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ASPNIDRAFT_193872-T1, ASPNIDRAFT_193872-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_193872-T1
Unique NameASPNIDRAFT_193872-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000014.1:537412..542434+

Legend: exonpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_193872-T1 ID=ASPNIDRAFT_193872-T1|Name=ASPNIDRAFT_193872-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=5023bp|location=Sequence derived from alignment at ACJE01000014.1:537412..542434+ (Aspergillus niger ATCC 1015)
ATGCCTCGTGCTAAGCGCTCCATCGAGGAGTTGGCCAACAAGTCCGACTC GGACGATGACGACTACAGCGATCATCCCGTGCGCTCATCCCGCCGCTCCG CCTCTCGAACCAAATCCAAGAAGAAGTCCAAGCCCGCCAAGAAAAGGGCT CGTCGCGGTTCCGACGACGACATCATCTCCGATGACGAGATCTTCGACGA GGCTGAGGACCTTTCATTCGCCGAGTCCGAGGAAGAGGACGACGACATTA ACGCTCAACGCAATGCTCGTGGTTTAGTCGCTCGCCGGGCCGCTACGAAC CGTCCCCTCTACAACGAACCTGAATCCAGCAGCATTGAAGACGACGATAC GGACGATGACGAACGTCCTCAGCCCTCGCCCCAGAAACGCAAGAGCACAG TGGTCACCCTCAAGGTCGGCGATGCCTTGAAACAGAACTTCCAGGGCCCC CGCCGGGTGACTCGGCGCACGCGGGATCCGTCGGAGGATTTCCACGCCCT AACGACATCCGGTCGACATATGGAGACGGTCGAACGAGGAACCACACGGA GCCCTGAGCTGGAGCGGCGCCGGGGATCCCGTGGCTCGAAGCGGGCCCCG GTGCTGGACGAGGAGGAGGAGGAGTTGCAGCCCAAGCAGGAAGAGGAAGA GATGGTCGATGAGACAACCATGGAGGTAAAAGGCTCTCAGCTCGAAATCA TGGAGAGTGATGTTCAGATCAGCTTCGAGGACGGGATGCCGCCTGCAGCC GGCGAGGGACAAGAGACAACCACAGCAGATGATGAAGGGTTTGTTCCGGA GTCCGAAAATGGCGACGCAAAGGAGGGTGGCGGCGACGATGAGGACGACG ATGAGGATGAGGGCCCGACAACGCGAAGGAGGAATCGACCCAACAGGAGC CAGCAGGAAGACGACGAAGCCGAACAGCCTGAAGAAGACGAGGCTGCCCA CCCGCGCCGTTCTAGTCGAAAGAAGCCGAAGAGTTCACAACGCAAACGCC AAGATGACGAAGAGAGTGATTTCGAACCCGAGGAGGAAGAGTCCAATGAT GACGACGAGATCTCACAGTCTGGGAAGTCGCAAGCTTCACCACGCAAGGG AAGCCAGGCCCATGACGAGGATGAGGATAGCGCCGCCGGCCGTCGCCCGG GTCTCCGCAAGCGGGCATCCCGATCCCGGGGACAGTCCGAAGCGGGTGCT GATATCGCGGAGGAGCTCGCAGAGGAGTTGGAGGATCTTCGCGGCGGGCG TCCTCGTCGCCGAGTACAACCGGAGATCGTCTACGAGAAGCCTCGCCGCA GTCGTAAGGATGTTGACTACCGTATCATCCGGCCTGATCTGATTCTACCC ATTGAGGAGGCCGAGAACGAAGTCAATGAATCACCTTCACGCCGTGGTCG GGGAGGCGGCGGCAACAGTTGGCAGCGCACCCTGTTTCCTACCTATGGGC CGTTCGGAGGCGGCGGGCCGTCTGCCATCCTGGGCCCGCCAGGCGCCCCG GCTGCTACGGGTGGGGTAGATAGCGATAGCAGTGACGACGAGGTTATGCA ACATCCCAAGGGCGGTGCAGGCGGTTCCATCTCCGGCCCTGCGCAGCTTG GTGCTGGCCTCCTGGGTACGCAGACTCACAGCGCCGATGCAGCCCAGGGC CACGCCGGGACGCCTGCAAATCTCGGCAAAATCAAAGACAAGCAGACGCT GGCTGATGCTGACCCGTTGGGTGTGGACATGAGCGTCAACTTCGACAGCG TTGGCGGCTTACAGGGGCACATCGACCAGTTGAAGGAGATGGTGTCGCTA CCGCTGCTATACCCGGAAATCTTCCAACGCTTCCACATCGTGCCTCCGCG AGGAGTGCTTTTCCATGGACCTCCTGGAACCGGTAAGACGCTGCTCGCCC GAGCACTGGCGAACAGTGTTAGCTCGAATGGCCGCAAGGTGACCTTCTAC ATGCGCAAGGGTGCCGATGCTTTGAGTAAATGGGTGGGTGAGGCGGAGCG GCAACTTCGGTTGCTCTTCGAAGAGGCTCGAAAGACACAGCCTAGCATTA TCTTCTTCGATGAAATCGATGGTAAGTGATGTCTTTTTTTTCTGTCGGGA ATTTATTAAAAAGCTGACCTTGCTTCTAGGACTGGCACCTGTACGGTCAA GCAAGCAGGAACAAATCCATGCCTCGATTGTATCTACTCTGCTGGCGTTG ATGGATGGTATGGATGGACGTGGACAAGTCATCGTCATCGGTGCCACGAA CCGTCCCGATTCGATTGACCCAGCTCTTCGGCGCCCTGGTCGTTTCGACC GCGAATTTTACTTTCCCCTGCCCAACAAGGATGGCCGACGTGCAATCCTG GATATTCACACCAAGGGCTGGGATCCACCGCTGCCTGGGCCCATCAAGGA TGAGCTGGCGGAGATCACCAAGGGCTACGGAGGTGCCGATCTTCGTGCTC TCTGCACCGAAGCAGCCCTTAATGCAGTACAACGACGATACCCCCAAATC TACAAGTCTAATCAGAAGCTACTCATCGACCCTAAGACCATTGAAGTGAC CCCCAAGGATTTCATGTTGGCGATTAAAAAGATGGTCCCGTCGTCGGAGC GTTCAACCTCATCGGGTGCCTCGGCCCTGCCCACCTCGGTCGAGCCTTTG CTGCGCACGCCTCTCACGGAGATTAAGAGTTTGCTGTCTTTGATATTGCC GCAGCGAAAGAGGCTTACAGCGCTGGAAGAGGCGCAGTTTGAGGAACCGG AAGGATCAGGAAGCTTTCAGCGCGAACAAATGCAGCAGGAGTTCGATCGG TCCCGAGTATTCCGTCCTCGCATGCTGCTCCGCGGACCGCTAGGAATGGG TCAGCAGTATCTGGCTGGCGCCCTTTTGCACCATTTCGAGGGACTCCATG TACAGGCGTTTGATCTCCCTACCCTGCTTAGCGATTCAACTCGGTCACCC GAGGCCGCCGTCATCCAGCTTTTTGCCGAAGTCAAAAGGCACAAGCCGAG TGTGATCTACATCCCGAATATCCAGGCTTGGACTGAAACCGTGGGCCCGG CCGTGATGTCTACGTTCCTGGGTCTACTGCGGTCAGTTCCTCCGACGGAT CCTGTGCTGCTACTAGGCGTGCAGGAGTCAGCTGGTGAGGACATGGACAA CGGTGTGCTGCGAAACCTGTTTGGGTATTCGAAGAAGAACTTCTACGACC TCAGAGCGCCCGGTAGCGAGGCACGCTACGAGTATTTCACTAAAGTGATA GACTACATCAAAACATCGCCTGCACACTTGCCCGACCCGGAGAACCGGAA GAAGAGGGAGCTGGAGACGCTAGAAGTTGCGCCCCCGCCGCCCCCTAAGC CGACAACGCCCCTCTCCAAGGAGCAGCTGAAGGCGCAGAAAAAGAAAGAT CACCAGACTCTCAACCTTCTCAAGATCCGCATCCAGCCTATCATGGACCA GATCAAGAAATACAAGCGCTTCCGCACGGGCGTGATCGACGAATCTCAGA TTCGCTACCTTTGGGAGGAGGAAGACCCGAACATTGTGACCAGTGATCTA CCGATTGAACAGCGCACCACCTTCCGGCCGTTTGAGAAGGCTTTCGACAA GAATGGGGTTCCTGGGTTGCGCGAGGCCGTATCGGGCAAGTTCTTCTACA ACCTCGAGATTGTCACCATCGAGAAGCGGCTCTCCAATGGGTACTACAAG CGGCCCAAGGACTTCTTGGCGGATATTAAGAGGCTTGCCAAGGACGCTCG GCAGCTTGGGGAACAGGAAAGGCTGCTGCGCGCCAATGAACTGCTGTCCA ATGTGGAGGTGGATATTGCTACCATCGAGCAGACTGAACCCGCGCTGGTG ACGGAATGCGAAGGGGTCTACCTGCGAGAGCTGGAGAGAGAGAAAATCGC CATCGAAAAGGCGCGCAAGGCGGCGGAAGAAGAGGAGGCAGGCCTGATCG GTCGCGCGGCGGCAAACCGAGTCCCGCACGGCAACACCGAATCGGGCCCA TCCAGCGGTCCGGTGGTCCTGGGCGAGACGTTCCCGGATCTTGGTCCGAA AGAGACGGGCCGACCGGTGACCCCTACCCGTCGATCAACAGTGAGCTTCA TCACCAATGGCTACCATACCGGGGGCGGATCGGACCTCAACGACCTCAGT ACGCATGCGCTCACCAGCAATGGCTCGCACGAGGACCGCCCGGATGGTGA TGGCGATACCTACATGACCAACTCGGATCACTCGGCCGAAAAGGAAACGC AGACGAGCTCGTTTGGTCCGTCGGCGCAGCCCAAACCTCCCTATTCGCAC ACAGCACCGTCGCAGCAGGTGCGGCGTGAGTCGGGAATTTCAAGCTTCTC GCAGAAGGGCCCCATGACGCCCATGGCGCCCGGATCTCAGCCTCACGAGT ACGCTAACGAAGCGTCGACGACGCAGACGACGTCGGACAAGAAGTCGTCT GAGCAGTCCTCGGTACCGAACCCATACACGCAGAGTCCGGTGGCCACTCA AGGGATGCGACACGACTTCCCCGACCTCACGCAGTACCCGGACCGGGTAT CGCAGGAGGAACATCTTCCAGACACACAACAGGGAGACAGCAGCCAGCCG TCGCCCCGACCGGCTGCTGACCTGGCGCCGCTGGAAAATGGCCCGGCGCA CTCGCAACCACGGGCTCAGCCGCCGGTGCCCCTGTTTGACCACCCGACCA AGCCGGCTGCGCATGTGCCGGCGGGAATGCAGTCGCTGCTGAATAACGAG GACCTGTCGCCGAAAATAACGCTGGACCTGGAATACGTGCAGAAGCTGCA CGAGCAGCTGACGCAGCGGACGAGCGGCTGCAGTGTGGAGCAGCTCGAGC AGATCAACACGAACCTGATGGACTACCTGTGGCAGACGCGGGGAGAGTGG AATCGGAGCAAGGTGGCAGCGGGGATCCAGGACACGTTCAACGAAGTGCT GGAGGACATGCAGGCAATGCAGGAGATTGGGCCGATCAGTCAGAAGACGA AGGAGCAGCTGTATCCGCTGTAG
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Coding sequence (CDS) from alignment at ACJE01000014.1:537412..542434+

>ASPNIDRAFT_193872-T1 ID=ASPNIDRAFT_193872-T1|Name=ASPNIDRAFT_193872-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=9930bp|location=Sequence derived from alignment at ACJE01000014.1:537412..542434+ (Aspergillus niger ATCC 1015)
ATGCCTCGTGCTAAGCGCTCCATCGAGGAGTTGGCCAACAAGTCCGACTC
GGACGATGACGACTACAGCGATCATCCCGTGCGCTCATCCCGCCGCTCCG
CCTCTCGAACCAAATCCAAGAAGAAGTCCAAGCCCGCCAAGAAAAGGGCT
CGTCGCGGTTCCGACGACGACATCATCTCCGATGACGAGATCTTCGACGA
GGCTGAGGACCTTTCATTCGCCGAGTCCGAGGAAGAGGACGACGACATTA
ACGCTCAACGCAATGCTCGTGGTTTAGTCGCTCGCCGGGCCGCTACGAAC
CGTCCCCTCTACAACGAACCTGAATCCAGCAGCATTGAAGACGACGATAC
GGACGATGACGAACGTCCTCAGCCCTCGCCCCAGAAACGCAAGAGCACAG
TGGTCACCCTCAAGGTCGGCGATGCCTTGAAACAGAACTTCCAGGGCCCC
CGCCGGGTGACTCGGCGCACGCGGGATCCGTCGGAGGATTTCCACGCCCT
AACGACATCCGGTCGACATATGGAGACGGTCGAACGAGGAACCACACGGA
GCCCTGAGCTGGAGCGGCGCCGGGGATCCCGTGGCTCGAAGCGGGCCCCG
GTGCTGGACGAGGAGGAGGAGGAGTTGCAGCCCAAGCAGGAAGAGGAAGA
GATGGTCGATGAGACAACCATGGAGGTAAAAGGCTCTCAGCTCGAAATCA
TGGAGAGTGATGTTCAGATCAGCTTCGAGGACGGGATGCCGCCTGCAGCC
GGCGAGGGACAAGAGACAACCACAGCAGATGATGAAGGGTTTGTTCCGGA
GTCCGAAAATGGCGACGCAAAGGAGGGTGGCGGCGACGATGAGGACGACG
ATGAGGATGAGGGCCCGACAACGCGAAGGAGGAATCGACCCAACAGGAGC
CAGCAGGAAGACGACGAAGCCGAACAGCCTGAAGAAGACGAGGCTGCCCA
CCCGCGCCGTTCTAGTCGAAAGAAGCCGAAGAGTTCACAACGCAAACGCC
AAGATGACGAAGAGAGTGATTTCGAACCCGAGGAGGAAGAGTCCAATGAT
GACGACGAGATCTCACAGTCTGGGAAGTCGCAAGCTTCACCACGCAAGGG
AAGCCAGGCCCATGACGAGGATGAGGATAGCGCCGCCGGCCGTCGCCCGG
GTCTCCGCAAGCGGGCATCCCGATCCCGGGGACAGTCCGAAGCGGGTGCT
GATATCGCGGAGGAGCTCGCAGAGGAGTTGGAGGATCTTCGCGGCGGGCG
TCCTCGTCGCCGAGTACAACCGGAGATCGTCTACGAGAAGCCTCGCCGCA
GTCGTAAGGATGTTGACTACCGTATCATCCGGCCTGATCTGATTCTACCC
ATTGAGGAGGCCGAGAACGAAGTCAATGAATCACCTTCACGCCGTGGTCG
GGGAGGCGGCGGCAACAGTTGGCAGCGCACCCTGTTTCCTACCTATGGGC
CGTTCGGAGGCGGCGGGCCGTCTGCCATCCTGGGCCCGCCAGGCGCCCCG
GCTGCTACGGGTGGGGTAGATAGCGATAGCAGTGACGACGAGGTTATGCA
ACATCCCAAGGGCGGTGCAGGCGGTTCCATCTCCGGCCCTGCGCAGCTTG
GTGCTGGCCTCCTGGGTACGCAGACTCACAGCGCCGATGCAGCCCAGGGC
CACGCCGGGACGCCTGCAAATCTCGGCAAAATCAAAGACAAGCAGACGCT
GGCTGATGCTGACCCGTTGGGTGTGGACATGAGCGTCAACTTCGACAGCG
TTGGCGGCTTACAGGGGCACATCGACCAGTTGAAGGAGATGGTGTCGCTA
CCGCTGCTATACCCGGAAATCTTCCAACGCTTCCACATCGTGCCTCCGCG
AGGAGTGCTTTTCCATGGACCTCCTGGAACCGGTAAGACGCTGCTCGCCC
GAGCACTGGCGAACAGTGTTAGCTCGAATGGCCGCAAGGTGACCTTCTAC
ATGCGCAAGGGTGCCGATGCTTTGAGTAAATGGGTGGGTGAGGCGGAGCG
GCAACTTCGGTTGCTCTTCGAAGAGGCTCGAAAGACACAGCCTAGCATTA
TCTTCTTCGATGAAATCGATGGACTGGCACCTGTACGGTCAAGCAAGCAG
GAACAAATCCATGCCTCGATTGTATCTACTCTGCTGGCGTTGATGGATGG
TATGGATGGACGTGGACAAGTCATCGTCATCGGTGCCACGAACCGTCCCG
ATTCGATTGACCCAGCTCTTCGGCGCCCTGGTCGTTTCGACCGCGAATTT
TACTTTCCCCTGCCCAACAAGGATGGCCGACGTGCAATCCTGGATATTCA
CACCAAGGGCTGGGATCCACCGCTGCCTGGGCCCATCAAGGATGAGCTGG
CGGAGATCACCAAGGGCTACGGAGGTGCCGATCTTCGTGCTCTCTGCACC
GAAGCAGCCCTTAATGCAGTACAACGACGATACCCCCAAATCTACAAGTC
TAATCAGAAGCTACTCATCGACCCTAAGACCATTGAAGTGACCCCCAAGG
ATTTCATGTTGGCGATTAAAAAGATGGTCCCGTCGTCGGAGCGTTCAACC
TCATCGGGTGCCTCGGCCCTGCCCACCTCGGTCGAGCCTTTGCTGCGCAC
GCCTCTCACGGAGATTAAGAGTTTGCTGTCTTTGATATTGCCGCAGCGAA
AGAGGCTTACAGCGCTGGAAGAGGCGCAGTTTGAGGAACCGGAAGGATCA
GGAAGCTTTCAGCGCGAACAAATGCAGCAGGAGTTCGATCGGTCCCGAGT
ATTCCGTCCTCGCATGCTGCTCCGCGGACCGCTAGGAATGGGTCAGCAGT
ATCTGGCTGGCGCCCTTTTGCACCATTTCGAGGGACTCCATGTACAGGCG
TTTGATCTCCCTACCCTGCTTAGCGATTCAACTCGGTCACCCGAGGCCGC
CGTCATCCAGCTTTTTGCCGAAGTCAAAAGGCACAAGCCGAGTGTGATCT
ACATCCCGAATATCCAGGCTTGGACTGAAACCGTGGGCCCGGCCGTGATG
TCTACGTTCCTGGGTCTACTGCGGTCAGTTCCTCCGACGGATCCTGTGCT
GCTACTAGGCGTGCAGGAGTCAGCTGGTGAGGACATGGACAACGGTGTGC
TGCGAAACCTGTTTGGGTATTCGAAGAAGAACTTCTACGACCTCAGAGCG
CCCGGTAGCGAGGCACGCTACGAGTATTTCACTAAAGTGATAGACTACAT
CAAAACATCGCCTGCACACTTGCCCGACCCGGAGAACCGGAAGAAGAGGG
AGCTGGAGACGCTAGAAGTTGCGCCCCCGCCGCCCCCTAAGCCGACAACG
CCCCTCTCCAAGGAGCAGCTGAAGGCGCAGAAAAAGAAAGATCACCAGAC
TCTCAACCTTCTCAAGATCCGCATCCAGCCTATCATGGACCAGATCAAGA
AATACAAGCGCTTCCGCACGGGCGTGATCGACGAATCTCAGATTCGCTAC
CTTTGGGAGGAGGAAGACCCGAACATTGTGACCAGTGATCTACCGATTGA
ACAGCGCACCACCTTCCGGCCGTTTGAGAAGGCTTTCGACAAGAATGGGG
TTCCTGGGTTGCGCGAGGCCGTATCGGGCAAGTTCTTCTACAACCTCGAG
ATTGTCACCATCGAGAAGCGGCTCTCCAATGGGTACTACAAGCGGCCCAA
GGACTTCTTGGCGGATATTAAGAGGCTTGCCAAGGACGCTCGGCAGCTTG
GGGAACAGGAAAGGCTGCTGCGCGCCAATGAACTGCTGTCCAATGTGGAG
GTGGATATTGCTACCATCGAGCAGACTGAACCCGCGCTGGTGACGGAATG
CGAAGGGGTCTACCTGCGAGAGCTGGAGAGAGAGAAAATCGCCATCGAAA
AGGCGCGCAAGGCGGCGGAAGAAGAGGAGGCAGGCCTGATCGGTCGCGCG
GCGGCAAACCGAGTCCCGCACGGCAACACCGAATCGGGCCCATCCAGCGG
TCCGGTGGTCCTGGGCGAGACGTTCCCGGATCTTGGTCCGAAAGAGACGG
GCCGACCGGTGACCCCTACCCGTCGATCAACAGTGAGCTTCATCACCAAT
GGCTACCATACCGGGGGCGGATCGGACCTCAACGACCTCAGTACGCATGC
GCTCACCAGCAATGGCTCGCACGAGGACCGCCCGGATGGTGATGGCGATA
CCTACATGACCAACTCGGATCACTCGGCCGAAAAGGAAACGCAGACGAGC
TCGTTTGGTCCGTCGGCGCAGCCCAAACCTCCCTATTCGCACACAGCACC
GTCGCAGCAGGTGCGGCGTGAGTCGGGAATTTCAAGCTTCTCGCAGAAGG
GCCCCATGACGCCCATGGCGCCCGGATCTCAGCCTCACGAGTACGCTAAC
GAAGCGTCGACGACGCAGACGACGTCGGACAAGAAGTCGTCTGAGCAGTC
CTCGGTACCGAACCCATACACGCAGAGTCCGGTGGCCACTCAAGGGATGC
GACACGACTTCCCCGACCTCACGCAGTACCCGGACCGGGTATCGCAGGAG
GAACATCTTCCAGACACACAACAGGGAGACAGCAGCCAGCCGTCGCCCCG
ACCGGCTGCTGACCTGGCGCCGCTGGAAAATGGCCCGGCGCACTCGCAAC
CACGGGCTCAGCCGCCGGTGCCCCTGTTTGACCACCCGACCAAGCCGGCT
GCGCATGTGCCGGCGGGAATGCAGTCGCTGCTGAATAACGAGGACCTGTC
GCCGAAAATAACGCTGGACCTGGAATACGTGCAGAAGCTGCACGAGCAGC
TGACGCAGCGGACGAGCGGCTGCAGTGTGGAGCAGCTCGAGCAGATCAAC
ACGAACCTGATGGACTACCTGTGGCAGACGCGGGGAGAGTGGAATCGGAG
CAAGGTGGCAGCGGGGATCCAGGACACGTTCAACGAAGTGCTGGAGGACA
TGCAGGCAATGCAGGAGATTGGGCCGATCAGTCAGAAGACGAAGGAGCAG
CTGTATCCGCTGTAGATGCCTCGTGCTAAGCGCTCCATCGAGGAGTTGGC
CAACAAGTCCGACTCGGACGATGACGACTACAGCGATCATCCCGTGCGCT
CATCCCGCCGCTCCGCCTCTCGAACCAAATCCAAGAAGAAGTCCAAGCCC
GCCAAGAAAAGGGCTCGTCGCGGTTCCGACGACGACATCATCTCCGATGA
CGAGATCTTCGACGAGGCTGAGGACCTTTCATTCGCCGAGTCCGAGGAAG
AGGACGACGACATTAACGCTCAACGCAATGCTCGTGGTTTAGTCGCTCGC
CGGGCCGCTACGAACCGTCCCCTCTACAACGAACCTGAATCCAGCAGCAT
TGAAGACGACGATACGGACGATGACGAACGTCCTCAGCCCTCGCCCCAGA
AACGCAAGAGCACAGTGGTCACCCTCAAGGTCGGCGATGCCTTGAAACAG
AACTTCCAGGGCCCCCGCCGGGTGACTCGGCGCACGCGGGATCCGTCGGA
GGATTTCCACGCCCTAACGACATCCGGTCGACATATGGAGACGGTCGAAC
GAGGAACCACACGGAGCCCTGAGCTGGAGCGGCGCCGGGGATCCCGTGGC
TCGAAGCGGGCCCCGGTGCTGGACGAGGAGGAGGAGGAGTTGCAGCCCAA
GCAGGAAGAGGAAGAGATGGTCGATGAGACAACCATGGAGGTAAAAGGCT
CTCAGCTCGAAATCATGGAGAGTGATGTTCAGATCAGCTTCGAGGACGGG
ATGCCGCCTGCAGCCGGCGAGGGACAAGAGACAACCACAGCAGATGATGA
AGGGTTTGTTCCGGAGTCCGAAAATGGCGACGCAAAGGAGGGTGGCGGCG
ACGATGAGGACGACGATGAGGATGAGGGCCCGACAACGCGAAGGAGGAAT
CGACCCAACAGGAGCCAGCAGGAAGACGACGAAGCCGAACAGCCTGAAGA
AGACGAGGCTGCCCACCCGCGCCGTTCTAGTCGAAAGAAGCCGAAGAGTT
CACAACGCAAACGCCAAGATGACGAAGAGAGTGATTTCGAACCCGAGGAG
GAAGAGTCCAATGATGACGACGAGATCTCACAGTCTGGGAAGTCGCAAGC
TTCACCACGCAAGGGAAGCCAGGCCCATGACGAGGATGAGGATAGCGCCG
CCGGCCGTCGCCCGGGTCTCCGCAAGCGGGCATCCCGATCCCGGGGACAG
TCCGAAGCGGGTGCTGATATCGCGGAGGAGCTCGCAGAGGAGTTGGAGGA
TCTTCGCGGCGGGCGTCCTCGTCGCCGAGTACAACCGGAGATCGTCTACG
AGAAGCCTCGCCGCAGTCGTAAGGATGTTGACTACCGTATCATCCGGCCT
GATCTGATTCTACCCATTGAGGAGGCCGAGAACGAAGTCAATGAATCACC
TTCACGCCGTGGTCGGGGAGGCGGCGGCAACAGTTGGCAGCGCACCCTGT
TTCCTACCTATGGGCCGTTCGGAGGCGGCGGGCCGTCTGCCATCCTGGGC
CCGCCAGGCGCCCCGGCTGCTACGGGTGGGGTAGATAGCGATAGCAGTGA
CGACGAGGTTATGCAACATCCCAAGGGCGGTGCAGGCGGTTCCATCTCCG
GCCCTGCGCAGCTTGGTGCTGGCCTCCTGGGTACGCAGACTCACAGCGCC
GATGCAGCCCAGGGCCACGCCGGGACGCCTGCAAATCTCGGCAAAATCAA
AGACAAGCAGACGCTGGCTGATGCTGACCCGTTGGGTGTGGACATGAGCG
TCAACTTCGACAGCGTTGGCGGCTTACAGGGGCACATCGACCAGTTGAAG
GAGATGGTGTCGCTACCGCTGCTATACCCGGAAATCTTCCAACGCTTCCA
CATCGTGCCTCCGCGAGGAGTGCTTTTCCATGGACCTCCTGGAACCGGTA
AGACGCTGCTCGCCCGAGCACTGGCGAACAGTGTTAGCTCGAATGGCCGC
AAGGTGACCTTCTACATGCGCAAGGGTGCCGATGCTTTGAGTAAATGGGT
GGGTGAGGCGGAGCGGCAACTTCGGTTGCTCTTCGAAGAGGCTCGAAAGA
CACAGCCTAGCATTATCTTCTTCGATGAAATCGATGGACTGGCACCTGTA
CGGTCAAGCAAGCAGGAACAAATCCATGCCTCGATTGTATCTACTCTGCT
GGCGTTGATGGATGGTATGGATGGACGTGGACAAGTCATCGTCATCGGTG
CCACGAACCGTCCCGATTCGATTGACCCAGCTCTTCGGCGCCCTGGTCGT
TTCGACCGCGAATTTTACTTTCCCCTGCCCAACAAGGATGGCCGACGTGC
AATCCTGGATATTCACACCAAGGGCTGGGATCCACCGCTGCCTGGGCCCA
TCAAGGATGAGCTGGCGGAGATCACCAAGGGCTACGGAGGTGCCGATCTT
CGTGCTCTCTGCACCGAAGCAGCCCTTAATGCAGTACAACGACGATACCC
CCAAATCTACAAGTCTAATCAGAAGCTACTCATCGACCCTAAGACCATTG
AAGTGACCCCCAAGGATTTCATGTTGGCGATTAAAAAGATGGTCCCGTCG
TCGGAGCGTTCAACCTCATCGGGTGCCTCGGCCCTGCCCACCTCGGTCGA
GCCTTTGCTGCGCACGCCTCTCACGGAGATTAAGAGTTTGCTGTCTTTGA
TATTGCCGCAGCGAAAGAGGCTTACAGCGCTGGAAGAGGCGCAGTTTGAG
GAACCGGAAGGATCAGGAAGCTTTCAGCGCGAACAAATGCAGCAGGAGTT
CGATCGGTCCCGAGTATTCCGTCCTCGCATGCTGCTCCGCGGACCGCTAG
GAATGGGTCAGCAGTATCTGGCTGGCGCCCTTTTGCACCATTTCGAGGGA
CTCCATGTACAGGCGTTTGATCTCCCTACCCTGCTTAGCGATTCAACTCG
GTCACCCGAGGCCGCCGTCATCCAGCTTTTTGCCGAAGTCAAAAGGCACA
AGCCGAGTGTGATCTACATCCCGAATATCCAGGCTTGGACTGAAACCGTG
GGCCCGGCCGTGATGTCTACGTTCCTGGGTCTACTGCGGTCAGTTCCTCC
GACGGATCCTGTGCTGCTACTAGGCGTGCAGGAGTCAGCTGGTGAGGACA
TGGACAACGGTGTGCTGCGAAACCTGTTTGGGTATTCGAAGAAGAACTTC
TACGACCTCAGAGCGCCCGGTAGCGAGGCACGCTACGAGTATTTCACTAA
AGTGATAGACTACATCAAAACATCGCCTGCACACTTGCCCGACCCGGAGA
ACCGGAAGAAGAGGGAGCTGGAGACGCTAGAAGTTGCGCCCCCGCCGCCC
CCTAAGCCGACAACGCCCCTCTCCAAGGAGCAGCTGAAGGCGCAGAAAAA
GAAAGATCACCAGACTCTCAACCTTCTCAAGATCCGCATCCAGCCTATCA
TGGACCAGATCAAGAAATACAAGCGCTTCCGCACGGGCGTGATCGACGAA
TCTCAGATTCGCTACCTTTGGGAGGAGGAAGACCCGAACATTGTGACCAG
TGATCTACCGATTGAACAGCGCACCACCTTCCGGCCGTTTGAGAAGGCTT
TCGACAAGAATGGGGTTCCTGGGTTGCGCGAGGCCGTATCGGGCAAGTTC
TTCTACAACCTCGAGATTGTCACCATCGAGAAGCGGCTCTCCAATGGGTA
CTACAAGCGGCCCAAGGACTTCTTGGCGGATATTAAGAGGCTTGCCAAGG
ACGCTCGGCAGCTTGGGGAACAGGAAAGGCTGCTGCGCGCCAATGAACTG
CTGTCCAATGTGGAGGTGGATATTGCTACCATCGAGCAGACTGAACCCGC
GCTGGTGACGGAATGCGAAGGGGTCTACCTGCGAGAGCTGGAGAGAGAGA
AAATCGCCATCGAAAAGGCGCGCAAGGCGGCGGAAGAAGAGGAGGCAGGC
CTGATCGGTCGCGCGGCGGCAAACCGAGTCCCGCACGGCAACACCGAATC
GGGCCCATCCAGCGGTCCGGTGGTCCTGGGCGAGACGTTCCCGGATCTTG
GTCCGAAAGAGACGGGCCGACCGGTGACCCCTACCCGTCGATCAACAGTG
AGCTTCATCACCAATGGCTACCATACCGGGGGCGGATCGGACCTCAACGA
CCTCAGTACGCATGCGCTCACCAGCAATGGCTCGCACGAGGACCGCCCGG
ATGGTGATGGCGATACCTACATGACCAACTCGGATCACTCGGCCGAAAAG
GAAACGCAGACGAGCTCGTTTGGTCCGTCGGCGCAGCCCAAACCTCCCTA
TTCGCACACAGCACCGTCGCAGCAGGTGCGGCGTGAGTCGGGAATTTCAA
GCTTCTCGCAGAAGGGCCCCATGACGCCCATGGCGCCCGGATCTCAGCCT
CACGAGTACGCTAACGAAGCGTCGACGACGCAGACGACGTCGGACAAGAA
GTCGTCTGAGCAGTCCTCGGTACCGAACCCATACACGCAGAGTCCGGTGG
CCACTCAAGGGATGCGACACGACTTCCCCGACCTCACGCAGTACCCGGAC
CGGGTATCGCAGGAGGAACATCTTCCAGACACACAACAGGGAGACAGCAG
CCAGCCGTCGCCCCGACCGGCTGCTGACCTGGCGCCGCTGGAAAATGGCC
CGGCGCACTCGCAACCACGGGCTCAGCCGCCGGTGCCCCTGTTTGACCAC
CCGACCAAGCCGGCTGCGCATGTGCCGGCGGGAATGCAGTCGCTGCTGAA
TAACGAGGACCTGTCGCCGAAAATAACGCTGGACCTGGAATACGTGCAGA
AGCTGCACGAGCAGCTGACGCAGCGGACGAGCGGCTGCAGTGTGGAGCAG
CTCGAGCAGATCAACACGAACCTGATGGACTACCTGTGGCAGACGCGGGG
AGAGTGGAATCGGAGCAAGGTGGCAGCGGGGATCCAGGACACGTTCAACG
AAGTGCTGGAGGACATGCAGGCAATGCAGGAGATTGGGCCGATCAGTCAG
AAGACGAAGGAGCAGCTGTATCCGCTGTAG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Molecular Function
TermDefinition
GO:0005515protein binding
GO:0005524ATP binding
Relationships

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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_193872ASPNIDRAFT_193872Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_193872-T1.exon1ASPNIDRAFT_193872-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_193872-T1.exon2ASPNIDRAFT_193872-T1.exon2Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_193872-T1.cdsASPNIDRAFT_193872-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_193872-T1ASPNIDRAFT_193872-T1-proteinAspergillus niger ATCC 1015polypeptide


Properties
Property NameValue
NoteEggNog:ENOG41
NoteBUSCO:EOG092606O3
DBxrefInterPro:IPR027417
DBxrefInterPro:IPR036427
DBxrefInterPro:IPR003960
DBxrefInterPro:IPR003959
DBxrefInterPro:IPR041569
DBxrefInterPro:IPR003593
DBxrefPFAM:PF17862
DBxrefPFAM:PF07724
DBxrefPFAM:PF00004
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
ACJE01000014.1supercontigACJE01000014.1:537412..542434 +