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ASPNIDRAFT_139052-T1, ASPNIDRAFT_139052-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_139052-T1
Unique NameASPNIDRAFT_139052-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000004.1:752958..755650+

Legend: exonpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_139052-T1 ID=ASPNIDRAFT_139052-T1|Name=ASPNIDRAFT_139052-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=2693bp|location=Sequence derived from alignment at ACJE01000004.1:752958..755650+ (Aspergillus niger ATCC 1015)
ACAGTCAAGCAGTTTATCCGGAACGTGCGTTCGGCCAAGACAATCGCCGA TGAACGAGCAGTCATCCAAAAGGAGAGTGCGGCCATCCGTGCGTCGTTTA GGGAAGAGAGCCATGATTCGGGCATCCGGTTAGCATTGACACCGCCAACC TCTAGCAACACTCGAACCAGCTTCTCATTTATTTGCACAGGAGAAACAAT GTGGCTAAGCTTCTGTATTTATTCACCCTCGGTGAACGGACACACTTTGG TCAAATCGAATGTCTGAAGCTACTGGCCTCCCACCGTTTCGCCGACAAGC GCCTGGGATACTTGGGGACGATGCTGTTACTGGATGAGAACCAAGAAGTT TTGACGCTGGTAACAAACTCATTGAAGAAGTGAGTCTGTATTCAAGGTCG GCTTAGGGTCTCCTAGCTAATGTTTTGCAGTGACCTTAATCACTCCAACC AATATATCGTCGGCTTGGCCCTGTGCGCCCTGGGCAATATCGCCTCCGTC GAAATGTCTCGAGACCTTTTCCCCGAAGTCGAAAACCTAATGTCTACTGC AAATCCCTATATTCGGAGGAAGGCGGCACTGTGTGCTATGCGTGTATGTC GCAAGGTTCCCGACCTGCAGGAGCATTTCCTGGAGAAGGCAAAGACTCTT CTGTCAGACAGGAACCATGGTGTTCTGCTGTGCGGTTTAACACTCGCGAT TGACATGTGTGAAGCTGAGGAGGCGGAAGAAGGCCAGGAGGGGGTGATCG AGATGTTCCGGCCGTTGGCCGGTGGTCTTGTGCGCTCCCTAAAGGGGTTG ACCACCTCGGGATACGCTCCCGAACATGATGTCTCCGGTATCACCGATCC CTTCCTCCAAGTGAAGATACTGCGCCTTCTCAGAGTACTAGGAAGAGGGG ATGCGGCGACCAGCGAAATGATCAACGACATTCTGGCCCAGGTGGCCACT AACACGGATTCGACGAAGAACGTCGGCAACGCTATTCTCTACGAGGCTGT CCTGACCATTCTCGACATCGAAGCTGATTCAGGATTGAGAGTGCTAGGTG TTAACATTCTTGGAAAGTTCCTGACCAACAAGGACAACAATATTCGTTAC GTTGCTCTCAACACGCTGAACAAAGTTGTTGCAATTGAGCCCAATGCCGT CCAGCGGCACCGCAACACCATTCTGGAGTGTCTCCGTGACCCGGATATCA GTATAAGAAGACGTGCCCTTGATCTCAGCTTCATGTTGATCAATGAGAGT AATGTGCGTGTTCTTGTTCGAGAGCTGCTCGCTTTCCTGGAAGTTGCCGA CAACGAGTTCAAGCCAGCCATGACGACTCAAATTGGTATCGCTGCTGACC GATATGCCCCCAACAAACGCTGGCACGTTGACACTATTCTGCGAGTACTC AAGCTTGCTGGTGCCTATGTTAAGGAGCAGATACTCTCGTCCTTTGTTCG CCTCATAGCCACCACACCAGAGCTGCAGACCTACTCGGTGCAGAAGCTTT ATCTCTCATTGAAAGAAGACATCTCCCAAGAAGGCCTTACCCTTGCTGCT ACCTGGGTCATTGGCGAGTACGGTGATAACCTTCTCCAAGGTGGTCAATA TGAGGAAGAGGAGCTAGTTAAAGAGGTCAAAGAGAGCGACATCGTTGACC TGTTCACCAACATCCTCAATAGCACATACGCCACGCAAACAGTGGTGGAA TACATCACTACGGCCTCTATGAAGCTTACCGTGCGCATGTCTGATCCAGC ACAGGTTGAGCGGCTCCGTCGCTTCCTCAGCAGCCGGACTGCCGACCTGA GTGTTGAGATTCAACAGCGGGCTGTCGAGTACGTCAACCTGTTCGGCTAT GACCAGATTCGTCGTGGAGTTCTCGAACGCATGCCCCCGCCTGAGATACG TGAAGAACAAAGAGTCTTGGGTGCACCGACCAAGAAGCGTCAAAGCAAAA TCCTGAAAGACAAATCCAAGAAGCCTGCCAAGCAGGCTGAGCAGGACATG CTCCTGGACCTCATGGGCGGCGATGCTCCACCGACCAGCCCGACTACCAA CGGTTCCCAAAATACGGCTGATCTCTTGGCCGATATCCTCGGCGGCGATT CCAGCTTATCGTCACCTTCTCCCCAACCTGCGCAGAAGGCAGCAGGATCC ACCAATACCAGCGCTATCATGGACTTGTTCAACACTAATGGAAGCACGCC CTCTCCCAAACCTGCGGAGCCTGCATCTTCAGGCTTGGATCTTCTAGCAG GCTTGAGCTCTTCTGCCTCGCCCGCACCCACTCCTGCGCCGTCGGCGAAT CCTGCTCATACGGCCTTTAACAAGAACGACCTCTCCCTTGCCCTTCAAGT CCAACGTGGTAGCGGTGGAAGTGCGCAGATTCAGGCTCGTTTCCGCAACA ATTCAAGCTTTGGCCGCTTCTCCAATGTTGGATTGCAAGCAGCCGTGCCC AAGAGTCAGAAACTACAGCTAAGCGCGATCAACAAGGCTGATCTCGATGC TGGCGACGAAGGTATCCAGATGCTCAAAGTTGCAGCACTAACTGGGGTAA GTCAAAACCAACCGCGCCTTTTCTAATTGCCTTTGACTAATGTCCTGCAG GCCCTCCCACCTAAGCTCCGCCTTCGTCTCCGTATCACGTATGCCAAGGA TGGCTCTGATCCTGTAACAGACCAGGTAGACTGGACCGAGCCG
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Coding sequence (CDS) from alignment at ACJE01000004.1:752958..755650+

>ASPNIDRAFT_139052-T1 ID=ASPNIDRAFT_139052-T1|Name=ASPNIDRAFT_139052-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=10104bp|location=Sequence derived from alignment at ACJE01000004.1:752958..755650+ (Aspergillus niger ATCC 1015)
ACAGTCAAGCAGTTTATCCGGAACGTGCGTTCGGCCAAGACAATCGCCGA
TGAACGAGCAGTCATCCAAAAGGAGAGTGCGGCCATCCGTGCGTCGTTTA
GGGAAGAGAGCCATGATTCGGGCATCCGGAGAAACAATGTGGCTAAGCTT
CTGTATTTATTCACCCTCGGTGAACGGACACACTTTGGTCAAATCGAATG
TCTGAAGCTACTGGCCTCCCACCGTTTCGCCGACAAGCGCCTGGGATACT
TGGGGACGATGCTGTTACTGGATGAGAACCAAGAAGTTTTGACGCTGGTA
ACAAACTCATTGAAGAATGACCTTAATCACTCCAACCAATATATCGTCGG
CTTGGCCCTGTGCGCCCTGGGCAATATCGCCTCCGTCGAAATGTCTCGAG
ACCTTTTCCCCGAAGTCGAAAACCTAATGTCTACTGCAAATCCCTATATT
CGGAGGAAGGCGGCACTGTGTGCTATGCGTGTATGTCGCAAGGTTCCCGA
CCTGCAGGAGCATTTCCTGGAGAAGGCAAAGACTCTTCTGTCAGACAGGA
ACCATGGTGTTCTGCTGTGCGGTTTAACACTCGCGATTGACATGTGTGAA
GCTGAGGAGGCGGAAGAAGGCCAGGAGGGGGTGATCGAGATGTTCCGGCC
GTTGGCCGGTGGTCTTGTGCGCTCCCTAAAGGGGTTGACCACCTCGGGAT
ACGCTCCCGAACATGATGTCTCCGGTATCACCGATCCCTTCCTCCAAGTG
AAGATACTGCGCCTTCTCAGAGTACTAGGAAGAGGGGATGCGGCGACCAG
CGAAATGATCAACGACATTCTGGCCCAGGTGGCCACTAACACGGATTCGA
CGAAGAACGTCGGCAACGCTATTCTCTACGAGGCTGTCCTGACCATTCTC
GACATCGAAGCTGATTCAGGATTGAGAGTGCTAGGTGTTAACATTCTTGG
AAAGTTCCTGACCAACAAGGACAACAATATTCGTTACGTTGCTCTCAACA
CGCTGAACAAAGTTGTTGCAATTGAGCCCAATGCCGTCCAGCGGCACCGC
AACACCATTCTGGAGTGTCTCCGTGACCCGGATATCAGTATAAGAAGACG
TGCCCTTGATCTCAGCTTCATGTTGATCAATGAGAGTAATGTGCGTGTTC
TTGTTCGAGAGCTGCTCGCTTTCCTGGAAGTTGCCGACAACGAGTTCAAG
CCAGCCATGACGACTCAAATTGGTATCGCTGCTGACCGATATGCCCCCAA
CAAACGCTGGCACGTTGACACTATTCTGCGAGTACTCAAGCTTGCTGGTG
CCTATGTTAAGGAGCAGATACTCTCGTCCTTTGTTCGCCTCATAGCCACC
ACACCAGAGCTGCAGACCTACTCGGTGCAGAAGCTTTATCTCTCATTGAA
AGAAGACATCTCCCAAGAAGGCCTTACCCTTGCTGCTACCTGGGTCATTG
GCGAGTACGGTGATAACCTTCTCCAAGGTGGTCAATATGAGGAAGAGGAG
CTAGTTAAAGAGGTCAAAGAGAGCGACATCGTTGACCTGTTCACCAACAT
CCTCAATAGCACATACGCCACGCAAACAGTGGTGGAATACATCACTACGG
CCTCTATGAAGCTTACCGTGCGCATGTCTGATCCAGCACAGGTTGAGCGG
CTCCGTCGCTTCCTCAGCAGCCGGACTGCCGACCTGAGTGTTGAGATTCA
ACAGCGGGCTGTCGAGTACGTCAACCTGTTCGGCTATGACCAGATTCGTC
GTGGAGTTCTCGAACGCATGCCCCCGCCTGAGATACGTGAAGAACAAAGA
GTCTTGGGTGCACCGACCAAGAAGCGTCAAAGCAAAATCCTGAAAGACAA
ATCCAAGAAGCCTGCCAAGCAGGCTGAGCAGGACATGCTCCTGGACCTCA
TGGGCGGCGATGCTCCACCGACCAGCCCGACTACCAACGGTTCCCAAAAT
ACGGCTGATCTCTTGGCCGATATCCTCGGCGGCGATTCCAGCTTATCGTC
ACCTTCTCCCCAACCTGCGCAGAAGGCAGCAGGATCCACCAATACCAGCG
CTATCATGGACTTGTTCAACACTAATGGAAGCACGCCCTCTCCCAAACCT
GCGGAGCCTGCATCTTCAGGCTTGGATCTTCTAGCAGGCTTGAGCTCTTC
TGCCTCGCCCGCACCCACTCCTGCGCCGTCGGCGAATCCTGCTCATACGG
CCTTTAACAAGAACGACCTCTCCCTTGCCCTTCAAGTCCAACGTGGTAGC
GGTGGAAGTGCGCAGATTCAGGCTCGTTTCCGCAACAATTCAAGCTTTGG
CCGCTTCTCCAATGTTGGATTGCAAGCAGCCGTGCCCAAGAGTCAGAAAC
TACAGCTAAGCGCGATCAACAAGGCTGATCTCGATGCTGGCGACGAAGGT
ATCCAGATGCTCAAAGTTGCAGCACTAACTGGGGCCCTCCCACCTAAGCT
CCGCCTTCGTCTCCGTATCACGTATGCCAAGGATGGCTCTGATCCTGTAA
CAGACCAGGTAGACTGGACCGAGCCGACAGTCAAGCAGTTTATCCGGAAC
GTGCGTTCGGCCAAGACAATCGCCGATGAACGAGCAGTCATCCAAAAGGA
GAGTGCGGCCATCCGTGCGTCGTTTAGGGAAGAGAGCCATGATTCGGGCA
TCCGGAGAAACAATGTGGCTAAGCTTCTGTATTTATTCACCCTCGGTGAA
CGGACACACTTTGGTCAAATCGAATGTCTGAAGCTACTGGCCTCCCACCG
TTTCGCCGACAAGCGCCTGGGATACTTGGGGACGATGCTGTTACTGGATG
AGAACCAAGAAGTTTTGACGCTGGTAACAAACTCATTGAAGAATGACCTT
AATCACTCCAACCAATATATCGTCGGCTTGGCCCTGTGCGCCCTGGGCAA
TATCGCCTCCGTCGAAATGTCTCGAGACCTTTTCCCCGAAGTCGAAAACC
TAATGTCTACTGCAAATCCCTATATTCGGAGGAAGGCGGCACTGTGTGCT
ATGCGTGTATGTCGCAAGGTTCCCGACCTGCAGGAGCATTTCCTGGAGAA
GGCAAAGACTCTTCTGTCAGACAGGAACCATGGTGTTCTGCTGTGCGGTT
TAACACTCGCGATTGACATGTGTGAAGCTGAGGAGGCGGAAGAAGGCCAG
GAGGGGGTGATCGAGATGTTCCGGCCGTTGGCCGGTGGTCTTGTGCGCTC
CCTAAAGGGGTTGACCACCTCGGGATACGCTCCCGAACATGATGTCTCCG
GTATCACCGATCCCTTCCTCCAAGTGAAGATACTGCGCCTTCTCAGAGTA
CTAGGAAGAGGGGATGCGGCGACCAGCGAAATGATCAACGACATTCTGGC
CCAGGTGGCCACTAACACGGATTCGACGAAGAACGTCGGCAACGCTATTC
TCTACGAGGCTGTCCTGACCATTCTCGACATCGAAGCTGATTCAGGATTG
AGAGTGCTAGGTGTTAACATTCTTGGAAAGTTCCTGACCAACAAGGACAA
CAATATTCGTTACGTTGCTCTCAACACGCTGAACAAAGTTGTTGCAATTG
AGCCCAATGCCGTCCAGCGGCACCGCAACACCATTCTGGAGTGTCTCCGT
GACCCGGATATCAGTATAAGAAGACGTGCCCTTGATCTCAGCTTCATGTT
GATCAATGAGAGTAATGTGCGTGTTCTTGTTCGAGAGCTGCTCGCTTTCC
TGGAAGTTGCCGACAACGAGTTCAAGCCAGCCATGACGACTCAAATTGGT
ATCGCTGCTGACCGATATGCCCCCAACAAACGCTGGCACGTTGACACTAT
TCTGCGAGTACTCAAGCTTGCTGGTGCCTATGTTAAGGAGCAGATACTCT
CGTCCTTTGTTCGCCTCATAGCCACCACACCAGAGCTGCAGACCTACTCG
GTGCAGAAGCTTTATCTCTCATTGAAAGAAGACATCTCCCAAGAAGGCCT
TACCCTTGCTGCTACCTGGGTCATTGGCGAGTACGGTGATAACCTTCTCC
AAGGTGGTCAATATGAGGAAGAGGAGCTAGTTAAAGAGGTCAAAGAGAGC
GACATCGTTGACCTGTTCACCAACATCCTCAATAGCACATACGCCACGCA
AACAGTGGTGGAATACATCACTACGGCCTCTATGAAGCTTACCGTGCGCA
TGTCTGATCCAGCACAGGTTGAGCGGCTCCGTCGCTTCCTCAGCAGCCGG
ACTGCCGACCTGAGTGTTGAGATTCAACAGCGGGCTGTCGAGTACGTCAA
CCTGTTCGGCTATGACCAGATTCGTCGTGGAGTTCTCGAACGCATGCCCC
CGCCTGAGATACGTGAAGAACAAAGAGTCTTGGGTGCACCGACCAAGAAG
CGTCAAAGCAAAATCCTGAAAGACAAATCCAAGAAGCCTGCCAAGCAGGC
TGAGCAGGACATGCTCCTGGACCTCATGGGCGGCGATGCTCCACCGACCA
GCCCGACTACCAACGGTTCCCAAAATACGGCTGATCTCTTGGCCGATATC
CTCGGCGGCGATTCCAGCTTATCGTCACCTTCTCCCCAACCTGCGCAGAA
GGCAGCAGGATCCACCAATACCAGCGCTATCATGGACTTGTTCAACACTA
ATGGAAGCACGCCCTCTCCCAAACCTGCGGAGCCTGCATCTTCAGGCTTG
GATCTTCTAGCAGGCTTGAGCTCTTCTGCCTCGCCCGCACCCACTCCTGC
GCCGTCGGCGAATCCTGCTCATACGGCCTTTAACAAGAACGACCTCTCCC
TTGCCCTTCAAGTCCAACGTGGTAGCGGTGGAAGTGCGCAGATTCAGGCT
CGTTTCCGCAACAATTCAAGCTTTGGCCGCTTCTCCAATGTTGGATTGCA
AGCAGCCGTGCCCAAGAGTCAGAAACTACAGCTAAGCGCGATCAACAAGG
CTGATCTCGATGCTGGCGACGAAGGTATCCAGATGCTCAAAGTTGCAGCA
CTAACTGGGGCCCTCCCACCTAAGCTCCGCCTTCGTCTCCGTATCACGTA
TGCCAAGGATGGCTCTGATCCTGTAACAGACCAGGTAGACTGGACCGAGC
CGACAGTCAAGCAGTTTATCCGGAACGTGCGTTCGGCCAAGACAATCGCC
GATGAACGAGCAGTCATCCAAAAGGAGAGTGCGGCCATCCGTGCGTCGTT
TAGGGAAGAGAGCCATGATTCGGGCATCCGGAGAAACAATGTGGCTAAGC
TTCTGTATTTATTCACCCTCGGTGAACGGACACACTTTGGTCAAATCGAA
TGTCTGAAGCTACTGGCCTCCCACCGTTTCGCCGACAAGCGCCTGGGATA
CTTGGGGACGATGCTGTTACTGGATGAGAACCAAGAAGTTTTGACGCTGG
TAACAAACTCATTGAAGAATGACCTTAATCACTCCAACCAATATATCGTC
GGCTTGGCCCTGTGCGCCCTGGGCAATATCGCCTCCGTCGAAATGTCTCG
AGACCTTTTCCCCGAAGTCGAAAACCTAATGTCTACTGCAAATCCCTATA
TTCGGAGGAAGGCGGCACTGTGTGCTATGCGTGTATGTCGCAAGGTTCCC
GACCTGCAGGAGCATTTCCTGGAGAAGGCAAAGACTCTTCTGTCAGACAG
GAACCATGGTGTTCTGCTGTGCGGTTTAACACTCGCGATTGACATGTGTG
AAGCTGAGGAGGCGGAAGAAGGCCAGGAGGGGGTGATCGAGATGTTCCGG
CCGTTGGCCGGTGGTCTTGTGCGCTCCCTAAAGGGGTTGACCACCTCGGG
ATACGCTCCCGAACATGATGTCTCCGGTATCACCGATCCCTTCCTCCAAG
TGAAGATACTGCGCCTTCTCAGAGTACTAGGAAGAGGGGATGCGGCGACC
AGCGAAATGATCAACGACATTCTGGCCCAGGTGGCCACTAACACGGATTC
GACGAAGAACGTCGGCAACGCTATTCTCTACGAGGCTGTCCTGACCATTC
TCGACATCGAAGCTGATTCAGGATTGAGAGTGCTAGGTGTTAACATTCTT
GGAAAGTTCCTGACCAACAAGGACAACAATATTCGTTACGTTGCTCTCAA
CACGCTGAACAAAGTTGTTGCAATTGAGCCCAATGCCGTCCAGCGGCACC
GCAACACCATTCTGGAGTGTCTCCGTGACCCGGATATCAGTATAAGAAGA
CGTGCCCTTGATCTCAGCTTCATGTTGATCAATGAGAGTAATGTGCGTGT
TCTTGTTCGAGAGCTGCTCGCTTTCCTGGAAGTTGCCGACAACGAGTTCA
AGCCAGCCATGACGACTCAAATTGGTATCGCTGCTGACCGATATGCCCCC
AACAAACGCTGGCACGTTGACACTATTCTGCGAGTACTCAAGCTTGCTGG
TGCCTATGTTAAGGAGCAGATACTCTCGTCCTTTGTTCGCCTCATAGCCA
CCACACCAGAGCTGCAGACCTACTCGGTGCAGAAGCTTTATCTCTCATTG
AAAGAAGACATCTCCCAAGAAGGCCTTACCCTTGCTGCTACCTGGGTCAT
TGGCGAGTACGGTGATAACCTTCTCCAAGGTGGTCAATATGAGGAAGAGG
AGCTAGTTAAAGAGGTCAAAGAGAGCGACATCGTTGACCTGTTCACCAAC
ATCCTCAATAGCACATACGCCACGCAAACAGTGGTGGAATACATCACTAC
GGCCTCTATGAAGCTTACCGTGCGCATGTCTGATCCAGCACAGGTTGAGC
GGCTCCGTCGCTTCCTCAGCAGCCGGACTGCCGACCTGAGTGTTGAGATT
CAACAGCGGGCTGTCGAGTACGTCAACCTGTTCGGCTATGACCAGATTCG
TCGTGGAGTTCTCGAACGCATGCCCCCGCCTGAGATACGTGAAGAACAAA
GAGTCTTGGGTGCACCGACCAAGAAGCGTCAAAGCAAAATCCTGAAAGAC
AAATCCAAGAAGCCTGCCAAGCAGGCTGAGCAGGACATGCTCCTGGACCT
CATGGGCGGCGATGCTCCACCGACCAGCCCGACTACCAACGGTTCCCAAA
ATACGGCTGATCTCTTGGCCGATATCCTCGGCGGCGATTCCAGCTTATCG
TCACCTTCTCCCCAACCTGCGCAGAAGGCAGCAGGATCCACCAATACCAG
CGCTATCATGGACTTGTTCAACACTAATGGAAGCACGCCCTCTCCCAAAC
CTGCGGAGCCTGCATCTTCAGGCTTGGATCTTCTAGCAGGCTTGAGCTCT
TCTGCCTCGCCCGCACCCACTCCTGCGCCGTCGGCGAATCCTGCTCATAC
GGCCTTTAACAAGAACGACCTCTCCCTTGCCCTTCAAGTCCAACGTGGTA
GCGGTGGAAGTGCGCAGATTCAGGCTCGTTTCCGCAACAATTCAAGCTTT
GGCCGCTTCTCCAATGTTGGATTGCAAGCAGCCGTGCCCAAGAGTCAGAA
ACTACAGCTAAGCGCGATCAACAAGGCTGATCTCGATGCTGGCGACGAAG
GTATCCAGATGCTCAAAGTTGCAGCACTAACTGGGGCCCTCCCACCTAAG
CTCCGCCTTCGTCTCCGTATCACGTATGCCAAGGATGGCTCTGATCCTGT
AACAGACCAGGTAGACTGGACCGAGCCGACAGTCAAGCAGTTTATCCGGA
ACGTGCGTTCGGCCAAGACAATCGCCGATGAACGAGCAGTCATCCAAAAG
GAGAGTGCGGCCATCCGTGCGTCGTTTAGGGAAGAGAGCCATGATTCGGG
CATCCGGAGAAACAATGTGGCTAAGCTTCTGTATTTATTCACCCTCGGTG
AACGGACACACTTTGGTCAAATCGAATGTCTGAAGCTACTGGCCTCCCAC
CGTTTCGCCGACAAGCGCCTGGGATACTTGGGGACGATGCTGTTACTGGA
TGAGAACCAAGAAGTTTTGACGCTGGTAACAAACTCATTGAAGAATGACC
TTAATCACTCCAACCAATATATCGTCGGCTTGGCCCTGTGCGCCCTGGGC
AATATCGCCTCCGTCGAAATGTCTCGAGACCTTTTCCCCGAAGTCGAAAA
CCTAATGTCTACTGCAAATCCCTATATTCGGAGGAAGGCGGCACTGTGTG
CTATGCGTGTATGTCGCAAGGTTCCCGACCTGCAGGAGCATTTCCTGGAG
AAGGCAAAGACTCTTCTGTCAGACAGGAACCATGGTGTTCTGCTGTGCGG
TTTAACACTCGCGATTGACATGTGTGAAGCTGAGGAGGCGGAAGAAGGCC
AGGAGGGGGTGATCGAGATGTTCCGGCCGTTGGCCGGTGGTCTTGTGCGC
TCCCTAAAGGGGTTGACCACCTCGGGATACGCTCCCGAACATGATGTCTC
CGGTATCACCGATCCCTTCCTCCAAGTGAAGATACTGCGCCTTCTCAGAG
TACTAGGAAGAGGGGATGCGGCGACCAGCGAAATGATCAACGACATTCTG
GCCCAGGTGGCCACTAACACGGATTCGACGAAGAACGTCGGCAACGCTAT
TCTCTACGAGGCTGTCCTGACCATTCTCGACATCGAAGCTGATTCAGGAT
TGAGAGTGCTAGGTGTTAACATTCTTGGAAAGTTCCTGACCAACAAGGAC
AACAATATTCGTTACGTTGCTCTCAACACGCTGAACAAAGTTGTTGCAAT
TGAGCCCAATGCCGTCCAGCGGCACCGCAACACCATTCTGGAGTGTCTCC
GTGACCCGGATATCAGTATAAGAAGACGTGCCCTTGATCTCAGCTTCATG
TTGATCAATGAGAGTAATGTGCGTGTTCTTGTTCGAGAGCTGCTCGCTTT
CCTGGAAGTTGCCGACAACGAGTTCAAGCCAGCCATGACGACTCAAATTG
GTATCGCTGCTGACCGATATGCCCCCAACAAACGCTGGCACGTTGACACT
ATTCTGCGAGTACTCAAGCTTGCTGGTGCCTATGTTAAGGAGCAGATACT
CTCGTCCTTTGTTCGCCTCATAGCCACCACACCAGAGCTGCAGACCTACT
CGGTGCAGAAGCTTTATCTCTCATTGAAAGAAGACATCTCCCAAGAAGGC
CTTACCCTTGCTGCTACCTGGGTCATTGGCGAGTACGGTGATAACCTTCT
CCAAGGTGGTCAATATGAGGAAGAGGAGCTAGTTAAAGAGGTCAAAGAGA
GCGACATCGTTGACCTGTTCACCAACATCCTCAATAGCACATACGCCACG
CAAACAGTGGTGGAATACATCACTACGGCCTCTATGAAGCTTACCGTGCG
CATGTCTGATCCAGCACAGGTTGAGCGGCTCCGTCGCTTCCTCAGCAGCC
GGACTGCCGACCTGAGTGTTGAGATTCAACAGCGGGCTGTCGAGTACGTC
AACCTGTTCGGCTATGACCAGATTCGTCGTGGAGTTCTCGAACGCATGCC
CCCGCCTGAGATACGTGAAGAACAAAGAGTCTTGGGTGCACCGACCAAGA
AGCGTCAAAGCAAAATCCTGAAAGACAAATCCAAGAAGCCTGCCAAGCAG
GCTGAGCAGGACATGCTCCTGGACCTCATGGGCGGCGATGCTCCACCGAC
CAGCCCGACTACCAACGGTTCCCAAAATACGGCTGATCTCTTGGCCGATA
TCCTCGGCGGCGATTCCAGCTTATCGTCACCTTCTCCCCAACCTGCGCAG
AAGGCAGCAGGATCCACCAATACCAGCGCTATCATGGACTTGTTCAACAC
TAATGGAAGCACGCCCTCTCCCAAACCTGCGGAGCCTGCATCTTCAGGCT
TGGATCTTCTAGCAGGCTTGAGCTCTTCTGCCTCGCCCGCACCCACTCCT
GCGCCGTCGGCGAATCCTGCTCATACGGCCTTTAACAAGAACGACCTCTC
CCTTGCCCTTCAAGTCCAACGTGGTAGCGGTGGAAGTGCGCAGATTCAGG
CTCGTTTCCGCAACAATTCAAGCTTTGGCCGCTTCTCCAATGTTGGATTG
CAAGCAGCCGTGCCCAAGAGTCAGAAACTACAGCTAAGCGCGATCAACAA
GGCTGATCTCGATGCTGGCGACGAAGGTATCCAGATGCTCAAAGTTGCAG
CACTAACTGGGGCCCTCCCACCTAAGCTCCGCCTTCGTCTCCGTATCACG
TATGCCAAGGATGGCTCTGATCCTGTAACAGACCAGGTAGACTGGACCGA
GCCG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Cellular Component
TermDefinition
GO:0030117membrane coat
GO:0005794Golgi apparatus
GO:0030121AP-1 adaptor complex
Vocabulary: Biological Process
TermDefinition
GO:0006886intracellular protein transport
GO:0016192vesicle-mediated transport
Relationships

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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_139052ASPNIDRAFT_139052Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_139052-T1.exon1ASPNIDRAFT_139052-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_139052-T1.exon2ASPNIDRAFT_139052-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_139052-T1.exon3ASPNIDRAFT_139052-T1.exon3Aspergillus niger ATCC 1015exon
ASPNIDRAFT_139052-T1.exon4ASPNIDRAFT_139052-T1.exon4Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_139052-T1.cdsASPNIDRAFT_139052-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_139052-T1ASPNIDRAFT_139052-T1-proteinAspergillus niger ATCC 1015polypeptide


Properties
Property NameValue
DBxrefInterPro:IPR013041
DBxrefInterPro:IPR016024
DBxrefInterPro:IPR008153
DBxrefInterPro:IPR011989
DBxrefInterPro:IPR002553
DBxrefInterPro:IPR017107
DBxrefInterPro:IPR008152
DBxrefPFAM:PF02883
DBxrefPFAM:PF01602
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
ACJE01000004.1supercontigACJE01000004.1:752958..755650 +