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ASPNIDRAFT_129824-T1, ASPNIDRAFT_129824-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_129824-T1
Unique NameASPNIDRAFT_129824-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000009.1:1340407..1343497-

Legend: polypeptideCDSexon
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_129824-T1 ID=ASPNIDRAFT_129824-T1|Name=ASPNIDRAFT_129824-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=3091bp|location=Sequence derived from alignment at ACJE01000009.1:1340407..1343497- (Aspergillus niger ATCC 1015)
ATGCCCGACAAACGCAAACCCTCCGGCTCAGTCACCGGATTCTCTCCCTA CGCGAAACGTTCCCGCCCCTCCTACGCCGAAGAAGATGACGAAGAAGAAG CCCAGCCGACTGTAACTCCATACGAACGCCCGCGCAACCACCCGGTGTAT GGCCAAAAGAGCGCTTTTCCGGGTCTGGATGTCGCGGGAGATGATGAGCT GTTCTACGGGCCTGCTGAAGATGGCATGGAATATTTGCGCATGGTTCGGT AAGTTTGTTTGTCTTTTCTATCCTTTACTTCATCCTTTTGCCTGTTGTAT CTTTCTGGCTCTTTTCGCTTCCCGCTTGCTAAATGCCTGCGTGTTTCGGA CTTTAGCTCGCGAAAGGCCTCCTTCGGCATTTCTTGAATTCGGCGATGTG ATGTGATGTGACGTGGCTCATTATTTTTTTCATTCTGGTTTGTTGTAGAT CGGAAGCAAACTCCCTCCCTTTCTTGTTTACGGCACCGCAAACGACGGAA ACTCCTGCCGCGACGGAGCAGGCGCAGAACGATGAGGAACTACAACAGCA GGAGGAGGTGAAGGATACAACAGAGCCTGTCCCTGAGGGCGTGGTTGTTG ATGGTGTCTACTTCGTTCCTCCTACGTCTACTACCAATACTACTGCCGCC CCTGCTGCGAATGTCGCCGAAGAGGCTATCTCCGACGCCCAATCAAGCTA CTACAACCTCCTCCACCACCGCTTCCTTCTCCTTCGATCGATACTAAAAT GCACACCTCCTTCTGAAGCTATCGCCGGGCTCGATGAATCCCACCCGATC AGCTTACCGCGACACTCGCGAAACGCGCGCAAGGAATGGCGCCGGTTACT CCTGGCGGTAGACCCGCAGACCGTACAGCTGGCGTGTATGGATATGGAGA GTGTGCTGGGAGTTCTGGAGATCATGGCACGCTTAATGTCGGAGAATGTA CGGAGTGGGGATGCGCAACGGGTTCAACGCATCGGGGCATGGGCGTGGGG ATTGTTGGGGAAGTGTCGGGATGTTGGGCAGCTAGGGACTGAGGAGGTTG GAGAAATTCGGGAGCTGGGGAAGAGAGCTGTGAAGATTCTGAGGAAGATG AGGGAAGAGGATGAGAAGAAGATGCAGGAAGGAGACGGGTCGGATGAGGA CGCCGAAGAGGACACAGGGGATAATGCTGCAGAGGGGGAGGAAGGATCAC AGCAAGTGGATGGACCAAGTGACGATCAGGATCACGATATGCAGGATGTG GAGGAAGAGAAGCCTGCTACTGAGGAGGAGCTGGAGGCAGCCAAAGCACG TCTGCAGGCGAAGCTCGCAGGTGGAGAGGACCAACCCACAGTCACAGAGC CCGAGGCTGGCAATGAGAACCCTGCAAATGAAGCGGCGACACAGACTCGC GCCATGCTGGACATGATCATCACGGTCATCGGGGAGTATTATGGACAACG GGATCTGCTGGGAGCACGCGAGCTGTGGAATGGGCCCGAGGCTACCGCAT GACGAGGAGATTTGACCAACAAATTTAGTGAATAAGATACCCAGTAATAT AGGACAGTTGAACCCAATTTAAATCTAGTAAATTGAAGCCTAAATACTAC TGCTATAGAGTTGTGTCCAGGCAACCCCGAAAGTAAGCGGCGACGACCTT GCGTCATTGTTGTTGATCCGGCGGTGACTTACTTTATTCCTTATCGGCGC ATCTCATCCTCCACCGCTTCATCTCTACTCACTCACTCACCTTCTACACT CGCCCCTTAACCCAACTCCAAACAATGCCCCAATAGCTTCACACAACCGA CACCCTGAAAAGAAATCAGAAACAATGCCTCCCACATCCCTCGAAATCAG CATCCCCACAACCAGCATCTCCGCAACCCAACCGCCCTACACCCTCTACA ACATCACCCTCCGCCTTCCCCTCCGCTCATTCACCATCTCCAAGCGCTAC TCCGAATTCACCACCTTCCACAACACCCTAGTTTCGCAAACAAACCTCCC ACCACCCGCCCCTCTCCCGCCCAAATCCTGGTTCCAGAATACCATCAACA ACGCCACCCTCCGCGAATCCCGCCGCGAAGCACTAGAAGCCTACCTCCGC GCTATCAACGAAAGCGAAGATCCCCGATGGCGCAACAGTCCCGCGTGGCG GGCGTTCCTCAATCTTCCTAGTTTGCCTTCGAATAATAACAATAATGGCG GGGCAAGTACTCGCCTGCATGCGGCAATCACCGACCCCGGCGACTCGGAA GGCGGAGGCATTACGGACCCGATCCTCTGGCTCGATTGCTTCAGGGATAT GAAGGGGCATTTACACGATGCGAGACTTTATCTTACGAGACGAGACCAGG AGACCACGCCGCAGCGACAGCATGAGAGTTCGGCGAGGGCGAAGAGCGAG CTTGTTAGGGCCGGGGGGTTGATTGCGAGTTTGGAGAGTGGGTTGAGGAA TTTGAGTAATTCTTCTTCTGGAGGTGGGGAGGAAAATAATGCAGGGTCAA GACCAGGAAGTAAACTCGGGCGCAGGAACACAGCCACGACCGCCACGGCA TGGAGTGTTAGTGGGAACAACACGCTCGGGGAAGGAGAGATGCGACGACG GAAGGATCTACTCATCAACGCGAGGAAGGAGAAAGATGGACTGGAGGATC TGCTGAATGCGATGGCGGCGAAGAGTCGGATTGATAGTGCGGTGGCGTCG ATTCAGGATAAGGAGGCGTTGATGGGGACGCAGGGGGGCAAGAAGGCGGT TCGGTCGTCGGGGAGGGTGTTGGGGAGGGAGACGGAGAGGACGCGCGAGT TGGATAATAGTGGGGTGGTACAGTTGCAGAAGCAGATGATGGAGGATCAG GATGTCGCGGTGGATGAGTTGATGAGGATTGTCAATCGGCAGAAGGAGTT GGGGATTGCAATCAATAATGAGTTGCAGGTGCAGAATGAGTTGTTGAATT TGGCGGATGAGGATGCTACGAGGTATGTATTTTTCCCCCATCTTGTTTTT TATATTTTTGGTGGGAGGGCTGTGCTAACTTGAATATAGGTTGGGTGGGA AGATTGATATTGGGAAGAAGAGGATTGGGAGGATTTCTTGA
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Coding sequence (CDS) from alignment at ACJE01000009.1:1340407..1343497-

>ASPNIDRAFT_129824-T1 ID=ASPNIDRAFT_129824-T1|Name=ASPNIDRAFT_129824-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=11910bp|location=Sequence derived from alignment at ACJE01000009.1:1340407..1343497- (Aspergillus niger ATCC 1015)
GTTGGGTGGGAAGATTGATATTGGGAAGAAGAGGATTGGGAGGATTTCTT
GATGGGAACAACACGCTCGGGGAAGGAGAGATGCGACGACGGAAGGATCT
ACTCATCAACGCGAGGAAGGAGAAAGATGGACTGGAGGATCTGCTGAATG
CGATGGCGGCGAAGAGTCGGATTGATAGTGCGGTGGCGTCGATTCAGGAT
AAGGAGGCGTTGATGGGGACGCAGGGGGGCAAGAAGGCGGTTCGGTCGTC
GGGGAGGGTGTTGGGGAGGGAGACGGAGAGGACGCGCGAGTTGGATAATA
GTGGGGTGGTACAGTTGCAGAAGCAGATGATGGAGGATCAGGATGTCGCG
GTGGATGAGTTGATGAGGATTGTCAATCGGCAGAAGGAGTTGGGGATTGC
AATCAATAATGAGTTGCAGGTGCAGAATGAGTTGTTGAATTTGGCGGATG
AGGATGCTACGAGCATCCCCACAACCAGCATCTCCGCAACCCAACCGCCC
TACACCCTCTACAACATCACCCTCCGCCTTCCCCTCCGCTCATTCACCAT
CTCCAAGCGCTACTCCGAATTCACCACCTTCCACAACACCCTAGTTTCGC
AAACAAACCTCCCACCACCCGCCCCTCTCCCGCCCAAATCCTGGTTCCAG
AATACCATCAACAACGCCACCCTCCGCGAATCCCGCCGCGAAGCACTAGA
AGCCTACCTCCGCGCTATCAACGAAAGCGAAGATCCCCGATGGCGCAACA
GTCCCGCGTGGCGGGCGTTCCTCAATCTTCCTAGTTTGCCTTCGAATAAT
AACAATAATGGCGGGGCAAGTACTCGCCTGCATGCGGCAATCACCGACCC
CGGCGACTCGGAAGGCGGAGGCATTACGGACCCGATCCTCTGGCTCGATT
GCTTCAGGGATATGAAGGGGCATTTACACGATGCGAGACTTTATCTTACG
AGACGAGACCAGGAGACCACGCCGCAGCGACAGCATGAGAGTTCGGCGAG
GGCGAAGAGCGAGCTTGTTAGGGCCGGGGGGTTGATTGCGAGTTTGGAGA
GTGGGTTGAGGAATTTGAGTAATTCTTCTTCTGGAGGTGGGGAGGAAAAT
AATGCAGGATCGGAAGCAAACTCCCTCCCTTTCTTGTTTACGGCACCGCA
AACGACGGAAACTCCTGCCGCGACGGAGCAGGCGCAGAACGATGAGGAAC
TACAACAGCAGGAGGAGGTGAAGGATACAACAGAGCCTGTCCCTGAGGGC
GTGGTTGTTGATGGTGTCTACTTCGTTCCTCCTACGTCTACTACCAATAC
TACTGCCGCCCCTGCTGCGAATGTCGCCGAAGAGGCTATCTCCGACGCCC
AATCAAGCTACTACAACCTCCTCCACCACCGCTTCCTTCTCCTTCGATCG
ATACTAAAATGCACACCTCCTTCTGAAGCTATCGCCGGGCTCGATGAATC
CCACCCGATCAGCTTACCGCGACACTCGCGAAACGCGCGCAAGGAATGGC
GCCGGTTACTCCTGGCGGTAGACCCGCAGACCGTACAGCTGGCGTGTATG
GATATGGAGAGTGTGCTGGGAGTTCTGGAGATCATGGCACGCTTAATGTC
GGAGAATGTACGGAGTGGGGATGCGCAACGGGTTCAACGCATCGGGGCAT
GGGCGTGGGGATTGTTGGGGAAGTGTCGGGATGTTGGGCAGCTAGGGACT
GAGGAGGTTGGAGAAATTCGGGAGCTGGGGAAGAGAGCTGTGAAGATTCT
GAGGAAGATGAGGGAAGAGGATGAGAAGAAGATGCAGGAAGGAGACGGGT
CGGATGAGGACGCCGAAGAGGACACAGGGGATAATGCTGCAGAGGGGGAG
GAAGGATCACAGCAAGTGGATGGACCAAGTGACGATCAGGATCACGATAT
GCAGGATGTGGAGGAAGAGAAGCCTGCTACTGAGGAGGAGCTGGAGGCAG
CCAAAGCACGTCTGCAGGCGAAGCTCGCAGGTGGAGAGGACCAACCCACA
GTCACAGAGCCCGAGGCTGGCAATGAGAACCCTGCAAATGAAGCGGCGAC
ACAGACTCGCGCCATGCTGGACATGATCATCACGGTCATCGGGGAGTATT
ATGGACAACGGGATCTGCTGGGAGCACGCGAGCTATGCCCGACAAACGCA
AACCCTCCGGCTCAGTCACCGGATTCTCTCCCTACGCGAAACGTTCCCGC
CCCTCCTACGCCGAAGAAGATGACGAAGAAGAAGCCCAGCCGACTGTAAC
TCCATACGAACGCCCGCGCAACCACCCGGTGTATGGCCAAAAGAGCGCTT
TTCCGGGTCTGGATGTCGCGGGAGATGATGAGCTGTTCTACGGGCCTGCT
GAAGATGGCATGGAATATTTGCGCATGGTTCGGTTGGGTGGGAAGATTGA
TATTGGGAAGAAGAGGATTGGGAGGATTTCTTGATGGGAACAACACGCTC
GGGGAAGGAGAGATGCGACGACGGAAGGATCTACTCATCAACGCGAGGAA
GGAGAAAGATGGACTGGAGGATCTGCTGAATGCGATGGCGGCGAAGAGTC
GGATTGATAGTGCGGTGGCGTCGATTCAGGATAAGGAGGCGTTGATGGGG
ACGCAGGGGGGCAAGAAGGCGGTTCGGTCGTCGGGGAGGGTGTTGGGGAG
GGAGACGGAGAGGACGCGCGAGTTGGATAATAGTGGGGTGGTACAGTTGC
AGAAGCAGATGATGGAGGATCAGGATGTCGCGGTGGATGAGTTGATGAGG
ATTGTCAATCGGCAGAAGGAGTTGGGGATTGCAATCAATAATGAGTTGCA
GGTGCAGAATGAGTTGTTGAATTTGGCGGATGAGGATGCTACGAGCATCC
CCACAACCAGCATCTCCGCAACCCAACCGCCCTACACCCTCTACAACATC
ACCCTCCGCCTTCCCCTCCGCTCATTCACCATCTCCAAGCGCTACTCCGA
ATTCACCACCTTCCACAACACCCTAGTTTCGCAAACAAACCTCCCACCAC
CCGCCCCTCTCCCGCCCAAATCCTGGTTCCAGAATACCATCAACAACGCC
ACCCTCCGCGAATCCCGCCGCGAAGCACTAGAAGCCTACCTCCGCGCTAT
CAACGAAAGCGAAGATCCCCGATGGCGCAACAGTCCCGCGTGGCGGGCGT
TCCTCAATCTTCCTAGTTTGCCTTCGAATAATAACAATAATGGCGGGGCA
AGTACTCGCCTGCATGCGGCAATCACCGACCCCGGCGACTCGGAAGGCGG
AGGCATTACGGACCCGATCCTCTGGCTCGATTGCTTCAGGGATATGAAGG
GGCATTTACACGATGCGAGACTTTATCTTACGAGACGAGACCAGGAGACC
ACGCCGCAGCGACAGCATGAGAGTTCGGCGAGGGCGAAGAGCGAGCTTGT
TAGGGCCGGGGGGTTGATTGCGAGTTTGGAGAGTGGGTTGAGGAATTTGA
GTAATTCTTCTTCTGGAGGTGGGGAGGAAAATAATGCAGGATCGGAAGCA
AACTCCCTCCCTTTCTTGTTTACGGCACCGCAAACGACGGAAACTCCTGC
CGCGACGGAGCAGGCGCAGAACGATGAGGAACTACAACAGCAGGAGGAGG
TGAAGGATACAACAGAGCCTGTCCCTGAGGGCGTGGTTGTTGATGGTGTC
TACTTCGTTCCTCCTACGTCTACTACCAATACTACTGCCGCCCCTGCTGC
GAATGTCGCCGAAGAGGCTATCTCCGACGCCCAATCAAGCTACTACAACC
TCCTCCACCACCGCTTCCTTCTCCTTCGATCGATACTAAAATGCACACCT
CCTTCTGAAGCTATCGCCGGGCTCGATGAATCCCACCCGATCAGCTTACC
GCGACACTCGCGAAACGCGCGCAAGGAATGGCGCCGGTTACTCCTGGCGG
TAGACCCGCAGACCGTACAGCTGGCGTGTATGGATATGGAGAGTGTGCTG
GGAGTTCTGGAGATCATGGCACGCTTAATGTCGGAGAATGTACGGAGTGG
GGATGCGCAACGGGTTCAACGCATCGGGGCATGGGCGTGGGGATTGTTGG
GGAAGTGTCGGGATGTTGGGCAGCTAGGGACTGAGGAGGTTGGAGAAATT
CGGGAGCTGGGGAAGAGAGCTGTGAAGATTCTGAGGAAGATGAGGGAAGA
GGATGAGAAGAAGATGCAGGAAGGAGACGGGTCGGATGAGGACGCCGAAG
AGGACACAGGGGATAATGCTGCAGAGGGGGAGGAAGGATCACAGCAAGTG
GATGGACCAAGTGACGATCAGGATCACGATATGCAGGATGTGGAGGAAGA
GAAGCCTGCTACTGAGGAGGAGCTGGAGGCAGCCAAAGCACGTCTGCAGG
CGAAGCTCGCAGGTGGAGAGGACCAACCCACAGTCACAGAGCCCGAGGCT
GGCAATGAGAACCCTGCAAATGAAGCGGCGACACAGACTCGCGCCATGCT
GGACATGATCATCACGGTCATCGGGGAGTATTATGGACAACGGGATCTGC
TGGGAGCACGCGAGCTATGCCCGACAAACGCAAACCCTCCGGCTCAGTCA
CCGGATTCTCTCCCTACGCGAAACGTTCCCGCCCCTCCTACGCCGAAGAA
GATGACGAAGAAGAAGCCCAGCCGACTGTAACTCCATACGAACGCCCGCG
CAACCACCCGGTGTATGGCCAAAAGAGCGCTTTTCCGGGTCTGGATGTCG
CGGGAGATGATGAGCTGTTCTACGGGCCTGCTGAAGATGGCATGGAATAT
TTGCGCATGGTTCGGTTGGGTGGGAAGATTGATATTGGGAAGAAGAGGAT
TGGGAGGATTTCTTGATGGGAACAACACGCTCGGGGAAGGAGAGATGCGA
CGACGGAAGGATCTACTCATCAACGCGAGGAAGGAGAAAGATGGACTGGA
GGATCTGCTGAATGCGATGGCGGCGAAGAGTCGGATTGATAGTGCGGTGG
CGTCGATTCAGGATAAGGAGGCGTTGATGGGGACGCAGGGGGGCAAGAAG
GCGGTTCGGTCGTCGGGGAGGGTGTTGGGGAGGGAGACGGAGAGGACGCG
CGAGTTGGATAATAGTGGGGTGGTACAGTTGCAGAAGCAGATGATGGAGG
ATCAGGATGTCGCGGTGGATGAGTTGATGAGGATTGTCAATCGGCAGAAG
GAGTTGGGGATTGCAATCAATAATGAGTTGCAGGTGCAGAATGAGTTGTT
GAATTTGGCGGATGAGGATGCTACGAGCATCCCCACAACCAGCATCTCCG
CAACCCAACCGCCCTACACCCTCTACAACATCACCCTCCGCCTTCCCCTC
CGCTCATTCACCATCTCCAAGCGCTACTCCGAATTCACCACCTTCCACAA
CACCCTAGTTTCGCAAACAAACCTCCCACCACCCGCCCCTCTCCCGCCCA
AATCCTGGTTCCAGAATACCATCAACAACGCCACCCTCCGCGAATCCCGC
CGCGAAGCACTAGAAGCCTACCTCCGCGCTATCAACGAAAGCGAAGATCC
CCGATGGCGCAACAGTCCCGCGTGGCGGGCGTTCCTCAATCTTCCTAGTT
TGCCTTCGAATAATAACAATAATGGCGGGGCAAGTACTCGCCTGCATGCG
GCAATCACCGACCCCGGCGACTCGGAAGGCGGAGGCATTACGGACCCGAT
CCTCTGGCTCGATTGCTTCAGGGATATGAAGGGGCATTTACACGATGCGA
GACTTTATCTTACGAGACGAGACCAGGAGACCACGCCGCAGCGACAGCAT
GAGAGTTCGGCGAGGGCGAAGAGCGAGCTTGTTAGGGCCGGGGGGTTGAT
TGCGAGTTTGGAGAGTGGGTTGAGGAATTTGAGTAATTCTTCTTCTGGAG
GTGGGGAGGAAAATAATGCAGGATCGGAAGCAAACTCCCTCCCTTTCTTG
TTTACGGCACCGCAAACGACGGAAACTCCTGCCGCGACGGAGCAGGCGCA
GAACGATGAGGAACTACAACAGCAGGAGGAGGTGAAGGATACAACAGAGC
CTGTCCCTGAGGGCGTGGTTGTTGATGGTGTCTACTTCGTTCCTCCTACG
TCTACTACCAATACTACTGCCGCCCCTGCTGCGAATGTCGCCGAAGAGGC
TATCTCCGACGCCCAATCAAGCTACTACAACCTCCTCCACCACCGCTTCC
TTCTCCTTCGATCGATACTAAAATGCACACCTCCTTCTGAAGCTATCGCC
GGGCTCGATGAATCCCACCCGATCAGCTTACCGCGACACTCGCGAAACGC
GCGCAAGGAATGGCGCCGGTTACTCCTGGCGGTAGACCCGCAGACCGTAC
AGCTGGCGTGTATGGATATGGAGAGTGTGCTGGGAGTTCTGGAGATCATG
GCACGCTTAATGTCGGAGAATGTACGGAGTGGGGATGCGCAACGGGTTCA
ACGCATCGGGGCATGGGCGTGGGGATTGTTGGGGAAGTGTCGGGATGTTG
GGCAGCTAGGGACTGAGGAGGTTGGAGAAATTCGGGAGCTGGGGAAGAGA
GCTGTGAAGATTCTGAGGAAGATGAGGGAAGAGGATGAGAAGAAGATGCA
GGAAGGAGACGGGTCGGATGAGGACGCCGAAGAGGACACAGGGGATAATG
CTGCAGAGGGGGAGGAAGGATCACAGCAAGTGGATGGACCAAGTGACGAT
CAGGATCACGATATGCAGGATGTGGAGGAAGAGAAGCCTGCTACTGAGGA
GGAGCTGGAGGCAGCCAAAGCACGTCTGCAGGCGAAGCTCGCAGGTGGAG
AGGACCAACCCACAGTCACAGAGCCCGAGGCTGGCAATGAGAACCCTGCA
AATGAAGCGGCGACACAGACTCGCGCCATGCTGGACATGATCATCACGGT
CATCGGGGAGTATTATGGACAACGGGATCTGCTGGGAGCACGCGAGCTAT
GCCCGACAAACGCAAACCCTCCGGCTCAGTCACCGGATTCTCTCCCTACG
CGAAACGTTCCCGCCCCTCCTACGCCGAAGAAGATGACGAAGAAGAAGCC
CAGCCGACTGTAACTCCATACGAACGCCCGCGCAACCACCCGGTGTATGG
CCAAAAGAGCGCTTTTCCGGGTCTGGATGTCGCGGGAGATGATGAGCTGT
TCTACGGGCCTGCTGAAGATGGCATGGAATATTTGCGCATGGTTCGGTTG
GGTGGGAAGATTGATATTGGGAAGAAGAGGATTGGGAGGATTTCTTGATG
GGAACAACACGCTCGGGGAAGGAGAGATGCGACGACGGAAGGATCTACTC
ATCAACGCGAGGAAGGAGAAAGATGGACTGGAGGATCTGCTGAATGCGAT
GGCGGCGAAGAGTCGGATTGATAGTGCGGTGGCGTCGATTCAGGATAAGG
AGGCGTTGATGGGGACGCAGGGGGGCAAGAAGGCGGTTCGGTCGTCGGGG
AGGGTGTTGGGGAGGGAGACGGAGAGGACGCGCGAGTTGGATAATAGTGG
GGTGGTACAGTTGCAGAAGCAGATGATGGAGGATCAGGATGTCGCGGTGG
ATGAGTTGATGAGGATTGTCAATCGGCAGAAGGAGTTGGGGATTGCAATC
AATAATGAGTTGCAGGTGCAGAATGAGTTGTTGAATTTGGCGGATGAGGA
TGCTACGAGCATCCCCACAACCAGCATCTCCGCAACCCAACCGCCCTACA
CCCTCTACAACATCACCCTCCGCCTTCCCCTCCGCTCATTCACCATCTCC
AAGCGCTACTCCGAATTCACCACCTTCCACAACACCCTAGTTTCGCAAAC
AAACCTCCCACCACCCGCCCCTCTCCCGCCCAAATCCTGGTTCCAGAATA
CCATCAACAACGCCACCCTCCGCGAATCCCGCCGCGAAGCACTAGAAGCC
TACCTCCGCGCTATCAACGAAAGCGAAGATCCCCGATGGCGCAACAGTCC
CGCGTGGCGGGCGTTCCTCAATCTTCCTAGTTTGCCTTCGAATAATAACA
ATAATGGCGGGGCAAGTACTCGCCTGCATGCGGCAATCACCGACCCCGGC
GACTCGGAAGGCGGAGGCATTACGGACCCGATCCTCTGGCTCGATTGCTT
CAGGGATATGAAGGGGCATTTACACGATGCGAGACTTTATCTTACGAGAC
GAGACCAGGAGACCACGCCGCAGCGACAGCATGAGAGTTCGGCGAGGGCG
AAGAGCGAGCTTGTTAGGGCCGGGGGGTTGATTGCGAGTTTGGAGAGTGG
GTTGAGGAATTTGAGTAATTCTTCTTCTGGAGGTGGGGAGGAAAATAATG
CAGGATCGGAAGCAAACTCCCTCCCTTTCTTGTTTACGGCACCGCAAACG
ACGGAAACTCCTGCCGCGACGGAGCAGGCGCAGAACGATGAGGAACTACA
ACAGCAGGAGGAGGTGAAGGATACAACAGAGCCTGTCCCTGAGGGCGTGG
TTGTTGATGGTGTCTACTTCGTTCCTCCTACGTCTACTACCAATACTACT
GCCGCCCCTGCTGCGAATGTCGCCGAAGAGGCTATCTCCGACGCCCAATC
AAGCTACTACAACCTCCTCCACCACCGCTTCCTTCTCCTTCGATCGATAC
TAAAATGCACACCTCCTTCTGAAGCTATCGCCGGGCTCGATGAATCCCAC
CCGATCAGCTTACCGCGACACTCGCGAAACGCGCGCAAGGAATGGCGCCG
GTTACTCCTGGCGGTAGACCCGCAGACCGTACAGCTGGCGTGTATGGATA
TGGAGAGTGTGCTGGGAGTTCTGGAGATCATGGCACGCTTAATGTCGGAG
AATGTACGGAGTGGGGATGCGCAACGGGTTCAACGCATCGGGGCATGGGC
GTGGGGATTGTTGGGGAAGTGTCGGGATGTTGGGCAGCTAGGGACTGAGG
AGGTTGGAGAAATTCGGGAGCTGGGGAAGAGAGCTGTGAAGATTCTGAGG
AAGATGAGGGAAGAGGATGAGAAGAAGATGCAGGAAGGAGACGGGTCGGA
TGAGGACGCCGAAGAGGACACAGGGGATAATGCTGCAGAGGGGGAGGAAG
GATCACAGCAAGTGGATGGACCAAGTGACGATCAGGATCACGATATGCAG
GATGTGGAGGAAGAGAAGCCTGCTACTGAGGAGGAGCTGGAGGCAGCCAA
AGCACGTCTGCAGGCGAAGCTCGCAGGTGGAGAGGACCAACCCACAGTCA
CAGAGCCCGAGGCTGGCAATGAGAACCCTGCAAATGAAGCGGCGACACAG
ACTCGCGCCATGCTGGACATGATCATCACGGTCATCGGGGAGTATTATGG
ACAACGGGATCTGCTGGGAGCACGCGAGCTATGCCCGACAAACGCAAACC
CTCCGGCTCAGTCACCGGATTCTCTCCCTACGCGAAACGTTCCCGCCCCT
CCTACGCCGAAGAAGATGACGAAGAAGAAGCCCAGCCGACTGTAACTCCA
TACGAACGCCCGCGCAACCACCCGGTGTATGGCCAAAAGAGCGCTTTTCC
GGGTCTGGATGTCGCGGGAGATGATGAGCTGTTCTACGGGCCTGCTGAAG
ATGGCATGGAATATTTGCGCATGGTTCGGTTGGGTGGGAAGATTGATATT
GGGAAGAAGAGGATTGGGAGGATTTCTTGATGGGAACAACACGCTCGGGG
AAGGAGAGATGCGACGACGGAAGGATCTACTCATCAACGCGAGGAAGGAG
AAAGATGGACTGGAGGATCTGCTGAATGCGATGGCGGCGAAGAGTCGGAT
TGATAGTGCGGTGGCGTCGATTCAGGATAAGGAGGCGTTGATGGGGACGC
AGGGGGGCAAGAAGGCGGTTCGGTCGTCGGGGAGGGTGTTGGGGAGGGAG
ACGGAGAGGACGCGCGAGTTGGATAATAGTGGGGTGGTACAGTTGCAGAA
GCAGATGATGGAGGATCAGGATGTCGCGGTGGATGAGTTGATGAGGATTG
TCAATCGGCAGAAGGAGTTGGGGATTGCAATCAATAATGAGTTGCAGGTG
CAGAATGAGTTGTTGAATTTGGCGGATGAGGATGCTACGAGCATCCCCAC
AACCAGCATCTCCGCAACCCAACCGCCCTACACCCTCTACAACATCACCC
TCCGCCTTCCCCTCCGCTCATTCACCATCTCCAAGCGCTACTCCGAATTC
ACCACCTTCCACAACACCCTAGTTTCGCAAACAAACCTCCCACCACCCGC
CCCTCTCCCGCCCAAATCCTGGTTCCAGAATACCATCAACAACGCCACCC
TCCGCGAATCCCGCCGCGAAGCACTAGAAGCCTACCTCCGCGCTATCAAC
GAAAGCGAAGATCCCCGATGGCGCAACAGTCCCGCGTGGCGGGCGTTCCT
CAATCTTCCTAGTTTGCCTTCGAATAATAACAATAATGGCGGGGCAAGTA
CTCGCCTGCATGCGGCAATCACCGACCCCGGCGACTCGGAAGGCGGAGGC
ATTACGGACCCGATCCTCTGGCTCGATTGCTTCAGGGATATGAAGGGGCA
TTTACACGATGCGAGACTTTATCTTACGAGACGAGACCAGGAGACCACGC
CGCAGCGACAGCATGAGAGTTCGGCGAGGGCGAAGAGCGAGCTTGTTAGG
GCCGGGGGGTTGATTGCGAGTTTGGAGAGTGGGTTGAGGAATTTGAGTAA
TTCTTCTTCTGGAGGTGGGGAGGAAAATAATGCAGGATCGGAAGCAAACT
CCCTCCCTTTCTTGTTTACGGCACCGCAAACGACGGAAACTCCTGCCGCG
ACGGAGCAGGCGCAGAACGATGAGGAACTACAACAGCAGGAGGAGGTGAA
GGATACAACAGAGCCTGTCCCTGAGGGCGTGGTTGTTGATGGTGTCTACT
TCGTTCCTCCTACGTCTACTACCAATACTACTGCCGCCCCTGCTGCGAAT
GTCGCCGAAGAGGCTATCTCCGACGCCCAATCAAGCTACTACAACCTCCT
CCACCACCGCTTCCTTCTCCTTCGATCGATACTAAAATGCACACCTCCTT
CTGAAGCTATCGCCGGGCTCGATGAATCCCACCCGATCAGCTTACCGCGA
CACTCGCGAAACGCGCGCAAGGAATGGCGCCGGTTACTCCTGGCGGTAGA
CCCGCAGACCGTACAGCTGGCGTGTATGGATATGGAGAGTGTGCTGGGAG
TTCTGGAGATCATGGCACGCTTAATGTCGGAGAATGTACGGAGTGGGGAT
GCGCAACGGGTTCAACGCATCGGGGCATGGGCGTGGGGATTGTTGGGGAA
GTGTCGGGATGTTGGGCAGCTAGGGACTGAGGAGGTTGGAGAAATTCGGG
AGCTGGGGAAGAGAGCTGTGAAGATTCTGAGGAAGATGAGGGAAGAGGAT
GAGAAGAAGATGCAGGAAGGAGACGGGTCGGATGAGGACGCCGAAGAGGA
CACAGGGGATAATGCTGCAGAGGGGGAGGAAGGATCACAGCAAGTGGATG
GACCAAGTGACGATCAGGATCACGATATGCAGGATGTGGAGGAAGAGAAG
CCTGCTACTGAGGAGGAGCTGGAGGCAGCCAAAGCACGTCTGCAGGCGAA
GCTCGCAGGTGGAGAGGACCAACCCACAGTCACAGAGCCCGAGGCTGGCA
ATGAGAACCCTGCAAATGAAGCGGCGACACAGACTCGCGCCATGCTGGAC
ATGATCATCACGGTCATCGGGGAGTATTATGGACAACGGGATCTGCTGGG
AGCACGCGAGCTATGCCCGACAAACGCAAACCCTCCGGCTCAGTCACCGG
ATTCTCTCCCTACGCGAAACGTTCCCGCCCCTCCTACGCCGAAGAAGATG
ACGAAGAAGAAGCCCAGCCGACTGTAACTCCATACGAACGCCCGCGCAAC
CACCCGGTGTATGGCCAAAAGAGCGCTTTTCCGGGTCTGGATGTCGCGGG
AGATGATGAGCTGTTCTACGGGCCTGCTGAAGATGGCATGGAATATTTGC
GCATGGTTCG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Molecular Function
TermDefinition
GO:0035091phosphatidylinositol binding
Relationships

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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_129824ASPNIDRAFT_129824Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_129824-T1ASPNIDRAFT_129824-T1-proteinAspergillus niger ATCC 1015polypeptide


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_129824-T1.cdsASPNIDRAFT_129824-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_129824-T1.exon5ASPNIDRAFT_129824-T1.exon5Aspergillus niger ATCC 1015exon
ASPNIDRAFT_129824-T1.exon4ASPNIDRAFT_129824-T1.exon4Aspergillus niger ATCC 1015exon
ASPNIDRAFT_129824-T1.exon3ASPNIDRAFT_129824-T1.exon3Aspergillus niger ATCC 1015exon
ASPNIDRAFT_129824-T1.exon2ASPNIDRAFT_129824-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_129824-T1.exon1ASPNIDRAFT_129824-T1.exon1Aspergillus niger ATCC 1015exon


Properties
Property NameValue
DBxrefInterPro:IPR035426
DBxrefInterPro:IPR036871
DBxrefInterPro:IPR000727
DBxrefInterPro:IPR001683
DBxrefPFAM:PF04938
DBxrefPFAM:PF00787
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
ACJE01000009.1supercontigACJE01000009.1:1340407..1343497 -