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ASPNIDRAFT_199601-T1, ASPNIDRAFT_199601-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_199601-T1
Unique NameASPNIDRAFT_199601-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000019.1:2555232..2559604-

Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_199601-T1 ID=ASPNIDRAFT_199601-T1|Name=ASPNIDRAFT_199601-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=4373bp|location=Sequence derived from alignment at ACJE01000019.1:2555232..2559604- (Aspergillus niger ATCC 1015)
CATCCCCCCCGCCCCGCATCTCGGTCCTTTTGGCTTCGCTCGCTGTGACT CTTGTCATTTTCATTCCTGCATCCCCGGACTCTGGATAGTGGTCTTTCAT CCTACCCCCTTCCTGTGTCTCCGGTACCGCGGTCCCCAGTGCTCACCTGA GCTCCAAAGCTGGAAAAAAAGAATCAGACAAGAAACTCCAACGAAAGATG CCGGCTGAAAGGCGCTCTTTGAGATCGAACAGCAAGTCAGATACCTCTTC ATCTGCTAACGGTGAGAAGGGACGCTCCACTTCGCAGAGCTCTAGTTCCA ATAAAGATAAGCCGGCGCCTACCCGCGCTGCTGCCAACAAGGCCAAAGCT GCCTCTACCACGAAAGGCGCCTCGTCGAATAATACTGCCAACTCCGGAAT GGGTGAGCAGCGTGATCAGCCGCGTGCCAACGGGTCCGACCCGACGGAGA ATGGCGTGAATGGCTCGGAAGATGTTGAGATGGGAGAGGATACGGCAGGT GGGCCTACATCCTCATTCAACGCCAGTCAAGACCGCAAGGGTGACGAGAA GATGACTGTTGTAGTGCCCCCTACCAAGGGTTCCAGGTTATCCGGCGAGA AAGGAACGGACAAAGAAGGCGACGTCGCCATGGAGGGTGATGAGGGCGAG GATGCCGAGCCCGAGGTTGATCCCAAGACCAAGGCCATCCAAGGTTGGTT TTATCTGTCCTGGCGTTCATCCGCGCTGCGCTCCCGTACTAATGCTGCCA TGCGTTTCATGTAGACATCAAGACCAACTTTACCCTCCTCGAACGAGCCG TTACCCACTTCGACCCCAGATTCACCCTCCGCGTCCTGCGCTCGATATCG TCCATGCGCAAACACATCACGGGTGATGTGCTAGCTGAAGTTATTGAGGA GACTTACTCATCGTCAAGTGTCACCGCTTCATTCTTATTGAATGCTCTTG ATCAAGCAGGTGCCCTGGGCGGTGCTCAGTCCAGCGCGAAGATGGAGATT GAGTCGGAGAAGACCAAGACTGCTCCCAAGGAGACCCTGCCCGAGGTTGA TATCTACATGTCTATTCTTGTTCAGATCTTTTTGTATGACAAGAAGGAGA TTCAGCTGGGTGCCAAGTTCTCGACGAACCTGATTGAGCGTCTGCGGACG CTTAACCGCCGTACCCTCGACTCTCTGGCAGCTCGTGTCTACTTCTACTA CTCTCTCTTCTATGAGCAGATTGCTCCCCTTCCCCCGTCTCCTGCTGCCA CCGTGACTAAGATCCGCCAGCCCTTGCTCGCAGCCCTGAGAACAGCAGTG CTTCGCAAGGATGTGGACACCCAGGCTACCGTGATGACGCTACTCCTGCG CAACTACCTATCTACGTCTCACATTTCGCAGGCAGACCTTCTCATTTCGC ACAACAAATTCCCCCCATCGGCATCCAACAACCAGATTGCCCGGTACCTT TACTACTTGGGTCGCATCCGGGCCATTCAGTTGCAGTACACCGATGCCCA TGGTCACTTGATCGGTGCCACTCGCAAGTCGCCTTCTAGTCACAGTGCGC GCGGTTTCTACCAGGCTTCTCATAAATTGCTCGTTGTGGTGGAGCTCCTC ATGGGTGACATTCCCGACCGGGCCATTTTCCGACAGCCCGCACTTGAGCG CGCCATGCACCCCTACTTCCTCCTTGTTCAAGCTGTGAGTGTGGGTGACT TGGACGGGTTCCTCAACATCGTCAACACCCACAGTGCGACATTCCGCAAG GACGGTACGTACACTCTGATCCTGCGTCTGCGGCAAAACGTGATCAAGAC CGGCATTCGCATGATGTCTCTCTCCTACTCTCGCATTTCGCTCCGGGATA TTTGTCTGCGTCTTGGACTGGACAGCGAGGAGTCTGCCGAGTACATTGTG GCAAAGGCCATCCGCGACGGTGTGATCGAGGCCAGCTTGGACCACGAGCA TGGGTTCATGAAGAGCAAGGAAGTTGGAGATATCTATGCCACCAGGGAAC CCGGGGAGGTGTTCCATGAGCGCATCAGAGCTTGCTTGAGTCTCCACGAC GAGAGCGTCAAGGTGAGTTTCTACGAGAATCTACGTTCCTGCTCCACAGA GAGTACCCAGCTAACGAGTCTGCCAATAGGCCATGCGGTTCCCCATGAAC CAACACCGCCTGGAATTGAAGAGCGCGCAGGAGGCACGGGAGCGTGAGCG GGAGTTGGCCAAGGAGATCCAGGAAGGAGACATGGACGACGAGGATGCCG GCGGCGATTTCGATGCAATCTAGTGGGTGTGTGAAGTTATAAGCATACAG CAGCTTTTCGTTTGTAATCCTGTTATATCCCGTCCCGTTGGGTGTTCAAG AACGGAGGGAAGCTTTTCAACAATGTGTTCTTATCTGCAGTGTCGTCGTT CGGGTGTGTATGAAGCAATGGGTAGGATTGAGCTTCGCCGGCGTGATCTC CCATGTCTCTTATGTGTCATTGGACCGGCTCCTTTGTACTGTTGCACAGG TGGTTTCTGCTGTAGAGTGCTGTCCGGCCTGCCGAGTTGTCTCTTGCGAG GCGGGGGAGAAGCGTGACCTTGGGTTTCTGTTGTAATTTCCCATCATAAT AGATCAGAAAACCCTTGCAGCCATGAGCATGCGAACTGTATTGAACCAAA TTATCTGTGATAGTGAGTATGTAATACTGAGTGAGTACTGTAGAATGCGG TGTGGTGGAAGACGAGTGAAGATGCATAGAGCGAACTGGATGCGGCAGGG ACGGGCCCAGAGCCCCGAGCCGGCCCGAGGCAACCTCCGTCTCGAAATCT TCGGCGGGTGTTAATTGCGCCTCATCCATCCATCCAGGCACTGGTGCGGC CCCGGACCTGGCCCGGCTTTCAATCATTTGCTTTCCCGGTATTATGATCC TAGCATTTTGTTTGACTCACTTCTAGCTCTACTTGCCTCCCACGTTCCCC AATCATGAAAGCACGGACGGTGCCGGCATCCGGGCTGGTGCTCTCGTCAC GCGTCACGTCTTCCACGATAGTTTGCTGGCAATGCCTCCGAAACGAATTG GTTGCAAATCAATTTCAGCTTCAATCACGAAAGTATCACCCGACAAAACG TAAGGATGTGTCGCCGCTGGGTGCCGCCGTCTCTGCAGCTCAGACCATCT TCAAAGGCCTCCCCAAGGCACCTCCGGGCATTTCCGTCGACCCATTGCGG ATGGTAGGAAAGGAACTCAAATTCTTGACGAAGAACCTTCGGCAGCTACT GGGATCCGGCCATCCTACACTGGATAAGGTGGCCAAATACTACACCCGCA GTGAGGGTAAACACATGCGGCCGCTTCTGGTGCTGCTGATGTCTCAGGCG ACGGCGCTGTGTCCCCGGAAGACTGGCACGGACAACAATTCCGCAACAGT GAACGACCCGATCAGCTCGCCCTCAATCCTCGTCGATAACAATCCGGACC TGGATGCGCTCTCATCCGGTAGTGCAGATGCGCCGTACGACTTTGCCGGC GACAAGGACATCCTGCCCACCCAGCGGCGGCTTGCTGAAATCACCGAATT GATCCACACTGCGTCCCTCCTGCACGACGACGTCATCGACAATGCTGTGT CCCGCCGTTCTTTAACGTCTGCCAACCTCCAATTTGGAAACAAGATGGCC GTTTTGGCGGGAGACTTCATGCTGGGTCGGGCCTCCGTCGCTCTCGCGCG GCTGAGGGACCCGGAGGTCATTGAGTTGATGTCGACTGTCATCACCAACC TTGTTGAGGGCGAGTTCATGCAGTTGAAGAACACGGCTGCGGACGAGAAG AACCCCGTTTTCACGGACGACACCCTCTCGTATTACCTGCAGAAGACATA CCTGAAGACGGGCAGTTTGATCAGCAAGTCCTGCCGGTCGACTGCCGTGC TGGGTCACAGCGCCCCCGAGGTCGTCGAAGCCTCCTACCAGTACGGACGC AACTTGGGACTGGCGTTCCAGCTTGTGGACGATATGCTGGACTATACCGT GACCGAGGCTGAGTTGGGCAAGCCAGCTGGCGCGGACCTGGAGCTGGGTC TTGCTACGGCCCCGCTGCTCTTTGCCTGGAAACAGTTCCCAGAGCTTGGC CCGTTGGTTGGCCGGAAGTTCAGCCAGCCCGGCGATGTTCAGAAGGTAAT GCGATCCTAGTTGCAACAAATAAGTTTTGACACTAACATTGATTGATCAC CAGGCTCGGGAGCTTGTTATCAAGGCCGACGGTGTTGAACAGACCCGTAT CCTGGCCCAGGAGTATGCAGATAAGGCTGTCGCTGCGATTTCTGACTTCC CTGACAGCGACGCCAAGGCTGGATTGGCCCAGATGTGCGAGAAGACCATG AATCGGAGAAAGTGAGACGTTTG
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Coding sequence (CDS) from alignment at ACJE01000019.1:2555232..2559604-

>ASPNIDRAFT_199601-T1 ID=ASPNIDRAFT_199601-T1|Name=ASPNIDRAFT_199601-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=16590bp|location=Sequence derived from alignment at ACJE01000019.1:2555232..2559604- (Aspergillus niger ATCC 1015)
GCTCGGGAGCTTGTTATCAAGGCCGACGGTGTTGAACAGACCCGTATCCT
GGCCCAGGAGTATGCAGATAAGGCTGTCGCTGCGATTTCTGACTTCCCTG
ACAGCGACGCCAAGGCTGGATTGGCCCAGATGTGCGAGAAGACCATGAAT
CGGAGAAAGTGACTCTACTTGCCTCCCACGTTCCCCAATCATGAAAGCAC
GGACGGTGCCGGCATCCGGGCTGGTGCTCTCGTCACGCGTCACGTCTTCC
ACGATAGTTTGCTGGCAATGCCTCCGAAACGAATTGGTTGCAAATCAATT
TCAGCTTCAATCACGAAAGTATCACCCGACAAAACGTAAGGATGTGTCGC
CGCTGGGTGCCGCCGTCTCTGCAGCTCAGACCATCTTCAAAGGCCTCCCC
AAGGCACCTCCGGGCATTTCCGTCGACCCATTGCGGATGGTAGGAAAGGA
ACTCAAATTCTTGACGAAGAACCTTCGGCAGCTACTGGGATCCGGCCATC
CTACACTGGATAAGGTGGCCAAATACTACACCCGCAGTGAGGGTAAACAC
ATGCGGCCGCTTCTGGTGCTGCTGATGTCTCAGGCGACGGCGCTGTGTCC
CCGGAAGACTGGCACGGACAACAATTCCGCAACAGTGAACGACCCGATCA
GCTCGCCCTCAATCCTCGTCGATAACAATCCGGACCTGGATGCGCTCTCA
TCCGGTAGTGCAGATGCGCCGTACGACTTTGCCGGCGACAAGGACATCCT
GCCCACCCAGCGGCGGCTTGCTGAAATCACCGAATTGATCCACACTGCGT
CCCTCCTGCACGACGACGTCATCGACAATGCTGTGTCCCGCCGTTCTTTA
ACGTCTGCCAACCTCCAATTTGGAAACAAGATGGCCGTTTTGGCGGGAGA
CTTCATGCTGGGTCGGGCCTCCGTCGCTCTCGCGCGGCTGAGGGACCCGG
AGGTCATTGAGTTGATGTCGACTGTCATCACCAACCTTGTTGAGGGCGAG
TTCATGCAGTTGAAGAACACGGCTGCGGACGAGAAGAACCCCGTTTTCAC
GGACGACACCCTCTCGTATTACCTGCAGAAGACATACCTGAAGACGGGCA
GTTTGATCAGCAAGTCCTGCCGGTCGACTGCCGTGCTGGGTCACAGCGCC
CCCGAGGTCGTCGAAGCCTCCTACCAGTACGGACGCAACTTGGGACTGGC
GTTCCAGCTTGTGGACGATATGCTGGACTATACCGTGACCGAGGCTGAGT
TGGGCAAGCCAGCTGGCGCGGACCTGGAGCTGGGTCTTGCTACGGCCCCG
CTGCTCTTTGCCTGGAAACAGTTCCCAGAGCTTGGCCCGTTGGTTGGCCG
GAAGTTCAGCCAGCCCGGCGATGTTCAGAAGGCCATGCGGTTCCCCATGA
ACCAACACCGCCTGGAATTGAAGAGCGCGCAGGAGGCACGGGAGCGTGAG
CGGGAGTTGGCCAAGGAGATCCAGGAAGGAGACATGGACGACGAGGATGC
CGGCGGCGATTTCGATGCAATCTAACATCAAGACCAACTTTACCCTCCTC
GAACGAGCCGTTACCCACTTCGACCCCAGATTCACCCTCCGCGTCCTGCG
CTCGATATCGTCCATGCGCAAACACATCACGGGTGATGTGCTAGCTGAAG
TTATTGAGGAGACTTACTCATCGTCAAGTGTCACCGCTTCATTCTTATTG
AATGCTCTTGATCAAGCAGGTGCCCTGGGCGGTGCTCAGTCCAGCGCGAA
GATGGAGATTGAGTCGGAGAAGACCAAGACTGCTCCCAAGGAGACCCTGC
CCGAGGTTGATATCTACATGTCTATTCTTGTTCAGATCTTTTTGTATGAC
AAGAAGGAGATTCAGCTGGGTGCCAAGTTCTCGACGAACCTGATTGAGCG
TCTGCGGACGCTTAACCGCCGTACCCTCGACTCTCTGGCAGCTCGTGTCT
ACTTCTACTACTCTCTCTTCTATGAGCAGATTGCTCCCCTTCCCCCGTCT
CCTGCTGCCACCGTGACTAAGATCCGCCAGCCCTTGCTCGCAGCCCTGAG
AACAGCAGTGCTTCGCAAGGATGTGGACACCCAGGCTACCGTGATGACGC
TACTCCTGCGCAACTACCTATCTACGTCTCACATTTCGCAGGCAGACCTT
CTCATTTCGCACAACAAATTCCCCCCATCGGCATCCAACAACCAGATTGC
CCGGTACCTTTACTACTTGGGTCGCATCCGGGCCATTCAGTTGCAGTACA
CCGATGCCCATGGTCACTTGATCGGTGCCACTCGCAAGTCGCCTTCTAGT
CACAGTGCGCGCGGTTTCTACCAGGCTTCTCATAAATTGCTCGTTGTGGT
GGAGCTCCTCATGGGTGACATTCCCGACCGGGCCATTTTCCGACAGCCCG
CACTTGAGCGCGCCATGCACCCCTACTTCCTCCTTGTTCAAGCTGTGAGT
GTGGGTGACTTGGACGGGTTCCTCAACATCGTCAACACCCACAGTGCGAC
ATTCCGCAAGGACGGTACGTACACTCTGATCCTGCGTCTGCGGCAAAACG
TGATCAAGACCGGCATTCGCATGATGTCTCTCTCCTACTCTCGCATTTCG
CTCCGGGATATTTGTCTGCGTCTTGGACTGGACAGCGAGGAGTCTGCCGA
GTACATTGTGGCAAAGGCCATCCGCGACGGTGTGATCGAGGCCAGCTTGG
ACCACGAGCATGGGTTCATGAAGAGCAAGGAAGTTGGAGATATCTATGCC
ACCAGGGAACCCGGGGAGGTGTTCCATGAGCGCATCAGAGCTTGCTTGAG
TCTCCACGACGAGAGCGTCAAGATGCCGGCTGAAAGGCGCTCTTTGAGAT
CGAACAGCAAGTCAGATACCTCTTCATCTGCTAACGGTGAGAAGGGACGC
TCCACTTCGCAGAGCTCTAGTTCCAATAAAGATAAGCCGGCGCCTACCCG
CGCTGCTGCCAACAAGGCCAAAGCTGCCTCTACCACGAAAGGCGCCTCGT
CGAATAATACTGCCAACTCCGGAATGGGTGAGCAGCGTGATCAGCCGCGT
GCCAACGGGTCCGACCCGACGGAGAATGGCGTGAATGGCTCGGAAGATGT
TGAGATGGGAGAGGATACGGCAGGTGGGCCTACATCCTCATTCAACGCCA
GTCAAGACCGCAAGGGTGACGAGAAGATGACTGTTGTAGTGCCCCCTACC
AAGGGTTCCAGGTTATCCGGCGAGAAAGGAACGGACAAAGAAGGCGACGT
CGCCATGGAGGGTGATGAGGGCGAGGATGCCGAGCCCGAGGTTGATCCCA
AGACCAAGGCCATCCAAGGCTCGGGAGCTTGTTATCAAGGCCGACGGTGT
TGAACAGACCCGTATCCTGGCCCAGGAGTATGCAGATAAGGCTGTCGCTG
CGATTTCTGACTTCCCTGACAGCGACGCCAAGGCTGGATTGGCCCAGATG
TGCGAGAAGACCATGAATCGGAGAAAGTGACTCTACTTGCCTCCCACGTT
CCCCAATCATGAAAGCACGGACGGTGCCGGCATCCGGGCTGGTGCTCTCG
TCACGCGTCACGTCTTCCACGATAGTTTGCTGGCAATGCCTCCGAAACGA
ATTGGTTGCAAATCAATTTCAGCTTCAATCACGAAAGTATCACCCGACAA
AACGTAAGGATGTGTCGCCGCTGGGTGCCGCCGTCTCTGCAGCTCAGACC
ATCTTCAAAGGCCTCCCCAAGGCACCTCCGGGCATTTCCGTCGACCCATT
GCGGATGGTAGGAAAGGAACTCAAATTCTTGACGAAGAACCTTCGGCAGC
TACTGGGATCCGGCCATCCTACACTGGATAAGGTGGCCAAATACTACACC
CGCAGTGAGGGTAAACACATGCGGCCGCTTCTGGTGCTGCTGATGTCTCA
GGCGACGGCGCTGTGTCCCCGGAAGACTGGCACGGACAACAATTCCGCAA
CAGTGAACGACCCGATCAGCTCGCCCTCAATCCTCGTCGATAACAATCCG
GACCTGGATGCGCTCTCATCCGGTAGTGCAGATGCGCCGTACGACTTTGC
CGGCGACAAGGACATCCTGCCCACCCAGCGGCGGCTTGCTGAAATCACCG
AATTGATCCACACTGCGTCCCTCCTGCACGACGACGTCATCGACAATGCT
GTGTCCCGCCGTTCTTTAACGTCTGCCAACCTCCAATTTGGAAACAAGAT
GGCCGTTTTGGCGGGAGACTTCATGCTGGGTCGGGCCTCCGTCGCTCTCG
CGCGGCTGAGGGACCCGGAGGTCATTGAGTTGATGTCGACTGTCATCACC
AACCTTGTTGAGGGCGAGTTCATGCAGTTGAAGAACACGGCTGCGGACGA
GAAGAACCCCGTTTTCACGGACGACACCCTCTCGTATTACCTGCAGAAGA
CATACCTGAAGACGGGCAGTTTGATCAGCAAGTCCTGCCGGTCGACTGCC
GTGCTGGGTCACAGCGCCCCCGAGGTCGTCGAAGCCTCCTACCAGTACGG
ACGCAACTTGGGACTGGCGTTCCAGCTTGTGGACGATATGCTGGACTATA
CCGTGACCGAGGCTGAGTTGGGCAAGCCAGCTGGCGCGGACCTGGAGCTG
GGTCTTGCTACGGCCCCGCTGCTCTTTGCCTGGAAACAGTTCCCAGAGCT
TGGCCCGTTGGTTGGCCGGAAGTTCAGCCAGCCCGGCGATGTTCAGAAGG
CCATGCGGTTCCCCATGAACCAACACCGCCTGGAATTGAAGAGCGCGCAG
GAGGCACGGGAGCGTGAGCGGGAGTTGGCCAAGGAGATCCAGGAAGGAGA
CATGGACGACGAGGATGCCGGCGGCGATTTCGATGCAATCTAACATCAAG
ACCAACTTTACCCTCCTCGAACGAGCCGTTACCCACTTCGACCCCAGATT
CACCCTCCGCGTCCTGCGCTCGATATCGTCCATGCGCAAACACATCACGG
GTGATGTGCTAGCTGAAGTTATTGAGGAGACTTACTCATCGTCAAGTGTC
ACCGCTTCATTCTTATTGAATGCTCTTGATCAAGCAGGTGCCCTGGGCGG
TGCTCAGTCCAGCGCGAAGATGGAGATTGAGTCGGAGAAGACCAAGACTG
CTCCCAAGGAGACCCTGCCCGAGGTTGATATCTACATGTCTATTCTTGTT
CAGATCTTTTTGTATGACAAGAAGGAGATTCAGCTGGGTGCCAAGTTCTC
GACGAACCTGATTGAGCGTCTGCGGACGCTTAACCGCCGTACCCTCGACT
CTCTGGCAGCTCGTGTCTACTTCTACTACTCTCTCTTCTATGAGCAGATT
GCTCCCCTTCCCCCGTCTCCTGCTGCCACCGTGACTAAGATCCGCCAGCC
CTTGCTCGCAGCCCTGAGAACAGCAGTGCTTCGCAAGGATGTGGACACCC
AGGCTACCGTGATGACGCTACTCCTGCGCAACTACCTATCTACGTCTCAC
ATTTCGCAGGCAGACCTTCTCATTTCGCACAACAAATTCCCCCCATCGGC
ATCCAACAACCAGATTGCCCGGTACCTTTACTACTTGGGTCGCATCCGGG
CCATTCAGTTGCAGTACACCGATGCCCATGGTCACTTGATCGGTGCCACT
CGCAAGTCGCCTTCTAGTCACAGTGCGCGCGGTTTCTACCAGGCTTCTCA
TAAATTGCTCGTTGTGGTGGAGCTCCTCATGGGTGACATTCCCGACCGGG
CCATTTTCCGACAGCCCGCACTTGAGCGCGCCATGCACCCCTACTTCCTC
CTTGTTCAAGCTGTGAGTGTGGGTGACTTGGACGGGTTCCTCAACATCGT
CAACACCCACAGTGCGACATTCCGCAAGGACGGTACGTACACTCTGATCC
TGCGTCTGCGGCAAAACGTGATCAAGACCGGCATTCGCATGATGTCTCTC
TCCTACTCTCGCATTTCGCTCCGGGATATTTGTCTGCGTCTTGGACTGGA
CAGCGAGGAGTCTGCCGAGTACATTGTGGCAAAGGCCATCCGCGACGGTG
TGATCGAGGCCAGCTTGGACCACGAGCATGGGTTCATGAAGAGCAAGGAA
GTTGGAGATATCTATGCCACCAGGGAACCCGGGGAGGTGTTCCATGAGCG
CATCAGAGCTTGCTTGAGTCTCCACGACGAGAGCGTCAAGATGCCGGCTG
AAAGGCGCTCTTTGAGATCGAACAGCAAGTCAGATACCTCTTCATCTGCT
AACGGTGAGAAGGGACGCTCCACTTCGCAGAGCTCTAGTTCCAATAAAGA
TAAGCCGGCGCCTACCCGCGCTGCTGCCAACAAGGCCAAAGCTGCCTCTA
CCACGAAAGGCGCCTCGTCGAATAATACTGCCAACTCCGGAATGGGTGAG
CAGCGTGATCAGCCGCGTGCCAACGGGTCCGACCCGACGGAGAATGGCGT
GAATGGCTCGGAAGATGTTGAGATGGGAGAGGATACGGCAGGTGGGCCTA
CATCCTCATTCAACGCCAGTCAAGACCGCAAGGGTGACGAGAAGATGACT
GTTGTAGTGCCCCCTACCAAGGGTTCCAGGTTATCCGGCGAGAAAGGAAC
GGACAAAGAAGGCGACGTCGCCATGGAGGGTGATGAGGGCGAGGATGCCG
AGCCCGAGGTTGATCCCAAGACCAAGGCCATCCAAGGCTCGGGAGCTTGT
TATCAAGGCCGACGGTGTTGAACAGACCCGTATCCTGGCCCAGGAGTATG
CAGATAAGGCTGTCGCTGCGATTTCTGACTTCCCTGACAGCGACGCCAAG
GCTGGATTGGCCCAGATGTGCGAGAAGACCATGAATCGGAGAAAGTGACT
CTACTTGCCTCCCACGTTCCCCAATCATGAAAGCACGGACGGTGCCGGCA
TCCGGGCTGGTGCTCTCGTCACGCGTCACGTCTTCCACGATAGTTTGCTG
GCAATGCCTCCGAAACGAATTGGTTGCAAATCAATTTCAGCTTCAATCAC
GAAAGTATCACCCGACAAAACGTAAGGATGTGTCGCCGCTGGGTGCCGCC
GTCTCTGCAGCTCAGACCATCTTCAAAGGCCTCCCCAAGGCACCTCCGGG
CATTTCCGTCGACCCATTGCGGATGGTAGGAAAGGAACTCAAATTCTTGA
CGAAGAACCTTCGGCAGCTACTGGGATCCGGCCATCCTACACTGGATAAG
GTGGCCAAATACTACACCCGCAGTGAGGGTAAACACATGCGGCCGCTTCT
GGTGCTGCTGATGTCTCAGGCGACGGCGCTGTGTCCCCGGAAGACTGGCA
CGGACAACAATTCCGCAACAGTGAACGACCCGATCAGCTCGCCCTCAATC
CTCGTCGATAACAATCCGGACCTGGATGCGCTCTCATCCGGTAGTGCAGA
TGCGCCGTACGACTTTGCCGGCGACAAGGACATCCTGCCCACCCAGCGGC
GGCTTGCTGAAATCACCGAATTGATCCACACTGCGTCCCTCCTGCACGAC
GACGTCATCGACAATGCTGTGTCCCGCCGTTCTTTAACGTCTGCCAACCT
CCAATTTGGAAACAAGATGGCCGTTTTGGCGGGAGACTTCATGCTGGGTC
GGGCCTCCGTCGCTCTCGCGCGGCTGAGGGACCCGGAGGTCATTGAGTTG
ATGTCGACTGTCATCACCAACCTTGTTGAGGGCGAGTTCATGCAGTTGAA
GAACACGGCTGCGGACGAGAAGAACCCCGTTTTCACGGACGACACCCTCT
CGTATTACCTGCAGAAGACATACCTGAAGACGGGCAGTTTGATCAGCAAG
TCCTGCCGGTCGACTGCCGTGCTGGGTCACAGCGCCCCCGAGGTCGTCGA
AGCCTCCTACCAGTACGGACGCAACTTGGGACTGGCGTTCCAGCTTGTGG
ACGATATGCTGGACTATACCGTGACCGAGGCTGAGTTGGGCAAGCCAGCT
GGCGCGGACCTGGAGCTGGGTCTTGCTACGGCCCCGCTGCTCTTTGCCTG
GAAACAGTTCCCAGAGCTTGGCCCGTTGGTTGGCCGGAAGTTCAGCCAGC
CCGGCGATGTTCAGAAGGCCATGCGGTTCCCCATGAACCAACACCGCCTG
GAATTGAAGAGCGCGCAGGAGGCACGGGAGCGTGAGCGGGAGTTGGCCAA
GGAGATCCAGGAAGGAGACATGGACGACGAGGATGCCGGCGGCGATTTCG
ATGCAATCTAACATCAAGACCAACTTTACCCTCCTCGAACGAGCCGTTAC
CCACTTCGACCCCAGATTCACCCTCCGCGTCCTGCGCTCGATATCGTCCA
TGCGCAAACACATCACGGGTGATGTGCTAGCTGAAGTTATTGAGGAGACT
TACTCATCGTCAAGTGTCACCGCTTCATTCTTATTGAATGCTCTTGATCA
AGCAGGTGCCCTGGGCGGTGCTCAGTCCAGCGCGAAGATGGAGATTGAGT
CGGAGAAGACCAAGACTGCTCCCAAGGAGACCCTGCCCGAGGTTGATATC
TACATGTCTATTCTTGTTCAGATCTTTTTGTATGACAAGAAGGAGATTCA
GCTGGGTGCCAAGTTCTCGACGAACCTGATTGAGCGTCTGCGGACGCTTA
ACCGCCGTACCCTCGACTCTCTGGCAGCTCGTGTCTACTTCTACTACTCT
CTCTTCTATGAGCAGATTGCTCCCCTTCCCCCGTCTCCTGCTGCCACCGT
GACTAAGATCCGCCAGCCCTTGCTCGCAGCCCTGAGAACAGCAGTGCTTC
GCAAGGATGTGGACACCCAGGCTACCGTGATGACGCTACTCCTGCGCAAC
TACCTATCTACGTCTCACATTTCGCAGGCAGACCTTCTCATTTCGCACAA
CAAATTCCCCCCATCGGCATCCAACAACCAGATTGCCCGGTACCTTTACT
ACTTGGGTCGCATCCGGGCCATTCAGTTGCAGTACACCGATGCCCATGGT
CACTTGATCGGTGCCACTCGCAAGTCGCCTTCTAGTCACAGTGCGCGCGG
TTTCTACCAGGCTTCTCATAAATTGCTCGTTGTGGTGGAGCTCCTCATGG
GTGACATTCCCGACCGGGCCATTTTCCGACAGCCCGCACTTGAGCGCGCC
ATGCACCCCTACTTCCTCCTTGTTCAAGCTGTGAGTGTGGGTGACTTGGA
CGGGTTCCTCAACATCGTCAACACCCACAGTGCGACATTCCGCAAGGACG
GTACGTACACTCTGATCCTGCGTCTGCGGCAAAACGTGATCAAGACCGGC
ATTCGCATGATGTCTCTCTCCTACTCTCGCATTTCGCTCCGGGATATTTG
TCTGCGTCTTGGACTGGACAGCGAGGAGTCTGCCGAGTACATTGTGGCAA
AGGCCATCCGCGACGGTGTGATCGAGGCCAGCTTGGACCACGAGCATGGG
TTCATGAAGAGCAAGGAAGTTGGAGATATCTATGCCACCAGGGAACCCGG
GGAGGTGTTCCATGAGCGCATCAGAGCTTGCTTGAGTCTCCACGACGAGA
GCGTCAAGATGCCGGCTGAAAGGCGCTCTTTGAGATCGAACAGCAAGTCA
GATACCTCTTCATCTGCTAACGGTGAGAAGGGACGCTCCACTTCGCAGAG
CTCTAGTTCCAATAAAGATAAGCCGGCGCCTACCCGCGCTGCTGCCAACA
AGGCCAAAGCTGCCTCTACCACGAAAGGCGCCTCGTCGAATAATACTGCC
AACTCCGGAATGGGTGAGCAGCGTGATCAGCCGCGTGCCAACGGGTCCGA
CCCGACGGAGAATGGCGTGAATGGCTCGGAAGATGTTGAGATGGGAGAGG
ATACGGCAGGTGGGCCTACATCCTCATTCAACGCCAGTCAAGACCGCAAG
GGTGACGAGAAGATGACTGTTGTAGTGCCCCCTACCAAGGGTTCCAGGTT
ATCCGGCGAGAAAGGAACGGACAAAGAAGGCGACGTCGCCATGGAGGGTG
ATGAGGGCGAGGATGCCGAGCCCGAGGTTGATCCCAAGACCAAGGCCATC
CAAGGCTCGGGAGCTTGTTATCAAGGCCGACGGTGTTGAACAGACCCGTA
TCCTGGCCCAGGAGTATGCAGATAAGGCTGTCGCTGCGATTTCTGACTTC
CCTGACAGCGACGCCAAGGCTGGATTGGCCCAGATGTGCGAGAAGACCAT
GAATCGGAGAAAGTGACTCTACTTGCCTCCCACGTTCCCCAATCATGAAA
GCACGGACGGTGCCGGCATCCGGGCTGGTGCTCTCGTCACGCGTCACGTC
TTCCACGATAGTTTGCTGGCAATGCCTCCGAAACGAATTGGTTGCAAATC
AATTTCAGCTTCAATCACGAAAGTATCACCCGACAAAACGTAAGGATGTG
TCGCCGCTGGGTGCCGCCGTCTCTGCAGCTCAGACCATCTTCAAAGGCCT
CCCCAAGGCACCTCCGGGCATTTCCGTCGACCCATTGCGGATGGTAGGAA
AGGAACTCAAATTCTTGACGAAGAACCTTCGGCAGCTACTGGGATCCGGC
CATCCTACACTGGATAAGGTGGCCAAATACTACACCCGCAGTGAGGGTAA
ACACATGCGGCCGCTTCTGGTGCTGCTGATGTCTCAGGCGACGGCGCTGT
GTCCCCGGAAGACTGGCACGGACAACAATTCCGCAACAGTGAACGACCCG
ATCAGCTCGCCCTCAATCCTCGTCGATAACAATCCGGACCTGGATGCGCT
CTCATCCGGTAGTGCAGATGCGCCGTACGACTTTGCCGGCGACAAGGACA
TCCTGCCCACCCAGCGGCGGCTTGCTGAAATCACCGAATTGATCCACACT
GCGTCCCTCCTGCACGACGACGTCATCGACAATGCTGTGTCCCGCCGTTC
TTTAACGTCTGCCAACCTCCAATTTGGAAACAAGATGGCCGTTTTGGCGG
GAGACTTCATGCTGGGTCGGGCCTCCGTCGCTCTCGCGCGGCTGAGGGAC
CCGGAGGTCATTGAGTTGATGTCGACTGTCATCACCAACCTTGTTGAGGG
CGAGTTCATGCAGTTGAAGAACACGGCTGCGGACGAGAAGAACCCCGTTT
TCACGGACGACACCCTCTCGTATTACCTGCAGAAGACATACCTGAAGACG
GGCAGTTTGATCAGCAAGTCCTGCCGGTCGACTGCCGTGCTGGGTCACAG
CGCCCCCGAGGTCGTCGAAGCCTCCTACCAGTACGGACGCAACTTGGGAC
TGGCGTTCCAGCTTGTGGACGATATGCTGGACTATACCGTGACCGAGGCT
GAGTTGGGCAAGCCAGCTGGCGCGGACCTGGAGCTGGGTCTTGCTACGGC
CCCGCTGCTCTTTGCCTGGAAACAGTTCCCAGAGCTTGGCCCGTTGGTTG
GCCGGAAGTTCAGCCAGCCCGGCGATGTTCAGAAGGCCATGCGGTTCCCC
ATGAACCAACACCGCCTGGAATTGAAGAGCGCGCAGGAGGCACGGGAGCG
TGAGCGGGAGTTGGCCAAGGAGATCCAGGAAGGAGACATGGACGACGAGG
ATGCCGGCGGCGATTTCGATGCAATCTAACATCAAGACCAACTTTACCCT
CCTCGAACGAGCCGTTACCCACTTCGACCCCAGATTCACCCTCCGCGTCC
TGCGCTCGATATCGTCCATGCGCAAACACATCACGGGTGATGTGCTAGCT
GAAGTTATTGAGGAGACTTACTCATCGTCAAGTGTCACCGCTTCATTCTT
ATTGAATGCTCTTGATCAAGCAGGTGCCCTGGGCGGTGCTCAGTCCAGCG
CGAAGATGGAGATTGAGTCGGAGAAGACCAAGACTGCTCCCAAGGAGACC
CTGCCCGAGGTTGATATCTACATGTCTATTCTTGTTCAGATCTTTTTGTA
TGACAAGAAGGAGATTCAGCTGGGTGCCAAGTTCTCGACGAACCTGATTG
AGCGTCTGCGGACGCTTAACCGCCGTACCCTCGACTCTCTGGCAGCTCGT
GTCTACTTCTACTACTCTCTCTTCTATGAGCAGATTGCTCCCCTTCCCCC
GTCTCCTGCTGCCACCGTGACTAAGATCCGCCAGCCCTTGCTCGCAGCCC
TGAGAACAGCAGTGCTTCGCAAGGATGTGGACACCCAGGCTACCGTGATG
ACGCTACTCCTGCGCAACTACCTATCTACGTCTCACATTTCGCAGGCAGA
CCTTCTCATTTCGCACAACAAATTCCCCCCATCGGCATCCAACAACCAGA
TTGCCCGGTACCTTTACTACTTGGGTCGCATCCGGGCCATTCAGTTGCAG
TACACCGATGCCCATGGTCACTTGATCGGTGCCACTCGCAAGTCGCCTTC
TAGTCACAGTGCGCGCGGTTTCTACCAGGCTTCTCATAAATTGCTCGTTG
TGGTGGAGCTCCTCATGGGTGACATTCCCGACCGGGCCATTTTCCGACAG
CCCGCACTTGAGCGCGCCATGCACCCCTACTTCCTCCTTGTTCAAGCTGT
GAGTGTGGGTGACTTGGACGGGTTCCTCAACATCGTCAACACCCACAGTG
CGACATTCCGCAAGGACGGTACGTACACTCTGATCCTGCGTCTGCGGCAA
AACGTGATCAAGACCGGCATTCGCATGATGTCTCTCTCCTACTCTCGCAT
TTCGCTCCGGGATATTTGTCTGCGTCTTGGACTGGACAGCGAGGAGTCTG
CCGAGTACATTGTGGCAAAGGCCATCCGCGACGGTGTGATCGAGGCCAGC
TTGGACCACGAGCATGGGTTCATGAAGAGCAAGGAAGTTGGAGATATCTA
TGCCACCAGGGAACCCGGGGAGGTGTTCCATGAGCGCATCAGAGCTTGCT
TGAGTCTCCACGACGAGAGCGTCAAGATGCCGGCTGAAAGGCGCTCTTTG
AGATCGAACAGCAAGTCAGATACCTCTTCATCTGCTAACGGTGAGAAGGG
ACGCTCCACTTCGCAGAGCTCTAGTTCCAATAAAGATAAGCCGGCGCCTA
CCCGCGCTGCTGCCAACAAGGCCAAAGCTGCCTCTACCACGAAAGGCGCC
TCGTCGAATAATACTGCCAACTCCGGAATGGGTGAGCAGCGTGATCAGCC
GCGTGCCAACGGGTCCGACCCGACGGAGAATGGCGTGAATGGCTCGGAAG
ATGTTGAGATGGGAGAGGATACGGCAGGTGGGCCTACATCCTCATTCAAC
GCCAGTCAAGACCGCAAGGGTGACGAGAAGATGACTGTTGTAGTGCCCCC
TACCAAGGGTTCCAGGTTATCCGGCGAGAAAGGAACGGACAAAGAAGGCG
ACGTCGCCATGGAGGGTGATGAGGGCGAGGATGCCGAGCCCGAGGTTGAT
CCCAAGACCAAGGCCATCCAAGGCTCGGGAGCTTGTTATCAAGGCCGACG
GTGTTGAACAGACCCGTATCCTGGCCCAGGAGTATGCAGATAAGGCTGTC
GCTGCGATTTCTGACTTCCCTGACAGCGACGCCAAGGCTGGATTGGCCCA
GATGTGCGAGAAGACCATGAATCGGAGAAAGTGACTCTACTTGCCTCCCA
CGTTCCCCAATCATGAAAGCACGGACGGTGCCGGCATCCGGGCTGGTGCT
CTCGTCACGCGTCACGTCTTCCACGATAGTTTGCTGGCAATGCCTCCGAA
ACGAATTGGTTGCAAATCAATTTCAGCTTCAATCACGAAAGTATCACCCG
ACAAAACGTAAGGATGTGTCGCCGCTGGGTGCCGCCGTCTCTGCAGCTCA
GACCATCTTCAAAGGCCTCCCCAAGGCACCTCCGGGCATTTCCGTCGACC
CATTGCGGATGGTAGGAAAGGAACTCAAATTCTTGACGAAGAACCTTCGG
CAGCTACTGGGATCCGGCCATCCTACACTGGATAAGGTGGCCAAATACTA
CACCCGCAGTGAGGGTAAACACATGCGGCCGCTTCTGGTGCTGCTGATGT
CTCAGGCGACGGCGCTGTGTCCCCGGAAGACTGGCACGGACAACAATTCC
GCAACAGTGAACGACCCGATCAGCTCGCCCTCAATCCTCGTCGATAACAA
TCCGGACCTGGATGCGCTCTCATCCGGTAGTGCAGATGCGCCGTACGACT
TTGCCGGCGACAAGGACATCCTGCCCACCCAGCGGCGGCTTGCTGAAATC
ACCGAATTGATCCACACTGCGTCCCTCCTGCACGACGACGTCATCGACAA
TGCTGTGTCCCGCCGTTCTTTAACGTCTGCCAACCTCCAATTTGGAAACA
AGATGGCCGTTTTGGCGGGAGACTTCATGCTGGGTCGGGCCTCCGTCGCT
CTCGCGCGGCTGAGGGACCCGGAGGTCATTGAGTTGATGTCGACTGTCAT
CACCAACCTTGTTGAGGGCGAGTTCATGCAGTTGAAGAACACGGCTGCGG
ACGAGAAGAACCCCGTTTTCACGGACGACACCCTCTCGTATTACCTGCAG
AAGACATACCTGAAGACGGGCAGTTTGATCAGCAAGTCCTGCCGGTCGAC
TGCCGTGCTGGGTCACAGCGCCCCCGAGGTCGTCGAAGCCTCCTACCAGT
ACGGACGCAACTTGGGACTGGCGTTCCAGCTTGTGGACGATATGCTGGAC
TATACCGTGACCGAGGCTGAGTTGGGCAAGCCAGCTGGCGCGGACCTGGA
GCTGGGTCTTGCTACGGCCCCGCTGCTCTTTGCCTGGAAACAGTTCCCAG
AGCTTGGCCCGTTGGTTGGCCGGAAGTTCAGCCAGCCCGGCGATGTTCAG
AAGGCCATGCGGTTCCCCATGAACCAACACCGCCTGGAATTGAAGAGCGC
GCAGGAGGCACGGGAGCGTGAGCGGGAGTTGGCCAAGGAGATCCAGGAAG
GAGACATGGACGACGAGGATGCCGGCGGCGATTTCGATGCAATCTAACAT
CAAGACCAACTTTACCCTCCTCGAACGAGCCGTTACCCACTTCGACCCCA
GATTCACCCTCCGCGTCCTGCGCTCGATATCGTCCATGCGCAAACACATC
ACGGGTGATGTGCTAGCTGAAGTTATTGAGGAGACTTACTCATCGTCAAG
TGTCACCGCTTCATTCTTATTGAATGCTCTTGATCAAGCAGGTGCCCTGG
GCGGTGCTCAGTCCAGCGCGAAGATGGAGATTGAGTCGGAGAAGACCAAG
ACTGCTCCCAAGGAGACCCTGCCCGAGGTTGATATCTACATGTCTATTCT
TGTTCAGATCTTTTTGTATGACAAGAAGGAGATTCAGCTGGGTGCCAAGT
TCTCGACGAACCTGATTGAGCGTCTGCGGACGCTTAACCGCCGTACCCTC
GACTCTCTGGCAGCTCGTGTCTACTTCTACTACTCTCTCTTCTATGAGCA
GATTGCTCCCCTTCCCCCGTCTCCTGCTGCCACCGTGACTAAGATCCGCC
AGCCCTTGCTCGCAGCCCTGAGAACAGCAGTGCTTCGCAAGGATGTGGAC
ACCCAGGCTACCGTGATGACGCTACTCCTGCGCAACTACCTATCTACGTC
TCACATTTCGCAGGCAGACCTTCTCATTTCGCACAACAAATTCCCCCCAT
CGGCATCCAACAACCAGATTGCCCGGTACCTTTACTACTTGGGTCGCATC
CGGGCCATTCAGTTGCAGTACACCGATGCCCATGGTCACTTGATCGGTGC
CACTCGCAAGTCGCCTTCTAGTCACAGTGCGCGCGGTTTCTACCAGGCTT
CTCATAAATTGCTCGTTGTGGTGGAGCTCCTCATGGGTGACATTCCCGAC
CGGGCCATTTTCCGACAGCCCGCACTTGAGCGCGCCATGCACCCCTACTT
CCTCCTTGTTCAAGCTGTGAGTGTGGGTGACTTGGACGGGTTCCTCAACA
TCGTCAACACCCACAGTGCGACATTCCGCAAGGACGGTACGTACACTCTG
ATCCTGCGTCTGCGGCAAAACGTGATCAAGACCGGCATTCGCATGATGTC
TCTCTCCTACTCTCGCATTTCGCTCCGGGATATTTGTCTGCGTCTTGGAC
TGGACAGCGAGGAGTCTGCCGAGTACATTGTGGCAAAGGCCATCCGCGAC
GGTGTGATCGAGGCCAGCTTGGACCACGAGCATGGGTTCATGAAGAGCAA
GGAAGTTGGAGATATCTATGCCACCAGGGAACCCGGGGAGGTGTTCCATG
AGCGCATCAGAGCTTGCTTGAGTCTCCACGACGAGAGCGTCAAGATGCCG
GCTGAAAGGCGCTCTTTGAGATCGAACAGCAAGTCAGATACCTCTTCATC
TGCTAACGGTGAGAAGGGACGCTCCACTTCGCAGAGCTCTAGTTCCAATA
AAGATAAGCCGGCGCCTACCCGCGCTGCTGCCAACAAGGCCAAAGCTGCC
TCTACCACGAAAGGCGCCTCGTCGAATAATACTGCCAACTCCGGAATGGG
TGAGCAGCGTGATCAGCCGCGTGCCAACGGGTCCGACCCGACGGAGAATG
GCGTGAATGGCTCGGAAGATGTTGAGATGGGAGAGGATACGGCAGGTGGG
CCTACATCCTCATTCAACGCCAGTCAAGACCGCAAGGGTGACGAGAAGAT
GACTGTTGTAGTGCCCCCTACCAAGGGTTCCAGGTTATCCGGCGAGAAAG
GAACGGACAAAGAAGGCGACGTCGCCATGGAGGGTGATGAGGGCGAGGAT
GCCGAGCCCGAGGTTGATCCCAAGACCAAGGCCATCCAAG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Cellular Component
TermDefinition
GO:0000502proteasome complex
Vocabulary: Molecular Function
TermDefinition
GO:0030234enzyme regulator activity
Vocabulary: Biological Process
TermDefinition
GO:0008299isoprenoid biosynthetic process
GO:0042176regulation of protein catabolic process
Relationships

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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_199601ASPNIDRAFT_199601Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_199601-T1ASPNIDRAFT_199601-T1-proteinAspergillus niger ATCC 1015polypeptide


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_199601-T1.cdsASPNIDRAFT_199601-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_199601-T1.utr3p1ASPNIDRAFT_199601-T1.utr3p1Aspergillus niger ATCC 1015three_prime_UTR


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_199601-T1.exon5ASPNIDRAFT_199601-T1.exon5Aspergillus niger ATCC 1015exon
ASPNIDRAFT_199601-T1.exon4ASPNIDRAFT_199601-T1.exon4Aspergillus niger ATCC 1015exon
ASPNIDRAFT_199601-T1.exon3ASPNIDRAFT_199601-T1.exon3Aspergillus niger ATCC 1015exon
ASPNIDRAFT_199601-T1.exon2ASPNIDRAFT_199601-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_199601-T1.exon1ASPNIDRAFT_199601-T1.exon1Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_199601-T1.utr5p1ASPNIDRAFT_199601-T1.utr5p1Aspergillus niger ATCC 1015five_prime_UTR


Properties
Property NameValue
NoteBUSCO:EOG09262CMP
DBxrefInterPro:IPR008949
DBxrefInterPro:IPR036390
DBxrefInterPro:IPR033749
DBxrefInterPro:IPR000092
DBxrefInterPro:IPR013586
DBxrefInterPro:IPR000717
DBxrefPFAM:PF08375
DBxrefPFAM:PF00348
DBxrefPFAM:PF01399
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
ACJE01000019.1supercontigACJE01000019.1:2555232..2559604 -