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Last updated: 2022/11/18
NameA_BomoEE_comp64000_c0_seq2
Scaffold_idBomo_Chr17
NCBI non-redundant
(nr)
PREDICTED:_probable_aconitate_hydratase,_mitochondrial_[Papilio_xuthus]
Ontology
GO:0003994 F aconitate hydratase activity
GO:0005506 F iron ion binding
GO:0005634 C nucleus
GO:0005739 C mitochondrion
GO:0006099 P tricarboxylic acid cycle
GO:0006101 P citrate metabolic process
GO:0008152 P metabolic process
GO:0016829 F lyase activity
GO:0043209 C myelin sheath
GO:0046872 F metal ion binding
GO:0051536 F iron-sulfur cluster binding
GO:0051539 F 4 iron, 4 sulfur cluster binding
Transcript
Level
FPKM:36.28 TPM:63.28
ORF EntryO_BomoEE10165_complete:A_BomoEE_comp64000_c0_seq2
Sequence
(Nucleotide)
ATTACCCCCACTACACCAAAACCAAAAGAATTTCGGAGTAAAAAATATAAAATTTTCTGA
ATTTGTACTAAATACATTTTGCATTACTAGTACCTTATGATCGTCTATAAATTGTGGATA
CGGAGACTGATACTTTTTGTTTTTTTGTGTTAAGTTTAATAGTAGCACTCATGCGCGAGT
ACTACCGTCATGCCCACTTCTGCGAACCAATCATTCGTACCGGTTTGAAATTTTCTTACA
TTACGTGTCAAGAAGCTCGGCTCTCCATGTCAGTACTAATTACTCGAAAGTTTTCCGAAA
TATAAACTTTGAGACTATATTTTTTTATACATTGATGGTCGCCGCATTCCTCCTAAAATA
AACAAAATTTATAAATGCTTCTTATTTGTTTATTCTACAAAGTAAACAGTCATTCCTTTC
AATAGAAAAATAAATAAAAAAAATGAAATGCTTAAAATGTCCGACGCCATTAAACACGGC
GCGGGCACAACTCTATATATATATATATTTATAAATATCGACTCAAACGACTTAAAACTA
AACCTTCAAGAAGAAAATCACAACATGTTTTAATTATTTTTAATCGTTATTTATTATTTC
TATACAAATAGAACTGTACAGATATTCTTTAAATTATTATTTACCACATTTCATCTGCTC
TCACGATAGACTTTTTACAAAAGTGAAAACTATCAACATCACGCACGGAATAAACGAGAT
CGCGCACTGTAACCGCTAACTAGTGTCCCGCGACGTCCTACATCCCTATGTACACACGCG
TCTCCGCACAAACACTTAGCTGCACGTCTCTACTCATATACAAGGACGCTTTCAACAACG
ATCTGTGCCCGGCGCTTGCTTCACCACTTCACAGACAGTACGAGTCAAATTCGAACATTT
GATACGACATTTTTTGGCTTTCAATTATAAATACCACATTCGTTTCGGCCAAAAAGTATT
GCGTCAAACTTGACGTGGTTCAAACGAGACCGCCAAGCAAAGCGAAGGGCACACATAGTT
TTTTTTTTTTTTTTGAAAATGCAAACATTATACTATGGTTTCACTGTATGGAAACGATGT
TTCGGTGTTGACATCGATCATTTTACGACGAACGCTTCTAATCTGGCAGTATGCACTGTG
GAGGTCTTTGCTAACGCTAACGTCATACGCTTTTACATCTAGAACATAACTAGCAATATC
ACATATTACAACATCATACAAAGTAATCATTAGTATGTTCAACCATTATGTTTACAATAA
ATTAGTTTTTTTTCATGTTTTTTTTTTTTTTTTTTAATAATAAGTAACGTTTATTTCGCA
GTACGGTAATTTATTTACATAAATAAAATCCATTTACGATGATTTTAATAATACATTCAT
GAAAATATTGCAACTTACACTAAATTCATCTATTTGTACTAATATAATTTAATAAGATTC
ACCGCTGTGACTAAGTATTGTCTGAGAAATGCGCTAATGTACTATTTGAACTATACGATG
ACACGCTTGCACTGGTTACATTTAATTCCTTTAAAACGATTACAATACAGCCGCGTAAAT
ACAATTTCACACATTAAGGCAACTCGGAACGCACCCAAACAATACGTTTAAGATTGCAGC
TATAATAATTCCTTAATTTTTAGATAGGTCCAATGCAAGCGTTAGTTTTAACACTAATTT
ATTTAGTTTCACTTTCCGGAAGCGATTTCCTTCATTCTGTTGAGCGCCGAGCCGGCCTTG
AACCAGTTGATCTGTTGGTCGTTCAACGAATGGTTGAGCTTGATGCGGTCGGTGCTGCCG
TCTTTGTGCTTAATTTCGCAGTCCACTGGCTTGCCGGGAGCGAGGCTGTTCAGTCCAAGG
AGTGAGATTTTATCGTCAGGCTTGATCTTGTCGTAGTCAGCGGCGTTGGCGAACGTGAGG
GGCAGCATACCTTGTTTCTTCAAGTTGGTCTCGTGGATTCTAGCGAACGACTTGACGATG
ATGGCGCGGCCGCCGAGGTGTCGCGGCTCGAGCGCGGCGTGCTCGCGGGACGAGCCCTCG
CCGTAGTTCTCGTCGCCGACGACGCACCAGCGCACGCCGGCCGCCTTGTACGCGCGCGCC
GTGGCGGGCACCGGCCCGTACTCGCCCGTCACCTGGTTGCGGACTTTGTTCAGCTCGCCG
TTCTCTGCGTTCGTTGCCGTAATAAACATGTTATTGGAGATGTTGTCGAGATGGCCTCTG
TACTTCAGCCAGGGTCCAGCCGCCGAGATGTGGTCGGTGGTGCACTTCCCCTTCACCTTG
ATCAGGATCGTGAGGTCGGTGAGGTCTTTGCCGTCCCACTTGTCGAACGGCTCGAGGAGT
TGAAGGCGGTCGGATGTCGGTGAGACGTCAACTTTCACTTTGGATCCGTCGGCGGGCGGG
TGCTCGTACGTGTCCTGTCCGGGGTCGAAGCCCTTGGAGGGGAGCTCGTCGGCAAACGGA
TCTGACAACTTGAATTTCTTTCCATCAGCGCCAGTCAGTTCGTCCTTCAGCGGGTTGAAG
TCAAGCCGGCCCGCGATGGACAGCGCCGTGACGAGCTCGGGGCTGGTGACGAAGCAGTGC
GTGGCGGGGTTGGCGTCGTTCCTGCCGGTGAAGTTGCGGTTGTATGACGTCACGATCGTG
TTCTTCTCCCCCTTCTTCACGTCCTTGCGGTCCCACTGGCCGATGCACGGGCCGCACGCG
TTCGCCAGCACGGTGCCTCCGAAGTCCCTGAGGGTCTTGGCGATGCCGTCCCTCTCGATG
GTGGCACGGACCTGCTCCGACCCGGGGGTCACGTTGAACGGAATCTTAGACTTCAGGCCG
TGACTGATCGCCTCTTTGACGATGCTGGCGCACCTGCCCATGTCTTCGTAGGAGGAGTTG
GTGCAGGACCCGATGAGGCCGACGCGGATGTCCACCGGCCAGTCGTTCTTCTTGGCCGCT
TCGCCGAGCTTCGAGATAGGGTTGGCGAGGTCCGGAGTGAAGGGCCCGTTCACGTGGGGC
TCCAGCGTGGACAGGTCGATCTCGATCAACTGGTCATAGGGTGCCTTGTTGTCGGGCGTG
AGCAGGTGCTTGTAGGAGTTGGCGGTGGCGGCGATGTCGTGGCGCCCGGTCGACTTAAGG
TAGGCTTCCATGCGGGAGTTGTACGGGAACACGCTAGTGGTAGCACCGATCTCAGCTCCC
ATGTTGCAGATTGTCGCCATGCCTGTACACGAGATGTGGTCCACCCCGGGTCCGTGGTAC
TCCACGATGGCGCCGGTACCTCCCTTCACAGTCAGGATGCCGGCCACCTTCAAGATCACA
TCTTTCGGACTCGTCCAGCCGGTGAGTTTACCGGTCAATTTGACGCCGATAACTTTAGGA
CACTTCAGCTCCCACGGGATGTTGGCCATTACGTCCACAGCATCAGCACCACCGACACCA
ATACACAATCCACCAAGGCCACCTCCATTAGGTGTGTGGGAGTCTGTGCCGATCATGAGT
AGACCAGGGAACGCATAGTTCTCCAGAATGATCTGATGGATAATACCAGAGCCGGGCTTC
CAGAAACCGACTCCATATTTAGCTCCGGCAGTCTCTAAAAACTTGTATACTTCTTTGTTG
AGGTCCTTAGCCCTGGCCAAATCCTTCTCGCCTCCGACTTGGGCTTCGATCAAGTGATCA
CAATGAATGGTGGACGGTACAGCTACACGGGGAAGGCCGGAAGAGATAAATTGTAACATT
GCCATTTGTGCAGTGGCGTCTTGCATGGCCACACGGTCGGGACGCAGGCGGAGATAACTT
GCGCCGCGTTCAATTTCCTGTCCTTTGGGGTCATCCAAGTGAGAATATAGGATTTTCTCA
GACAAGGTCAATTCTCTCCCTAGCCTCTTCTTAACCACCTCTAAATTCTTCGTCAACTTT
TCGTAAGGCAAGGGTACCTTGTCGAACTTGGACATCGCCACCTGGGCCGCGGCGGCGGTC
AATGGAGATACGCTGAAACATCTTTGTTGGATTTCAGAGAGTACCACCCTTGTCCTGCTA
CCCTGGCCATGCAAAACTCTCATACAGTGCGCCATGGTCGCCGGACTTCAGTATATTAAA
CGAATTAATTTAGAAAAATTTTAGAATCAAATAAACGAGTGCCACATGGGTCAATTTGAA
GTGATTTTCTTTTATTTTAGGGCCTGATCACACTGTACTTTCATCCACTGCAACACGTAA
CTTCTGAATCCATCAGATAAAAAACTTCTATCAGTTCTATCGCAGATAGAAAGTAAATTG
CCAAAAAAAT
(4270 bp)

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