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ASPNIDRAFT_56576-T1, ASPNIDRAFT_56576-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_56576-T1
Unique NameASPNIDRAFT_56576-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000002.1:868294..873370+

Legend: exonpolypeptideCDSthree_prime_UTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_56576-T1 ID=ASPNIDRAFT_56576-T1|Name=ASPNIDRAFT_56576-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=5077bp|location=Sequence derived from alignment at ACJE01000002.1:868294..873370+ (Aspergillus niger ATCC 1015)
ATGGATCCGCTCGCGTCTCTTCGTCGCCTCATCCAAACGCATCCTCTTAT CGACAACCACGCCCATAATCTCCTTGCGCAGGCCGCAGCCCGCAACTACG CAAAATATCCTTTCGAACAGATCACTTCCGAGGCCCAAGGTTCCGCCCTA CACAATGCTCCGTCCACCTTACCCCTCCAGCGTGCCGCCGCCCAGCTAGC GACCCTCTACGATTGCCCGACTTCCGAGTGGGACCGCGTCAAGGCGGCTC GCGATCAATATGTCGAGCGTGACTATGATGGCTTGATCCGTCGGTGTCTG GAAGGCACTCATAGCCTTCTTCTTGATGATCTGCTTACGGATCAAGATAT CGAGCCTTTCACTTGGCATGATCGTTTCACCACAGCTCCGACCAAGCGGA TCGTACGGATTGAAGTTGTGGCCGCCCAAGTCCTTACCTCCATCCTTCCC AACGGTTATGATCAGTCCTCGAGCGACATCACCGTTCTTCGCCAGTATCT GGACCAGTTCAGCCAGGGTTTCAACCAGAAGATCTCAGAGGCCATCGCAG ATCCCGTGGTGGTAGGCTTCAAATCAGTCATCTGCTATCGTACTGGACTG AACGTCCAAGTGGCCGATGACAAAGACGACAGCAATCTCCTCGAGTCCTT CTCCCGGACCTTGTCGCAAGGATCTGGATCTACATATCGCGTGGAGGACA AACCCCTGAACGATTGGCTGGTCAGGCAGGCCCTGAACCAGCTGCAATCT GCCAAGGAGAAAGATGCGTCGGAACCCAACAAACCACTGCAACTGCACAC GGGACTCGGCGATAATGATATCAACCTAATACTTTCGAATCCCGCATATT TACAGGATTTGGTTGCCCGTTATCCCAAGGTGGACTTTGTGCTTTTGCAT TCCGCTTATCCGTATACCCGGGAGGCCGGCTATCTCGCCTGTGTCTACCC GAATGTGTATCTAGACCTTGGAGAGGTGTTTCCCATGGTGAGTCGAGATG CTCAGGAATCTATCATTCGCGAGAGTCTGGAGATCGTGCCCACAACCCGC CTTCTGTGGAGTACCGATGGCCATTTCTTCCCAGAGACATTTTGGTTGGC GAACAAACAGTTCCGCGACGCACTGGAAAAGGTCCGTTCCTGTCATATCA AGTCCTATACATCCTTTCAGAAACTTATCTTTGCTAGGTTCTCGTGGATT ACGTCATTCAAGGCGATCACAGCGTCGATCAGGCGAAGCTAGCTGCTGCC GATATATTGTTCCACAACTCCAACCGCCTGTACAGCCTCAGTGAAACCGT TTCCTACGACGACAGGCTGGTCCCTGCCGTCAGCAACCTTTCTGGACTTT CTTCGACCGACGCGTTGGAAAGTTTCATGCACAGCAATCCAGATGTCAAG TATATTTGGATGCAGTTCTTTGACTACACTTCCACAGTGCGCGTGCGGAT GTTCCCTATCCGGGAGTTTGCTAAGATTGTTCGCAAGCAACGCCGGATCG GTATCTGTACAGCCACGTTTCTGATGCTTCAATCCGACACAGTCTGTCCG GAAGGTTCCACAACCGGCCAGTTCTATCTAGAACCAGATCTCTCAACCCT CTCTCGAAATGTGGGGATCGACTCGAAGAGCGCCACAGTAATGACTTGGG GGCGTTCTGAGGAGGGTTTGGAGGTGGAAGGATGTCCACGGACCCTTCTG CGCCGCGTCACGACTGATTTACGTGCCAATCATGGAATCGAAATTCTCTG CGGGTTCGAGATTGAGGTTATTCTGCTGAAGTGCGTCACCAAACCGGACA CCGATGAGGAAGAGTTTGTTCCATGTGTGCGCAACCACTCCTGGTCCCAG ATGACCCGAGACACCCGACGCATGGTGCCGCTTCTTGAGGAAATTGTCGA TACTCTTGCATCCATCGGCATTGACCTTGAACAATTCCACGCTGAATCGG CCCCGGGCCAGTTTGAATTCATTCTACCACCCGGATCGCCCGTCGCCGCA GTCGATACCCTGCTCAAGGCACGACAGGTCGTGACTTATATCGCTGAGCA GCACGGTTACCGTGCAACCCTTCATCCCCGACCCTTCTCACACGCTGCTG GCTCAGCCGCACATGCGCATGTCTCCATAACTCCTGCGACTCAGGAGGAG AGCTTCCTGGCTGGTGTGCTCAAGCACTTCACCTCTTTGACGGCCTTCAC TCTGTCTAATGATGTCAGCTACGAACGGATGCACTCTGGCCTCTGGGCTG GAAGCGAGTGGGTCGCCTGGGGCACTCAGAATCGCGAAACACCTATCCGC AAGATCTCTGCGGGTCACTGGGAGGTCAAGGCACTTGACGGTCTGTCCAA TATGTATCTGGCAATGGCTGCAATTCTAGCCGCAGGATACCTGGGTGTGC AGGACAAGCTGCCCCTGACCCTGCAGGACTGTTTATGTAAGTATTCCTGC CAGTGAGGCTACCCTCTAGAGTGCACTCATGCTAACAAATCGATATAGAT GACGCGGCAACACTCAGCGAGGCGGACCGCAGTGCCCTTGGAATAACCAC CCAGATTCCCACGACCCTGGCACAGAGTCTGGATAATATGGCAGCCGACA AGGCTCTCCGGGATGTGCTTGGCAACACACTTGTTGAGAACTATATCACG GTCAAACGAGCCGAGAGCAAGAAGCTGAATGCAATGGAGGCAGAAGCGCG ACGCAAGTGGCTGGTCGAGAGATACTAATTAAATACCCTGTGCATACATA CATAGCCAATAATCGTAGTTAGCCAATACCATCATCACATTCTCTACATC TTCATAGAAATGTCCATATGCAGCACAGTATTATCTACTAGTCTAGTAGC TTTTTTTTCCCATCCGCCAACCAAATCGAACTATTGAGTCATAGTCCTCC GTAATCGGCCCACTCCCCCAACACCTCTCACGTGACAGCATCCCCAGTCC TGTCCTACCTATATTGACTCACCTCCCCAATTCCCTTCTCTCTTTTCTAC CATTACCTCCCAATCCCCTCTCAATCCCTCCTACCAAACTCACAATGCCC TCCCCCCTCCGCACAGCGGCCGCAGCCGCCCGCTACGGGCCTTCCACAAC CCGCCACGCCCTGCGCCGCCTCTACTCTTCCACCAGTCACTCCGCCGCAA CGCCGGCAACTTCTCCCTTCGCACCGCGGCACCTGCTCTCCATCGCCGAC CTGACCCCAACCGAATTCGCAACCCTCGTCCGCAATGCCTCCTCCCACAA GCGGGCCATCAAATCCGGCTCCATCCCCCAATCCCTCCACGGCTCCCTCT CCGGCAAGACCGTCGCCATGATGTTCAGCAAGCGCAGCACCCGCACCCGC ATTTCCACCGAAGGCGCCGTCGTCCAAATGGGCGGCCACCCCATGTTCCT CGGCAAGGACGACATCCAGCTGGGAGTCAATGAATCCCTCTACGACACTG CCGTGGTCGTCTCCTCCATGGTGGAATGTATCGTTGCGCGCGTGGGCAAG CACGCTGACGTCGCCGACCTCGCCAAGCACTCTACTAAGCCGGTTATCAA TGCCCTGTGTGACTCGTATCACCCATTGCAGGCTATTGCGGATTTTCAGA CTATTAGTGAGCATTTCGCTGCCTCGGGCAAGGGGAAGTTGGAGGGTTTG GGGCTGAATGGGTTGAAGATCGCTTGGGTGGGCGATGCGAATAATGTGCT TTTCGATATGGCGATCAGTGCGAGGAAAATGGGTGTTGATGTTGCTGTTG CTACGCCGAAGGGGTATGAGATCCCCAAAGAGATGTTGGAGATTATTGAG AAGGCTGGCGAGGGGGTTAAGAGTCCTGGAAAGCTGGTGCAGACCAATGT TCCTGAGGAGGCGGTTAAGGGGGCCGATGTGTTGGTTACTGATACTTGGG TTTCGATGGGCCAGGAGGAGGAGGCCGCTAAGCGGTTGAGGGATTTCGCT GGATTCCAGATTACGAGTGAGTTGGCGAAGAGGGGTGGGGCGAAGGAGGG TTGGAGGTTCATGCACTGTCTTCCTAGGCATCCGGAGGAGGTTGCTGACG AGGTGTTCTATGGACATCGGTCGTTGGTGTTCCCTGAGGCGGAGAATCGT CTGTGGGCTGCCATTTCGGCGTTGGAGGGATTTGTCGTCAATAAGGGCAA GATTGAGTAATTGGATGGGTGCATTTTGAGTAGGGAGTTGGGCTGGGAAA AATCAAAAGAATTGTGGTTTTGCTAGTATATAGCTTGTGTTTTCGCTGGC AATTGAGCTGTGTTGTATCATATTGTTGTGTGTATATTCTGTTTAACCGG CATCCCGATGCTTTGCTTTTCCCCGCAGCCGGGAAGCCGATGCGGAGATG ATCCTGGGGTTGGGTTTCTGGTACGTAAGCAATATCAGAGATGATATGAA TGGACAACATACCCATTCCATTCAGACAATATTCAAATTATTCAACATAA GATCCAGATTAAACGTTGTCCTGTGGTCTAGCACTACGGATCTCGAACAA TCAGTTTCATCACAGCGCCTCATTATTGCATGATCTATCTAGTCTTCAAC GATAGTCCATATATAATCCCTCCAGAACCATACTACTGCCATGACCAAGG AATCTATTTTCTACTATACACTACTATATTTTAACACCAAGTCTACAACC TTAACACCCCACTCTCCCGATCAACCGCCCCACGGAAATGGTCCGTAATG ACCTTTCCACCCAGAATCGTCTCCTCCACCACACCCTGCACATGCTTGGG CTCAATACGTCCATACCAAATACCCTTGCCCGCCAATGGATGCGGCGAGG AAGAGCCAGCTTCCTTCATTCCGGGAGGGATGTAAACGATGACGTTTCCA GCATACTTGTGTCCTCCAACGTGGCTGATTAACCCGATGTGAGCATGCTC GGGGCTGTCGACGACACTATTGTCACTTCCCGCGGATGTGTACCCCTTAG ACTGCAACACCCGTTGAAACTCGGTCTCCAGAACCGGCGCCATTACACCA CATCGCATGTCGCGACCACCGTGGCCGCAGATCAACACAACGGGGGAGTG TTGCAGATCAACAGCATCTGGGAATTC
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Coding sequence (CDS) from alignment at ACJE01000002.1:868294..873370+

>ASPNIDRAFT_56576-T1 ID=ASPNIDRAFT_56576-T1|Name=ASPNIDRAFT_56576-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=7830bp|location=Sequence derived from alignment at ACJE01000002.1:868294..873370+ (Aspergillus niger ATCC 1015)
ATGGATCCGCTCGCGTCTCTTCGTCGCCTCATCCAAACGCATCCTCTTAT
CGACAACCACGCCCATAATCTCCTTGCGCAGGCCGCAGCCCGCAACTACG
CAAAATATCCTTTCGAACAGATCACTTCCGAGGCCCAAGGTTCCGCCCTA
CACAATGCTCCGTCCACCTTACCCCTCCAGCGTGCCGCCGCCCAGCTAGC
GACCCTCTACGATTGCCCGACTTCCGAGTGGGACCGCGTCAAGGCGGCTC
GCGATCAATATGTCGAGCGTGACTATGATGGCTTGATCCGTCGGTGTCTG
GAAGGCACTCATAGCCTTCTTCTTGATGATCTGCTTACGGATCAAGATAT
CGAGCCTTTCACTTGGCATGATCGTTTCACCACAGCTCCGACCAAGCGGA
TCGTACGGATTGAAGTTGTGGCCGCCCAAGTCCTTACCTCCATCCTTCCC
AACGGTTATGATCAGTCCTCGAGCGACATCACCGTTCTTCGCCAGTATCT
GGACCAGTTCAGCCAGGGTTTCAACCAGAAGATCTCAGAGGCCATCGCAG
ATCCCGTGGTGGTAGGCTTCAAATCAGTCATCTGCTATCGTACTGGACTG
AACGTCCAAGTGGCCGATGACAAAGACGACAGCAATCTCCTCGAGTCCTT
CTCCCGGACCTTGTCGCAAGGATCTGGATCTACATATCGCGTGGAGGACA
AACCCCTGAACGATTGGCTGGTCAGGCAGGCCCTGAACCAGCTGCAATCT
GCCAAGGAGAAAGATGCGTCGGAACCCAACAAACCACTGCAACTGCACAC
GGGACTCGGCGATAATGATATCAACCTAATACTTTCGAATCCCGCATATT
TACAGGATTTGGTTGCCCGTTATCCCAAGGTGGACTTTGTGCTTTTGCAT
TCCGCTTATCCGTATACCCGGGAGGCCGGCTATCTCGCCTGTGTCTACCC
GAATGTGTATCTAGACCTTGGAGAGGTGTTTCCCATGGTGAGTCGAGATG
CTCAGGAATCTATCATTCGCGAGAGTCTGGAGATCGTGCCCACAACCCGC
CTTCTGTGGAGTACCGATGGCCATTTCTTCCCAGAGACATTTTGGTTGGC
GAACAAACAGTTCCGCGACGCACTGGAAAAGGTTCTCGTGGATTACGTCA
TTCAAGGCGATCACAGCGTCGATCAGGCGAAGCTAGCTGCTGCCGATATA
TTGTTCCACAACTCCAACCGCCTGTACAGCCTCAGTGAAACCGTTTCCTA
CGACGACAGGCTGGTCCCTGCCGTCAGCAACCTTTCTGGACTTTCTTCGA
CCGACGCGTTGGAAAGTTTCATGCACAGCAATCCAGATGTCAAGTATATT
TGGATGCAGTTCTTTGACTACACTTCCACAGTGCGCGTGCGGATGTTCCC
TATCCGGGAGTTTGCTAAGATTGTTCGCAAGCAACGCCGGATCGGTATCT
GTACAGCCACGTTTCTGATGCTTCAATCCGACACAGTCTGTCCGGAAGGT
TCCACAACCGGCCAGTTCTATCTAGAACCAGATCTCTCAACCCTCTCTCG
AAATGTGGGGATCGACTCGAAGAGCGCCACAGTAATGACTTGGGGGCGTT
CTGAGGAGGGTTTGGAGGTGGAAGGATGTCCACGGACCCTTCTGCGCCGC
GTCACGACTGATTTACGTGCCAATCATGGAATCGAAATTCTCTGCGGGTT
CGAGATTGAGGTTATTCTGCTGAAGTGCGTCACCAAACCGGACACCGATG
AGGAAGAGTTTGTTCCATGTGTGCGCAACCACTCCTGGTCCCAGATGACC
CGAGACACCCGACGCATGGTGCCGCTTCTTGAGGAAATTGTCGATACTCT
TGCATCCATCGGCATTGACCTTGAACAATTCCACGCTGAATCGGCCCCGG
GCCAGTTTGAATTCATTCTACCACCCGGATCGCCCGTCGCCGCAGTCGAT
ACCCTGCTCAAGGCACGACAGGTCGTGACTTATATCGCTGAGCAGCACGG
TTACCGTGCAACCCTTCATCCCCGACCCTTCTCACACGCTGCTGGCTCAG
CCGCACATGCGCATGTCTCCATAACTCCTGCGACTCAGGAGGAGAGCTTC
CTGGCTGGTGTGCTCAAGCACTTCACCTCTTTGACGGCCTTCACTCTGTC
TAATGATGTCAGCTACGAACGGATGCACTCTGGCCTCTGGGCTGGAAGCG
AGTGGGTCGCCTGGGGCACTCAGAATCGCGAAACACCTATCCGCAAGATC
TCTGCGGGTCACTGGGAGGTCAAGGCACTTGACGGTCTGTCCAATATGTA
TCTGGCAATGGCTGCAATTCTAGCCGCAGGATACCTGGGTGTGCAGGACA
AGCTGCCCCTGACCCTGCAGGACTGTTTATATGACGCGGCAACACTCAGC
GAGGCGGACCGCAGTGCCCTTGGAATAACCACCCAGATTCCCACGACCCT
GGCACAGAGTCTGGATAATATGGCAGCCGACAAGGCTCTCCGGGATGTGC
TTGGCAACACACTTGTTGAGAACTATATCACGGTCAAACGAGCCGAGAGC
AAGAAGCTGAATGCAATGGAGGCAGAAGCGCGACGCAAGTGGCTGGTCGA
GAGATACTAAATGGATCCGCTCGCGTCTCTTCGTCGCCTCATCCAAACGC
ATCCTCTTATCGACAACCACGCCCATAATCTCCTTGCGCAGGCCGCAGCC
CGCAACTACGCAAAATATCCTTTCGAACAGATCACTTCCGAGGCCCAAGG
TTCCGCCCTACACAATGCTCCGTCCACCTTACCCCTCCAGCGTGCCGCCG
CCCAGCTAGCGACCCTCTACGATTGCCCGACTTCCGAGTGGGACCGCGTC
AAGGCGGCTCGCGATCAATATGTCGAGCGTGACTATGATGGCTTGATCCG
TCGGTGTCTGGAAGGCACTCATAGCCTTCTTCTTGATGATCTGCTTACGG
ATCAAGATATCGAGCCTTTCACTTGGCATGATCGTTTCACCACAGCTCCG
ACCAAGCGGATCGTACGGATTGAAGTTGTGGCCGCCCAAGTCCTTACCTC
CATCCTTCCCAACGGTTATGATCAGTCCTCGAGCGACATCACCGTTCTTC
GCCAGTATCTGGACCAGTTCAGCCAGGGTTTCAACCAGAAGATCTCAGAG
GCCATCGCAGATCCCGTGGTGGTAGGCTTCAAATCAGTCATCTGCTATCG
TACTGGACTGAACGTCCAAGTGGCCGATGACAAAGACGACAGCAATCTCC
TCGAGTCCTTCTCCCGGACCTTGTCGCAAGGATCTGGATCTACATATCGC
GTGGAGGACAAACCCCTGAACGATTGGCTGGTCAGGCAGGCCCTGAACCA
GCTGCAATCTGCCAAGGAGAAAGATGCGTCGGAACCCAACAAACCACTGC
AACTGCACACGGGACTCGGCGATAATGATATCAACCTAATACTTTCGAAT
CCCGCATATTTACAGGATTTGGTTGCCCGTTATCCCAAGGTGGACTTTGT
GCTTTTGCATTCCGCTTATCCGTATACCCGGGAGGCCGGCTATCTCGCCT
GTGTCTACCCGAATGTGTATCTAGACCTTGGAGAGGTGTTTCCCATGGTG
AGTCGAGATGCTCAGGAATCTATCATTCGCGAGAGTCTGGAGATCGTGCC
CACAACCCGCCTTCTGTGGAGTACCGATGGCCATTTCTTCCCAGAGACAT
TTTGGTTGGCGAACAAACAGTTCCGCGACGCACTGGAAAAGGTTCTCGTG
GATTACGTCATTCAAGGCGATCACAGCGTCGATCAGGCGAAGCTAGCTGC
TGCCGATATATTGTTCCACAACTCCAACCGCCTGTACAGCCTCAGTGAAA
CCGTTTCCTACGACGACAGGCTGGTCCCTGCCGTCAGCAACCTTTCTGGA
CTTTCTTCGACCGACGCGTTGGAAAGTTTCATGCACAGCAATCCAGATGT
CAAGTATATTTGGATGCAGTTCTTTGACTACACTTCCACAGTGCGCGTGC
GGATGTTCCCTATCCGGGAGTTTGCTAAGATTGTTCGCAAGCAACGCCGG
ATCGGTATCTGTACAGCCACGTTTCTGATGCTTCAATCCGACACAGTCTG
TCCGGAAGGTTCCACAACCGGCCAGTTCTATCTAGAACCAGATCTCTCAA
CCCTCTCTCGAAATGTGGGGATCGACTCGAAGAGCGCCACAGTAATGACT
TGGGGGCGTTCTGAGGAGGGTTTGGAGGTGGAAGGATGTCCACGGACCCT
TCTGCGCCGCGTCACGACTGATTTACGTGCCAATCATGGAATCGAAATTC
TCTGCGGGTTCGAGATTGAGGTTATTCTGCTGAAGTGCGTCACCAAACCG
GACACCGATGAGGAAGAGTTTGTTCCATGTGTGCGCAACCACTCCTGGTC
CCAGATGACCCGAGACACCCGACGCATGGTGCCGCTTCTTGAGGAAATTG
TCGATACTCTTGCATCCATCGGCATTGACCTTGAACAATTCCACGCTGAA
TCGGCCCCGGGCCAGTTTGAATTCATTCTACCACCCGGATCGCCCGTCGC
CGCAGTCGATACCCTGCTCAAGGCACGACAGGTCGTGACTTATATCGCTG
AGCAGCACGGTTACCGTGCAACCCTTCATCCCCGACCCTTCTCACACGCT
GCTGGCTCAGCCGCACATGCGCATGTCTCCATAACTCCTGCGACTCAGGA
GGAGAGCTTCCTGGCTGGTGTGCTCAAGCACTTCACCTCTTTGACGGCCT
TCACTCTGTCTAATGATGTCAGCTACGAACGGATGCACTCTGGCCTCTGG
GCTGGAAGCGAGTGGGTCGCCTGGGGCACTCAGAATCGCGAAACACCTAT
CCGCAAGATCTCTGCGGGTCACTGGGAGGTCAAGGCACTTGACGGTCTGT
CCAATATGTATCTGGCAATGGCTGCAATTCTAGCCGCAGGATACCTGGGT
GTGCAGGACAAGCTGCCCCTGACCCTGCAGGACTGTTTATATGACGCGGC
AACACTCAGCGAGGCGGACCGCAGTGCCCTTGGAATAACCACCCAGATTC
CCACGACCCTGGCACAGAGTCTGGATAATATGGCAGCCGACAAGGCTCTC
CGGGATGTGCTTGGCAACACACTTGTTGAGAACTATATCACGGTCAAACG
AGCCGAGAGCAAGAAGCTGAATGCAATGGAGGCAGAAGCGCGACGCAAGT
GGCTGGTCGAGAGATACTAAATGGATCCGCTCGCGTCTCTTCGTCGCCTC
ATCCAAACGCATCCTCTTATCGACAACCACGCCCATAATCTCCTTGCGCA
GGCCGCAGCCCGCAACTACGCAAAATATCCTTTCGAACAGATCACTTCCG
AGGCCCAAGGTTCCGCCCTACACAATGCTCCGTCCACCTTACCCCTCCAG
CGTGCCGCCGCCCAGCTAGCGACCCTCTACGATTGCCCGACTTCCGAGTG
GGACCGCGTCAAGGCGGCTCGCGATCAATATGTCGAGCGTGACTATGATG
GCTTGATCCGTCGGTGTCTGGAAGGCACTCATAGCCTTCTTCTTGATGAT
CTGCTTACGGATCAAGATATCGAGCCTTTCACTTGGCATGATCGTTTCAC
CACAGCTCCGACCAAGCGGATCGTACGGATTGAAGTTGTGGCCGCCCAAG
TCCTTACCTCCATCCTTCCCAACGGTTATGATCAGTCCTCGAGCGACATC
ACCGTTCTTCGCCAGTATCTGGACCAGTTCAGCCAGGGTTTCAACCAGAA
GATCTCAGAGGCCATCGCAGATCCCGTGGTGGTAGGCTTCAAATCAGTCA
TCTGCTATCGTACTGGACTGAACGTCCAAGTGGCCGATGACAAAGACGAC
AGCAATCTCCTCGAGTCCTTCTCCCGGACCTTGTCGCAAGGATCTGGATC
TACATATCGCGTGGAGGACAAACCCCTGAACGATTGGCTGGTCAGGCAGG
CCCTGAACCAGCTGCAATCTGCCAAGGAGAAAGATGCGTCGGAACCCAAC
AAACCACTGCAACTGCACACGGGACTCGGCGATAATGATATCAACCTAAT
ACTTTCGAATCCCGCATATTTACAGGATTTGGTTGCCCGTTATCCCAAGG
TGGACTTTGTGCTTTTGCATTCCGCTTATCCGTATACCCGGGAGGCCGGC
TATCTCGCCTGTGTCTACCCGAATGTGTATCTAGACCTTGGAGAGGTGTT
TCCCATGGTGAGTCGAGATGCTCAGGAATCTATCATTCGCGAGAGTCTGG
AGATCGTGCCCACAACCCGCCTTCTGTGGAGTACCGATGGCCATTTCTTC
CCAGAGACATTTTGGTTGGCGAACAAACAGTTCCGCGACGCACTGGAAAA
GGTTCTCGTGGATTACGTCATTCAAGGCGATCACAGCGTCGATCAGGCGA
AGCTAGCTGCTGCCGATATATTGTTCCACAACTCCAACCGCCTGTACAGC
CTCAGTGAAACCGTTTCCTACGACGACAGGCTGGTCCCTGCCGTCAGCAA
CCTTTCTGGACTTTCTTCGACCGACGCGTTGGAAAGTTTCATGCACAGCA
ATCCAGATGTCAAGTATATTTGGATGCAGTTCTTTGACTACACTTCCACA
GTGCGCGTGCGGATGTTCCCTATCCGGGAGTTTGCTAAGATTGTTCGCAA
GCAACGCCGGATCGGTATCTGTACAGCCACGTTTCTGATGCTTCAATCCG
ACACAGTCTGTCCGGAAGGTTCCACAACCGGCCAGTTCTATCTAGAACCA
GATCTCTCAACCCTCTCTCGAAATGTGGGGATCGACTCGAAGAGCGCCAC
AGTAATGACTTGGGGGCGTTCTGAGGAGGGTTTGGAGGTGGAAGGATGTC
CACGGACCCTTCTGCGCCGCGTCACGACTGATTTACGTGCCAATCATGGA
ATCGAAATTCTCTGCGGGTTCGAGATTGAGGTTATTCTGCTGAAGTGCGT
CACCAAACCGGACACCGATGAGGAAGAGTTTGTTCCATGTGTGCGCAACC
ACTCCTGGTCCCAGATGACCCGAGACACCCGACGCATGGTGCCGCTTCTT
GAGGAAATTGTCGATACTCTTGCATCCATCGGCATTGACCTTGAACAATT
CCACGCTGAATCGGCCCCGGGCCAGTTTGAATTCATTCTACCACCCGGAT
CGCCCGTCGCCGCAGTCGATACCCTGCTCAAGGCACGACAGGTCGTGACT
TATATCGCTGAGCAGCACGGTTACCGTGCAACCCTTCATCCCCGACCCTT
CTCACACGCTGCTGGCTCAGCCGCACATGCGCATGTCTCCATAACTCCTG
CGACTCAGGAGGAGAGCTTCCTGGCTGGTGTGCTCAAGCACTTCACCTCT
TTGACGGCCTTCACTCTGTCTAATGATGTCAGCTACGAACGGATGCACTC
TGGCCTCTGGGCTGGAAGCGAGTGGGTCGCCTGGGGCACTCAGAATCGCG
AAACACCTATCCGCAAGATCTCTGCGGGTCACTGGGAGGTCAAGGCACTT
GACGGTCTGTCCAATATGTATCTGGCAATGGCTGCAATTCTAGCCGCAGG
ATACCTGGGTGTGCAGGACAAGCTGCCCCTGACCCTGCAGGACTGTTTAT
ATGACGCGGCAACACTCAGCGAGGCGGACCGCAGTGCCCTTGGAATAACC
ACCCAGATTCCCACGACCCTGGCACAGAGTCTGGATAATATGGCAGCCGA
CAAGGCTCTCCGGGATGTGCTTGGCAACACACTTGTTGAGAACTATATCA
CGGTCAAACGAGCCGAGAGCAAGAAGCTGAATGCAATGGAGGCAGAAGCG
CGACGCAAGTGGCTGGTCGAGAGATACTAA
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Molecular Function
TermDefinition
GO:0003824catalytic activity
GO:0016787hydrolase activity
GO:0004356glutamate-ammonia ligase activity
Vocabulary: Biological Process
TermDefinition
GO:0006807nitrogen compound metabolic process
Relationships

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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_56576ASPNIDRAFT_56576Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_56576-T1.exon1ASPNIDRAFT_56576-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_56576-T1.exon2ASPNIDRAFT_56576-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_56576-T1.exon3ASPNIDRAFT_56576-T1.exon3Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_56576-T1.cdsASPNIDRAFT_56576-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_56576-T1.utr3p1ASPNIDRAFT_56576-T1.utr3p1Aspergillus niger ATCC 1015three_prime_UTR


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_56576-T1ASPNIDRAFT_56576-T1-proteinAspergillus niger ATCC 1015polypeptide


Properties
Property NameValue
NoteEggNog:ENOG41
DBxrefInterPro:IPR014746
DBxrefInterPro:IPR032466
DBxrefInterPro:IPR006680
DBxrefInterPro:IPR008146
DBxrefPFAM:PF00120
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
ACJE01000002.1supercontigACJE01000002.1:868294..873370 +