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ASPNIDRAFT_37620-T1, ASPNIDRAFT_37620-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_37620-T1
Unique NameASPNIDRAFT_37620-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000010.1:3657722..3661206+

Legend: exonpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_37620-T1 ID=ASPNIDRAFT_37620-T1|Name=ASPNIDRAFT_37620-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=3485bp|location=Sequence derived from alignment at ACJE01000010.1:3657722..3661206+ (Aspergillus niger ATCC 1015)
ATGGTCTCTCCCGCGCCGTCGTCGTCGCCTCTTTCCGACGGCCACCTCAA TGGCAACAACACCCTTCCCATGCGGACGGGGCCGAAACTCTACGGGAGCA ACGATGGTTCCCAGTCAGGAGCTGGAACTCCTCTTGGTTTCCAAAGACAC CCCCACAACAAGATCCTGGACAATGTAGCTGGCTCCAGCGTGCGCCAACC GTCGCCGCAACCCACGCATCTGGCTATTCCCGGTGGTGGCCAGCATCGCA TTCTGTCAGAGGAAGACCCCGGCTATGTGGCGGCCAAATTCGAAGGGAAG GAAAAGCAAATGGAGCAAGGTGAGTTTGAAACTGACATCCCGTCTACTTT TATCGGTGGCGACTCTTCTGACTATTTTCTCTCGTTCGCTAGTGATGGAT CAGCTGGAGAAGAAAGGCTTCATTCCCATTGAGTTTGTCGTCGGGGAGAC CGAGTGGTTCTACAACCAGCTCGGCATTGACGACACATACTTCCAGACCG AGTCTGTGGACGCTATCGTCACGCAAATTCTCTCGCTGTATGCTGCCAAG GTCGCCGCCTATGCCCGTGACGACAAGAAGCTCGAAATCCGCTTGGATAA GGAAGCAGAAGATCATGCTGTCTACATTGATACCAGCAAACCCGGTATCG CAACAGTCGAAGGCCCCGGGTATGAACAGCGGATTGATAAGAAGTATATC AACCCCTCGTCCCAAGGCAACAGCTATCGCGTTGAGACCTTCCGTTCCCC CACACCTATTCCCGGTGATGATGGGCAACAGCTTCGTTGTTACTTCGTGT ACAAGTGCCAGTTTGCCAATCCCACTCCCGATCCGAACGAGACCAACATC GATATCATCGGCGAAAAGAGGTTCCTGCAGAAAGCCACCCCCAACACCAA GGCTATCTACCAGGAAATCATCAGTAATGCCGTGAGCCGCTCCGGTCCGG TTATTGAGCTGTTTGAGATTGAAAAGAGCCGCGAAAAGAGACTGGTCATT GCCTACCGCCAAGGCTCTGCCATGGGTCTTTTCAGTGCGCTCTCCGATCT ATACCACTACTACCGCCTGACCAGCTCACGGAAGTACCTGGAGAACTTCT CCAACGGCATCACGGTGATTTCGCTTTACCTGCGTCCTCTGCCCAACAAG GAAATTGCCGCCAAGTATCCCCCAATCGAGGCTGCCATTCACCAAATCAT CAAGGAAGTCTCCCTTTTGTACTGTATTCCTCAGAACAAGTTCCAGCATC ATTTCGCCAGTGGCCGCCTTAGCTTGCAGGAAACGATCTATGCCCACTGC GCCTGGGTGTTCGTGCAGCAGTTCCTGAACCGGCTGGGCTCCGAATACAT CTCCTTGACGGATCTTTTGGATTCGAACAACAGCGTCCATGCGGAGCTGC TGGCGAAGATCAAGAAGAGGTTGCGTACCGAGACGTTCACATCGGACTAC ATCCTGGAAATCGTCAACAAGTACCCGGAACTCATCCATAAGCTTTACTT GGACTTCGCCAACACGCATTACGTGCAAACGCGGGGTCCTGCCGAGGATG ACTTCCTCCCAACCCTGAGTTACCTGCGTCTGCAGGTTGACGAGGTGTTG GACGGCCCCAAGCTGAAGCAGCTCATCTCGAGTACTGCGGCCAATGAACA TGATGAAATGGTCATGAGCGCCTTCCGCGTGTTCAACGCCTCCATCCTCA AGACCAACTTCTTCACCCCGACCAAGGTTGCTCTCAGCTTCCGACTCAAC CCTGACTTCCTGCCGGAACACGAGTATCCCCAGCGCCTCTATGGCATGTT CTTGGTGATCAGCTCCGAGTTCCGTGGATTCCACCTGCGATTCCGGGATA TTGCTCGTGGTGGCATCCGTATTGTCAAGAGTCGGAACAAGGAGGCCTAC AGTATCAATGCCCGCTCACTGTTCGACGAGAACTACAACCTTGCCAATAC TCAGCAACGCAAGAACAAGGATATCCCCGAAGGTGGCGCAAAGGGTGTGA TCCTGCTTGACGTCAACCACCAGGATAAGGCCCGCGTCGCTTTCGAGAAG TACATCGACAGTATCTTGGACCTGCTGCTGCCTCCTGTCAGCCCGGGAAT TAAGGACCCGATTGTGGACTTGCATGGTAAAGACGAGATTTTGTTCATGG GTCCCGACGAGAACACGGCCGAATTGGTCGACTGGGCCACGGAGCATGCC CGCAACCGCGGTGCCCCCTGGTGGAAGTCGTTCTTTACGGGCAAGAGCCC CAGGCTTGGCGGTATCCCACATGATACCTATGGCATGACGACCCTGTCGG TCCGGCAGTATGTGCTTGGTATCTATCGCAAGCTGAAGATCGACCCGAGC ACCATCCGAAAGCTGCAGACCGGTGGGCCTGACGGCGATCTGGGCTCCAA TGAGATCCTCCTGTCCAATGAGAAGTATACCGCCATTGTCGACGGGTCCG GAGTGATTGTTGATCCCCAGGGCCTGGATCATGAGGAGCTTGTCAGACTC GCCAAGAAGCGGGCGACCATCTCTGAGTTCGATCTGTCGAAGCTCTCACC CAAGGGTTACCGGGTTCTGGTCGATGAAAGCAACGTTCATTTGCCAAGCG GCGAGCTGGTCCACAATGGTATGATTTTCCGCAACCTGTTCCATCTGCGT CGTGACCAGCAATATGATACATTCGTGCCTTGCGGTGGACGACCGGAGTC GATTGATCTTTCCACTGTTGGAAAACTCATCAAGGACGGAAAGGCCACCA TCCCGTACATTGTCGAGGGTGCAAACCTGTTCATTACACAAGACAGCAAG CTTCGCCTCGAAAGGGCTGGTTGCATCCTGTTCAAGGACGCATCTGCCAA CAAGGGAGGTGTGACATCCTCCTCATTGGAGGTCCTGGCTTCCCTGTCTT TCGACGACGAAGAGTTTGTGGAAAACATGTGCATCCGTGAGGATGGTACC GTGCCCACTTTCTACAGTGAATATGTCAAGCAGGTGCAGGAGGTTATCAA GTCGAATGCTACTCTCGAGTTTGAAGCCATTTGGCGCGAACATGAGAAGA CAGGATTGCTTCGCAGCGTCCTGAGCGATCGTCTCAGTGTTGCCATCACC CAGCTGGATGAGGAACTTCAGAAGACAGAATTGTGGGATAATGTTGAGCT TCGCCGCTCCGTCCTCCACGATGCTCTGCCGAACCTCCTTCTGCAGAAGA TTGGTCTCGACACCATCCTTCAGCGGGTTAGTCTTACAGCCCAACGGATT TCATTAACATGATGCTGACAATCTAATAGGTGCCCGAGAACTATCTGAGA GCCATCTTTGGCAGCTACCTTGCCAGCCGCTTCGTGTATGAGTATGGTAG CAGCCCGAGCCAGTTCTCCTTCTTTGACTTGTAAGTGGTTCATTTCTGGC CCCCGAAATCGTGATGGACCCTTCTAATGATGACTATAGCATGACCAAGC GAATTGCGCAGCTCAACGCGAACCACGATTCTTAG
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Coding sequence (CDS) from alignment at ACJE01000010.1:3657722..3661206+

>ASPNIDRAFT_37620-T1 ID=ASPNIDRAFT_37620-T1|Name=ASPNIDRAFT_37620-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=13344bp|location=Sequence derived from alignment at ACJE01000010.1:3657722..3661206+ (Aspergillus niger ATCC 1015)
ATGGTCTCTCCCGCGCCGTCGTCGTCGCCTCTTTCCGACGGCCACCTCAA
TGGCAACAACACCCTTCCCATGCGGACGGGGCCGAAACTCTACGGGAGCA
ACGATGGTTCCCAGTCAGGAGCTGGAACTCCTCTTGGTTTCCAAAGACAC
CCCCACAACAAGATCCTGGACAATGTAGCTGGCTCCAGCGTGCGCCAACC
GTCGCCGCAACCCACGCATCTGGCTATTCCCGGTGGTGGCCAGCATCGCA
TTCTGTCAGAGGAAGACCCCGGCTATGTGGCGGCCAAATTCGAAGGGAAG
GAAAAGCAAATGGAGCAAGTGATGGATCAGCTGGAGAAGAAAGGCTTCAT
TCCCATTGAGTTTGTCGTCGGGGAGACCGAGTGGTTCTACAACCAGCTCG
GCATTGACGACACATACTTCCAGACCGAGTCTGTGGACGCTATCGTCACG
CAAATTCTCTCGCTGTATGCTGCCAAGGTCGCCGCCTATGCCCGTGACGA
CAAGAAGCTCGAAATCCGCTTGGATAAGGAAGCAGAAGATCATGCTGTCT
ACATTGATACCAGCAAACCCGGTATCGCAACAGTCGAAGGCCCCGGGTAT
GAACAGCGGATTGATAAGAAGTATATCAACCCCTCGTCCCAAGGCAACAG
CTATCGCGTTGAGACCTTCCGTTCCCCCACACCTATTCCCGGTGATGATG
GGCAACAGCTTCGTTGTTACTTCGTGTACAAGTGCCAGTTTGCCAATCCC
ACTCCCGATCCGAACGAGACCAACATCGATATCATCGGCGAAAAGAGGTT
CCTGCAGAAAGCCACCCCCAACACCAAGGCTATCTACCAGGAAATCATCA
GTAATGCCGTGAGCCGCTCCGGTCCGGTTATTGAGCTGTTTGAGATTGAA
AAGAGCCGCGAAAAGAGACTGGTCATTGCCTACCGCCAAGGCTCTGCCAT
GGGTCTTTTCAGTGCGCTCTCCGATCTATACCACTACTACCGCCTGACCA
GCTCACGGAAGTACCTGGAGAACTTCTCCAACGGCATCACGGTGATTTCG
CTTTACCTGCGTCCTCTGCCCAACAAGGAAATTGCCGCCAAGTATCCCCC
AATCGAGGCTGCCATTCACCAAATCATCAAGGAAGTCTCCCTTTTGTACT
GTATTCCTCAGAACAAGTTCCAGCATCATTTCGCCAGTGGCCGCCTTAGC
TTGCAGGAAACGATCTATGCCCACTGCGCCTGGGTGTTCGTGCAGCAGTT
CCTGAACCGGCTGGGCTCCGAATACATCTCCTTGACGGATCTTTTGGATT
CGAACAACAGCGTCCATGCGGAGCTGCTGGCGAAGATCAAGAAGAGGTTG
CGTACCGAGACGTTCACATCGGACTACATCCTGGAAATCGTCAACAAGTA
CCCGGAACTCATCCATAAGCTTTACTTGGACTTCGCCAACACGCATTACG
TGCAAACGCGGGGTCCTGCCGAGGATGACTTCCTCCCAACCCTGAGTTAC
CTGCGTCTGCAGGTTGACGAGGTGTTGGACGGCCCCAAGCTGAAGCAGCT
CATCTCGAGTACTGCGGCCAATGAACATGATGAAATGGTCATGAGCGCCT
TCCGCGTGTTCAACGCCTCCATCCTCAAGACCAACTTCTTCACCCCGACC
AAGGTTGCTCTCAGCTTCCGACTCAACCCTGACTTCCTGCCGGAACACGA
GTATCCCCAGCGCCTCTATGGCATGTTCTTGGTGATCAGCTCCGAGTTCC
GTGGATTCCACCTGCGATTCCGGGATATTGCTCGTGGTGGCATCCGTATT
GTCAAGAGTCGGAACAAGGAGGCCTACAGTATCAATGCCCGCTCACTGTT
CGACGAGAACTACAACCTTGCCAATACTCAGCAACGCAAGAACAAGGATA
TCCCCGAAGGTGGCGCAAAGGGTGTGATCCTGCTTGACGTCAACCACCAG
GATAAGGCCCGCGTCGCTTTCGAGAAGTACATCGACAGTATCTTGGACCT
GCTGCTGCCTCCTGTCAGCCCGGGAATTAAGGACCCGATTGTGGACTTGC
ATGGTAAAGACGAGATTTTGTTCATGGGTCCCGACGAGAACACGGCCGAA
TTGGTCGACTGGGCCACGGAGCATGCCCGCAACCGCGGTGCCCCCTGGTG
GAAGTCGTTCTTTACGGGCAAGAGCCCCAGGCTTGGCGGTATCCCACATG
ATACCTATGGCATGACGACCCTGTCGGTCCGGCAGTATGTGCTTGGTATC
TATCGCAAGCTGAAGATCGACCCGAGCACCATCCGAAAGCTGCAGACCGG
TGGGCCTGACGGCGATCTGGGCTCCAATGAGATCCTCCTGTCCAATGAGA
AGTATACCGCCATTGTCGACGGGTCCGGAGTGATTGTTGATCCCCAGGGC
CTGGATCATGAGGAGCTTGTCAGACTCGCCAAGAAGCGGGCGACCATCTC
TGAGTTCGATCTGTCGAAGCTCTCACCCAAGGGTTACCGGGTTCTGGTCG
ATGAAAGCAACGTTCATTTGCCAAGCGGCGAGCTGGTCCACAATGGTATG
ATTTTCCGCAACCTGTTCCATCTGCGTCGTGACCAGCAATATGATACATT
CGTGCCTTGCGGTGGACGACCGGAGTCGATTGATCTTTCCACTGTTGGAA
AACTCATCAAGGACGGAAAGGCCACCATCCCGTACATTGTCGAGGGTGCA
AACCTGTTCATTACACAAGACAGCAAGCTTCGCCTCGAAAGGGCTGGTTG
CATCCTGTTCAAGGACGCATCTGCCAACAAGGGAGGTGTGACATCCTCCT
CATTGGAGGTCCTGGCTTCCCTGTCTTTCGACGACGAAGAGTTTGTGGAA
AACATGTGCATCCGTGAGGATGGTACCGTGCCCACTTTCTACAGTGAATA
TGTCAAGCAGGTGCAGGAGGTTATCAAGTCGAATGCTACTCTCGAGTTTG
AAGCCATTTGGCGCGAACATGAGAAGACAGGATTGCTTCGCAGCGTCCTG
AGCGATCGTCTCAGTGTTGCCATCACCCAGCTGGATGAGGAACTTCAGAA
GACAGAATTGTGGGATAATGTTGAGCTTCGCCGCTCCGTCCTCCACGATG
CTCTGCCGAACCTCCTTCTGCAGAAGATTGGTCTCGACACCATCCTTCAG
CGGGTGCCCGAGAACTATCTGAGAGCCATCTTTGGCAGCTACCTTGCCAG
CCGCTTCGTGTATGAGTATGGTAGCAGCCCGAGCCATGGTTCATTTCTGG
CCCCCGAAATCGTGATGGACCCTTCTAATGATGACTATAGCATGACCAAG
CGAATTGCGCAGCTCAACGCGAACCACGATTCTTAGATGGTCTCTCCCGC
GCCGTCGTCGTCGCCTCTTTCCGACGGCCACCTCAATGGCAACAACACCC
TTCCCATGCGGACGGGGCCGAAACTCTACGGGAGCAACGATGGTTCCCAG
TCAGGAGCTGGAACTCCTCTTGGTTTCCAAAGACACCCCCACAACAAGAT
CCTGGACAATGTAGCTGGCTCCAGCGTGCGCCAACCGTCGCCGCAACCCA
CGCATCTGGCTATTCCCGGTGGTGGCCAGCATCGCATTCTGTCAGAGGAA
GACCCCGGCTATGTGGCGGCCAAATTCGAAGGGAAGGAAAAGCAAATGGA
GCAAGTGATGGATCAGCTGGAGAAGAAAGGCTTCATTCCCATTGAGTTTG
TCGTCGGGGAGACCGAGTGGTTCTACAACCAGCTCGGCATTGACGACACA
TACTTCCAGACCGAGTCTGTGGACGCTATCGTCACGCAAATTCTCTCGCT
GTATGCTGCCAAGGTCGCCGCCTATGCCCGTGACGACAAGAAGCTCGAAA
TCCGCTTGGATAAGGAAGCAGAAGATCATGCTGTCTACATTGATACCAGC
AAACCCGGTATCGCAACAGTCGAAGGCCCCGGGTATGAACAGCGGATTGA
TAAGAAGTATATCAACCCCTCGTCCCAAGGCAACAGCTATCGCGTTGAGA
CCTTCCGTTCCCCCACACCTATTCCCGGTGATGATGGGCAACAGCTTCGT
TGTTACTTCGTGTACAAGTGCCAGTTTGCCAATCCCACTCCCGATCCGAA
CGAGACCAACATCGATATCATCGGCGAAAAGAGGTTCCTGCAGAAAGCCA
CCCCCAACACCAAGGCTATCTACCAGGAAATCATCAGTAATGCCGTGAGC
CGCTCCGGTCCGGTTATTGAGCTGTTTGAGATTGAAAAGAGCCGCGAAAA
GAGACTGGTCATTGCCTACCGCCAAGGCTCTGCCATGGGTCTTTTCAGTG
CGCTCTCCGATCTATACCACTACTACCGCCTGACCAGCTCACGGAAGTAC
CTGGAGAACTTCTCCAACGGCATCACGGTGATTTCGCTTTACCTGCGTCC
TCTGCCCAACAAGGAAATTGCCGCCAAGTATCCCCCAATCGAGGCTGCCA
TTCACCAAATCATCAAGGAAGTCTCCCTTTTGTACTGTATTCCTCAGAAC
AAGTTCCAGCATCATTTCGCCAGTGGCCGCCTTAGCTTGCAGGAAACGAT
CTATGCCCACTGCGCCTGGGTGTTCGTGCAGCAGTTCCTGAACCGGCTGG
GCTCCGAATACATCTCCTTGACGGATCTTTTGGATTCGAACAACAGCGTC
CATGCGGAGCTGCTGGCGAAGATCAAGAAGAGGTTGCGTACCGAGACGTT
CACATCGGACTACATCCTGGAAATCGTCAACAAGTACCCGGAACTCATCC
ATAAGCTTTACTTGGACTTCGCCAACACGCATTACGTGCAAACGCGGGGT
CCTGCCGAGGATGACTTCCTCCCAACCCTGAGTTACCTGCGTCTGCAGGT
TGACGAGGTGTTGGACGGCCCCAAGCTGAAGCAGCTCATCTCGAGTACTG
CGGCCAATGAACATGATGAAATGGTCATGAGCGCCTTCCGCGTGTTCAAC
GCCTCCATCCTCAAGACCAACTTCTTCACCCCGACCAAGGTTGCTCTCAG
CTTCCGACTCAACCCTGACTTCCTGCCGGAACACGAGTATCCCCAGCGCC
TCTATGGCATGTTCTTGGTGATCAGCTCCGAGTTCCGTGGATTCCACCTG
CGATTCCGGGATATTGCTCGTGGTGGCATCCGTATTGTCAAGAGTCGGAA
CAAGGAGGCCTACAGTATCAATGCCCGCTCACTGTTCGACGAGAACTACA
ACCTTGCCAATACTCAGCAACGCAAGAACAAGGATATCCCCGAAGGTGGC
GCAAAGGGTGTGATCCTGCTTGACGTCAACCACCAGGATAAGGCCCGCGT
CGCTTTCGAGAAGTACATCGACAGTATCTTGGACCTGCTGCTGCCTCCTG
TCAGCCCGGGAATTAAGGACCCGATTGTGGACTTGCATGGTAAAGACGAG
ATTTTGTTCATGGGTCCCGACGAGAACACGGCCGAATTGGTCGACTGGGC
CACGGAGCATGCCCGCAACCGCGGTGCCCCCTGGTGGAAGTCGTTCTTTA
CGGGCAAGAGCCCCAGGCTTGGCGGTATCCCACATGATACCTATGGCATG
ACGACCCTGTCGGTCCGGCAGTATGTGCTTGGTATCTATCGCAAGCTGAA
GATCGACCCGAGCACCATCCGAAAGCTGCAGACCGGTGGGCCTGACGGCG
ATCTGGGCTCCAATGAGATCCTCCTGTCCAATGAGAAGTATACCGCCATT
GTCGACGGGTCCGGAGTGATTGTTGATCCCCAGGGCCTGGATCATGAGGA
GCTTGTCAGACTCGCCAAGAAGCGGGCGACCATCTCTGAGTTCGATCTGT
CGAAGCTCTCACCCAAGGGTTACCGGGTTCTGGTCGATGAAAGCAACGTT
CATTTGCCAAGCGGCGAGCTGGTCCACAATGGTATGATTTTCCGCAACCT
GTTCCATCTGCGTCGTGACCAGCAATATGATACATTCGTGCCTTGCGGTG
GACGACCGGAGTCGATTGATCTTTCCACTGTTGGAAAACTCATCAAGGAC
GGAAAGGCCACCATCCCGTACATTGTCGAGGGTGCAAACCTGTTCATTAC
ACAAGACAGCAAGCTTCGCCTCGAAAGGGCTGGTTGCATCCTGTTCAAGG
ACGCATCTGCCAACAAGGGAGGTGTGACATCCTCCTCATTGGAGGTCCTG
GCTTCCCTGTCTTTCGACGACGAAGAGTTTGTGGAAAACATGTGCATCCG
TGAGGATGGTACCGTGCCCACTTTCTACAGTGAATATGTCAAGCAGGTGC
AGGAGGTTATCAAGTCGAATGCTACTCTCGAGTTTGAAGCCATTTGGCGC
GAACATGAGAAGACAGGATTGCTTCGCAGCGTCCTGAGCGATCGTCTCAG
TGTTGCCATCACCCAGCTGGATGAGGAACTTCAGAAGACAGAATTGTGGG
ATAATGTTGAGCTTCGCCGCTCCGTCCTCCACGATGCTCTGCCGAACCTC
CTTCTGCAGAAGATTGGTCTCGACACCATCCTTCAGCGGGTGCCCGAGAA
CTATCTGAGAGCCATCTTTGGCAGCTACCTTGCCAGCCGCTTCGTGTATG
AGTATGGTAGCAGCCCGAGCCATGGTTCATTTCTGGCCCCCGAAATCGTG
ATGGACCCTTCTAATGATGACTATAGCATGACCAAGCGAATTGCGCAGCT
CAACGCGAACCACGATTCTTAGATGGTCTCTCCCGCGCCGTCGTCGTCGC
CTCTTTCCGACGGCCACCTCAATGGCAACAACACCCTTCCCATGCGGACG
GGGCCGAAACTCTACGGGAGCAACGATGGTTCCCAGTCAGGAGCTGGAAC
TCCTCTTGGTTTCCAAAGACACCCCCACAACAAGATCCTGGACAATGTAG
CTGGCTCCAGCGTGCGCCAACCGTCGCCGCAACCCACGCATCTGGCTATT
CCCGGTGGTGGCCAGCATCGCATTCTGTCAGAGGAAGACCCCGGCTATGT
GGCGGCCAAATTCGAAGGGAAGGAAAAGCAAATGGAGCAAGTGATGGATC
AGCTGGAGAAGAAAGGCTTCATTCCCATTGAGTTTGTCGTCGGGGAGACC
GAGTGGTTCTACAACCAGCTCGGCATTGACGACACATACTTCCAGACCGA
GTCTGTGGACGCTATCGTCACGCAAATTCTCTCGCTGTATGCTGCCAAGG
TCGCCGCCTATGCCCGTGACGACAAGAAGCTCGAAATCCGCTTGGATAAG
GAAGCAGAAGATCATGCTGTCTACATTGATACCAGCAAACCCGGTATCGC
AACAGTCGAAGGCCCCGGGTATGAACAGCGGATTGATAAGAAGTATATCA
ACCCCTCGTCCCAAGGCAACAGCTATCGCGTTGAGACCTTCCGTTCCCCC
ACACCTATTCCCGGTGATGATGGGCAACAGCTTCGTTGTTACTTCGTGTA
CAAGTGCCAGTTTGCCAATCCCACTCCCGATCCGAACGAGACCAACATCG
ATATCATCGGCGAAAAGAGGTTCCTGCAGAAAGCCACCCCCAACACCAAG
GCTATCTACCAGGAAATCATCAGTAATGCCGTGAGCCGCTCCGGTCCGGT
TATTGAGCTGTTTGAGATTGAAAAGAGCCGCGAAAAGAGACTGGTCATTG
CCTACCGCCAAGGCTCTGCCATGGGTCTTTTCAGTGCGCTCTCCGATCTA
TACCACTACTACCGCCTGACCAGCTCACGGAAGTACCTGGAGAACTTCTC
CAACGGCATCACGGTGATTTCGCTTTACCTGCGTCCTCTGCCCAACAAGG
AAATTGCCGCCAAGTATCCCCCAATCGAGGCTGCCATTCACCAAATCATC
AAGGAAGTCTCCCTTTTGTACTGTATTCCTCAGAACAAGTTCCAGCATCA
TTTCGCCAGTGGCCGCCTTAGCTTGCAGGAAACGATCTATGCCCACTGCG
CCTGGGTGTTCGTGCAGCAGTTCCTGAACCGGCTGGGCTCCGAATACATC
TCCTTGACGGATCTTTTGGATTCGAACAACAGCGTCCATGCGGAGCTGCT
GGCGAAGATCAAGAAGAGGTTGCGTACCGAGACGTTCACATCGGACTACA
TCCTGGAAATCGTCAACAAGTACCCGGAACTCATCCATAAGCTTTACTTG
GACTTCGCCAACACGCATTACGTGCAAACGCGGGGTCCTGCCGAGGATGA
CTTCCTCCCAACCCTGAGTTACCTGCGTCTGCAGGTTGACGAGGTGTTGG
ACGGCCCCAAGCTGAAGCAGCTCATCTCGAGTACTGCGGCCAATGAACAT
GATGAAATGGTCATGAGCGCCTTCCGCGTGTTCAACGCCTCCATCCTCAA
GACCAACTTCTTCACCCCGACCAAGGTTGCTCTCAGCTTCCGACTCAACC
CTGACTTCCTGCCGGAACACGAGTATCCCCAGCGCCTCTATGGCATGTTC
TTGGTGATCAGCTCCGAGTTCCGTGGATTCCACCTGCGATTCCGGGATAT
TGCTCGTGGTGGCATCCGTATTGTCAAGAGTCGGAACAAGGAGGCCTACA
GTATCAATGCCCGCTCACTGTTCGACGAGAACTACAACCTTGCCAATACT
CAGCAACGCAAGAACAAGGATATCCCCGAAGGTGGCGCAAAGGGTGTGAT
CCTGCTTGACGTCAACCACCAGGATAAGGCCCGCGTCGCTTTCGAGAAGT
ACATCGACAGTATCTTGGACCTGCTGCTGCCTCCTGTCAGCCCGGGAATT
AAGGACCCGATTGTGGACTTGCATGGTAAAGACGAGATTTTGTTCATGGG
TCCCGACGAGAACACGGCCGAATTGGTCGACTGGGCCACGGAGCATGCCC
GCAACCGCGGTGCCCCCTGGTGGAAGTCGTTCTTTACGGGCAAGAGCCCC
AGGCTTGGCGGTATCCCACATGATACCTATGGCATGACGACCCTGTCGGT
CCGGCAGTATGTGCTTGGTATCTATCGCAAGCTGAAGATCGACCCGAGCA
CCATCCGAAAGCTGCAGACCGGTGGGCCTGACGGCGATCTGGGCTCCAAT
GAGATCCTCCTGTCCAATGAGAAGTATACCGCCATTGTCGACGGGTCCGG
AGTGATTGTTGATCCCCAGGGCCTGGATCATGAGGAGCTTGTCAGACTCG
CCAAGAAGCGGGCGACCATCTCTGAGTTCGATCTGTCGAAGCTCTCACCC
AAGGGTTACCGGGTTCTGGTCGATGAAAGCAACGTTCATTTGCCAAGCGG
CGAGCTGGTCCACAATGGTATGATTTTCCGCAACCTGTTCCATCTGCGTC
GTGACCAGCAATATGATACATTCGTGCCTTGCGGTGGACGACCGGAGTCG
ATTGATCTTTCCACTGTTGGAAAACTCATCAAGGACGGAAAGGCCACCAT
CCCGTACATTGTCGAGGGTGCAAACCTGTTCATTACACAAGACAGCAAGC
TTCGCCTCGAAAGGGCTGGTTGCATCCTGTTCAAGGACGCATCTGCCAAC
AAGGGAGGTGTGACATCCTCCTCATTGGAGGTCCTGGCTTCCCTGTCTTT
CGACGACGAAGAGTTTGTGGAAAACATGTGCATCCGTGAGGATGGTACCG
TGCCCACTTTCTACAGTGAATATGTCAAGCAGGTGCAGGAGGTTATCAAG
TCGAATGCTACTCTCGAGTTTGAAGCCATTTGGCGCGAACATGAGAAGAC
AGGATTGCTTCGCAGCGTCCTGAGCGATCGTCTCAGTGTTGCCATCACCC
AGCTGGATGAGGAACTTCAGAAGACAGAATTGTGGGATAATGTTGAGCTT
CGCCGCTCCGTCCTCCACGATGCTCTGCCGAACCTCCTTCTGCAGAAGAT
TGGTCTCGACACCATCCTTCAGCGGGTGCCCGAGAACTATCTGAGAGCCA
TCTTTGGCAGCTACCTTGCCAGCCGCTTCGTGTATGAGTATGGTAGCAGC
CCGAGCCATGGTTCATTTCTGGCCCCCGAAATCGTGATGGACCCTTCTAA
TGATGACTATAGCATGACCAAGCGAATTGCGCAGCTCAACGCGAACCACG
ATTCTTAGATGGTCTCTCCCGCGCCGTCGTCGTCGCCTCTTTCCGACGGC
CACCTCAATGGCAACAACACCCTTCCCATGCGGACGGGGCCGAAACTCTA
CGGGAGCAACGATGGTTCCCAGTCAGGAGCTGGAACTCCTCTTGGTTTCC
AAAGACACCCCCACAACAAGATCCTGGACAATGTAGCTGGCTCCAGCGTG
CGCCAACCGTCGCCGCAACCCACGCATCTGGCTATTCCCGGTGGTGGCCA
GCATCGCATTCTGTCAGAGGAAGACCCCGGCTATGTGGCGGCCAAATTCG
AAGGGAAGGAAAAGCAAATGGAGCAAGTGATGGATCAGCTGGAGAAGAAA
GGCTTCATTCCCATTGAGTTTGTCGTCGGGGAGACCGAGTGGTTCTACAA
CCAGCTCGGCATTGACGACACATACTTCCAGACCGAGTCTGTGGACGCTA
TCGTCACGCAAATTCTCTCGCTGTATGCTGCCAAGGTCGCCGCCTATGCC
CGTGACGACAAGAAGCTCGAAATCCGCTTGGATAAGGAAGCAGAAGATCA
TGCTGTCTACATTGATACCAGCAAACCCGGTATCGCAACAGTCGAAGGCC
CCGGGTATGAACAGCGGATTGATAAGAAGTATATCAACCCCTCGTCCCAA
GGCAACAGCTATCGCGTTGAGACCTTCCGTTCCCCCACACCTATTCCCGG
TGATGATGGGCAACAGCTTCGTTGTTACTTCGTGTACAAGTGCCAGTTTG
CCAATCCCACTCCCGATCCGAACGAGACCAACATCGATATCATCGGCGAA
AAGAGGTTCCTGCAGAAAGCCACCCCCAACACCAAGGCTATCTACCAGGA
AATCATCAGTAATGCCGTGAGCCGCTCCGGTCCGGTTATTGAGCTGTTTG
AGATTGAAAAGAGCCGCGAAAAGAGACTGGTCATTGCCTACCGCCAAGGC
TCTGCCATGGGTCTTTTCAGTGCGCTCTCCGATCTATACCACTACTACCG
CCTGACCAGCTCACGGAAGTACCTGGAGAACTTCTCCAACGGCATCACGG
TGATTTCGCTTTACCTGCGTCCTCTGCCCAACAAGGAAATTGCCGCCAAG
TATCCCCCAATCGAGGCTGCCATTCACCAAATCATCAAGGAAGTCTCCCT
TTTGTACTGTATTCCTCAGAACAAGTTCCAGCATCATTTCGCCAGTGGCC
GCCTTAGCTTGCAGGAAACGATCTATGCCCACTGCGCCTGGGTGTTCGTG
CAGCAGTTCCTGAACCGGCTGGGCTCCGAATACATCTCCTTGACGGATCT
TTTGGATTCGAACAACAGCGTCCATGCGGAGCTGCTGGCGAAGATCAAGA
AGAGGTTGCGTACCGAGACGTTCACATCGGACTACATCCTGGAAATCGTC
AACAAGTACCCGGAACTCATCCATAAGCTTTACTTGGACTTCGCCAACAC
GCATTACGTGCAAACGCGGGGTCCTGCCGAGGATGACTTCCTCCCAACCC
TGAGTTACCTGCGTCTGCAGGTTGACGAGGTGTTGGACGGCCCCAAGCTG
AAGCAGCTCATCTCGAGTACTGCGGCCAATGAACATGATGAAATGGTCAT
GAGCGCCTTCCGCGTGTTCAACGCCTCCATCCTCAAGACCAACTTCTTCA
CCCCGACCAAGGTTGCTCTCAGCTTCCGACTCAACCCTGACTTCCTGCCG
GAACACGAGTATCCCCAGCGCCTCTATGGCATGTTCTTGGTGATCAGCTC
CGAGTTCCGTGGATTCCACCTGCGATTCCGGGATATTGCTCGTGGTGGCA
TCCGTATTGTCAAGAGTCGGAACAAGGAGGCCTACAGTATCAATGCCCGC
TCACTGTTCGACGAGAACTACAACCTTGCCAATACTCAGCAACGCAAGAA
CAAGGATATCCCCGAAGGTGGCGCAAAGGGTGTGATCCTGCTTGACGTCA
ACCACCAGGATAAGGCCCGCGTCGCTTTCGAGAAGTACATCGACAGTATC
TTGGACCTGCTGCTGCCTCCTGTCAGCCCGGGAATTAAGGACCCGATTGT
GGACTTGCATGGTAAAGACGAGATTTTGTTCATGGGTCCCGACGAGAACA
CGGCCGAATTGGTCGACTGGGCCACGGAGCATGCCCGCAACCGCGGTGCC
CCCTGGTGGAAGTCGTTCTTTACGGGCAAGAGCCCCAGGCTTGGCGGTAT
CCCACATGATACCTATGGCATGACGACCCTGTCGGTCCGGCAGTATGTGC
TTGGTATCTATCGCAAGCTGAAGATCGACCCGAGCACCATCCGAAAGCTG
CAGACCGGTGGGCCTGACGGCGATCTGGGCTCCAATGAGATCCTCCTGTC
CAATGAGAAGTATACCGCCATTGTCGACGGGTCCGGAGTGATTGTTGATC
CCCAGGGCCTGGATCATGAGGAGCTTGTCAGACTCGCCAAGAAGCGGGCG
ACCATCTCTGAGTTCGATCTGTCGAAGCTCTCACCCAAGGGTTACCGGGT
TCTGGTCGATGAAAGCAACGTTCATTTGCCAAGCGGCGAGCTGGTCCACA
ATGGTATGATTTTCCGCAACCTGTTCCATCTGCGTCGTGACCAGCAATAT
GATACATTCGTGCCTTGCGGTGGACGACCGGAGTCGATTGATCTTTCCAC
TGTTGGAAAACTCATCAAGGACGGAAAGGCCACCATCCCGTACATTGTCG
AGGGTGCAAACCTGTTCATTACACAAGACAGCAAGCTTCGCCTCGAAAGG
GCTGGTTGCATCCTGTTCAAGGACGCATCTGCCAACAAGGGAGGTGTGAC
ATCCTCCTCATTGGAGGTCCTGGCTTCCCTGTCTTTCGACGACGAAGAGT
TTGTGGAAAACATGTGCATCCGTGAGGATGGTACCGTGCCCACTTTCTAC
AGTGAATATGTCAAGCAGGTGCAGGAGGTTATCAAGTCGAATGCTACTCT
CGAGTTTGAAGCCATTTGGCGCGAACATGAGAAGACAGGATTGCTTCGCA
GCGTCCTGAGCGATCGTCTCAGTGTTGCCATCACCCAGCTGGATGAGGAA
CTTCAGAAGACAGAATTGTGGGATAATGTTGAGCTTCGCCGCTCCGTCCT
CCACGATGCTCTGCCGAACCTCCTTCTGCAGAAGATTGGTCTCGACACCA
TCCTTCAGCGGGTGCCCGAGAACTATCTGAGAGCCATCTTTGGCAGCTAC
CTTGCCAGCCGCTTCGTGTATGAGTATGGTAGCAGCCCGAGCCATGGTTC
ATTTCTGGCCCCCGAAATCGTGATGGACCCTTCTAATGATGACTATAGCA
TGACCAAGCGAATTGCGCAGCTCAACGCGAACCACGATTCTTAG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Molecular Function
TermDefinition
GO:0004352glutamate dehydrogenase (NAD+) activity
GO:0016491oxidoreductase activity
Vocabulary: Biological Process
TermDefinition
GO:0019551glutamate catabolic process to 2-oxoglutarate
GO:0006520cellular amino acid metabolic process
GO:0055114oxidation-reduction process
Relationships

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

Feature NameUnique NameSpeciesType
GDH1ASPNIDRAFT_37620Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_37620-T1.exon1ASPNIDRAFT_37620-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_37620-T1.exon2ASPNIDRAFT_37620-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_37620-T1.exon3ASPNIDRAFT_37620-T1.exon3Aspergillus niger ATCC 1015exon
ASPNIDRAFT_37620-T1.exon4ASPNIDRAFT_37620-T1.exon4Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_37620-T1.cdsASPNIDRAFT_37620-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_37620-T1ASPNIDRAFT_37620-T1-proteinAspergillus niger ATCC 1015polypeptide


Properties
Property NameValue
NoteBUSCO:EOG09260E8K
DBxrefInterPro:IPR036291
DBxrefInterPro:IPR028971
DBxrefInterPro:IPR016210
DBxrefInterPro:IPR006096
DBxrefPFAM:PF00208
Productglutamate dehydrogenase (NADP( )) gdh1
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
ACJE01000010.1supercontigACJE01000010.1:3657722..3661206 +