATCATTTCTTCGTGACCTTTTTAATGGCGTCGTCGATAACTGAAATACCAAAATCAA
CATCTGCCTTCGTGATGCACATCGGCGGCTTCATTCTGAACACATTACTCCACCGCCCGC
CAAGTACGACTAGAACTCCATTGTCTTTAATCTCTTCGTGTATATCTTTCACAAGGGACA
CCGGCAGGGGTTTCTTAGTGCCAGGCTCGACCAGCTCGACCCCGATCATGAGGCCCTGTC
CTCTCACATCGCCAATCACTGGATGCTGCTTCTGTAGCTCCATCAACTGCCTGATGAAGT
ATTCGCCAACAGTTTTGCTGTTCTTTTGAAGTTCTTCCTCGTCAATAACATCTAATACGG
CCTTTCCAACTGTTGCGGCCAAAGCGTTTCCTCCAAAAGTGTTGAAATACGATTTTCCGC
TGTGGGCGGCTGCTATCTCTTTAGTGGTGACGACAGCGGCCAGAGGGAAACCGTTGCCGA
TCCCCTTAGCCATCGTCACGATATCAGGCTTCACGCCGTGTGTCTCGAAGCCCCAGTAGT
GGTCTCCGGTACGACCGAAACCCGTCTGGACCTCATCAGCTACATACAAGCCGCCATTCT
TCTTGATTAGCTCTTGAGCTCTCTTCAGGTATCCCTTAGGGAACTGCACCACTCCACCAG
CACCCTGGATAGATTCCGCGAAGAACGCTGCTACTCTGCCGGCTGGTACAGAATTACCTA
GGAGCTCGTCGAGTTGATGAATGTATTTTTCGGTGCTAACGCATTCGCCGGGACACGAGC
ACGCGCCGGCCACCTGCGAAATGGAGTCTCTGCAGCCGCCCCAGCTCCCTCGGTACGGAT
CTGGATGTGCCGCGTGATAAAATCCCGGCGGTACGGGGAGGTTCATTCTGTACGACTGTG
TAGCAGATAGCCCCATGAGGCTGCTGTTGTATCCATGATAGCTGGTCTGGAGTGATATCA
CGTCCAAGTTACCCGTGTACGCCTTTGCCAGGATCGTGGCCAGATCGTTCGCTTCTGTTC
CACTGTTCACTAAGTAGACGACGTTAAGATCATCGGGTAATTTAGACGACAATTTCTCAA
TGTATTCATATATTCTTGGATGCCGGTACAAGTTCGTCGTGTGCCATATTAAATCGATTT
GTTCTTTGAGAGCTGCGTTTAGCTTCGGATGACTATTTCCAACTGAGACAGTAACGACTC
CGCCGAACAGGTCCAAGTATCTTTTGCCCTCGTGGTCGAAGAGCCACTGCATGTGACCCT
GGTGTAATAGCACCGGCTTCTTGTAAGAATTAGGTATCGCTGGCGGCATATGTTTCGACT
TCAAATGTTCCAGTTGTTCGTATGTTGGGCCCTTATACTCTTTGGGTGTAAACCCGGTGG
AGGGCATTTTAGCTGTACTATACGCCCTGCCAACCACATTGCACAGTCGTCCTCTATTGG
CCATTTAAACAGAATGTGCTATCACTACCGTACG
(3154 bp)

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