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M747DRAFT_260755-T1, M747DRAFT_260755-T1 (mRNA) Aspergillus niger ATCC 13496

Overview
NameM747DRAFT_260755-T1
Unique NameM747DRAFT_260755-T1
TypemRNA
OrganismAspergillus niger ATCC 13496
Sequences
The following sequences are available for this feature:

mRNA from alignment at KZ851917.1:33545..37404-

Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>M747DRAFT_260755-T1 ID=M747DRAFT_260755-T1|Name=M747DRAFT_260755-T1|organism=Aspergillus niger ATCC 13496|type=mRNA|length=3860bp|location=Sequence derived from alignment at KZ851917.1:33545..37404- (Aspergillus niger ATCC 13496)
TGGGATCAAGTTCCAAGGAAATCTGCTTTCCCAAATTACAGCGAGGAATT GTTGTTCAACGACCATGCTTTGAGTCCAGATAATCCCATCGCAACCGGTT TGATCGCAATATTCGACCAGCCCTAGTTCTGGCTCCTGGCGCGGACATAC ATAACATAGCACCTGGTAGCCGGGTGCTGTTTTTTTTTGAGCCATGGCTG CCTCGAAAGAAAGCATGCCATCCAAACCAGAGGATATCGAAACGCGCTCC ATATTTTCAATGCAAGAGTTAGACCCATCACCAGTACAAGATGAGTTTCC AGACCTTGAATCTGGTGACTACTTCCCCAGAGAACCAAGTCCGCCATCGG CACGCGAGCCCATCGCCGGGGGTGGTCGGTTCTCGTCGCTCAAGTTAGGC CTTCGCGGACATAGTTGGGATTCCTGGTGTATGGCTAAGTATATGCAAGC TATTGTGATAATAGCAAGAATTTACTCTTTTCCTAGAAGCTAACAGTGGC CTCAAATTCTCCAGTATCTGCGTTCCAACGATACTCGACGTATCCACCGA CCCTATTCTTTGCATTGCATTGGGCCAATACCTCTCTCATCCCTCTGGCT ACTCGATCTGTGCCCGACAGCGAGAGCTTCCTGCTTCTCACCAGACCCGT CTATCAATCTCCGGGCCTCGAACATCTCGTTCTGACCGCGCCTGTTCTGA TTCATATTGCGTCTGGAATTGCTTTGCGCAACATCCGCTCCGCACGGCGG GCTCGACTCTATGGCGCCGAGACAAGGTCACAGAGACACTCCTTGACGTT TTGGCCTCGGATGAGCCTCCAAGCTCGGTTAGGATATTCCTTAGTTCCGT TACTCGGCGTCCATGTGCTCGTCAACCGCATCACTCCGTTGATGGTTGAT GGGGGAAGCTCGGGAGTCGGGCTGGGTTATGTGGCCCACGGCTTTGCACG GGCCCCCGCACTCTGGAATCTGTACTATTTGTTATTCGTCGCCGTTGGGG TGTGGCACTTCGTCGGCGGCTGGGCTGCATGGATGGGCTGGAGAGTGACA ACGGTCCGGAAGGAACGTGACCGAAAGAAAGGCTCCCTAGAGGGTTATCT GGGAGCCTCGGAAAGTGAGCAACGACTCCGCCGACAGAGGAAGATGTGGT GGACGGTCAACGGCATTGCCGCGGTGGGAGCATCCATATGGCTTGCAGGT GCCCTGGGAATCATCGGGCGTACGGGGCAGGGTTATGGCTGGGAGGCCAA GGGATGGAATGAGATCTACAGCCAGGTCCCCGTTATTGGGTCCTGGCTCT GACCCAATTCATTGGACAAAGATAATTCTTTTGACACGGGAGTAACGGCC GATATGATTGTATAGTAAGCAAGAAGCAAGACTTAATGTTAATGACAGCG CCGATCGAATGGGAAGACGGAATGAAATGAGTTTATAGTTAACTAATTAT GTGGTAGATAGTAGGGAGTGGTCCGTGCTTGACTGATCGGAAAGTTGGCG GGCGGAAGTCAAAAAAAAAGTTTCCGACAAGCCAAAAAAGACGAAAGGAC TCGCGGTTCATTCATTGCCTAGCCCAGAACCAAGTCACCAACAGGTCGAT TACAGAGTCCGGGTCCATGAGCCCACACCTTGGTGTCCTTTATCGTGCTC TCTCAATCAGTTTCAGATTCCGCAGTGATCGCGCAATTGCCCGCTGCACC GCCCTAGGAATCCAACAACGCCCGCCACTCCGCCGATTCTACTCTACCCG CTCATCGGCTGCGGAGATGGCTGAACAATTGATACAGTATGACGGCACTG AGTACAGAGCAGTGAAGGAAGGATTGGCGTACATTCTGAACCCCCCGGCT CAGGCTCCCGGTACGAAAAGGGATCGCAAAGCTGACGAGCAATCGCAATC AGTCTTCTACAACCCTATTCAACAATTCAACCGGGACCTTAGTGTCCTTG CCATTCGCGCATATGGGGAGCATTTGCTGGCCTTGAAGAAACAGAAGGCC GAGAAGAAGAAGCAAAAGGCTGCGGCGAACGACTCCGCGAAGGGCAAGAA ACGCAAGAGAGAAGAGGTCGATGGCAAGGAACAAACGCAGGATCAGAATC AAGGCCAAGGGGATCAGACTGCAGCACAGCAGGCAGAGCAGGACACGGCG CCATCTTTTACGATTCTAGACGCCCTCTCGGCTACGGGTCTGCGTGCCCT GCGATATGCTTCGGAGATACCTTTCACTTCTTGCGTCGTCGCAAACGACC TGTCGCCCTCGGCCATTGAATCCATGAAGACGAACATCAAATACAACAGT CTCGGCGAAAAAATCCGTCCCAACACCGGGGATGCGCGCTCTTACATGTA CAGTCTTCTAAACCAACAAGCCAATACCCCAACTGCCGAGAGCCACCTAG GAAAATTCGACGTGATTGATCTGGACCCTTACGGCTCTGCTGCACCTTTT ATGGACGCTGCGGTTCAGGGAGTCAAGGATGGCGGTCTTCTTTGTGTTAC CTGTACCGATGCAGGTGTCTGGGCCTCGTACGGGTATCCCGAGAAGTCGT TCGCCCTATACGGCGGAATCCCAGTCAAAGGACCGCATTGCCATGAAGGT GGCCTGCGTCTCATCCTGCACGGGCTTGCAGCCTCCGCTGCGAAATATGG TCTCGCGATTGAGCCACTTCTCTCCCTATCGATCGACTTTTATGCCCGAG TCTTCGTCCGTGTCCACCGCTCTCCGGCCGAAGTCAAGTATATCTCTGGA AACATGATGATGGTCTATAATTGCGATGCTGGCTGTGGCGCGTGGTCAAC TCAGCCTATCACCCAGACGAAACAGAAGCTGGACAAGAAAGGAAATCCGT TCTACCACTTCGGCTTCGCTCAGGGTCCGGTAGCAGATAGTCGTTGTGGC CATTGTGGCTCTAGGACTCACCTCAGCGGTCCTATGTGGGCTGGCCCTCT TCACAATGCACAATTTATCCGCAGAATCCTTGATATGCTCCCCCAGGCAG ATAGGAACGTGTATCACACGATTGACCGGATTGAGGGAATGCTGACTACG GCAATGGAAGAAGATCTGAATCTAGGAATTTCTAGTGACGAAGCAAACCA GACACCTACTGGCACAGTTGGTGGGGATATCTCCGAGAACGAATACTCTG CAATCATCCCGCGGCTCGATCCCGCCGCCCGGGAAGAATACCCCTTCTAC TTCAGTCTTAGCGCCTTATCCAAAGTCTTGCATACATCCACAATTTCCAT TGATGCCATGCGTGGGGCTATTCGACACCTTGGCTATCGATCAACCCGCA GCCACGCCAGACCGAATACGATTCGTACCGATGCTCCTTGGGAGGTGATC TGGGAGATCATGAGGGAATGGGTGAGACAGAAGTCTCCCATCAGAGAAGG CGCCCTAAAGCCCGGAAGTCCCGGCGCTGTCATTATGTCCAAGAGCAGGG AGAACATTCAAGGCCGTGAGGGGGAAGACCCGTCTCTGGCGCTTCTCAAG ACCGAGCTTCAAGCAGTCACAGAGGAAGCAAAAGATGTCAAAGATATGAT TACCAAAATTGAAGCTGCCTTGTATCGCTCCGGTGCCCGTCAAGCGTTGG GGAGGAAGAGAAGGGAATCTGATCCTCCGCGTGAACAGCCGGGAACAACG CAGAAGGATCTCCAGGACACAAAGCCTCCCCGTAGCCCCAATGGTGCAGG CAGACCGCACCCTAGCACGCTGGAGGTTGTATTCGATGAGGCCTTGGGTA GGGAGACGGCCAAGAAGCGACTGGTGCGGTATCAAATTAATCCTCGTGAG AACTGGGGTCCTCTGAGCCGAGCATCCGGAGGCAAGTAGATATTAAGTTC AATTATACGG
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Coding sequence (CDS) from alignment at KZ851917.1:33545..37404-

>M747DRAFT_260755-T1 ID=M747DRAFT_260755-T1|Name=M747DRAFT_260755-T1|organism=Aspergillus niger ATCC 13496|type=CDS|length=8838bp|location=Sequence derived from alignment at KZ851917.1:33545..37404- (Aspergillus niger ATCC 13496)
TATGACGGCACTGAGTACAGAGCAGTGAAGGAAGGATTGGCGTACATTCT
GAACCCCCCGGCTCAGGCTCCCGGTACGAAAAGGGATCGCAAAGCTGACG
AGCAATCGCAATCAGTCTTCTACAACCCTATTCAACAATTCAACCGGGAC
CTTAGTGTCCTTGCCATTCGCGCATATGGGGAGCATTTGCTGGCCTTGAA
GAAACAGAAGGCCGAGAAGAAGAAGCAAAAGGCTGCGGCGAACGACTCCG
CGAAGGGCAAGAAACGCAAGAGAGAAGAGGTCGATGGCAAGGAACAAACG
CAGGATCAGAATCAAGGCCAAGGGGATCAGACTGCAGCACAGCAGGCAGA
GCAGGACACGGCGCCATCTTTTACGATTCTAGACGCCCTCTCGGCTACGG
GTCTGCGTGCCCTGCGATATGCTTCGGAGATACCTTTCACTTCTTGCGTC
GTCGCAAACGACCTGTCGCCCTCGGCCATTGAATCCATGAAGACGAACAT
CAAATACAACAGTCTCGGCGAAAAAATCCGTCCCAACACCGGGGATGCGC
GCTCTTACATGTACAGTCTTCTAAACCAACAAGCCAATACCCCAACTGCC
GAGAGCCACCTAGGAAAATTCGACGTGATTGATCTGGACCCTTACGGCTC
TGCTGCACCTTTTATGGACGCTGCGGTTCAGGGAGTCAAGGATGGCGGTC
TTCTTTGTGTTACCTGTACCGATGCAGGTGTCTGGGCCTCGTACGGGTAT
CCCGAGAAGTCGTTCGCCCTATACGGCGGAATCCCAGTCAAAGGACCGCA
TTGCCATGAAGGTGGCCTGCGTCTCATCCTGCACGGGCTTGCAGCCTCCG
CTGCGAAATATGGTCTCGCGATTGAGCCACTTCTCTCCCTATCGATCGAC
TTTTATGCCCGAGTCTTCGTCCGTGTCCACCGCTCTCCGGCCGAAGTCAA
GTATATCTCTGGAAACATGATGATGGTCTATAATTGCGATGCTGGCTGTG
GCGCGTGGTCAACTCAGCCTATCACCCAGACGAAACAGAAGCTGGACAAG
AAAGGAAATCCGTTCTACCACTTCGGCTTCGCTCAGGGTCCGGTAGCAGA
TAGTCGTTGTGGCCATTGTGGCTCTAGGACTCACCTCAGCGGTCCTATGT
GGGCTGGCCCTCTTCACAATGCACAATTTATCCGCAGAATCCTTGATATG
CTCCCCCAGGCAGATAGGAACGTGTATCACACGATTGACCGGATTGAGGG
AATGCTGACTACGGCAATGGAAGAAGATCTGAATCTAGGAATTTCTAGTG
ACGAAGCAAACCAGACACCTACTGGCACAGTTGGTGGGGATATCTCCGAG
AACGAATACTCTGCAATCATCCCGCGGCTCGATCCCGCCGCCCGGGAAGA
ATACCCCTTCTACTTCAGTCTTAGCGCCTTATCCAAAGTCTTGCATACAT
CCACAATTTCCATTGATGCCATGCGTGGGGCTATTCGACACCTTGGCTAT
CGATCAACCCGCAGCCACGCCAGACCGAATACGATTCGTACCGATGCTCC
TTGGGAGGTGATCTGGGAGATCATGAGGGAATGGGTGAGACAGAAGTCTC
CCATCAGAGAAGGCGCCCTAAAGCCCGGAAGTCCCGGCGCTGTCATTATG
TCCAAGAGCAGGGAGAACATTCAAGGCCGTGAGGGGGAAGACCCGTCTCT
GGCGCTTCTCAAGACCGAGCTTCAAGCAGTCACAGAGGAAGCAAAAGATG
TCAAAGATATGATTACCAAAATTGAAGCTGCCTTGTATCGCTCCGGTGCC
CGTCAAGCGTTGGGGAGGAAGAGAAGGGAATCTGATCCTCCGCGTGAACA
GCCGGGAACAACGCAGAAGGATCTCCAGGACACAAAGCCTCCCCGTAGCC
CCAATGGTGCAGGCAGACCGCACCCTAGCACGCTGGAGGTTGTATTCGAT
GAGGCCTTGGGTAGGGAGACGGCCAAGAAGCGACTGGTGCGGTATCAAAT
TAATCCTCGTGAGAACTGGGGTCCTCTGAGCCGAGCATCCGGAGGCAAGT
AGTATCTGCGTTCCAACGATACTCGACGTATCCACCGACCCTATTCTTTG
CATTGCATTGGGCCAATACCTCTCTCATCCCTCTGGCTACTCGATCTGTG
CCCGACAGCGAGAGCTTCCTGCTTCTCACCAGACCCGTCTATCAATCTCC
GGGCCTCGAACATCTCGTTCTGACCGCGCCTGTTCTGATTCATATTGCGT
CTGGAATTGCTTTGCGCAACATCCGCTCCGCACGGCGGGCTCGACTCTAT
GGCGCCGAGACAAGGTCACAGAGACACTCCTTGACGTTTTGGCCTCGGAT
GAGCCTCCAAGCTCGGTTAGGATATTCCTTAGTTCCGTTACTCGGCGTCC
ATGTGCTCGTCAACCGCATCACTCCGTTGATGGTTGATGGGGGAAGCTCG
GGAGTCGGGCTGGGTTATGTGGCCCACGGCTTTGCACGGGCCCCCGCACT
CTGGAATCTGTACTATTTGTTATTCGTCGCCGTTGGGGTGTGGCACTTCG
TCGGCGGCTGGGCTGCATGGATGGGCTGGAGAGTGACAACGGTCCGGAAG
GAACGTGACCGAAAGAAAGGCTCCCTAGAGGGTTATCTGGGAGCCTCGGA
AAGTGAGCAACGACTCCGCCGACAGAGGAAGATGTGGTGGACGGTCAACG
GCATTGCCGCGATGGCTGCCTCGAAAGAAAGCATGCCATCCAAACCAGAG
GATATCGAAACGCGCTCCATATTTTCAATGCAAGAGTTAGACCCATCACC
AGTACAAGATGAGTTTCCAGACCTTGAATCTGGTGACTACTTCCCCAGAG
AACCAAGTCCGCCATCGGCACGCGAGCCCATCGCCGGGGGTGGTCGGTTC
TCGTCGCTCAAGTTAGGCCTTCGCGGACATAGTTGGGATTCCTGGTTATG
ACGGCACTGAGTACAGAGCAGTGAAGGAAGGATTGGCGTACATTCTGAAC
CCCCCGGCTCAGGCTCCCGGTACGAAAAGGGATCGCAAAGCTGACGAGCA
ATCGCAATCAGTCTTCTACAACCCTATTCAACAATTCAACCGGGACCTTA
GTGTCCTTGCCATTCGCGCATATGGGGAGCATTTGCTGGCCTTGAAGAAA
CAGAAGGCCGAGAAGAAGAAGCAAAAGGCTGCGGCGAACGACTCCGCGAA
GGGCAAGAAACGCAAGAGAGAAGAGGTCGATGGCAAGGAACAAACGCAGG
ATCAGAATCAAGGCCAAGGGGATCAGACTGCAGCACAGCAGGCAGAGCAG
GACACGGCGCCATCTTTTACGATTCTAGACGCCCTCTCGGCTACGGGTCT
GCGTGCCCTGCGATATGCTTCGGAGATACCTTTCACTTCTTGCGTCGTCG
CAAACGACCTGTCGCCCTCGGCCATTGAATCCATGAAGACGAACATCAAA
TACAACAGTCTCGGCGAAAAAATCCGTCCCAACACCGGGGATGCGCGCTC
TTACATGTACAGTCTTCTAAACCAACAAGCCAATACCCCAACTGCCGAGA
GCCACCTAGGAAAATTCGACGTGATTGATCTGGACCCTTACGGCTCTGCT
GCACCTTTTATGGACGCTGCGGTTCAGGGAGTCAAGGATGGCGGTCTTCT
TTGTGTTACCTGTACCGATGCAGGTGTCTGGGCCTCGTACGGGTATCCCG
AGAAGTCGTTCGCCCTATACGGCGGAATCCCAGTCAAAGGACCGCATTGC
CATGAAGGTGGCCTGCGTCTCATCCTGCACGGGCTTGCAGCCTCCGCTGC
GAAATATGGTCTCGCGATTGAGCCACTTCTCTCCCTATCGATCGACTTTT
ATGCCCGAGTCTTCGTCCGTGTCCACCGCTCTCCGGCCGAAGTCAAGTAT
ATCTCTGGAAACATGATGATGGTCTATAATTGCGATGCTGGCTGTGGCGC
GTGGTCAACTCAGCCTATCACCCAGACGAAACAGAAGCTGGACAAGAAAG
GAAATCCGTTCTACCACTTCGGCTTCGCTCAGGGTCCGGTAGCAGATAGT
CGTTGTGGCCATTGTGGCTCTAGGACTCACCTCAGCGGTCCTATGTGGGC
TGGCCCTCTTCACAATGCACAATTTATCCGCAGAATCCTTGATATGCTCC
CCCAGGCAGATAGGAACGTGTATCACACGATTGACCGGATTGAGGGAATG
CTGACTACGGCAATGGAAGAAGATCTGAATCTAGGAATTTCTAGTGACGA
AGCAAACCAGACACCTACTGGCACAGTTGGTGGGGATATCTCCGAGAACG
AATACTCTGCAATCATCCCGCGGCTCGATCCCGCCGCCCGGGAAGAATAC
CCCTTCTACTTCAGTCTTAGCGCCTTATCCAAAGTCTTGCATACATCCAC
AATTTCCATTGATGCCATGCGTGGGGCTATTCGACACCTTGGCTATCGAT
CAACCCGCAGCCACGCCAGACCGAATACGATTCGTACCGATGCTCCTTGG
GAGGTGATCTGGGAGATCATGAGGGAATGGGTGAGACAGAAGTCTCCCAT
CAGAGAAGGCGCCCTAAAGCCCGGAAGTCCCGGCGCTGTCATTATGTCCA
AGAGCAGGGAGAACATTCAAGGCCGTGAGGGGGAAGACCCGTCTCTGGCG
CTTCTCAAGACCGAGCTTCAAGCAGTCACAGAGGAAGCAAAAGATGTCAA
AGATATGATTACCAAAATTGAAGCTGCCTTGTATCGCTCCGGTGCCCGTC
AAGCGTTGGGGAGGAAGAGAAGGGAATCTGATCCTCCGCGTGAACAGCCG
GGAACAACGCAGAAGGATCTCCAGGACACAAAGCCTCCCCGTAGCCCCAA
TGGTGCAGGCAGACCGCACCCTAGCACGCTGGAGGTTGTATTCGATGAGG
CCTTGGGTAGGGAGACGGCCAAGAAGCGACTGGTGCGGTATCAAATTAAT
CCTCGTGAGAACTGGGGTCCTCTGAGCCGAGCATCCGGAGGCAAGTAGTA
TCTGCGTTCCAACGATACTCGACGTATCCACCGACCCTATTCTTTGCATT
GCATTGGGCCAATACCTCTCTCATCCCTCTGGCTACTCGATCTGTGCCCG
ACAGCGAGAGCTTCCTGCTTCTCACCAGACCCGTCTATCAATCTCCGGGC
CTCGAACATCTCGTTCTGACCGCGCCTGTTCTGATTCATATTGCGTCTGG
AATTGCTTTGCGCAACATCCGCTCCGCACGGCGGGCTCGACTCTATGGCG
CCGAGACAAGGTCACAGAGACACTCCTTGACGTTTTGGCCTCGGATGAGC
CTCCAAGCTCGGTTAGGATATTCCTTAGTTCCGTTACTCGGCGTCCATGT
GCTCGTCAACCGCATCACTCCGTTGATGGTTGATGGGGGAAGCTCGGGAG
TCGGGCTGGGTTATGTGGCCCACGGCTTTGCACGGGCCCCCGCACTCTGG
AATCTGTACTATTTGTTATTCGTCGCCGTTGGGGTGTGGCACTTCGTCGG
CGGCTGGGCTGCATGGATGGGCTGGAGAGTGACAACGGTCCGGAAGGAAC
GTGACCGAAAGAAAGGCTCCCTAGAGGGTTATCTGGGAGCCTCGGAAAGT
GAGCAACGACTCCGCCGACAGAGGAAGATGTGGTGGACGGTCAACGGCAT
TGCCGCGATGGCTGCCTCGAAAGAAAGCATGCCATCCAAACCAGAGGATA
TCGAAACGCGCTCCATATTTTCAATGCAAGAGTTAGACCCATCACCAGTA
CAAGATGAGTTTCCAGACCTTGAATCTGGTGACTACTTCCCCAGAGAACC
AAGTCCGCCATCGGCACGCGAGCCCATCGCCGGGGGTGGTCGGTTCTCGT
CGCTCAAGTTAGGCCTTCGCGGACATAGTTGGGATTCCTGGTTATGACGG
CACTGAGTACAGAGCAGTGAAGGAAGGATTGGCGTACATTCTGAACCCCC
CGGCTCAGGCTCCCGGTACGAAAAGGGATCGCAAAGCTGACGAGCAATCG
CAATCAGTCTTCTACAACCCTATTCAACAATTCAACCGGGACCTTAGTGT
CCTTGCCATTCGCGCATATGGGGAGCATTTGCTGGCCTTGAAGAAACAGA
AGGCCGAGAAGAAGAAGCAAAAGGCTGCGGCGAACGACTCCGCGAAGGGC
AAGAAACGCAAGAGAGAAGAGGTCGATGGCAAGGAACAAACGCAGGATCA
GAATCAAGGCCAAGGGGATCAGACTGCAGCACAGCAGGCAGAGCAGGACA
CGGCGCCATCTTTTACGATTCTAGACGCCCTCTCGGCTACGGGTCTGCGT
GCCCTGCGATATGCTTCGGAGATACCTTTCACTTCTTGCGTCGTCGCAAA
CGACCTGTCGCCCTCGGCCATTGAATCCATGAAGACGAACATCAAATACA
ACAGTCTCGGCGAAAAAATCCGTCCCAACACCGGGGATGCGCGCTCTTAC
ATGTACAGTCTTCTAAACCAACAAGCCAATACCCCAACTGCCGAGAGCCA
CCTAGGAAAATTCGACGTGATTGATCTGGACCCTTACGGCTCTGCTGCAC
CTTTTATGGACGCTGCGGTTCAGGGAGTCAAGGATGGCGGTCTTCTTTGT
GTTACCTGTACCGATGCAGGTGTCTGGGCCTCGTACGGGTATCCCGAGAA
GTCGTTCGCCCTATACGGCGGAATCCCAGTCAAAGGACCGCATTGCCATG
AAGGTGGCCTGCGTCTCATCCTGCACGGGCTTGCAGCCTCCGCTGCGAAA
TATGGTCTCGCGATTGAGCCACTTCTCTCCCTATCGATCGACTTTTATGC
CCGAGTCTTCGTCCGTGTCCACCGCTCTCCGGCCGAAGTCAAGTATATCT
CTGGAAACATGATGATGGTCTATAATTGCGATGCTGGCTGTGGCGCGTGG
TCAACTCAGCCTATCACCCAGACGAAACAGAAGCTGGACAAGAAAGGAAA
TCCGTTCTACCACTTCGGCTTCGCTCAGGGTCCGGTAGCAGATAGTCGTT
GTGGCCATTGTGGCTCTAGGACTCACCTCAGCGGTCCTATGTGGGCTGGC
CCTCTTCACAATGCACAATTTATCCGCAGAATCCTTGATATGCTCCCCCA
GGCAGATAGGAACGTGTATCACACGATTGACCGGATTGAGGGAATGCTGA
CTACGGCAATGGAAGAAGATCTGAATCTAGGAATTTCTAGTGACGAAGCA
AACCAGACACCTACTGGCACAGTTGGTGGGGATATCTCCGAGAACGAATA
CTCTGCAATCATCCCGCGGCTCGATCCCGCCGCCCGGGAAGAATACCCCT
TCTACTTCAGTCTTAGCGCCTTATCCAAAGTCTTGCATACATCCACAATT
TCCATTGATGCCATGCGTGGGGCTATTCGACACCTTGGCTATCGATCAAC
CCGCAGCCACGCCAGACCGAATACGATTCGTACCGATGCTCCTTGGGAGG
TGATCTGGGAGATCATGAGGGAATGGGTGAGACAGAAGTCTCCCATCAGA
GAAGGCGCCCTAAAGCCCGGAAGTCCCGGCGCTGTCATTATGTCCAAGAG
CAGGGAGAACATTCAAGGCCGTGAGGGGGAAGACCCGTCTCTGGCGCTTC
TCAAGACCGAGCTTCAAGCAGTCACAGAGGAAGCAAAAGATGTCAAAGAT
ATGATTACCAAAATTGAAGCTGCCTTGTATCGCTCCGGTGCCCGTCAAGC
GTTGGGGAGGAAGAGAAGGGAATCTGATCCTCCGCGTGAACAGCCGGGAA
CAACGCAGAAGGATCTCCAGGACACAAAGCCTCCCCGTAGCCCCAATGGT
GCAGGCAGACCGCACCCTAGCACGCTGGAGGTTGTATTCGATGAGGCCTT
GGGTAGGGAGACGGCCAAGAAGCGACTGGTGCGGTATCAAATTAATCCTC
GTGAGAACTGGGGTCCTCTGAGCCGAGCATCCGGAGGCAAGTAGTATCTG
CGTTCCAACGATACTCGACGTATCCACCGACCCTATTCTTTGCATTGCAT
TGGGCCAATACCTCTCTCATCCCTCTGGCTACTCGATCTGTGCCCGACAG
CGAGAGCTTCCTGCTTCTCACCAGACCCGTCTATCAATCTCCGGGCCTCG
AACATCTCGTTCTGACCGCGCCTGTTCTGATTCATATTGCGTCTGGAATT
GCTTTGCGCAACATCCGCTCCGCACGGCGGGCTCGACTCTATGGCGCCGA
GACAAGGTCACAGAGACACTCCTTGACGTTTTGGCCTCGGATGAGCCTCC
AAGCTCGGTTAGGATATTCCTTAGTTCCGTTACTCGGCGTCCATGTGCTC
GTCAACCGCATCACTCCGTTGATGGTTGATGGGGGAAGCTCGGGAGTCGG
GCTGGGTTATGTGGCCCACGGCTTTGCACGGGCCCCCGCACTCTGGAATC
TGTACTATTTGTTATTCGTCGCCGTTGGGGTGTGGCACTTCGTCGGCGGC
TGGGCTGCATGGATGGGCTGGAGAGTGACAACGGTCCGGAAGGAACGTGA
CCGAAAGAAAGGCTCCCTAGAGGGTTATCTGGGAGCCTCGGAAAGTGAGC
AACGACTCCGCCGACAGAGGAAGATGTGGTGGACGGTCAACGGCATTGCC
GCGATGGCTGCCTCGAAAGAAAGCATGCCATCCAAACCAGAGGATATCGA
AACGCGCTCCATATTTTCAATGCAAGAGTTAGACCCATCACCAGTACAAG
ATGAGTTTCCAGACCTTGAATCTGGTGACTACTTCCCCAGAGAACCAAGT
CCGCCATCGGCACGCGAGCCCATCGCCGGGGGTGGTCGGTTCTCGTCGCT
CAAGTTAGGCCTTCGCGGACATAGTTGGGATTCCTGGT
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Cellular Component
TermDefinition
GO:0016020membrane
Vocabulary: Biological Process
TermDefinition
GO:0008033tRNA processing
Vocabulary: Molecular Function
TermDefinition
GO:0003723RNA binding
GO:0004809tRNA (guanine-N2-)-methyltransferase activity
Relationships

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

Feature NameUnique NameSpeciesType
M747DRAFT_260755M747DRAFT_260755Aspergillus niger ATCC 13496gene


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

Feature NameUnique NameSpeciesType
M747DRAFT_260755-T1M747DRAFT_260755-T1-proteinAspergillus niger ATCC 13496polypeptide


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

Feature NameUnique NameSpeciesType
M747DRAFT_260755-T1.cdsM747DRAFT_260755-T1.cdsAspergillus niger ATCC 13496CDS


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

Feature NameUnique NameSpeciesType
M747DRAFT_260755-T1.utr3p1M747DRAFT_260755-T1.utr3p1Aspergillus niger ATCC 13496three_prime_UTR


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

Feature NameUnique NameSpeciesType
M747DRAFT_260755-T1.exon3M747DRAFT_260755-T1.exon3Aspergillus niger ATCC 13496exon
M747DRAFT_260755-T1.exon2M747DRAFT_260755-T1.exon2Aspergillus niger ATCC 13496exon
M747DRAFT_260755-T1.exon1M747DRAFT_260755-T1.exon1Aspergillus niger ATCC 13496exon


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

Feature NameUnique NameSpeciesType
M747DRAFT_260755-T1.utr5p1M747DRAFT_260755-T1.utr5p1Aspergillus niger ATCC 13496five_prime_UTR


Properties
Property NameValue
NoteBUSCO:EOG09261H5E
DBxrefInterPro:IPR029063
DBxrefInterPro:IPR034804
DBxrefInterPro:IPR042296
DBxrefInterPro:IPR012472
DBxrefInterPro:IPR002905
DBxrefPFAM:PF02005
DBxrefPFAM:PF07950
ProductN2-dimethylguanosine tRNA methyltransferase
ProductN2
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Aspergillus niger ATCC 13496 whole genome analysis2021-10-31
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
KZ851917.1supercontigKZ851917.1:33545..37404 -