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ASPNIDRAFT_52269-T1, ASPNIDRAFT_52269-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_52269-T1
Unique NameASPNIDRAFT_52269-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000010.1:1630729..1634589+

Legend: exonpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_52269-T1 ID=ASPNIDRAFT_52269-T1|Name=ASPNIDRAFT_52269-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=3861bp|location=Sequence derived from alignment at ACJE01000010.1:1630729..1634589+ (Aspergillus niger ATCC 1015)
ATGCCCACAGAGACTCCCGAACAGCTCACCAATGGTAACCACCCTGAGGA AACTCAGGAAGAGGATAACACCGGTGGTACGTCTCCTGTCGCTTATGACT CGATCTTGCGTACATGTTACTGACCGTGAGTCATCGTTTACAGGTCTTTT CCAGATCACCGTCAAGCTCCCTCATGAGCCCTACAAGATCCAGGTGATGG TGGGTATTATGTCTACAGGTGTCATGCGACTAGAGGAATGATTCAAAGAC CTTCTAACCCGAATACTTAGGTGTCGAGCCAAGAACAAGTTCAAGATGTG CGCCAATCGATTGTCGAGCTGCCCAGCACCTTCCAGTACACCTGCTTCCA CCTCGAATTCAACGGCCAGCGCATCAATGACTTCGTCGAGCTGTCCGAGG TGCCTGACCTGAAGGCTGACTCTGAGATCACCCTGGTGGAGGATCCCTAC AACGAGAAGGAAGCTCGTATGCACGTTGTTCGCATGAGAGAGCTGGTTGG CGCTGCGGGTGACCGGGTTGACAACCTCCATGGTATCAGCGCTGGTCTGT CTCTGCACGATGCCATCTCCGCTGAGGTGGCTGATGCGTCGGAGAAGGAG CACTCCCTGTCCAAGTACGACATTACTAGCTCCCCCTCTCTCAAGACCAT CCTCCCCCGCGCCGAAGCTCCCCTTCCCAAGACCGTCAAGGCCATCTCTC TCTCCCCGTGGAACCCCGTTCCTTACCACCTCCGCCAGAAGGGTCACTTG CTTTACCTCCAGGTCACCACCAACGAGGGTGAGCAGTTCCAGATCACCTC TCACATCTCCGGCTTCTACGTGAACAAGAACTCGAACATGAAGTTCGATC CTTCCCCGAAGACCATCCCCAAGAGTGGCCGCGCGCACTCGCTGCTCACC TTGATCGCTCACCTGTCGCCCTCCTTCAACGCCTCTTTCGAAGCCCTCCA GGAGTCGAACAACAAGAAGGATCTCCTGACCACCTTCCCCTTCCAGAACG CCATCCCCAACAACCCGTGGCTTGTTCCCCCTCCCACCTCGACTGCGAAC GCTCACCAGCCAGACATCACCCGTTCCCAGGAGAACTACCTCATCTCCGG CGTTGACAACGCGGAGACCCTCCGTGACTGGAACGAGGAGTTCCAGACTA CCCGGGAGCTGCCTCGCGAGACTGTTCAGGACCGTGTTTTCCGTGAACGC TTGACCTCCAAGCTGTTCGCTGATTACAACGAGGCCGCCGCTCGCGGTGC CGTCCTGGTGGCTCGTGGTGAGGTCGCTCCTCTGAACCCCACTGAGAGCC GCGATGCTCAGATCTTCGTTTACAACAACATCTTCTACTCTTTCGGTGCT GACGGTGTTGGCACCTTCGCCTCCGAGGGTGGTGACGAGGCTGCCCGTGT CGCTGTCGGAAAGGATGTTGTGGGCATCAAGGCCGTCAACCAGCTCGACA TCAACGGTCTCTTCACCCCGGGAACTGTTGTCGTCGACTACCTCGGCAAG CGTATCGTTGGTCAGAGTATTGTCCCCGGTATTTTCAAGCAGCGTGAGCC CGGTGAGCACCAGATCGACTATGGTGGTGTTGAAGGAAAGGATGTCGTGG CCACTCACCCCGACTTTGTGTCTGTTTTCGAGAAGATGTCCAAGGCTCTT CGCGTCAAGAAGCACGCCGTGTGGGACAAGGAGGGCCAGCGCCACGAGCT TGAGGGTAGCGTGGAGACAAAGGGTCTTCTGGGTACTGATGGCCGCAAGT ACGTGCTTGACCTCTACCGCGTGACTCCCCTGGATGTCATGTGGCAGGAG GAGGAAGGTAGCGATGCCTACCCGCACCGCATGTCCGTCCTGAGACTGGA GCTTGTTGAATCTTACTGGAGGCACAAGATGAGCCAGTACGTCAAGGCCG AAGTCGAGCGCCGCCGTAGCGCCAAGGCTGAGGCCGATGCTGCCAAGGCT GAATCCTCCGAGGCTACCGAATCCAAGGAGCAGGCCTCCGAAGAGAAGAG CGAGGAGGACCAGGAGCGCGTTGACATCTCCGGATTCTCGCTTGCGTTGA ACCCCGACGTCTGCAGCGGCCAGGTTCCCCAGACCGATGAGGAGAAGGAA CAGTGGGCCCAGGACGAGAAGGAGGTTCGTGAGACCTGCGACTACTTGCG CTCCAAGATCATGCCCGAATTGATCCAGGATCTGCACGACGGTGATGTCG GCTTCCCCATGGATGGACAGTCCCTCAGCCAGCTTTTGCACAAGCGTGGT ATCAACATCCGCTACCTTGGTAAGCTGGCTCAGCTGTCCAAGGAGAAGGG TTCTCGTCTCGATGCCCTGTCTACTCTCCTTGTCCAGGAGATGATTGCCC GTGCCTTCAAGCACATTGCCAACGAATACCTTCGTAACGTGCCGGCGCCA TTTGTCGCCTCTTGCATTTCTCACTTGCTCAACTGCCTTCTGGGTGCTGA TGTCAACCCCAACCCTGTTGCCGAGATCGACGCCTCTCTGCGCTCCATCT ACCCCGAAGGCGACTTCTCCTTCGAGAAGGCCACCCCTGCCACTCTCCGG GCTGCGATTGAGAAGCAGGTGACCATTCGGTACCGCTTCACCCTGGAAGC CGAGTGGTTCAACTCTCTTAGACACTTGCAGCTTCTCCGTGATCTGTCGA TCAAGCTCGGTCTGCAGCTTGGTGCCCGGGAATTCATCTTCGACAAGTCG CAGATCCCTGCCAAGGCCCCCGCCACTAACGGTGCCAACGGTGTTGCCCA GGAGGAGGGCAAGAACAAGAAGAAGAAGAAGGGTGGCGATTCGAGCTCTC CCGCCCGTGCCGCCAAGGAGGAGAAGCCTATCCTTGCCATTGTCCCTGAT GACATCCTCAACATTGTGCCCTTGGTCAAGGACGCCTCCCCCAGGAGCTC CCTTGCTGAGGAGGCTCTGGAGGCCGGTCGTATCTCTCTTATGCAGAACC AGAAGCAGTTGGGCCAGGAGCTCATCTTGGAGTCTCTGTCTCTGCACGAG CAGATCTACGGCATCCTCCACCCTGAGGTCGCCAAGCTCTACCACCAGCT GTCCATGCTGTACTACCAGACCGACGAGAAGGAAGCGGCCGTCGAGTTGG CTCGCAAGGCTGTCATCGTCACTGAGCGTACTCTGGGTGTGGACTCCGCT GACACCATTCTGAGCTACCTCAACCTCAGTCTCTTCGAGCACGCTTCTGG AAACACCAAGACTGCGTTGGCTTACATCAAGCACGCCATGGACCTCTGGA AGATCATCTATGGCGCCAACCACCCCGATTCCATCACCACCATGAACAAC GCCGCGGTGATGTTGCAGCACCTTAAGCAGTACTCGGACTCTCGCAAGTG GTTCGAGGCCTCGCTGGAAGTCTGCGAGTCTCTCTTTGGCCGCCAGTCGA TCAACACCGCGACCATCCTGTTCCAGCTGGCCCAGGCGCTGGCTCTTGAC CAGGACTCGAAGGGTGCCGTTGGCAAGATGCGTGATGCCTACAACATCTT CCTTAGCCAACTGGGTCCCAACGACCGCAACACCAAGGAAGCCGAGACCT GGTTGGAGCAGCTCACTCAGAACGCGGTTTCGATCGCCAAGCATGCCAAG GACATCCAGGCTCGCCGTCTGCGCCGGGTCAACATGAACCCTCGCTCTCT CGGCACCAAGATCCAGCCTCAGGTTGGCCAGACTGCTCCCGAGGTCGCTG GAGCCAGGGCTCCCGGCAGTGCCTCCCTGGACTCCCGTAGCGTCGATGAG CTGCTGAAGTTCATCGAGGGCGGTGATGCCGGTTCTTCCAAGGCCAAGCA GAAGAAGCGCGCTGCTGCCAGCAACCCCAAGCTCCGTGGCTCGAAGAAGT CTTCGGCTTAA
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Coding sequence (CDS) from alignment at ACJE01000010.1:1630729..1634589+

>ASPNIDRAFT_52269-T1 ID=ASPNIDRAFT_52269-T1|Name=ASPNIDRAFT_52269-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=11169bp|location=Sequence derived from alignment at ACJE01000010.1:1630729..1634589+ (Aspergillus niger ATCC 1015)
ATGCCCACAGAGACTCCCGAACAGCTCACCAATGGTAACCACCCTGAGGA
AACTCAGGAAGAGGATAACACCGGTGGTCTTTTCCAGATCACCGTCAAGC
TCCCTCATGAGCCCTACAAGATCCAGGTGATGGTGTCGAGCCAAGAACAA
GTTCAAGATGTGCGCCAATCGATTGTCGAGCTGCCCAGCACCTTCCAGTA
CACCTGCTTCCACCTCGAATTCAACGGCCAGCGCATCAATGACTTCGTCG
AGCTGTCCGAGGTGCCTGACCTGAAGGCTGACTCTGAGATCACCCTGGTG
GAGGATCCCTACAACGAGAAGGAAGCTCGTATGCACGTTGTTCGCATGAG
AGAGCTGGTTGGCGCTGCGGGTGACCGGGTTGACAACCTCCATGGTATCA
GCGCTGGTCTGTCTCTGCACGATGCCATCTCCGCTGAGGTGGCTGATGCG
TCGGAGAAGGAGCACTCCCTGTCCAAGTACGACATTACTAGCTCCCCCTC
TCTCAAGACCATCCTCCCCCGCGCCGAAGCTCCCCTTCCCAAGACCGTCA
AGGCCATCTCTCTCTCCCCGTGGAACCCCGTTCCTTACCACCTCCGCCAG
AAGGGTCACTTGCTTTACCTCCAGGTCACCACCAACGAGGGTGAGCAGTT
CCAGATCACCTCTCACATCTCCGGCTTCTACGTGAACAAGAACTCGAACA
TGAAGTTCGATCCTTCCCCGAAGACCATCCCCAAGAGTGGCCGCGCGCAC
TCGCTGCTCACCTTGATCGCTCACCTGTCGCCCTCCTTCAACGCCTCTTT
CGAAGCCCTCCAGGAGTCGAACAACAAGAAGGATCTCCTGACCACCTTCC
CCTTCCAGAACGCCATCCCCAACAACCCGTGGCTTGTTCCCCCTCCCACC
TCGACTGCGAACGCTCACCAGCCAGACATCACCCGTTCCCAGGAGAACTA
CCTCATCTCCGGCGTTGACAACGCGGAGACCCTCCGTGACTGGAACGAGG
AGTTCCAGACTACCCGGGAGCTGCCTCGCGAGACTGTTCAGGACCGTGTT
TTCCGTGAACGCTTGACCTCCAAGCTGTTCGCTGATTACAACGAGGCCGC
CGCTCGCGGTGCCGTCCTGGTGGCTCGTGGTGAGGTCGCTCCTCTGAACC
CCACTGAGAGCCGCGATGCTCAGATCTTCGTTTACAACAACATCTTCTAC
TCTTTCGGTGCTGACGGTGTTGGCACCTTCGCCTCCGAGGGTGGTGACGA
GGCTGCCCGTGTCGCTGTCGGAAAGGATGTTGTGGGCATCAAGGCCGTCA
ACCAGCTCGACATCAACGGTCTCTTCACCCCGGGAACTGTTGTCGTCGAC
TACCTCGGCAAGCGTATCGTTGGTCAGAGTATTGTCCCCGGTATTTTCAA
GCAGCGTGAGCCCGGTGAGCACCAGATCGACTATGGTGGTGTTGAAGGAA
AGGATGTCGTGGCCACTCACCCCGACTTTGTGTCTGTTTTCGAGAAGATG
TCCAAGGCTCTTCGCGTCAAGAAGCACGCCGTGTGGGACAAGGAGGGCCA
GCGCCACGAGCTTGAGGGTAGCGTGGAGACAAAGGGTCTTCTGGGTACTG
ATGGCCGCAAGTACGTGCTTGACCTCTACCGCGTGACTCCCCTGGATGTC
ATGTGGCAGGAGGAGGAAGGTAGCGATGCCTACCCGCACCGCATGTCCGT
CCTGAGACTGGAGCTTGTTGAATCTTACTGGAGGCACAAGATGAGCCAGT
ACGTCAAGGCCGAAGTCGAGCGCCGCCGTAGCGCCAAGGCTGAGGCCGAT
GCTGCCAAGGCTGAATCCTCCGAGGCTACCGAATCCAAGGAGCAGGCCTC
CGAAGAGAAGAGCGAGGAGGACCAGGAGCGCGTTGACATCTCCGGATTCT
CGCTTGCGTTGAACCCCGACGTCTGCAGCGGCCAGGTTCCCCAGACCGAT
GAGGAGAAGGAACAGTGGGCCCAGGACGAGAAGGAGGTTCGTGAGACCTG
CGACTACTTGCGCTCCAAGATCATGCCCGAATTGATCCAGGATCTGCACG
ACGGTGATGTCGGCTTCCCCATGGATGGACAGTCCCTCAGCCAGCTTTTG
CACAAGCGTGGTATCAACATCCGCTACCTTGGTAAGCTGGCTCAGCTGTC
CAAGGAGAAGGGTTCTCGTCTCGATGCCCTGTCTACTCTCCTTGTCCAGG
AGATGATTGCCCGTGCCTTCAAGCACATTGCCAACGAATACCTTCGTAAC
GTGCCGGCGCCATTTGTCGCCTCTTGCATTTCTCACTTGCTCAACTGCCT
TCTGGGTGCTGATGTCAACCCCAACCCTGTTGCCGAGATCGACGCCTCTC
TGCGCTCCATCTACCCCGAAGGCGACTTCTCCTTCGAGAAGGCCACCCCT
GCCACTCTCCGGGCTGCGATTGAGAAGCAGGTGACCATTCGGTACCGCTT
CACCCTGGAAGCCGAGTGGTTCAACTCTCTTAGACACTTGCAGCTTCTCC
GTGATCTGTCGATCAAGCTCGGTCTGCAGCTTGGTGCCCGGGAATTCATC
TTCGACAAGTCGCAGATCCCTGCCAAGGCCCCCGCCACTAACGGTGCCAA
CGGTGTTGCCCAGGAGGAGGGCAAGAACAAGAAGAAGAAGAAGGGTGGCG
ATTCGAGCTCTCCCGCCCGTGCCGCCAAGGAGGAGAAGCCTATCCTTGCC
ATTGTCCCTGATGACATCCTCAACATTGTGCCCTTGGTCAAGGACGCCTC
CCCCAGGAGCTCCCTTGCTGAGGAGGCTCTGGAGGCCGGTCGTATCTCTC
TTATGCAGAACCAGAAGCAGTTGGGCCAGGAGCTCATCTTGGAGTCTCTG
TCTCTGCACGAGCAGATCTACGGCATCCTCCACCCTGAGGTCGCCAAGCT
CTACCACCAGCTGTCCATGCTGTACTACCAGACCGACGAGAAGGAAGCGG
CCGTCGAGTTGGCTCGCAAGGCTGTCATCGTCACTGAGCGTACTCTGGGT
GTGGACTCCGCTGACACCATTCTGAGCTACCTCAACCTCAGTCTCTTCGA
GCACGCTTCTGGAAACACCAAGACTGCGTTGGCTTACATCAAGCACGCCA
TGGACCTCTGGAAGATCATCTATGGCGCCAACCACCCCGATTCCATCACC
ACCATGAACAACGCCGCGGTGATGTTGCAGCACCTTAAGCAGTACTCGGA
CTCTCGCAAGTGGTTCGAGGCCTCGCTGGAAGTCTGCGAGTCTCTCTTTG
GCCGCCAGTCGATCAACACCGCGACCATCCTGTTCCAGCTGGCCCAGGCG
CTGGCTCTTGACCAGGACTCGAAGGGTGCCGTTGGCAAGATGCGTGATGC
CTACAACATCTTCCTTAGCCAACTGGGTCCCAACGACCGCAACACCAAGG
AAGCCGAGACCTGGTTGGAGCAGCTCACTCAGAACGCGGTTTCGATCGCC
AAGCATGCCAAGGACATCCAGGCTCGCCGTCTGCGCCGGGTCAACATGAA
CCCTCGCTCTCTCGGCACCAAGATCCAGCCTCAGGTTGGCCAGACTGCTC
CCGAGGTCGCTGGAGCCAGGGCTCCCGGCAGTGCCTCCCTGGACTCCCGT
AGCGTCGATGAGCTGCTGAAGTTCATCGAGGGCGGTGATGCCGGTTCTTC
CAAGGCCAAGCAGAAGAAGCGCGCTGCTGCCAGCAACCCCAAGCTCCGTG
GCTCGAAGAAGTCTTCGGCTTAAATGCCCACAGAGACTCCCGAACAGCTC
ACCAATGGTAACCACCCTGAGGAAACTCAGGAAGAGGATAACACCGGTGG
TCTTTTCCAGATCACCGTCAAGCTCCCTCATGAGCCCTACAAGATCCAGG
TGATGGTGTCGAGCCAAGAACAAGTTCAAGATGTGCGCCAATCGATTGTC
GAGCTGCCCAGCACCTTCCAGTACACCTGCTTCCACCTCGAATTCAACGG
CCAGCGCATCAATGACTTCGTCGAGCTGTCCGAGGTGCCTGACCTGAAGG
CTGACTCTGAGATCACCCTGGTGGAGGATCCCTACAACGAGAAGGAAGCT
CGTATGCACGTTGTTCGCATGAGAGAGCTGGTTGGCGCTGCGGGTGACCG
GGTTGACAACCTCCATGGTATCAGCGCTGGTCTGTCTCTGCACGATGCCA
TCTCCGCTGAGGTGGCTGATGCGTCGGAGAAGGAGCACTCCCTGTCCAAG
TACGACATTACTAGCTCCCCCTCTCTCAAGACCATCCTCCCCCGCGCCGA
AGCTCCCCTTCCCAAGACCGTCAAGGCCATCTCTCTCTCCCCGTGGAACC
CCGTTCCTTACCACCTCCGCCAGAAGGGTCACTTGCTTTACCTCCAGGTC
ACCACCAACGAGGGTGAGCAGTTCCAGATCACCTCTCACATCTCCGGCTT
CTACGTGAACAAGAACTCGAACATGAAGTTCGATCCTTCCCCGAAGACCA
TCCCCAAGAGTGGCCGCGCGCACTCGCTGCTCACCTTGATCGCTCACCTG
TCGCCCTCCTTCAACGCCTCTTTCGAAGCCCTCCAGGAGTCGAACAACAA
GAAGGATCTCCTGACCACCTTCCCCTTCCAGAACGCCATCCCCAACAACC
CGTGGCTTGTTCCCCCTCCCACCTCGACTGCGAACGCTCACCAGCCAGAC
ATCACCCGTTCCCAGGAGAACTACCTCATCTCCGGCGTTGACAACGCGGA
GACCCTCCGTGACTGGAACGAGGAGTTCCAGACTACCCGGGAGCTGCCTC
GCGAGACTGTTCAGGACCGTGTTTTCCGTGAACGCTTGACCTCCAAGCTG
TTCGCTGATTACAACGAGGCCGCCGCTCGCGGTGCCGTCCTGGTGGCTCG
TGGTGAGGTCGCTCCTCTGAACCCCACTGAGAGCCGCGATGCTCAGATCT
TCGTTTACAACAACATCTTCTACTCTTTCGGTGCTGACGGTGTTGGCACC
TTCGCCTCCGAGGGTGGTGACGAGGCTGCCCGTGTCGCTGTCGGAAAGGA
TGTTGTGGGCATCAAGGCCGTCAACCAGCTCGACATCAACGGTCTCTTCA
CCCCGGGAACTGTTGTCGTCGACTACCTCGGCAAGCGTATCGTTGGTCAG
AGTATTGTCCCCGGTATTTTCAAGCAGCGTGAGCCCGGTGAGCACCAGAT
CGACTATGGTGGTGTTGAAGGAAAGGATGTCGTGGCCACTCACCCCGACT
TTGTGTCTGTTTTCGAGAAGATGTCCAAGGCTCTTCGCGTCAAGAAGCAC
GCCGTGTGGGACAAGGAGGGCCAGCGCCACGAGCTTGAGGGTAGCGTGGA
GACAAAGGGTCTTCTGGGTACTGATGGCCGCAAGTACGTGCTTGACCTCT
ACCGCGTGACTCCCCTGGATGTCATGTGGCAGGAGGAGGAAGGTAGCGAT
GCCTACCCGCACCGCATGTCCGTCCTGAGACTGGAGCTTGTTGAATCTTA
CTGGAGGCACAAGATGAGCCAGTACGTCAAGGCCGAAGTCGAGCGCCGCC
GTAGCGCCAAGGCTGAGGCCGATGCTGCCAAGGCTGAATCCTCCGAGGCT
ACCGAATCCAAGGAGCAGGCCTCCGAAGAGAAGAGCGAGGAGGACCAGGA
GCGCGTTGACATCTCCGGATTCTCGCTTGCGTTGAACCCCGACGTCTGCA
GCGGCCAGGTTCCCCAGACCGATGAGGAGAAGGAACAGTGGGCCCAGGAC
GAGAAGGAGGTTCGTGAGACCTGCGACTACTTGCGCTCCAAGATCATGCC
CGAATTGATCCAGGATCTGCACGACGGTGATGTCGGCTTCCCCATGGATG
GACAGTCCCTCAGCCAGCTTTTGCACAAGCGTGGTATCAACATCCGCTAC
CTTGGTAAGCTGGCTCAGCTGTCCAAGGAGAAGGGTTCTCGTCTCGATGC
CCTGTCTACTCTCCTTGTCCAGGAGATGATTGCCCGTGCCTTCAAGCACA
TTGCCAACGAATACCTTCGTAACGTGCCGGCGCCATTTGTCGCCTCTTGC
ATTTCTCACTTGCTCAACTGCCTTCTGGGTGCTGATGTCAACCCCAACCC
TGTTGCCGAGATCGACGCCTCTCTGCGCTCCATCTACCCCGAAGGCGACT
TCTCCTTCGAGAAGGCCACCCCTGCCACTCTCCGGGCTGCGATTGAGAAG
CAGGTGACCATTCGGTACCGCTTCACCCTGGAAGCCGAGTGGTTCAACTC
TCTTAGACACTTGCAGCTTCTCCGTGATCTGTCGATCAAGCTCGGTCTGC
AGCTTGGTGCCCGGGAATTCATCTTCGACAAGTCGCAGATCCCTGCCAAG
GCCCCCGCCACTAACGGTGCCAACGGTGTTGCCCAGGAGGAGGGCAAGAA
CAAGAAGAAGAAGAAGGGTGGCGATTCGAGCTCTCCCGCCCGTGCCGCCA
AGGAGGAGAAGCCTATCCTTGCCATTGTCCCTGATGACATCCTCAACATT
GTGCCCTTGGTCAAGGACGCCTCCCCCAGGAGCTCCCTTGCTGAGGAGGC
TCTGGAGGCCGGTCGTATCTCTCTTATGCAGAACCAGAAGCAGTTGGGCC
AGGAGCTCATCTTGGAGTCTCTGTCTCTGCACGAGCAGATCTACGGCATC
CTCCACCCTGAGGTCGCCAAGCTCTACCACCAGCTGTCCATGCTGTACTA
CCAGACCGACGAGAAGGAAGCGGCCGTCGAGTTGGCTCGCAAGGCTGTCA
TCGTCACTGAGCGTACTCTGGGTGTGGACTCCGCTGACACCATTCTGAGC
TACCTCAACCTCAGTCTCTTCGAGCACGCTTCTGGAAACACCAAGACTGC
GTTGGCTTACATCAAGCACGCCATGGACCTCTGGAAGATCATCTATGGCG
CCAACCACCCCGATTCCATCACCACCATGAACAACGCCGCGGTGATGTTG
CAGCACCTTAAGCAGTACTCGGACTCTCGCAAGTGGTTCGAGGCCTCGCT
GGAAGTCTGCGAGTCTCTCTTTGGCCGCCAGTCGATCAACACCGCGACCA
TCCTGTTCCAGCTGGCCCAGGCGCTGGCTCTTGACCAGGACTCGAAGGGT
GCCGTTGGCAAGATGCGTGATGCCTACAACATCTTCCTTAGCCAACTGGG
TCCCAACGACCGCAACACCAAGGAAGCCGAGACCTGGTTGGAGCAGCTCA
CTCAGAACGCGGTTTCGATCGCCAAGCATGCCAAGGACATCCAGGCTCGC
CGTCTGCGCCGGGTCAACATGAACCCTCGCTCTCTCGGCACCAAGATCCA
GCCTCAGGTTGGCCAGACTGCTCCCGAGGTCGCTGGAGCCAGGGCTCCCG
GCAGTGCCTCCCTGGACTCCCGTAGCGTCGATGAGCTGCTGAAGTTCATC
GAGGGCGGTGATGCCGGTTCTTCCAAGGCCAAGCAGAAGAAGCGCGCTGC
TGCCAGCAACCCCAAGCTCCGTGGCTCGAAGAAGTCTTCGGCTTAAATGC
CCACAGAGACTCCCGAACAGCTCACCAATGGTAACCACCCTGAGGAAACT
CAGGAAGAGGATAACACCGGTGGTCTTTTCCAGATCACCGTCAAGCTCCC
TCATGAGCCCTACAAGATCCAGGTGATGGTGTCGAGCCAAGAACAAGTTC
AAGATGTGCGCCAATCGATTGTCGAGCTGCCCAGCACCTTCCAGTACACC
TGCTTCCACCTCGAATTCAACGGCCAGCGCATCAATGACTTCGTCGAGCT
GTCCGAGGTGCCTGACCTGAAGGCTGACTCTGAGATCACCCTGGTGGAGG
ATCCCTACAACGAGAAGGAAGCTCGTATGCACGTTGTTCGCATGAGAGAG
CTGGTTGGCGCTGCGGGTGACCGGGTTGACAACCTCCATGGTATCAGCGC
TGGTCTGTCTCTGCACGATGCCATCTCCGCTGAGGTGGCTGATGCGTCGG
AGAAGGAGCACTCCCTGTCCAAGTACGACATTACTAGCTCCCCCTCTCTC
AAGACCATCCTCCCCCGCGCCGAAGCTCCCCTTCCCAAGACCGTCAAGGC
CATCTCTCTCTCCCCGTGGAACCCCGTTCCTTACCACCTCCGCCAGAAGG
GTCACTTGCTTTACCTCCAGGTCACCACCAACGAGGGTGAGCAGTTCCAG
ATCACCTCTCACATCTCCGGCTTCTACGTGAACAAGAACTCGAACATGAA
GTTCGATCCTTCCCCGAAGACCATCCCCAAGAGTGGCCGCGCGCACTCGC
TGCTCACCTTGATCGCTCACCTGTCGCCCTCCTTCAACGCCTCTTTCGAA
GCCCTCCAGGAGTCGAACAACAAGAAGGATCTCCTGACCACCTTCCCCTT
CCAGAACGCCATCCCCAACAACCCGTGGCTTGTTCCCCCTCCCACCTCGA
CTGCGAACGCTCACCAGCCAGACATCACCCGTTCCCAGGAGAACTACCTC
ATCTCCGGCGTTGACAACGCGGAGACCCTCCGTGACTGGAACGAGGAGTT
CCAGACTACCCGGGAGCTGCCTCGCGAGACTGTTCAGGACCGTGTTTTCC
GTGAACGCTTGACCTCCAAGCTGTTCGCTGATTACAACGAGGCCGCCGCT
CGCGGTGCCGTCCTGGTGGCTCGTGGTGAGGTCGCTCCTCTGAACCCCAC
TGAGAGCCGCGATGCTCAGATCTTCGTTTACAACAACATCTTCTACTCTT
TCGGTGCTGACGGTGTTGGCACCTTCGCCTCCGAGGGTGGTGACGAGGCT
GCCCGTGTCGCTGTCGGAAAGGATGTTGTGGGCATCAAGGCCGTCAACCA
GCTCGACATCAACGGTCTCTTCACCCCGGGAACTGTTGTCGTCGACTACC
TCGGCAAGCGTATCGTTGGTCAGAGTATTGTCCCCGGTATTTTCAAGCAG
CGTGAGCCCGGTGAGCACCAGATCGACTATGGTGGTGTTGAAGGAAAGGA
TGTCGTGGCCACTCACCCCGACTTTGTGTCTGTTTTCGAGAAGATGTCCA
AGGCTCTTCGCGTCAAGAAGCACGCCGTGTGGGACAAGGAGGGCCAGCGC
CACGAGCTTGAGGGTAGCGTGGAGACAAAGGGTCTTCTGGGTACTGATGG
CCGCAAGTACGTGCTTGACCTCTACCGCGTGACTCCCCTGGATGTCATGT
GGCAGGAGGAGGAAGGTAGCGATGCCTACCCGCACCGCATGTCCGTCCTG
AGACTGGAGCTTGTTGAATCTTACTGGAGGCACAAGATGAGCCAGTACGT
CAAGGCCGAAGTCGAGCGCCGCCGTAGCGCCAAGGCTGAGGCCGATGCTG
CCAAGGCTGAATCCTCCGAGGCTACCGAATCCAAGGAGCAGGCCTCCGAA
GAGAAGAGCGAGGAGGACCAGGAGCGCGTTGACATCTCCGGATTCTCGCT
TGCGTTGAACCCCGACGTCTGCAGCGGCCAGGTTCCCCAGACCGATGAGG
AGAAGGAACAGTGGGCCCAGGACGAGAAGGAGGTTCGTGAGACCTGCGAC
TACTTGCGCTCCAAGATCATGCCCGAATTGATCCAGGATCTGCACGACGG
TGATGTCGGCTTCCCCATGGATGGACAGTCCCTCAGCCAGCTTTTGCACA
AGCGTGGTATCAACATCCGCTACCTTGGTAAGCTGGCTCAGCTGTCCAAG
GAGAAGGGTTCTCGTCTCGATGCCCTGTCTACTCTCCTTGTCCAGGAGAT
GATTGCCCGTGCCTTCAAGCACATTGCCAACGAATACCTTCGTAACGTGC
CGGCGCCATTTGTCGCCTCTTGCATTTCTCACTTGCTCAACTGCCTTCTG
GGTGCTGATGTCAACCCCAACCCTGTTGCCGAGATCGACGCCTCTCTGCG
CTCCATCTACCCCGAAGGCGACTTCTCCTTCGAGAAGGCCACCCCTGCCA
CTCTCCGGGCTGCGATTGAGAAGCAGGTGACCATTCGGTACCGCTTCACC
CTGGAAGCCGAGTGGTTCAACTCTCTTAGACACTTGCAGCTTCTCCGTGA
TCTGTCGATCAAGCTCGGTCTGCAGCTTGGTGCCCGGGAATTCATCTTCG
ACAAGTCGCAGATCCCTGCCAAGGCCCCCGCCACTAACGGTGCCAACGGT
GTTGCCCAGGAGGAGGGCAAGAACAAGAAGAAGAAGAAGGGTGGCGATTC
GAGCTCTCCCGCCCGTGCCGCCAAGGAGGAGAAGCCTATCCTTGCCATTG
TCCCTGATGACATCCTCAACATTGTGCCCTTGGTCAAGGACGCCTCCCCC
AGGAGCTCCCTTGCTGAGGAGGCTCTGGAGGCCGGTCGTATCTCTCTTAT
GCAGAACCAGAAGCAGTTGGGCCAGGAGCTCATCTTGGAGTCTCTGTCTC
TGCACGAGCAGATCTACGGCATCCTCCACCCTGAGGTCGCCAAGCTCTAC
CACCAGCTGTCCATGCTGTACTACCAGACCGACGAGAAGGAAGCGGCCGT
CGAGTTGGCTCGCAAGGCTGTCATCGTCACTGAGCGTACTCTGGGTGTGG
ACTCCGCTGACACCATTCTGAGCTACCTCAACCTCAGTCTCTTCGAGCAC
GCTTCTGGAAACACCAAGACTGCGTTGGCTTACATCAAGCACGCCATGGA
CCTCTGGAAGATCATCTATGGCGCCAACCACCCCGATTCCATCACCACCA
TGAACAACGCCGCGGTGATGTTGCAGCACCTTAAGCAGTACTCGGACTCT
CGCAAGTGGTTCGAGGCCTCGCTGGAAGTCTGCGAGTCTCTCTTTGGCCG
CCAGTCGATCAACACCGCGACCATCCTGTTCCAGCTGGCCCAGGCGCTGG
CTCTTGACCAGGACTCGAAGGGTGCCGTTGGCAAGATGCGTGATGCCTAC
AACATCTTCCTTAGCCAACTGGGTCCCAACGACCGCAACACCAAGGAAGC
CGAGACCTGGTTGGAGCAGCTCACTCAGAACGCGGTTTCGATCGCCAAGC
ATGCCAAGGACATCCAGGCTCGCCGTCTGCGCCGGGTCAACATGAACCCT
CGCTCTCTCGGCACCAAGATCCAGCCTCAGGTTGGCCAGACTGCTCCCGA
GGTCGCTGGAGCCAGGGCTCCCGGCAGTGCCTCCCTGGACTCCCGTAGCG
TCGATGAGCTGCTGAAGTTCATCGAGGGCGGTGATGCCGGTTCTTCCAAG
GCCAAGCAGAAGAAGCGCGCTGCTGCCAGCAACCCCAAGCTCCGTGGCTC
GAAGAAGTCTTCGGCTTAA
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0048312intracellular distribution of mitochondria
Vocabulary: Molecular Function
TermDefinition
GO:0005515protein binding
Relationships

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

Feature NameUnique NameSpeciesType
CLU1ASPNIDRAFT_52269Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_52269-T1.exon1ASPNIDRAFT_52269-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_52269-T1.exon2ASPNIDRAFT_52269-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_52269-T1.exon3ASPNIDRAFT_52269-T1.exon3Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_52269-T1.cdsASPNIDRAFT_52269-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_52269-T1ASPNIDRAFT_52269-T1-proteinAspergillus niger ATCC 1015polypeptide


Properties
Property NameValue
NoteBUSCO:EOG09261OXV
DBxrefInterPro:IPR027523
DBxrefInterPro:IPR019734
DBxrefInterPro:IPR033646
DBxrefInterPro:IPR025697
DBxrefInterPro:IPR011990
DBxrefInterPro:IPR028275
DBxrefPFAM:PF13424
DBxrefPFAM:PF13374
DBxrefPFAM:PF12807
DBxrefPFAM:PF15044
DBxrefPFAM:PF13236
ProductIntracellular distribution of mitochondria
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
ACJE01000010.1supercontigACJE01000010.1:1630729..1634589 +