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Last updated: 2022/11/18
NameA_BomoFB_comp10085_c0_seq1
Scaffold_idBomo_Chr25
NCBI non-redundant
(nr)
PREDICTED:_alpha-mannosidase_2_[Papilio_xuthus]
Ontology
GO:0000139 C Golgi membrane
GO:0003824 F catalytic activity
GO:0004553 F hydrolase activity, hydrolyzing O-glycosyl compounds
GO:0004559 F alpha-mannosidase activity
GO:0004572 F mannosyl-oligosaccharide 1,3-1,6-alpha-mannosidase activity
GO:0005783 C endoplasmic reticulum
GO:0005794 C Golgi apparatus
GO:0005795 C Golgi stack
GO:0005975 P carbohydrate metabolic process
GO:0006013 P mannose metabolic process
GO:0006486 P protein glycosylation
GO:0006487 P protein N-linked glycosylation
GO:0006491 P N-glycan processing
GO:0006517 P protein deglycosylation
GO:0008152 P metabolic process
GO:0008270 F zinc ion binding
GO:0015923 F mannosidase activity
GO:0016020 C membrane
GO:0016021 C integral component of membrane
GO:0016063 P rhodopsin biosynthetic process
GO:0016787 F hydrolase activity
GO:0016798 F hydrolase activity, acting on glycosyl bonds
GO:0030246 F carbohydrate binding
GO:0035010 P encapsulation of foreign target
GO:0046872 F metal ion binding
Transcript
Level
FPKM:6.21 TPM:6.81
ORF EntryO_BomoFB11703_complete:A_BomoFB_comp10085_c0_seq1
Sequence
(Nucleotide)
GGATGACGTGTATTATAGCTTTTATTTTTATTTTATACGTGATGACAGACTTAAGTTTTA
ATTTACCTAGTGTTAAACCAGCGATAAACATAGATGAGAACAAGTGGTCTGCCTTTGAAT
CAAAATTACGTCATATTGAAAATGAACTTGATCAACATCATGCTGTTGTTGGTGAAATAA
AATCAGCCATGAGCCAAATTATAGAACAGTCAAATGAATATCACCCGCCACAGAAAAGAC
CAAGGCAAATGGAGAAAAACAAAAAAATAAGAGAGTTCAAAGTAGTAGGAGATGAGCCAC
CAAGGATGCACATAAAATTGAATGAATCAACTTGTCCCATTCAGAAATACTCAGTTCCAA
AAACTGATGTGCAGATGTTATCCTTGTATGAAAGGATTATGTTTGATGACAAAGATGGAG
GTGTTTGGAAACAAGGATGGAATATAGAATACAATGAAAACCAATGGAGTCAGAAAAACA
AATTGAAAGTTTTTATTGTACCACATTCACACAATGACCCAGGTTGGTTAAAAACCTTCG
AAAATTATTACAAGTCACAAACAAGAGCAATATTCAATAATATGATAGAGAAATTGAACG
AGGGTGTAGGGCGTAAGTTTATATGGGCCGAAATAAGTTTTCTATCGCTGTGGTGGAATA
ACGATGCTACTGAGAAAGACAAGACTGCTTTCCTGAATTTATTGAAATCAAAGAAACTTG
AAATCGTGACAGGCGGATGGGTTATGAACGACGAGGCAAATTCACATTGGCTGTCTGTAG
TGCAACAATTGACCACCGGACATCAGTGGCTACTCGACAATTTGGGATATGTACCCAAAA
ACGCATGGTCCATTGATCCGTTCGGTTATTCCAGCGCGCAACCCTACCTCCTCAAGATAG
CCGGTTTCGATAATTCCATGATACAGAGGGTACACTATAGAATTAAGAAAGAATTGGCTT
CGAATAGACAGTTGGAATTTAGATGGAGACAGTTATGGGATGGTGTTGGGAAAACTGATA
TGTTCACACATTTGTTCCCGTTTTATTCGTACGATGTTCCTCACTCGTGCGGTCCGGATC
CTAAGATATGTTGTCAATTTGATTTCAAACGTCTACCCGGTAACGGGGTTACTTGTCCGT
GGGGCGTTGCACCTCAGAGGATAACCCAGAAGAATGTGGATGAAAGAGCGTTCAAGATAT
TAGATCAGTGGAGGAAGAAGGCTCAACTCTACAGAAGTAACGTGTTGTTCTTCCCTCTCG
GTGACGACTTCCGGTACGACCACGCCAACGAGTGGGACAATCAGTACCAGAACTACGACA
TGCTGATAGAGTACATCAACAGTAACGATGCTTGGAACACTGAGGTACAATACGGTACAC
TCGAAGATTACTTCAAAGCATTACACGATGAAGTGAAATTATCAAACTTTCCGGTTCTGT
CCGGGGACTTTTTCACGTACGCCGATCGGAACCAGCACTACTGGAGCGGGTACTACACCT
CCAGACCGTTTTATAAGAACATGGATAGAGTTTTACTGGCCTATGTCAGGGCAGCCGAAA
TAATAACAGCTCAAGCGACGGACACGCATGCTGTGTCGTACATAATGTCGCTTCAGCTGA
GGGACCGGGTCGAGCAGGCCCGCAGGTCGCTCTCCCTGTTCCAGCATCACGACGGCATCA
CCGGCACCTCCAGGGACGAGGTCAGGGAGGACTACGCCAAGAAGATGCTAACAGCAATAA
AATACAGTCAATCCGCCATCCAACAAGCTGCCTACTACTTGCTGAAGCAGCCGCATATAC
AGGATCAAACGCAAGAGGACATATTCCTCGATGTGGACGACATCTGGCGGCGGCACGACG
AAATACCCTCCAGGATCACGATTGCCTTGGACGTGGTGTCTCCTTCCAGGCGCCTCGTGC
TTTACAACGCGCTGGCGTTCAGAAGACAAGAAATATTAACAGTGCTAGTGTCAACCCCGC
ACGTTGAAGTTTTTGATCCAGAGGGTGAACCGATAATGGCACAAGTATCCCCCGTGGTGG
CAGGGGAGAGGCGTCTGGGTCTCGCCAACAATAAGTACCAGCTGTCCTTCCCGGTCACCA
TCGGACCTCTCGCTTTAACCGTCTATTCGGTGTCACTGAGGGACGCGATGAGTATCAACA
AGTACACGTCATTCTCTCACGTCCGTATATACAACGCGGACTACTGGAGCGTGGTTCTAC
CGAAGATATTCCCGATCGAGCAGCCGTCGGCGCGACTCAACGAGGACGTGAGCTTCCAGG
CGGGGAACAGCACCAGGGTCGTCACCAACATGAACGGGCTCGTCAAAACCATTGTGTCGA
GGGACGGAGTGGCCACACCCGTGCACATGGACTTCGTGCAGTACGACACGCAGAAGGGGC
GGGACAACAACAGCGGAGCCTACCTGTTCATACCGAGCGGGCCCGCCAAGGACTTCAAGT
CGGATCCGTACCCCGAGATCGTGGTCACCGAAGGCATACACAAGTCCACGCTCTACGCCG
CCCTCGTCGGACCCAAAACCGCAGAAATTATACTCTCTGTGACGGTGTACAACAACCCGT
CGCTTCCGCACGCCGAGCTGGAGGTCAGCAGCGCGCTGCTCATCGACCCGCAGGTGGACG
ACCTGGAGCTGGCGCTGCGGCTATCCACTAGCGTCCGGAACGGAGACGTCTTCTACACAG
ACTTAAATGGGATGCAGATGATAAAACGTCGTTACTTCGAGAAGATTCCGCTGCAGGCGA
ACTTTTATCCGCTGCCCGCCGCCGCCTACATCGAGGACGAGAACATCAGGTTCACGGTGC
TCACTTCCACTCCGTTAGGAATGGCTGCCTTACAGCCGGGACAAATTGAGGTGATGCAAG
ACAGGCGCCTGAGCAGAGACGACAACCGAGGCATGAACCAAGGCGTGTTGGACAACGTGA
GGACGCGCCACACATTCAGGCTCATAGCGGAGCCGGCCCTCGGGCACTGCGCCAAGCCGC
CGTCTGATCACCCAAGCGGGTGGCTGACGCTGGGTAGTCACGTGTCGCAGCAGATGCTCC
TGCAGCCGCCGCTCGTGCTGCACTACACGCCGCGCGGAGACGAGCCCCGCCCCAACTACC
AGAGGGCCTCCGTCAACGCCGCCGACATCGTGCTGGCCTCCTACAGAACCCACACCACCA
CTAAGAAGGAAGGCACGAATTTACACGGGATGGGGCTGACGTTCCAAAGGGTAGCCCTCG
ACACGTGCTACGGTCACAAGGACACCGTCGAAGCGTATCCGCTAAGTGACGGACAGTTCC
GTCTGTCAGATTTGATAGACGTGAAATCAGATCGTGTTTACGAAAGCACGTTGACTTTCA
ATCAGATAGACAAGCAAGTGTTAGACGGAATCATCACGCTGTGCCCCATGGAGATCCGAT
CCGTGTTCGTCAATCAAACTATAAGGAACGGATGAAATTAAATAACATTTAGTGTAATTA
TGTTAATACTTTTGTTGTTACTTTATTATTATATCGACGGACGAAAGACTTGTGCGACAT
GTGATTGCGATGTTTATAATTTAAGTTTACAGGAGAGCCATTTAGAGGTTGAAATTTTGA
AAAAAATATCATAACAAATTAATTCTTCAGCTATTTGAATGGGATTGGCTTAATTAAATT
TCAATTGAAACATCGAACTATTGATGTTAATCTATACATATAAATAAAATTAGAGTGTCT
GTTTGCAGTATTGAAATAACCGCTTTTTACTAAATGCATATACGG
(3765 bp)

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