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ASPNIDRAFT_46605-T1, ASPNIDRAFT_46605-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_46605-T1
Unique NameASPNIDRAFT_46605-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000004.1:1686357..1689307+

Legend: exonpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_46605-T1 ID=ASPNIDRAFT_46605-T1|Name=ASPNIDRAFT_46605-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=2951bp|location=Sequence derived from alignment at ACJE01000004.1:1686357..1689307+ (Aspergillus niger ATCC 1015)
ATGGTCTTCCTACGTCTACGAGTCAAGGTCTACCCGCGCGAGCAGGTTGC GCCTACGCCATCTTTCTCCTTCCGCTCGATCCTCGGTGATCGCGATCGCG ATCGCGATGACGCTAGCCGCGGTACTAACGGCTCGAGCGGAGGCAAACCG GTGGCCTTTCTGCTTGTGCTTGAGAAACCCGAGGATATTACGCTGGGTGG ACTGGCCGGGTTGATTCAGGATAAGTGGAGGAAGTTGAGACCTAATGCGG AGTAAGTGCATTGCTATCTGGCTTGTCTACTCTGTCGTACTTGGCATACG TTACGTGTAATACAGACGGATTGGCTAAATCGCGTCACGTTAGACCTCTG GACATCAAGAAACTCCTCGACGACGATCATGAATCCGACGACCTCGATGC CGATATGACTGTCGCGGAAGTGTTTGTCGATAATGGCAGAGCTCGGCAGG ATTTGTCCGACCAGCGGGGTACTGTCCGTGTGATACAGAAGCCTGGTCAA TATGCCCCTGTGCGGTTCCCCTCCGTCACTCAGGACTGGGATGCCGCTGC GCAAAACTTTGAGCGCCAGATCCAGGTCAAGAAGGAGGCTGTAAAGAAGG CGATGGATCAGATCCCGACCATTCATGAAGAAGAGAATAATGAATATTCG AATGCTGGTTCTGTTAGTGCACGGTCGTCTGCGTGGAGTCCCTATGAGAA CCGTCGGTCTGAAATCCCCGTTTCGTCTGTGGAAAAGGATGAGGTCCCAG GCTCGCCTGCGCCTTGGGATAAGAAGCCAGTACTGCATGAGGAGGATTCT CAGAATCAGGTTGGCAGCAGTATTGCGGCTACACCTTTGCATAAGCGCAT GCAGAGCCAGGAATTGGGGGACTCCCCATCGCACACCCCGACGCCTGAAG AGCGCGCTGCGTCTAGACACAATTCCTCGCAAGGTTCCGCAAGACAGCCG GTCAAGGAGGCGACGGAATCGAAAGCTAATGGCTCGCACGAGATGGAGAG TATCGATGGATCTCTGTCGCCCTTGAGTACTCGGAAACCACCCCAGCGGC GACAAGTACCCGAACCCCAGCCGCCAGCCCCAGTTGTTGATGTTGACAGC GAGAGCGAGAGTGAGAGCGAAGACGAGAGCGAGGATGAGACAGGAGACGA AAATAACGAGAACGTGGCTCCCCCGTCTGCTCAGAAGAATAAGCTCCAGA ATGGTGATGTCGAAATGCATGATACGGTGGAATCTACGGAGGAACAGCCA CAGTCGAGTAACAGCAACTCGCGCAAGAGAAAATTGAGCCAGGACAGCTT CGAACCGAGCAAAGAGCCCCGCCTTTCTGAGCCAGGAAGCACGCATGCTA CGCCCAAGGGCATCAAAGACAGCATGGTAACAGTTGAGGTGAGTCCGTAT ACTCCAAGCAAGCGCGCGCGAGCCCCATCATTTGGATTTAGCCCCCGCCG AAGCTTCTTAATGCGTGCCCCATCCGCACCCCCAAAGCATGGTCTAGGCT TGGGAATCACAAGAAGCCCTCCAAACAACCGACTTACACGCTATTTGACC CAGGACTCGGCCATCCCCCCACCCAACTTTCTGGCCCCTAATGGTACCCC GGAGATTCCCAGTAGCGCCCCTACTATTCGCCGTGGCTCAGTATCGCTTG CCCCGTACTCCACACCGTCGAAGGCCCAGGCCCCACTCGACAAAGTCAAG AACCTGCACTCGGCCTTGCGTAAGAGCTCCCCGGCTGAACGGCCGTCCGA ACGACGATCAGTATCGTTCGCTGAGTCAGACGAGGTAGTGTTTGCCGGGT CTCAGCCAGTGCCAAAGTCGAACCCTCAGAGTACCTCTAAATCTCGAGCC AAGAGTTCAGACCCCGATAGGAGGACGTCCGACCCAAGCTCCATGGTCTT CCCTGCTTCTGTGCCCAAAGAGCGGCTGGACCAGCTCATGGAAGAAGCAA ACCGGAAGATTGAGCAGGATAAACAATACGAGGAGAAGTTGCAGGCTAAG CTCCAGACCGCACGCGAGCAGAAAGCTGGTGCTCAGTATATTCGCAAGCT ACAGGAACTGACGGACGCATGGATGGCTCTCAAGAAGGCTGAAAAGCACC AAAAGACGAAAACCGTAGCTCAGCGTAAGTACGATACACTTCAGAAAGAG GTCGACAGGCTTGAGGCTACGCAGAAACCCAAGCCAGCTTCTGCTACACC ACAGAAGAAACAGCAATCCACGACACCACGTACTCAGCCCACTGATGCCG CCAAATTGCCGACGCCGCATGACGCGAAATCTGCGAGTGGCAGCAAATCT CCAGCTTCGGAAAGCCATACTCAGCCTCAGAAGACTTCTCCGATGCAGAT GCGGACCAGGTCAGCTAGCAAGCTGGACGCTTCCCCGAAGATTGTCCCCA GCGAGCCTCAGAGCTCCTTTGCTTCCGACAACCTGGACCTGCCACCCATG GACCGAACCGTTCACAGAGCTGGCTCGTCCAAACCCAGCGGAACACCAGT TCGTGCAAGCACGGTAAAATCGCCCGAAAAGGCTCCTAAGCCGTCTCCGC AGGCACCAATCGAGTTGTCGTCTGATTCAGAAGAGTCCGAGGAATCGGAT TCGGAATCCGAGTCGGAGTCGGAGTCCGAGGAAGAGGAAGAGAAGAAGCC TGCGATCCGTCAAACAGCGTCATCACCAGTGAAAGCCAACACCGCAACAC CTTCCCAAGTGCCAGCCTCGCAACCAGCTCCGTCGCAAACATGGGCACGT CCTTCAAGTGCGACGCGCACGACGCGCACGACGCTAAAGTCATTGATCCA GAACCAGAAGAAGGAGCTGGAAGCGAAGACGCAGCCGAAACGCGCAGCGA ACTCGCAACCCCAGAAGCGAAGCGTGTACTCGCCGCCATCTGATGACAGT GAAAGCGAGAGCGAGAGCGAGAGTAGCAGCAGCGACAGTGACAGTGATTG A
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Coding sequence (CDS) from alignment at ACJE01000004.1:1686357..1689307+

>ASPNIDRAFT_46605-T1 ID=ASPNIDRAFT_46605-T1|Name=ASPNIDRAFT_46605-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=8343bp|location=Sequence derived from alignment at ACJE01000004.1:1686357..1689307+ (Aspergillus niger ATCC 1015)
ATGGTCTTCCTACGTCTACGAGTCAAGGTCTACCCGCGCGAGCAGGTTGC
GCCTACGCCATCTTTCTCCTTCCGCTCGATCCTCGGTGATCGCGATCGCG
ATCGCGATGACGCTAGCCGCGGTACTAACGGCTCGAGCGGAGGCAAACCG
GTGGCCTTTCTGCTTGTGCTTGAGAAACCCGAGGATATTACGCTGGGTGG
ACTGGCCGGGTTGATTCAGGATAAGTGGAGGAAGTTGAGACCTAATGCGG
AACCTCTGGACATCAAGAAACTCCTCGACGACGATCATGAATCCGACGAC
CTCGATGCCGATATGACTGTCGCGGAAGTGTTTGTCGATAATGGCAGAGC
TCGGCAGGATTTGTCCGACCAGCGGGGTACTGTCCGTGTGATACAGAAGC
CTGGTCAATATGCCCCTGTGCGGTTCCCCTCCGTCACTCAGGACTGGGAT
GCCGCTGCGCAAAACTTTGAGCGCCAGATCCAGGTCAAGAAGGAGGCTGT
AAAGAAGGCGATGGATCAGATCCCGACCATTCATGAAGAAGAGAATAATG
AATATTCGAATGCTGGTTCTGTTAGTGCACGGTCGTCTGCGTGGAGTCCC
TATGAGAACCGTCGGTCTGAAATCCCCGTTTCGTCTGTGGAAAAGGATGA
GGTCCCAGGCTCGCCTGCGCCTTGGGATAAGAAGCCAGTACTGCATGAGG
AGGATTCTCAGAATCAGGTTGGCAGCAGTATTGCGGCTACACCTTTGCAT
AAGCGCATGCAGAGCCAGGAATTGGGGGACTCCCCATCGCACACCCCGAC
GCCTGAAGAGCGCGCTGCGTCTAGACACAATTCCTCGCAAGGTTCCGCAA
GACAGCCGGTCAAGGAGGCGACGGAATCGAAAGCTAATGGCTCGCACGAG
ATGGAGAGTATCGATGGATCTCTGTCGCCCTTGAGTACTCGGAAACCACC
CCAGCGGCGACAAGTACCCGAACCCCAGCCGCCAGCCCCAGTTGTTGATG
TTGACAGCGAGAGCGAGAGTGAGAGCGAAGACGAGAGCGAGGATGAGACA
GGAGACGAAAATAACGAGAACGTGGCTCCCCCGTCTGCTCAGAAGAATAA
GCTCCAGAATGGTGATGTCGAAATGCATGATACGGTGGAATCTACGGAGG
AACAGCCACAGTCGAGTAACAGCAACTCGCGCAAGAGAAAATTGAGCCAG
GACAGCTTCGAACCGAGCAAAGAGCCCCGCCTTTCTGAGCCAGGAAGCAC
GCATGCTACGCCCAAGGGCATCAAAGACAGCATGGTAACAGTTGAGGTGA
GTCCGTATACTCCAAGCAAGCGCGCGCGAGCCCCATCATTTGGATTTAGC
CCCCGCCGAAGCTTCTTAATGCGTGCCCCATCCGCACCCCCAAAGCATGG
TCTAGGCTTGGGAATCACAAGAAGCCCTCCAAACAACCGACTTACACGCT
ATTTGACCCAGGACTCGGCCATCCCCCCACCCAACTTTCTGGCCCCTAAT
GGTACCCCGGAGATTCCCAGTAGCGCCCCTACTATTCGCCGTGGCTCAGT
ATCGCTTGCCCCGTACTCCACACCGTCGAAGGCCCAGGCCCCACTCGACA
AAGTCAAGAACCTGCACTCGGCCTTGCGTAAGAGCTCCCCGGCTGAACGG
CCGTCCGAACGACGATCAGTATCGTTCGCTGAGTCAGACGAGGTAGTGTT
TGCCGGGTCTCAGCCAGTGCCAAAGTCGAACCCTCAGAGTACCTCTAAAT
CTCGAGCCAAGAGTTCAGACCCCGATAGGAGGACGTCCGACCCAAGCTCC
ATGGTCTTCCCTGCTTCTGTGCCCAAAGAGCGGCTGGACCAGCTCATGGA
AGAAGCAAACCGGAAGATTGAGCAGGATAAACAATACGAGGAGAAGTTGC
AGGCTAAGCTCCAGACCGCACGCGAGCAGAAAGCTGGTGCTCAGTATATT
CGCAAGCTACAGGAACTGACGGACGCATGGATGGCTCTCAAGAAGGCTGA
AAAGCACCAAAAGACGAAAACCGTAGCTCAGCGTAAGTACGATACACTTC
AGAAAGAGGTCGACAGGCTTGAGGCTACGCAGAAACCCAAGCCAGCTTCT
GCTACACCACAGAAGAAACAGCAATCCACGACACCACGTACTCAGCCCAC
TGATGCCGCCAAATTGCCGACGCCGCATGACGCGAAATCTGCGACTAGCA
AGCTGGACGCTTCCCCGAAGATTGTCCCCAGCGAGCCTCAGAGCTCCTTT
GCTTCCGACAACCTGGACCTGCCACCCATGGACCGAACCGTTCACAGAGC
TGGCTCGTCCAAACCCAGCGGAACACCAGTTCGTGCAAGCACGGTAAAAT
CGCCCGAAAAGGCTCCTAAGCCGTCTCCGCAGGCACCAATCGAGTTGTCG
TCTGATTCAGAAGAGTCCGAGGAATCGGATTCGGAATCCGAGTCGGAGTC
GGAGTCCGAGGAAGAGGAAGAGAAGAAGCCTGCGATCCGTCAAACAGCGT
CATCACCAGTGAAAGCCAACACCGCAACACCTTCCCAAGTGCCAGCCTCG
CAACCAGCTCCGTCGCAAACATGGGCACGTCCTTCAAGTGCGACGCGCAC
GACGCGCACGACGCTAAAGTCATTGATCCAGAACCAGAAGAAGGAGCTGG
AAGCGAAGACGCAGCCGAAACGCGCAGCGAACTCGCAACCCCAGAAGCGA
AGCGTGTACTCGCCGCCATCTGATGACAGTGAAAGCGAGAGCGAGAGCGA
GAGTAGCAGCAGCGACAGTGACAGTGATTGAATGGTCTTCCTACGTCTAC
GAGTCAAGGTCTACCCGCGCGAGCAGGTTGCGCCTACGCCATCTTTCTCC
TTCCGCTCGATCCTCGGTGATCGCGATCGCGATCGCGATGACGCTAGCCG
CGGTACTAACGGCTCGAGCGGAGGCAAACCGGTGGCCTTTCTGCTTGTGC
TTGAGAAACCCGAGGATATTACGCTGGGTGGACTGGCCGGGTTGATTCAG
GATAAGTGGAGGAAGTTGAGACCTAATGCGGAACCTCTGGACATCAAGAA
ACTCCTCGACGACGATCATGAATCCGACGACCTCGATGCCGATATGACTG
TCGCGGAAGTGTTTGTCGATAATGGCAGAGCTCGGCAGGATTTGTCCGAC
CAGCGGGGTACTGTCCGTGTGATACAGAAGCCTGGTCAATATGCCCCTGT
GCGGTTCCCCTCCGTCACTCAGGACTGGGATGCCGCTGCGCAAAACTTTG
AGCGCCAGATCCAGGTCAAGAAGGAGGCTGTAAAGAAGGCGATGGATCAG
ATCCCGACCATTCATGAAGAAGAGAATAATGAATATTCGAATGCTGGTTC
TGTTAGTGCACGGTCGTCTGCGTGGAGTCCCTATGAGAACCGTCGGTCTG
AAATCCCCGTTTCGTCTGTGGAAAAGGATGAGGTCCCAGGCTCGCCTGCG
CCTTGGGATAAGAAGCCAGTACTGCATGAGGAGGATTCTCAGAATCAGGT
TGGCAGCAGTATTGCGGCTACACCTTTGCATAAGCGCATGCAGAGCCAGG
AATTGGGGGACTCCCCATCGCACACCCCGACGCCTGAAGAGCGCGCTGCG
TCTAGACACAATTCCTCGCAAGGTTCCGCAAGACAGCCGGTCAAGGAGGC
GACGGAATCGAAAGCTAATGGCTCGCACGAGATGGAGAGTATCGATGGAT
CTCTGTCGCCCTTGAGTACTCGGAAACCACCCCAGCGGCGACAAGTACCC
GAACCCCAGCCGCCAGCCCCAGTTGTTGATGTTGACAGCGAGAGCGAGAG
TGAGAGCGAAGACGAGAGCGAGGATGAGACAGGAGACGAAAATAACGAGA
ACGTGGCTCCCCCGTCTGCTCAGAAGAATAAGCTCCAGAATGGTGATGTC
GAAATGCATGATACGGTGGAATCTACGGAGGAACAGCCACAGTCGAGTAA
CAGCAACTCGCGCAAGAGAAAATTGAGCCAGGACAGCTTCGAACCGAGCA
AAGAGCCCCGCCTTTCTGAGCCAGGAAGCACGCATGCTACGCCCAAGGGC
ATCAAAGACAGCATGGTAACAGTTGAGGTGAGTCCGTATACTCCAAGCAA
GCGCGCGCGAGCCCCATCATTTGGATTTAGCCCCCGCCGAAGCTTCTTAA
TGCGTGCCCCATCCGCACCCCCAAAGCATGGTCTAGGCTTGGGAATCACA
AGAAGCCCTCCAAACAACCGACTTACACGCTATTTGACCCAGGACTCGGC
CATCCCCCCACCCAACTTTCTGGCCCCTAATGGTACCCCGGAGATTCCCA
GTAGCGCCCCTACTATTCGCCGTGGCTCAGTATCGCTTGCCCCGTACTCC
ACACCGTCGAAGGCCCAGGCCCCACTCGACAAAGTCAAGAACCTGCACTC
GGCCTTGCGTAAGAGCTCCCCGGCTGAACGGCCGTCCGAACGACGATCAG
TATCGTTCGCTGAGTCAGACGAGGTAGTGTTTGCCGGGTCTCAGCCAGTG
CCAAAGTCGAACCCTCAGAGTACCTCTAAATCTCGAGCCAAGAGTTCAGA
CCCCGATAGGAGGACGTCCGACCCAAGCTCCATGGTCTTCCCTGCTTCTG
TGCCCAAAGAGCGGCTGGACCAGCTCATGGAAGAAGCAAACCGGAAGATT
GAGCAGGATAAACAATACGAGGAGAAGTTGCAGGCTAAGCTCCAGACCGC
ACGCGAGCAGAAAGCTGGTGCTCAGTATATTCGCAAGCTACAGGAACTGA
CGGACGCATGGATGGCTCTCAAGAAGGCTGAAAAGCACCAAAAGACGAAA
ACCGTAGCTCAGCGTAAGTACGATACACTTCAGAAAGAGGTCGACAGGCT
TGAGGCTACGCAGAAACCCAAGCCAGCTTCTGCTACACCACAGAAGAAAC
AGCAATCCACGACACCACGTACTCAGCCCACTGATGCCGCCAAATTGCCG
ACGCCGCATGACGCGAAATCTGCGACTAGCAAGCTGGACGCTTCCCCGAA
GATTGTCCCCAGCGAGCCTCAGAGCTCCTTTGCTTCCGACAACCTGGACC
TGCCACCCATGGACCGAACCGTTCACAGAGCTGGCTCGTCCAAACCCAGC
GGAACACCAGTTCGTGCAAGCACGGTAAAATCGCCCGAAAAGGCTCCTAA
GCCGTCTCCGCAGGCACCAATCGAGTTGTCGTCTGATTCAGAAGAGTCCG
AGGAATCGGATTCGGAATCCGAGTCGGAGTCGGAGTCCGAGGAAGAGGAA
GAGAAGAAGCCTGCGATCCGTCAAACAGCGTCATCACCAGTGAAAGCCAA
CACCGCAACACCTTCCCAAGTGCCAGCCTCGCAACCAGCTCCGTCGCAAA
CATGGGCACGTCCTTCAAGTGCGACGCGCACGACGCGCACGACGCTAAAG
TCATTGATCCAGAACCAGAAGAAGGAGCTGGAAGCGAAGACGCAGCCGAA
ACGCGCAGCGAACTCGCAACCCCAGAAGCGAAGCGTGTACTCGCCGCCAT
CTGATGACAGTGAAAGCGAGAGCGAGAGCGAGAGTAGCAGCAGCGACAGT
GACAGTGATTGAATGGTCTTCCTACGTCTACGAGTCAAGGTCTACCCGCG
CGAGCAGGTTGCGCCTACGCCATCTTTCTCCTTCCGCTCGATCCTCGGTG
ATCGCGATCGCGATCGCGATGACGCTAGCCGCGGTACTAACGGCTCGAGC
GGAGGCAAACCGGTGGCCTTTCTGCTTGTGCTTGAGAAACCCGAGGATAT
TACGCTGGGTGGACTGGCCGGGTTGATTCAGGATAAGTGGAGGAAGTTGA
GACCTAATGCGGAACCTCTGGACATCAAGAAACTCCTCGACGACGATCAT
GAATCCGACGACCTCGATGCCGATATGACTGTCGCGGAAGTGTTTGTCGA
TAATGGCAGAGCTCGGCAGGATTTGTCCGACCAGCGGGGTACTGTCCGTG
TGATACAGAAGCCTGGTCAATATGCCCCTGTGCGGTTCCCCTCCGTCACT
CAGGACTGGGATGCCGCTGCGCAAAACTTTGAGCGCCAGATCCAGGTCAA
GAAGGAGGCTGTAAAGAAGGCGATGGATCAGATCCCGACCATTCATGAAG
AAGAGAATAATGAATATTCGAATGCTGGTTCTGTTAGTGCACGGTCGTCT
GCGTGGAGTCCCTATGAGAACCGTCGGTCTGAAATCCCCGTTTCGTCTGT
GGAAAAGGATGAGGTCCCAGGCTCGCCTGCGCCTTGGGATAAGAAGCCAG
TACTGCATGAGGAGGATTCTCAGAATCAGGTTGGCAGCAGTATTGCGGCT
ACACCTTTGCATAAGCGCATGCAGAGCCAGGAATTGGGGGACTCCCCATC
GCACACCCCGACGCCTGAAGAGCGCGCTGCGTCTAGACACAATTCCTCGC
AAGGTTCCGCAAGACAGCCGGTCAAGGAGGCGACGGAATCGAAAGCTAAT
GGCTCGCACGAGATGGAGAGTATCGATGGATCTCTGTCGCCCTTGAGTAC
TCGGAAACCACCCCAGCGGCGACAAGTACCCGAACCCCAGCCGCCAGCCC
CAGTTGTTGATGTTGACAGCGAGAGCGAGAGTGAGAGCGAAGACGAGAGC
GAGGATGAGACAGGAGACGAAAATAACGAGAACGTGGCTCCCCCGTCTGC
TCAGAAGAATAAGCTCCAGAATGGTGATGTCGAAATGCATGATACGGTGG
AATCTACGGAGGAACAGCCACAGTCGAGTAACAGCAACTCGCGCAAGAGA
AAATTGAGCCAGGACAGCTTCGAACCGAGCAAAGAGCCCCGCCTTTCTGA
GCCAGGAAGCACGCATGCTACGCCCAAGGGCATCAAAGACAGCATGGTAA
CAGTTGAGGTGAGTCCGTATACTCCAAGCAAGCGCGCGCGAGCCCCATCA
TTTGGATTTAGCCCCCGCCGAAGCTTCTTAATGCGTGCCCCATCCGCACC
CCCAAAGCATGGTCTAGGCTTGGGAATCACAAGAAGCCCTCCAAACAACC
GACTTACACGCTATTTGACCCAGGACTCGGCCATCCCCCCACCCAACTTT
CTGGCCCCTAATGGTACCCCGGAGATTCCCAGTAGCGCCCCTACTATTCG
CCGTGGCTCAGTATCGCTTGCCCCGTACTCCACACCGTCGAAGGCCCAGG
CCCCACTCGACAAAGTCAAGAACCTGCACTCGGCCTTGCGTAAGAGCTCC
CCGGCTGAACGGCCGTCCGAACGACGATCAGTATCGTTCGCTGAGTCAGA
CGAGGTAGTGTTTGCCGGGTCTCAGCCAGTGCCAAAGTCGAACCCTCAGA
GTACCTCTAAATCTCGAGCCAAGAGTTCAGACCCCGATAGGAGGACGTCC
GACCCAAGCTCCATGGTCTTCCCTGCTTCTGTGCCCAAAGAGCGGCTGGA
CCAGCTCATGGAAGAAGCAAACCGGAAGATTGAGCAGGATAAACAATACG
AGGAGAAGTTGCAGGCTAAGCTCCAGACCGCACGCGAGCAGAAAGCTGGT
GCTCAGTATATTCGCAAGCTACAGGAACTGACGGACGCATGGATGGCTCT
CAAGAAGGCTGAAAAGCACCAAAAGACGAAAACCGTAGCTCAGCGTAAGT
ACGATACACTTCAGAAAGAGGTCGACAGGCTTGAGGCTACGCAGAAACCC
AAGCCAGCTTCTGCTACACCACAGAAGAAACAGCAATCCACGACACCACG
TACTCAGCCCACTGATGCCGCCAAATTGCCGACGCCGCATGACGCGAAAT
CTGCGACTAGCAAGCTGGACGCTTCCCCGAAGATTGTCCCCAGCGAGCCT
CAGAGCTCCTTTGCTTCCGACAACCTGGACCTGCCACCCATGGACCGAAC
CGTTCACAGAGCTGGCTCGTCCAAACCCAGCGGAACACCAGTTCGTGCAA
GCACGGTAAAATCGCCCGAAAAGGCTCCTAAGCCGTCTCCGCAGGCACCA
ATCGAGTTGTCGTCTGATTCAGAAGAGTCCGAGGAATCGGATTCGGAATC
CGAGTCGGAGTCGGAGTCCGAGGAAGAGGAAGAGAAGAAGCCTGCGATCC
GTCAAACAGCGTCATCACCAGTGAAAGCCAACACCGCAACACCTTCCCAA
GTGCCAGCCTCGCAACCAGCTCCGTCGCAAACATGGGCACGTCCTTCAAG
TGCGACGCGCACGACGCGCACGACGCTAAAGTCATTGATCCAGAACCAGA
AGAAGGAGCTGGAAGCGAAGACGCAGCCGAAACGCGCAGCGAACTCGCAA
CCCCAGAAGCGAAGCGTGTACTCGCCGCCATCTGATGACAGTGAAAGCGA
GAGCGAGAGCGAGAGTAGCAGCAGCGACAGTGACAGTGATTGA
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Relationships

This mRNA is a part of the following gene feature(s):

Feature NameUnique NameSpeciesType
ASPNIDRAFT_46605ASPNIDRAFT_46605Aspergillus niger ATCC 1015gene


The following exon feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesType
ASPNIDRAFT_46605-T1.exon1ASPNIDRAFT_46605-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_46605-T1.exon2ASPNIDRAFT_46605-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_46605-T1.exon3ASPNIDRAFT_46605-T1.exon3Aspergillus niger ATCC 1015exon


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesType
ASPNIDRAFT_46605-T1.cdsASPNIDRAFT_46605-T1.cdsAspergillus niger ATCC 1015CDS


The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesType
ASPNIDRAFT_46605-T1ASPNIDRAFT_46605-T1-proteinAspergillus niger ATCC 1015polypeptide


Properties
Property NameValue
NoteEggNog:ENOG41
DBxrefInterPro:IPR018844
DBxrefPFAM:PF10407
Producthypothetical protein
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Aspergillus niger ATCC 1015 whole genome analysis2021-11-01
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
ACJE01000004.1supercontigACJE01000004.1:1686357..1689307 +