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ASPNIDRAFT_182683-T1, ASPNIDRAFT_182683-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_182683-T1
Unique NameASPNIDRAFT_182683-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000008.1:887676..892684-

Legend: polypeptideCDSexon
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_182683-T1 ID=ASPNIDRAFT_182683-T1|Name=ASPNIDRAFT_182683-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=5009bp|location=Sequence derived from alignment at ACJE01000008.1:887676..892684- (Aspergillus niger ATCC 1015)
ATGGCTGGTGGAGGAAACATCAAGGTGGTGGTGCGAGTGCGGCCTTTCAA CAGCAGAGGTGAGTCACTTGTGGCATTGGCAATGCGACCAAGCCCCTCTC CTAGACTGGACTGACTCCGGTGTCTTCTTCCCGCACTCTAGAAATCGACC GTGGTGCAAAATGTATTGTTCAGATGAAAGACAACCAAACCGTCCTTTCC ACTCCACCGGGCGCGGATGATAAAGCCCGCAAGGCTGGTGGAGGGAAAGG CGCGGATGGAGGACCCAAGTCATTCGCCTTCGACAGATCGTATTGGTCTT TCGATAAGAATGCCCCAAATTATGCGAGCCAGGATAACCTGTTTCTCGAC TTGGGTGTACCGCTATTAGACAATGCCTTCCAGGGTTACAATAACTGTAT CTTCGCCTACGGTCAGACGGGTTCCGGAAAATCGTATTCGATGATGGGTT ACGGCAAAGAGTACGGTGTGATTCCGAGAATTTGTCAGGATATGTTCGAG CGCATTCATTCAATCCAGCAAGACAAGAACCTCGGCTGTACGGTGGAAGT GTCATATCTTGAAATCTACAATGAGAGAGTCCGTGATTTGCTCAACCCTT CGAATAAGGGCAATTTAAAGGTTCGCGAGCATCCGTCGACTGGTCCCTAC GTCGAGGACCTGGCCAAGCTTGTAGTGCGCTCTTTTGAGGAGATCGAGAA TTTGATGGACGAGGGTAACAAGGCTAGAACGGTTGCTGCCACAAACATGA ACGAGACGTCCAGTCGTTCCCATGCCGTGTTTACCTTGACCCTCACACAG AAGCGCCATGACGCGGAGACGTCTATGGATACGGAGAAGGTGTCGCGCAT TAGTTTAGTCGATCTTGCAGGTTCGGAAAGAGCAAATTCTACTGGCGCGA CCGGTGCGAGACTGAAGGAGGGTGCGGAAATTAACCGTTCGCTGTCGACC CTTGGTCGTGTCATTGCCGCTCTCGCTGACGTGGCGGCTGGCAAAAAGAA GAACGCATCAATGGTTCCATATCGTGATTCCATTTTGACATGGTTGCTAA AGGACTCGTTGGGAGGTAACTCCATGACAGCGATGATTGCTGCTATTTCG CCCGCCGACATCAACTTTGAGGAGACTCTCAGTACTCTCCGTTATGCAGA CTCGGCGAAGCGAATTAAGAATCATGCCGTTGTGAACGAAGACCCCAACG CACGAATGATTAGAGAGTTAAAGGAGGAGTTGGCCCAACTCCGGTCGAAA CTTGGTGGTGGTGCCGCAGGTCCTGGAGCAGGCAGCGCTGCTGGTGCTAT ACCAGCAGAAGAATATTACCCTCCAGATACCCCCCTAGAGAAGCAACTCG TCTCTATACAACAGCCGGATGGTTCGATCACCAAAGTTAGCAAGGCTGAA ATCGTCGAACAGCTGAACCAGAGCGAGAAGCTTTACAAAGATCTGAATCA AACTTGGGAGGAGAAGCTGGCAAAGACTGAAGAGATTCACAAAGAGCGAG AGTCTGCTCTGGAGGAACTTGGTATCAGCATCGAGAAAGGTTTCATCGGA TTGAGCACGCCGAAGAAGATGCCACATTTGGTCAATCTGAGCGACGACCC GCTGCTAGCTGAGTGTCTCGTTTACAACATCAAGCCGGGAACCACCATAG TCGGAAACATGGACCAGGGCAGCCATGTTGAAATAAGATTGAACGGCTCG AAAATTTTAGACGATCATTGTAGGTTTGAGAACGTGGACAATGTTGTCAC CATTATCCCCACCGAAGGCGCAGCGGTCATGGTGAATGGATTGCGAATCG ATAAACCGAAGCGACTCAAGAGTGGGTTCCGCATTATCCTGGGTGATTTC CATATCTTCCGTTTCAATCACCCCCAGGAAGCGCGTGCTGAACGAGTTGA ACAAAGCTTGCTGCGTCATTCCGTCACCACAAGTCAACTGGGCTCACCCG CGCCCAATAAAACCCACGATCGAACCCTGAGTAAGACAGGCTCGGAGGTG GACGGCGATTCGAGCAGAGCAGATTCCCCGATGCCCTCCCAGCGCGGTAG GGAATCTGATTGGTTTTATGCTCGCCGTGAAGCCGTCAGTGCGGTGCTGG GGCCCGATCAAATCTCCCATATGCCTGACGATGAGCTAGACGCCTTGTTT GAGGATGTACAGAAAGTACGGGCAACTCGTCGTGGGCTGATGGAGAACGA GGAAGACTCTGACTCGCTCAGTTCGTTCCCAGTGCGGGATAAGTACATGT CCAACGGAACGATTGATAATTTCTCATTGGACACTGCCATTACGATGCCT GGAACTCCGCATCCGAATGATGAGAATGACGGGCAGAATGGGGGAGAAGC TACACTGCAATCGGTGCGTCAGGATATGCAGCGCCAGTTGGACCGACAAA AGGAGGAGTATCAGGACAAGTTAAGGAATGCCGAGGCCTCTTCCACCCAG GGTGTCGATGACCTACGCTCCGAAAAGGCTCGAATGGAGGAAGCCCTGCG AAATGCAAAGGAAGAATTCGAAGAGCAACTGAAAAAGCAGAAAGAGGCTT TTGAGTCTCACATGAAGGATCTAGGCCAACCAGTACCCAAAATCTACGAG AATGGTTTTGCCAAGCTGGATGACAGAGAGCTTGAAGTCGCTAAAACAGT CTACCGCCACTGGTCTCAGCAAAACTACGTTCGCATGGCCGAGAAAGTGC TCCAGCATGCGTCTTTGTTGAAGGAGGCCCAAGTGATGAGCCACATAATG GACAAGAATGTCGTGTTTCAGTTTGCGATCATTGACCACGGGCATAACAT GGCCTCGTCCTACGACCTTGTACTGAATGGTATCTCTGGAGACGAGGATG TTGTTCTAGATGAGGCCAAGAAACCCTGTGTCGCAGTTCGTGTGATTGAT TTCAAGCAATGTGTCATCCACCTATGGTCTATCGAGAAGCTCCAACGCCG TGTTCAGGCTATGCGGCAATTGCACCAGTATATCGACCGGCCAGACTACA TCCAGCATTTCAAGCTTGAAAACCCCTTCTCGGAGCCGTGCTCGCCTCAA TATTCGCTGGTTGGTGACGCCGATATCCCTCTCACGGCTGTCTTTGAGAC CCGAGTCCAAGACGTTTCAGTTGAAGTTACCTCGCCATATACACAAAATG TCATAGGCATTATTAGGCTGTCATTAGAGCCCTCCTCGGCTCAGGCGCCT TCGTCTACTCTCAAGTTCAATGTCGTGATGCGGGATATGGTTGGCTTCGC TGAATGGGAAGGGTCGGACGTCCACGCGCAATTGTTTGTACCCGGAATCT CTGACGAAGGGGGAGCTACGACTACTCAAATGATTACGGGCTTCGATGAA TCACCTGTGCGGTTTGAGAGCGTTCATAGTATGAGTTTGCCGCTGTCAAG TCCACGGACGGCAGCACTAAAGATCTGTGTTTACGCAAAGGTGACACAAA TGCATTTGGACAAGCTCCTTAGCTGGGATGACATGCGTGACTCTGCAGAG CCGGCTCCCAAGAAACGCAAAACGCCGCGTATTGCGGAGACGGAGTTCTA TTCCGAAGAGAGACATGATGTTTTCGCCAGGGCGCAGGTGCTCGAATTAG CCGAGTCCGGTGAATATCTTCCAGTCGAGGTGGTCCAGAGCAACAGCCTC GATGCAGGCACGTATCAGCTCCATCAGGGTTTGCAGCGGCGGGTCCTGGT GAATCTAACTTACAGCTCAACTGAAAGCCTGCCGTGGGACAATATTACCA ATATCCGCGTGGGGTCAGTGCGATTGCTAGATCCTTGGGGCAAGATCCCT GATCAGGACTTGCAGACGCCAGACGTTGCGCTGAAGTTCGTCCAGGAGCC GAACGTGAAGGAAAACGCCGATGGGACGTCAAACATCACCATCATAGGTC AATGGGACTCCAGCTTACACGGGTCTCTCTTGCTAGATCGGGTCACTGCA GACAAGTATCGTGTCCAGGTGACACTCCGATGGGATTTGTTGTCTTCCCG TCTGCAGGATCCCGTCCCCTTTGAGATAGACCTGACCCTCCAGATTCAAG GCCGAACTTACGTTCGACCTCAGTCCATGTTCAAGCAATTCTTCAATTCA ACGCGAATTGTGCACTCCACAGTTCGCATGTTCTCTCTAGTCGTCCGTCC AGTGTCCGCCAAACGTGCGGCTGATCTCTGGCGGATGAACACACAGAACG ACTATGTGAAGGGCGAAGAGCTCCTTATTACCTGGGCTCCCCGCAAAGTC TCACTTGTCCGTGATTATATAGCCGCTCGCAAACGAAGGCGACGTGTTGC CGAGTTAAATGCAGCTAAAGGGGCTTTGAGTGCCAACAGCCTTGTTGCGT CGCCTCCACGCAGCGGACGGTCAACCCCCCTCCGTAGCCAGGAGCGTGCT GACCGCAGGGCTAAGTTGCTTCAGAAGTACGTCGACCTTTGGGGGAAAAA GACCGATCCTATCGAGGCAATCCTGGTCCGAAGCAACACCGAGCCGCCTG CAGGAGGGGCGGCCTTTGCCTCGCGGGCGAAGCAATCATCTTCAAGCGAT GATGGAAGCTCGGTTCAGGACGAGGCATCATTGAAGCCGCGGTTTGTTGC CAGCGTTCAAGCTCTTCCGAAGAATGATTCATCTTTGAAGTCTGGCTATC TCTTAACCCCCGATGATACCAACAGCCACTGGGTACGGCGTTTTGTTGAG CTTCGTCGTCCATATCTCCACATCTATTCTGTTCCTGACGGTGATGAGAT CAACGCTATCAACCTGCGCAATTCCCGAGTTGATCATGCACCCGACTTCG CACGGCTCCTCGATGGCCCAGGAGCAGCCGGGTCTGACCGGGGATCGTCT CCACGGGGTCGTCCGAATGTCTTTGCAGTGTACGGGGCACAAAACACGTT CCTGTTTGCGGCCCGAACCGAGGCCCAGAAAGTGGAATGGATCCTGAAGA TCGATGAAAGTTACTTCAGCAGCCCTGGTGCCAGAGCAATGGCAAACCAC AATGCGTGA
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Coding sequence (CDS) from alignment at ACJE01000008.1:887676..892684-

>ASPNIDRAFT_182683-T1 ID=ASPNIDRAFT_182683-T1|Name=ASPNIDRAFT_182683-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=9852bp|location=Sequence derived from alignment at ACJE01000008.1:887676..892684- (Aspergillus niger ATCC 1015)
AAATCGACCGTGGTGCAAAATGTATTGTTCAGATGAAAGACAACCAAACC
GTCCTTTCCACTCCACCGGGCGCGGATGATAAAGCCCGCAAGGCTGGTGG
AGGGAAAGGCGCGGATGGAGGACCCAAGTCATTCGCCTTCGACAGATCGT
ATTGGTCTTTCGATAAGAATGCCCCAAATTATGCGAGCCAGGATAACCTG
TTTCTCGACTTGGGTGTACCGCTATTAGACAATGCCTTCCAGGGTTACAA
TAACTGTATCTTCGCCTACGGTCAGACGGGTTCCGGAAAATCGTATTCGA
TGATGGGTTACGGCAAAGAGTACGGTGTGATTCCGAGAATTTGTCAGGAT
ATGTTCGAGCGCATTCATTCAATCCAGCAAGACAAGAACCTCGGCTGTAC
GGTGGAAGTGTCATATCTTGAAATCTACAATGAGAGAGTCCGTGATTTGC
TCAACCCTTCGAATAAGGGCAATTTAAAGGTTCGCGAGCATCCGTCGACT
GGTCCCTACGTCGAGGACCTGGCCAAGCTTGTAGTGCGCTCTTTTGAGGA
GATCGAGAATTTGATGGACGAGGGTAACAAGGCTAGAACGGTTGCTGCCA
CAAACATGAACGAGACGTCCAGTCGTTCCCATGCCGTGTTTACCTTGACC
CTCACACAGAAGCGCCATGACGCGGAGACGTCTATGGATACGGAGAAGGT
GTCGCGCATTAGTTTAGTCGATCTTGCAGGTTCGGAAAGAGCAAATTCTA
CTGGCGCGACCGGTGCGAGACTGAAGGAGGGTGCGGAAATTAACCGTTCG
CTGTCGACCCTTGGTCGTGTCATTGCCGCTCTCGCTGACGTGGCGGCTGG
CAAAAAGAAGAACGCATCAATGGTTCCATATCGTGATTCCATTTTGACAT
GGTTGCTAAAGGACTCGTTGGGAGGTAACTCCATGACAGCGATGATTGCT
GCTATTTCGCCCGCCGACATCAACTTTGAGGAGACTCTCAGTACTCTCCG
TTATGCAGACTCGGCGAAGCGAATTAAGAATCATGCCGTTGTGAACGAAG
ACCCCAACGCACGAATGATTAGAGAGTTAAAGGAGGAGTTGGCCCAACTC
CGGTCGAAACTTGGTGGTGGTGCCGCAGGTCCTGGAGCAGGCAGCGCTGC
TGGTGCTATACCAGCAGAAGAATATTACCCTCCAGATACCCCCCTAGAGA
AGCAACTCGTCTCTATACAACAGCCGGATGGTTCGATCACCAAAGTTAGC
AAGGCTGAAATCGTCGAACAGCTGAACCAGAGCGAGAAGCTTTACAAAGA
TCTGAATCAAACTTGGGAGGAGAAGCTGGCAAAGACTGAAGAGATTCACA
AAGAGCGAGAGTCTGCTCTGGAGGAACTTGGTATCAGCATCGAGAAAGGT
TTCATCGGATTGAGCACGCCGAAGAAGATGCCACATTTGGTCAATCTGAG
CGACGACCCGCTGCTAGCTGAGTGTCTCGTTTACAACATCAAGCCGGGAA
CCACCATAGTCGGAAACATGGACCAGGGCAGCCATGTTGAAATAAGATTG
AACGGCTCGAAAATTTTAGACGATCATTGTAGGTTTGAGAACGTGGACAA
TGTTGTCACCATTATCCCCACCGAAGGCGCAGCGGTCATGGTGAATGGAT
TGCGAATCGATAAACCGAAGCGACTCAAGAGTGGGTTCCGCATTATCCTG
GGTGATTTCCATATCTTCCGTTTCAATCACCCCCAGGAAGCGCGTGCTGA
ACGAGTTGAACAAAGCTTGCTGCGTCATTCCGTCACCACAAGTCAACTGG
GCTCACCCGCGCCCAATAAAACCCACGATCGAACCCTGAGTAAGACAGGC
TCGGAGGTGGACGGCGATTCGAGCAGAGCAGATTCCCCGATGCCCTCCCA
GCGCGGTAGGGAATCTGATTGGTTTTATGCTCGCCGTGAAGCCGTCAGTG
CGGTGCTGGGGCCCGATCAAATCTCCCATATGCCTGACGATGAGCTAGAC
GCCTTGTTTGAGGATGTACAGAAAGTACGGGCAACTCGTCGTGGGCTGAT
GGAGAACGAGGAAGACTCTGACTCGCTCAGTTCGTTCCCAGTGCGGGATA
AGTACATGTCCAACGGAACGATTGATAATTTCTCATTGGACACTGCCATT
ACGATGCCTGGAACTCCGCATCCGAATGATGAGAATGACGGGCAGAATGG
GGGAGAAGCTACACTGCAATCGGTGCGTCAGGATATGCAGCGCCAGTTGG
ACCGACAAAAGGAGGAGTATCAGGACAAGTTAAGGAATGCCGAGGCCTCT
TCCACCCAGGGTGTCGATGACCTACGCTCCGAAAAGGCTCGAATGGAGGA
AGCCCTGCGAAATGCAAAGGAAGAATTCGAAGAGCAACTGAAAAAGCAGA
AAGAGGCTTTTGAGTCTCACATGAAGGATCTAGGCCAACCAGTACCCAAA
ATCTACGAGAATGGTTTTGCCAAGCTGGATGACAGAGAGCTTGAAGTCGC
TAAAACAGTCTACCGCCACTGGTCTCAGCAAAACTACGTTCGCATGGCCG
AGAAAGTGCTCCAGCATGCGTCTTTGTTGAAGGAGGCCCAAGTGATGAGC
CACATAATGGACAAGAATGTCGTGTTTCAGTTTGCGATCATTGACCACGG
GCATAACATGGCCTCGTCCTACGACCTTGTACTGAATGGTATCTCTGGAG
ACGAGGATGTTGTTCTAGATGAGGCCAAGAAACCCTGTGTCGCAGTTCGT
GTGATTGATTTCAAGCAATGTGTCATCCACCTATGGTCTATCGAGAAGCT
CCAACGCCGTGTTCAGGCTATGCGGCAATTGCACCAGTATATCGACCGGC
CAGACTACATCCAGCATTTCAAGCTTGAAAACCCCTTCTCGGAGCCGTGC
TCGCCTCAATATTCGCTGGTTGGTGACGCCGATATCCCTCTCACGGCTGT
CTTTGAGACCCGAGTCCAAGACGTTTCAGTTGAAGTTACCTCGCCATATA
CACAAAATGTCATAGGCATTATTAGGCTGTCATTAGAGCCCTCCTCGGCT
CAGGCGCCTTCGTCTACTCTCAAGTTCAATGTCGTGATGCGGGATATGGT
TGGCTTCGCTGAATGGGAAGGGTCGGACGTCCACGCGCAATTGTTTGTAC
CCGGAATCTCTGACGAAGGGGGAGCTACGACTACTCAAATGATTACGGGC
TTCGATGAATCACCTGTGCGGTTTGAGAGCGTTCATAGTATGAGTTTGCC
GCTGTCAAGTCCACGGACGGCAGCACTAAAGATCTGTGTTTACGCAAAGG
TGACACAAATGCATTTGGACAAGCTCCTTAGCTGGGATGACATGCGTGAC
TCTGCAGAGCCGGCTCCCAAGAAACGCAAAACGCCGCGTATTGCGGAGAC
GGAGTTCTATTCCGAAGAGAGACATGATGTTTTCGCCAGGGCGCAGGTGC
TCGAATTAGCCGAGTCCGGTGAATATCTTCCAGTCGAGGTGGTCCAGAGC
AACAGCCTCGATGCAGGCACGTATCAGCTCCATCAGGGTTTGCAGCGGCG
GGTCCTGGTGAATCTAACTTACAGCTCAACTGAAAGCCTGCCGTGGGACA
ATATTACCAATATCCGCGTGGGGTCAGTGCGATTGCTAGATCCTTGGGGC
AAGATCCCTGATCAGGACTTGCAGACGCCAGACGTTGCGCTGAAGTTCGT
CCAGGAGCCGAACGTGAAGGAAAACGCCGATGGGACGTCAAACATCACCA
TCATAGGTCAATGGGACTCCAGCTTACACGGGTCTCTCTTGCTAGATCGG
GTCACTGCAGACAAGTATCGTGTCCAGGTGACACTCCGATGGGATTTGTT
GTCTTCCCGTCTGCAGGATCCCGTCCCCTTTGAGATAGACCTGACCCTCC
AGATTCAAGGCCGAACTTACGTTCGACCTCAGTCCATGTTCAAGCAATTC
TTCAATTCAACGCGAATTGTGCACTCCACAGTTCGCATGTTCTCTCTAGT
CGTCCGTCCAGTGTCCGCCAAACGTGCGGCTGATCTCTGGCGGATGAACA
CACAGAACGACTATGTGAAGGGCGAAGAGCTCCTTATTACCTGGGCTCCC
CGCAAAGTCTCACTTGTCCGTGATTATATAGCCGCTCGCAAACGAAGGCG
ACGTGTTGCCGAGTTAAATGCAGCTAAAGGGGCTTTGAGTGCCAACAGCC
TTGTTGCGTCGCCTCCACGCAGCGGACGGTCAACCCCCCTCCGTAGCCAG
GAGCGTGCTGACCGCAGGGCTAAGTTGCTTCAGAAGTACGTCGACCTTTG
GGGGAAAAAGACCGATCCTATCGAGGCAATCCTGGTCCGAAGCAACACCG
AGCCGCCTGCAGGAGGGGCGGCCTTTGCCTCGCGGGCGAAGCAATCATCT
TCAAGCGATGATGGAAGCTCGGTTCAGGACGAGGCATCATTGAAGCCGCG
GTTTGTTGCCAGCGTTCAAGCTCTTCCGAAGAATGATTCATCTTTGAAGT
CTGGCTATCTCTTAACCCCCGATGATACCAACAGCCACTGGGTACGGCGT
TTTGTTGAGCTTCGTCGTCCATATCTCCACATCTATTCTGTTCCTGACGG
TGATGAGATCAACGCTATCAACCTGCGCAATTCCCGAGTTGATCATGCAC
CCGACTTCGCACGGCTCCTCGATGGCCCAGGAGCAGCCGGGTCTGACCGG
GGATCGTCTCCACGGGGTCGTCCGAATGTCTTTGCAGTGTACGGGGCACA
AAACACGTTCCTGTTTGCGGCCCGAACCGAGGCCCAGAAAGTGGAATGGA
TCCTGAAGATCGATGAAAGTTACTTCAGCAGCCCTGGTGCCAGAGCAATG
GCAAACCACAATGCGTGAATGGCTGGTGGAGGAAACATCAAGGTGGTGGT
GCGAGTGCGGCCTTTCAACAGCAGAGAAATCGACCGTGGTGCAAAATGTA
TTGTTCAGATGAAAGACAACCAAACCGTCCTTTCCACTCCACCGGGCGCG
GATGATAAAGCCCGCAAGGCTGGTGGAGGGAAAGGCGCGGATGGAGGACC
CAAGTCATTCGCCTTCGACAGATCGTATTGGTCTTTCGATAAGAATGCCC
CAAATTATGCGAGCCAGGATAACCTGTTTCTCGACTTGGGTGTACCGCTA
TTAGACAATGCCTTCCAGGGTTACAATAACTGTATCTTCGCCTACGGTCA
GACGGGTTCCGGAAAATCGTATTCGATGATGGGTTACGGCAAAGAGTACG
GTGTGATTCCGAGAATTTGTCAGGATATGTTCGAGCGCATTCATTCAATC
CAGCAAGACAAGAACCTCGGCTGTACGGTGGAAGTGTCATATCTTGAAAT
CTACAATGAGAGAGTCCGTGATTTGCTCAACCCTTCGAATAAGGGCAATT
TAAAGGTTCGCGAGCATCCGTCGACTGGTCCCTACGTCGAGGACCTGGCC
AAGCTTGTAGTGCGCTCTTTTGAGGAGATCGAGAATTTGATGGACGAGGG
TAACAAGGCTAGAACGGTTGCTGCCACAAACATGAACGAGACGTCCAGTC
GTTCCCATGCCGTGTTTACCTTGACCCTCACACAGAAGCGCCATGACGCG
GAGACGTCTATGGATACGGAGAAGGTGTCGCGCATTAGTTTAGTCGATCT
TGCAGGTTCGGAAAGAGCAAATTCTACTGGCGCGACCGGTGCGAGACTGA
AGGAGGGTGCGGAAATTAACCGTTCGCTGTCGACCCTTGGTCGTGTCATT
GCCGCTCTCGCTGACGTGGCGGCTGGCAAAAAGAAGAACGCATCAATGGT
TCCATATCGTGATTCCATTTTGACATGGTTGCTAAAGGACTCGTTGGGAG
GTAACTCCATGACAGCGATGATTGCTGCTATTTCGCCCGCCGACATCAAC
TTTGAGGAGACTCTCAGTACTCTCCGTTATGCAGACTCGGCGAAGCGAAT
TAAGAATCATGCCGTTGTGAACGAAGACCCCAACGCACGAATGATTAGAG
AGTTAAAGGAGGAGTTGGCCCAACTCCGGTCGAAACTTGGTGGTGGTGCC
GCAGGTCCTGGAGCAGGCAGCGCTGCTGGTGCTATACCAGCAGAAGAATA
TTACCCTCCAGATACCCCCCTAGAGAAGCAACTCGTCTCTATACAACAGC
CGGATGGTTCGATCACCAAAGTTAGCAAGGCTGAAATCGTCGAACAGCTG
AACCAGAGCGAGAAGCTTTACAAAGATCTGAATCAAACTTGGGAGGAGAA
GCTGGCAAAGACTGAAGAGATTCACAAAGAGCGAGAGTCTGCTCTGGAGG
AACTTGGTATCAGCATCGAGAAAGGTTTCATCGGATTGAGCACGCCGAAG
AAGATGCCACATTTGGTCAATCTGAGCGACGACCCGCTGCTAGCTGAGTG
TCTCGTTTACAACATCAAGCCGGGAACCACCATAGTCGGAAACATGGACC
AGGGCAGCCATGTTGAAATAAGATTGAACGGCTCGAAAATTTTAGACGAT
CATTGTAGGTTTGAGAACGTGGACAATGTTGTCACCATTATCCCCACCGA
AGGCGCAGCGGTCATGGTGAATGGATTGCGAATCGATAAACCGAAGCGAC
TCAAGAGTGGGTTCCGCATTATCCTGGGTGATTTCCATATCTTCCGTTTC
AATCACCCCCAGGAAGCGCGTGCTGAACGAGTTGAACAAAGCTTGCTGCG
TCATTCCGTCACCACAAGTCAACTGGGCTCACCCGCGCCCAATAAAACCC
ACGATCGAACCCTGAGTAAGACAGGCTCGGAGGTGGACGGCGATTCGAGC
AGAGCAGATTCCCCGATGCCCTCCCAGCGCGGTAGGGAATCTGATTGGTT
TTATGCTCGCCGTGAAGCCGTCAGTGCGGTGCTGGGGCCCGATCAAATCT
CCCATATGCCTGACGATGAGCTAGACGCCTTGTTTGAGGATGTACAGAAA
GTACGGGCAACTCGTCGTGGGCTGATGGAGAACGAGGAAGACTCTGACTC
GCTCAGTTCGTTCCCAGTGCGGGATAAGTACATGTCCAACGGAACGATTG
ATAATTTCTCATTGGACACTGCCATTACGATGCCTGGAACTCCGCATCCG
AATGATGAGAATGACGGGCAGAATGGGGGAGAAGCTACACTGCAATCGGT
GCGTCAGGATATGCAGCGCCAGTTGGACCGACAAAAGGAGGAGTATCAGG
ACAAGTTAAGGAATGCCGAGGCCTCTTCCACCCAGGGTGTCGATGACCTA
CGCTCCGAAAAGGCTCGAATGGAGGAAGCCCTGCGAAATGCAAAGGAAGA
ATTCGAAGAGCAACTGAAAAAGCAGAAAGAGGCTTTTGAGTCTCACATGA
AGGATCTAGGCCAACCAGTACCCAAAATCTACGAGAATGGTTTTGCCAAG
CTGGATGACAGAGAGCTTGAAGTCGCTAAAACAGTCTACCGCCACTGGTC
TCAGCAAAACTACGTTCGCATGGCCGAGAAAGTGCTCCAGCATGCGTCTT
TGTTGAAGGAGGCCCAAGTGATGAGCCACATAATGGACAAGAATGTCGTG
TTTCAGTTTGCGATCATTGACCACGGGCATAACATGGCCTCGTCCTACGA
CCTTGTACTGAATGGTATCTCTGGAGACGAGGATGTTGTTCTAGATGAGG
CCAAGAAACCCTGTGTCGCAGTTCGTGTGATTGATTTCAAGCAATGTGTC
ATCCACCTATGGTCTATCGAGAAGCTCCAACGCCGTGTTCAGGCTATGCG
GCAATTGCACCAGTATATCGACCGGCCAGACTACATCCAGCATTTCAAGC
TTGAAAACCCCTTCTCGGAGCCGTGCTCGCCTCAATATTCGCTGGTTGGT
GACGCCGATATCCCTCTCACGGCTGTCTTTGAGACCCGAGTCCAAGACGT
TTCAGTTGAAGTTACCTCGCCATATACACAAAATGTCATAGGCATTATTA
GGCTGTCATTAGAGCCCTCCTCGGCTCAGGCGCCTTCGTCTACTCTCAAG
TTCAATGTCGTGATGCGGGATATGGTTGGCTTCGCTGAATGGGAAGGGTC
GGACGTCCACGCGCAATTGTTTGTACCCGGAATCTCTGACGAAGGGGGAG
CTACGACTACTCAAATGATTACGGGCTTCGATGAATCACCTGTGCGGTTT
GAGAGCGTTCATAGTATGAGTTTGCCGCTGTCAAGTCCACGGACGGCAGC
ACTAAAGATCTGTGTTTACGCAAAGGTGACACAAATGCATTTGGACAAGC
TCCTTAGCTGGGATGACATGCGTGACTCTGCAGAGCCGGCTCCCAAGAAA
CGCAAAACGCCGCGTATTGCGGAGACGGAGTTCTATTCCGAAGAGAGACA
TGATGTTTTCGCCAGGGCGCAGGTGCTCGAATTAGCCGAGTCCGGTGAAT
ATCTTCCAGTCGAGGTGGTCCAGAGCAACAGCCTCGATGCAGGCACGTAT
CAGCTCCATCAGGGTTTGCAGCGGCGGGTCCTGGTGAATCTAACTTACAG
CTCAACTGAAAGCCTGCCGTGGGACAATATTACCAATATCCGCGTGGGGT
CAGTGCGATTGCTAGATCCTTGGGGCAAGATCCCTGATCAGGACTTGCAG
ACGCCAGACGTTGCGCTGAAGTTCGTCCAGGAGCCGAACGTGAAGGAAAA
CGCCGATGGGACGTCAAACATCACCATCATAGGTCAATGGGACTCCAGCT
TACACGGGTCTCTCTTGCTAGATCGGGTCACTGCAGACAAGTATCGTGTC
CAGGTGACACTCCGATGGGATTTGTTGTCTTCCCGTCTGCAGGATCCCGT
CCCCTTTGAGATAGACCTGACCCTCCAGATTCAAGGCCGAACTTACGTTC
GACCTCAGTCCATGTTCAAGCAATTCTTCAATTCAACGCGAATTGTGCAC
TCCACAGTTCGCATGTTCTCTCTAGTCGTCCGTCCAGTGTCCGCCAAACG
TGCGGCTGATCTCTGGCGGATGAACACACAGAACGACTATGTGAAGGGCG
AAGAGCTCCTTATTACCTGGGCTCCCCGCAAAGTCTCACTTGTCCGTGAT
TATATAGCCGCTCGCAAACGAAGGCGACGTGTTGCCGAGTTAAATGCAGC
TAAAGGGGCTTTGAGTGCCAACAGCCTTGTTGCGTCGCCTCCACGCAGCG
GACGGTCAACCCCCCTCCGTAGCCAGGAGCGTGCTGACCGCAGGGCTAAG
TTGCTTCAGAAGTACGTCGACCTTTGGGGGAAAAAGACCGATCCTATCGA
GGCAATCCTGGTCCGAAGCAACACCGAGCCGCCTGCAGGAGGGGCGGCCT
TTGCCTCGCGGGCGAAGCAATCATCTTCAAGCGATGATGGAAGCTCGGTT
CAGGACGAGGCATCATTGAAGCCGCGGTTTGTTGCCAGCGTTCAAGCTCT
TCCGAAGAATGATTCATCTTTGAAGTCTGGCTATCTCTTAACCCCCGATG
ATACCAACAGCCACTGGGTACGGCGTTTTGTTGAGCTTCGTCGTCCATAT
CTCCACATCTATTCTGTTCCTGACGGTGATGAGATCAACGCTATCAACCT
GCGCAATTCCCGAGTTGATCATGCACCCGACTTCGCACGGCTCCTCGATG
GCCCAGGAGCAGCCGGGTCTGACCGGGGATCGTCTCCACGGGGTCGTCCG
AATGTCTTTGCAGTGTACGGGGCACAAAACACGTTCCTGTTTGCGGCCCG
AACCGAGGCCCAGAAAGTGGAATGGATCCTGAAGATCGATGAAAGTTACT
TCAGCAGCCCTGGTGCCAGAGCAATGGCAAACCACAATGCGTGAATGGCT
GGTGGAGGAAACATCAAGGTGGTGGTGCGAGTGCGGCCTTTCAACAGCAG
AG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0007018microtubule-based movement
Vocabulary: Molecular Function
TermDefinition
GO:0005515protein binding
GO:0003777microtubule motor activity
GO:0008017microtubule binding
GO:0005524ATP binding
Relationships

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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_182683ASPNIDRAFT_182683Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_182683-T1ASPNIDRAFT_182683-T1-proteinAspergillus niger ATCC 1015polypeptide


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_182683-T1.cdsASPNIDRAFT_182683-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_182683-T1.exon2ASPNIDRAFT_182683-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_182683-T1.exon1ASPNIDRAFT_182683-T1.exon1Aspergillus niger ATCC 1015exon


Properties
Property NameValue
DBxrefInterPro:IPR027417
DBxrefInterPro:IPR008984
DBxrefInterPro:IPR000253
DBxrefInterPro:IPR019821
DBxrefInterPro:IPR036961
DBxrefInterPro:IPR011993
DBxrefInterPro:IPR022164
DBxrefInterPro:IPR022140
DBxrefInterPro:IPR032405
DBxrefInterPro:IPR001849
DBxrefInterPro:IPR001752
DBxrefPFAM:PF00169
DBxrefPFAM:PF16796
DBxrefPFAM:PF16183
DBxrefPFAM:PF00225
DBxrefPFAM:PF12423
DBxrefPFAM:PF12473
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
ACJE01000008.1supercontigACJE01000008.1:887676..892684 -