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ATCC10864_010582-T1, ATCC10864_010582-T1 (mRNA) Aspergillus niger ATCC 10864

Overview
NameATCC10864_010582-T1
Unique NameATCC10864_010582-T1
TypemRNA
OrganismAspergillus niger ATCC 10864
Sequences
The following sequences are available for this feature:

mRNA from alignment at MCQH01000240:127185..129408-

Legend: polypeptideCDSexon
Hold the cursor over a type above to highlight its positions in the sequence below.
>ATCC10864_010582-T1 ID=ATCC10864_010582-T1|Name=ATCC10864_010582-T1|organism=Aspergillus niger ATCC 10864|type=mRNA|length=2224bp|location=Sequence derived from alignment at MCQH01000240:127185..129408- (Aspergillus niger ATCC 10864)
ATGTATCTAACAAGTTTCAACACAACAGTAGAATTGGTGGGTAAATTGGC CAAGATTGCGAAGGATCGGACTAAAGGGCTTACCTGCATTAAGCTCGCAT CAGCCCGGGCTCCAATCACCTCATCGACTTTTCGGTCCTGATTGGCACAA TTTCGGCTCTACAGGATGCTCCATCATTTACTATCCTGATAGCTTCTGCC TGGTTGTTTCTTATCTCCCTCTTATTATAACCAGGCCTCCCCGCTGCCAA TTTCCCTCATGCTTTCTAGCTTCGGTTCCCTCGGACTCTTTGCCTACTGC CCGGCATGGCAATGAACCCAGAGGCCATCGAGCTCTCGGAAGCTCCACAG TCTGGGGCGAATTCCATGAAGCTTCAGCAGGCTCTAGTGAACAGAGTCAG CGGCACTAGCATCCTGCAGAGCCATGAAGCTAAGCCTGAAGCTGAGTCCG AGCCCGATGAGACCCTCTATCCCCATGGGATGCAATTCGTCCTCATCTCC ATGTCCCTTTGTTTCTGTGTCTTCCTGGTTGGTCTAGTAAGTGCTACTAT TTGCCGATTCCCTATACGCTGGTTAAACATGTCAGGATGCCACGATTTTG ACCACTGCCGTCCCGCGAATAACCGATGAGTTCGGGTCGGTGGCTGATGT TGGTTGGTATGATGCTGCTTTGTGAGTCTATCCTACCGATTAGTATCAGC CCTGTACATTCCTGCTAACTCCATCCAAGCCGACTCACCTCCTGCATGTC TCAGCTCTCCCAGGGAAAGTTGTATGACAACTATCCGGTCAAATGGGTCT TTCTCGTCAACCTCCTGCTGTTCGAGGGCGGCATCCTTCTCTCGGGACTG GCCCCGAGTTCAATGATCTTCATCATTGGAAGAGCTATAACCGGCTTAGG ATTTTCGGGGATCAGCCAAGGGTGCATGGTGTAAGCACTACATCGCCTGA GCGCGTATTGCAAACTAACAGTCGTCCAGCATCATTGCAATTTCCACGCC GCTACGAAGGCGACCGACCTTCGTCGGCCTAATCAGCGCCAGCGAATACA CTGCCATCGCGATAGCACCTATTCTGGGAGGTATACTCACATCTGACCTA TCCTGGAGATGGTGTTTCTACATCAACGTGCCTGCAGCAGCCCTACCATC CGCCGTGCTTCTCCTTCTTAAGCTTCCCAACATTACCCCCAGGGGCTCGA AAACACACATTCAGAAACTCCGCGAGCTGGACCTACTCGGATTCTTCCTC TTCGCACCCGCAGTGCTATGCCTCCTCCTCGCGCTCCAATGGGGCGGTGA TACCTACAGCTGGACCAACGGACGGATCATCGCCCTTCTCGTCCTCTCGC CCATCATCTTCACGGGTTTCTGTCTCCTCCAGCACCGCAAACAAGATACC GCCATGCTCCCACCCCGCGTCCTCCGTAAACGCATCATAATCACCGGCGC GGCCTTCAGCCTGTGTCTCTCGGCCTGCCGCGCCATCGTCCAGTACTACG TACACTCCCCATCTCCATCCTTACCCTCTAACACAAACTAACCCAGCAAC AGCTCTCAATCTGGTTCCAAACCGTCCGCAACGCCACCCCCCTCCAAAGC GGCCTCAACACCCTCCCCCTAGTCATCTCCGTCCTCGTCAGCGCCATCAC TGGCGGATGGCTCATCTCCCGCACACGCACCTACACCCCGATCCTCCTTC CTGCCTCCCTCCTCGTTATCGCCGGCATCGCTCTCATGACAACCTTCACC CCCACCACGCCCGCCAAGCTCTGGATCCCATCTCTTATCCTCCTAGGCCT CGGATCCGGCAGCGCCGTCGGTGTACCCTTCATCGCCGTGCAGGCCATTC TCCCCATGAAGGACATTTCCATAGGCATGGCACTGATGACTTTCTCGCAG GACATCGGAGAAGCGGTGTTCATCAGTGTGGCGCAGGCGATTTTCTTGAA CCGGTTGACGGGGGATTTAGCGAAGAGTGTGCCCGGACTGGATCCGGTAA TGGTGACCCATTTGGGCGCCACAAGTTTGGAGGGTAAGTTGCCCGGGAAG TACTTGGAGGCGGTGGTGGGGGCGTATGATGTTGCGGTGAGGGGGACGTT CTTGCTGGCGGTTGCGTTGGCGGGGAGTGTGTTTGTGGCGGCGGTTTTGG TAAAGCGGAATCCGTTCAAGGTTGGCAATGAGTTGGGGGAGGGAGATAGA GAAGAGAGAAGCAGGGGAGTGTAA
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Coding sequence (CDS) from alignment at MCQH01000240:127185..129408-

>ATCC10864_010582-T1 ID=ATCC10864_010582-T1|Name=ATCC10864_010582-T1|organism=Aspergillus niger ATCC 10864|type=CDS|length=10692bp|location=Sequence derived from alignment at MCQH01000240:127185..129408- (Aspergillus niger ATCC 10864)
CTCTCAATCTGGTTCCAAACCGTCCGCAACGCCACCCCCCTCCAAAGCGG
CCTCAACACCCTCCCCCTAGTCATCTCCGTCCTCGTCAGCGCCATCACTG
GCGGATGGCTCATCTCCCGCACACGCACCTACACCCCGATCCTCCTTCCT
GCCTCCCTCCTCGTTATCGCCGGCATCGCTCTCATGACAACCTTCACCCC
CACCACGCCCGCCAAGCTCTGGATCCCATCTCTTATCCTCCTAGGCCTCG
GATCCGGCAGCGCCGTCGGTGTACCCTTCATCGCCGTGCAGGCCATTCTC
CCCATGAAGGACATTTCCATAGGCATGGCACTGATGACTTTCTCGCAGGA
CATCGGAGAAGCGGTGTTCATCAGTGTGGCGCAGGCGATTTTCTTGAACC
GGTTGACGGGGGATTTAGCGAAGAGTGTGCCCGGACTGGATCCGGTAATG
GTGACCCATTTGGGCGCCACAAGTTTGGAGGGTAAGTTGCCCGGGAAGTA
CTTGGAGGCGGTGGTGGGGGCGTATGATGTTGCGGTGAGGGGGACGTTCT
TGCTGGCGGTTGCGTTGGCGGGGAGTGTGTTTGTGGCGGCGGTTTTGGTA
AAGCGGAATCCGTTCAAGGTTGGCAATGAGTTGGGGGAGGGAGATAGAGA
AGAGAGAAGCAGGGGAGTGTAACATCATTGCAATTTCCACGCCGCTACGA
AGGCGACCGACCTTCGTCGGCCTAATCAGCGCCAGCGAATACACTGCCAT
CGCGATAGCACCTATTCTGGGAGGTATACTCACATCTGACCTATCCTGGA
GATGGTGTTTCTACATCAACGTGCCTGCAGCAGCCCTACCATCCGCCGTG
CTTCTCCTTCTTAAGCTTCCCAACATTACCCCCAGGGGCTCGAAAACACA
CATTCAGAAACTCCGCGAGCTGGACCTACTCGGATTCTTCCTCTTCGCAC
CCGCAGTGCTATGCCTCCTCCTCGCGCTCCAATGGGGCGGTGATACCTAC
AGCTGGACCAACGGACGGATCATCGCCCTTCTCGTCCTCTCGCCCATCAT
CTTCACGGGTTTCTGTCTCCTCCAGCACCGCAAACAAGATACCGCCATGC
TCCCACCCCGCGTCCTCCGTAAACGCATCATAATCACCGGCGCGGCCTTC
AGCCTGTGTCTCTCGGCCTGCCGCGCCATCGTCCAGTACTACCCGACTCA
CCTCCTGCATGTCTCAGCTCTCCCAGGGAAAGTTGTATGACAACTATCCG
GTCAAATGGGTCTTTCTCGTCAACCTCCTGCTGTTCGAGGGCGGCATCCT
TCTCTCGGGACTGGCCCCGAGTTCAATGATCTTCATCATTGGAAGAGCTA
TAACCGGCTTAGGATTTTCGGGGATCAGCCAAGGGTGCATGGTGATGCCA
CGATTTTGACCACTGCCGTCCCGCGAATAACCGATGAGTTCGGGTCGGTG
GCTGATGTTGGTTGGTATGATGCTGCTTTCTTCGGTTCCCTCGGACTCTT
TGCCTACTGCCCGGCATGGCAATGAACCCAGAGGCCATCGAGCTCTCGGA
AGCTCCACAGTCTGGGGCGAATTCCATGAAGCTTCAGCAGGCTCTAGTGA
ACAGAGTCAGCGGCACTAGCATCCTGCAGAGCCATGAAGCTAAGCCTGAA
GCTGAGTCCGAGCCCGATGAGACCCTCTATCCCCATGGGATGCAATTCGT
CCTCATCTCCATGTCCCTTTGTTTCTGTGTCTTCCTGGTTGGTCTAATGT
ATCTAACAAGTTTCAACACAACAGTAGAATTGCTCTCAATCTGGTTCCAA
ACCGTCCGCAACGCCACCCCCCTCCAAAGCGGCCTCAACACCCTCCCCCT
AGTCATCTCCGTCCTCGTCAGCGCCATCACTGGCGGATGGCTCATCTCCC
GCACACGCACCTACACCCCGATCCTCCTTCCTGCCTCCCTCCTCGTTATC
GCCGGCATCGCTCTCATGACAACCTTCACCCCCACCACGCCCGCCAAGCT
CTGGATCCCATCTCTTATCCTCCTAGGCCTCGGATCCGGCAGCGCCGTCG
GTGTACCCTTCATCGCCGTGCAGGCCATTCTCCCCATGAAGGACATTTCC
ATAGGCATGGCACTGATGACTTTCTCGCAGGACATCGGAGAAGCGGTGTT
CATCAGTGTGGCGCAGGCGATTTTCTTGAACCGGTTGACGGGGGATTTAG
CGAAGAGTGTGCCCGGACTGGATCCGGTAATGGTGACCCATTTGGGCGCC
ACAAGTTTGGAGGGTAAGTTGCCCGGGAAGTACTTGGAGGCGGTGGTGGG
GGCGTATGATGTTGCGGTGAGGGGGACGTTCTTGCTGGCGGTTGCGTTGG
CGGGGAGTGTGTTTGTGGCGGCGGTTTTGGTAAAGCGGAATCCGTTCAAG
GTTGGCAATGAGTTGGGGGAGGGAGATAGAGAAGAGAGAAGCAGGGGAGT
GTAACATCATTGCAATTTCCACGCCGCTACGAAGGCGACCGACCTTCGTC
GGCCTAATCAGCGCCAGCGAATACACTGCCATCGCGATAGCACCTATTCT
GGGAGGTATACTCACATCTGACCTATCCTGGAGATGGTGTTTCTACATCA
ACGTGCCTGCAGCAGCCCTACCATCCGCCGTGCTTCTCCTTCTTAAGCTT
CCCAACATTACCCCCAGGGGCTCGAAAACACACATTCAGAAACTCCGCGA
GCTGGACCTACTCGGATTCTTCCTCTTCGCACCCGCAGTGCTATGCCTCC
TCCTCGCGCTCCAATGGGGCGGTGATACCTACAGCTGGACCAACGGACGG
ATCATCGCCCTTCTCGTCCTCTCGCCCATCATCTTCACGGGTTTCTGTCT
CCTCCAGCACCGCAAACAAGATACCGCCATGCTCCCACCCCGCGTCCTCC
GTAAACGCATCATAATCACCGGCGCGGCCTTCAGCCTGTGTCTCTCGGCC
TGCCGCGCCATCGTCCAGTACTACCCGACTCACCTCCTGCATGTCTCAGC
TCTCCCAGGGAAAGTTGTATGACAACTATCCGGTCAAATGGGTCTTTCTC
GTCAACCTCCTGCTGTTCGAGGGCGGCATCCTTCTCTCGGGACTGGCCCC
GAGTTCAATGATCTTCATCATTGGAAGAGCTATAACCGGCTTAGGATTTT
CGGGGATCAGCCAAGGGTGCATGGTGATGCCACGATTTTGACCACTGCCG
TCCCGCGAATAACCGATGAGTTCGGGTCGGTGGCTGATGTTGGTTGGTAT
GATGCTGCTTTCTTCGGTTCCCTCGGACTCTTTGCCTACTGCCCGGCATG
GCAATGAACCCAGAGGCCATCGAGCTCTCGGAAGCTCCACAGTCTGGGGC
GAATTCCATGAAGCTTCAGCAGGCTCTAGTGAACAGAGTCAGCGGCACTA
GCATCCTGCAGAGCCATGAAGCTAAGCCTGAAGCTGAGTCCGAGCCCGAT
GAGACCCTCTATCCCCATGGGATGCAATTCGTCCTCATCTCCATGTCCCT
TTGTTTCTGTGTCTTCCTGGTTGGTCTAATGTATCTAACAAGTTTCAACA
CAACAGTAGAATTGCTCTCAATCTGGTTCCAAACCGTCCGCAACGCCACC
CCCCTCCAAAGCGGCCTCAACACCCTCCCCCTAGTCATCTCCGTCCTCGT
CAGCGCCATCACTGGCGGATGGCTCATCTCCCGCACACGCACCTACACCC
CGATCCTCCTTCCTGCCTCCCTCCTCGTTATCGCCGGCATCGCTCTCATG
ACAACCTTCACCCCCACCACGCCCGCCAAGCTCTGGATCCCATCTCTTAT
CCTCCTAGGCCTCGGATCCGGCAGCGCCGTCGGTGTACCCTTCATCGCCG
TGCAGGCCATTCTCCCCATGAAGGACATTTCCATAGGCATGGCACTGATG
ACTTTCTCGCAGGACATCGGAGAAGCGGTGTTCATCAGTGTGGCGCAGGC
GATTTTCTTGAACCGGTTGACGGGGGATTTAGCGAAGAGTGTGCCCGGAC
TGGATCCGGTAATGGTGACCCATTTGGGCGCCACAAGTTTGGAGGGTAAG
TTGCCCGGGAAGTACTTGGAGGCGGTGGTGGGGGCGTATGATGTTGCGGT
GAGGGGGACGTTCTTGCTGGCGGTTGCGTTGGCGGGGAGTGTGTTTGTGG
CGGCGGTTTTGGTAAAGCGGAATCCGTTCAAGGTTGGCAATGAGTTGGGG
GAGGGAGATAGAGAAGAGAGAAGCAGGGGAGTGTAACATCATTGCAATTT
CCACGCCGCTACGAAGGCGACCGACCTTCGTCGGCCTAATCAGCGCCAGC
GAATACACTGCCATCGCGATAGCACCTATTCTGGGAGGTATACTCACATC
TGACCTATCCTGGAGATGGTGTTTCTACATCAACGTGCCTGCAGCAGCCC
TACCATCCGCCGTGCTTCTCCTTCTTAAGCTTCCCAACATTACCCCCAGG
GGCTCGAAAACACACATTCAGAAACTCCGCGAGCTGGACCTACTCGGATT
CTTCCTCTTCGCACCCGCAGTGCTATGCCTCCTCCTCGCGCTCCAATGGG
GCGGTGATACCTACAGCTGGACCAACGGACGGATCATCGCCCTTCTCGTC
CTCTCGCCCATCATCTTCACGGGTTTCTGTCTCCTCCAGCACCGCAAACA
AGATACCGCCATGCTCCCACCCCGCGTCCTCCGTAAACGCATCATAATCA
CCGGCGCGGCCTTCAGCCTGTGTCTCTCGGCCTGCCGCGCCATCGTCCAG
TACTACCCGACTCACCTCCTGCATGTCTCAGCTCTCCCAGGGAAAGTTGT
ATGACAACTATCCGGTCAAATGGGTCTTTCTCGTCAACCTCCTGCTGTTC
GAGGGCGGCATCCTTCTCTCGGGACTGGCCCCGAGTTCAATGATCTTCAT
CATTGGAAGAGCTATAACCGGCTTAGGATTTTCGGGGATCAGCCAAGGGT
GCATGGTGATGCCACGATTTTGACCACTGCCGTCCCGCGAATAACCGATG
AGTTCGGGTCGGTGGCTGATGTTGGTTGGTATGATGCTGCTTTCTTCGGT
TCCCTCGGACTCTTTGCCTACTGCCCGGCATGGCAATGAACCCAGAGGCC
ATCGAGCTCTCGGAAGCTCCACAGTCTGGGGCGAATTCCATGAAGCTTCA
GCAGGCTCTAGTGAACAGAGTCAGCGGCACTAGCATCCTGCAGAGCCATG
AAGCTAAGCCTGAAGCTGAGTCCGAGCCCGATGAGACCCTCTATCCCCAT
GGGATGCAATTCGTCCTCATCTCCATGTCCCTTTGTTTCTGTGTCTTCCT
GGTTGGTCTAATGTATCTAACAAGTTTCAACACAACAGTAGAATTGCTCT
CAATCTGGTTCCAAACCGTCCGCAACGCCACCCCCCTCCAAAGCGGCCTC
AACACCCTCCCCCTAGTCATCTCCGTCCTCGTCAGCGCCATCACTGGCGG
ATGGCTCATCTCCCGCACACGCACCTACACCCCGATCCTCCTTCCTGCCT
CCCTCCTCGTTATCGCCGGCATCGCTCTCATGACAACCTTCACCCCCACC
ACGCCCGCCAAGCTCTGGATCCCATCTCTTATCCTCCTAGGCCTCGGATC
CGGCAGCGCCGTCGGTGTACCCTTCATCGCCGTGCAGGCCATTCTCCCCA
TGAAGGACATTTCCATAGGCATGGCACTGATGACTTTCTCGCAGGACATC
GGAGAAGCGGTGTTCATCAGTGTGGCGCAGGCGATTTTCTTGAACCGGTT
GACGGGGGATTTAGCGAAGAGTGTGCCCGGACTGGATCCGGTAATGGTGA
CCCATTTGGGCGCCACAAGTTTGGAGGGTAAGTTGCCCGGGAAGTACTTG
GAGGCGGTGGTGGGGGCGTATGATGTTGCGGTGAGGGGGACGTTCTTGCT
GGCGGTTGCGTTGGCGGGGAGTGTGTTTGTGGCGGCGGTTTTGGTAAAGC
GGAATCCGTTCAAGGTTGGCAATGAGTTGGGGGAGGGAGATAGAGAAGAG
AGAAGCAGGGGAGTGTAACATCATTGCAATTTCCACGCCGCTACGAAGGC
GACCGACCTTCGTCGGCCTAATCAGCGCCAGCGAATACACTGCCATCGCG
ATAGCACCTATTCTGGGAGGTATACTCACATCTGACCTATCCTGGAGATG
GTGTTTCTACATCAACGTGCCTGCAGCAGCCCTACCATCCGCCGTGCTTC
TCCTTCTTAAGCTTCCCAACATTACCCCCAGGGGCTCGAAAACACACATT
CAGAAACTCCGCGAGCTGGACCTACTCGGATTCTTCCTCTTCGCACCCGC
AGTGCTATGCCTCCTCCTCGCGCTCCAATGGGGCGGTGATACCTACAGCT
GGACCAACGGACGGATCATCGCCCTTCTCGTCCTCTCGCCCATCATCTTC
ACGGGTTTCTGTCTCCTCCAGCACCGCAAACAAGATACCGCCATGCTCCC
ACCCCGCGTCCTCCGTAAACGCATCATAATCACCGGCGCGGCCTTCAGCC
TGTGTCTCTCGGCCTGCCGCGCCATCGTCCAGTACTACCCGACTCACCTC
CTGCATGTCTCAGCTCTCCCAGGGAAAGTTGTATGACAACTATCCGGTCA
AATGGGTCTTTCTCGTCAACCTCCTGCTGTTCGAGGGCGGCATCCTTCTC
TCGGGACTGGCCCCGAGTTCAATGATCTTCATCATTGGAAGAGCTATAAC
CGGCTTAGGATTTTCGGGGATCAGCCAAGGGTGCATGGTGATGCCACGAT
TTTGACCACTGCCGTCCCGCGAATAACCGATGAGTTCGGGTCGGTGGCTG
ATGTTGGTTGGTATGATGCTGCTTTCTTCGGTTCCCTCGGACTCTTTGCC
TACTGCCCGGCATGGCAATGAACCCAGAGGCCATCGAGCTCTCGGAAGCT
CCACAGTCTGGGGCGAATTCCATGAAGCTTCAGCAGGCTCTAGTGAACAG
AGTCAGCGGCACTAGCATCCTGCAGAGCCATGAAGCTAAGCCTGAAGCTG
AGTCCGAGCCCGATGAGACCCTCTATCCCCATGGGATGCAATTCGTCCTC
ATCTCCATGTCCCTTTGTTTCTGTGTCTTCCTGGTTGGTCTAATGTATCT
AACAAGTTTCAACACAACAGTAGAATTGCTCTCAATCTGGTTCCAAACCG
TCCGCAACGCCACCCCCCTCCAAAGCGGCCTCAACACCCTCCCCCTAGTC
ATCTCCGTCCTCGTCAGCGCCATCACTGGCGGATGGCTCATCTCCCGCAC
ACGCACCTACACCCCGATCCTCCTTCCTGCCTCCCTCCTCGTTATCGCCG
GCATCGCTCTCATGACAACCTTCACCCCCACCACGCCCGCCAAGCTCTGG
ATCCCATCTCTTATCCTCCTAGGCCTCGGATCCGGCAGCGCCGTCGGTGT
ACCCTTCATCGCCGTGCAGGCCATTCTCCCCATGAAGGACATTTCCATAG
GCATGGCACTGATGACTTTCTCGCAGGACATCGGAGAAGCGGTGTTCATC
AGTGTGGCGCAGGCGATTTTCTTGAACCGGTTGACGGGGGATTTAGCGAA
GAGTGTGCCCGGACTGGATCCGGTAATGGTGACCCATTTGGGCGCCACAA
GTTTGGAGGGTAAGTTGCCCGGGAAGTACTTGGAGGCGGTGGTGGGGGCG
TATGATGTTGCGGTGAGGGGGACGTTCTTGCTGGCGGTTGCGTTGGCGGG
GAGTGTGTTTGTGGCGGCGGTTTTGGTAAAGCGGAATCCGTTCAAGGTTG
GCAATGAGTTGGGGGAGGGAGATAGAGAAGAGAGAAGCAGGGGAGTGTAA
CATCATTGCAATTTCCACGCCGCTACGAAGGCGACCGACCTTCGTCGGCC
TAATCAGCGCCAGCGAATACACTGCCATCGCGATAGCACCTATTCTGGGA
GGTATACTCACATCTGACCTATCCTGGAGATGGTGTTTCTACATCAACGT
GCCTGCAGCAGCCCTACCATCCGCCGTGCTTCTCCTTCTTAAGCTTCCCA
ACATTACCCCCAGGGGCTCGAAAACACACATTCAGAAACTCCGCGAGCTG
GACCTACTCGGATTCTTCCTCTTCGCACCCGCAGTGCTATGCCTCCTCCT
CGCGCTCCAATGGGGCGGTGATACCTACAGCTGGACCAACGGACGGATCA
TCGCCCTTCTCGTCCTCTCGCCCATCATCTTCACGGGTTTCTGTCTCCTC
CAGCACCGCAAACAAGATACCGCCATGCTCCCACCCCGCGTCCTCCGTAA
ACGCATCATAATCACCGGCGCGGCCTTCAGCCTGTGTCTCTCGGCCTGCC
GCGCCATCGTCCAGTACTACCCGACTCACCTCCTGCATGTCTCAGCTCTC
CCAGGGAAAGTTGTATGACAACTATCCGGTCAAATGGGTCTTTCTCGTCA
ACCTCCTGCTGTTCGAGGGCGGCATCCTTCTCTCGGGACTGGCCCCGAGT
TCAATGATCTTCATCATTGGAAGAGCTATAACCGGCTTAGGATTTTCGGG
GATCAGCCAAGGGTGCATGGTGATGCCACGATTTTGACCACTGCCGTCCC
GCGAATAACCGATGAGTTCGGGTCGGTGGCTGATGTTGGTTGGTATGATG
CTGCTTTCTTCGGTTCCCTCGGACTCTTTGCCTACTGCCCGGCATGGCAA
TGAACCCAGAGGCCATCGAGCTCTCGGAAGCTCCACAGTCTGGGGCGAAT
TCCATGAAGCTTCAGCAGGCTCTAGTGAACAGAGTCAGCGGCACTAGCAT
CCTGCAGAGCCATGAAGCTAAGCCTGAAGCTGAGTCCGAGCCCGATGAGA
CCCTCTATCCCCATGGGATGCAATTCGTCCTCATCTCCATGTCCCTTTGT
TTCTGTGTCTTCCTGGTTGGTCTAATGTATCTAACAAGTTTCAACACAAC
AGTAGAATTGCTCTCAATCTGGTTCCAAACCGTCCGCAACGCCACCCCCC
TCCAAAGCGGCCTCAACACCCTCCCCCTAGTCATCTCCGTCCTCGTCAGC
GCCATCACTGGCGGATGGCTCATCTCCCGCACACGCACCTACACCCCGAT
CCTCCTTCCTGCCTCCCTCCTCGTTATCGCCGGCATCGCTCTCATGACAA
CCTTCACCCCCACCACGCCCGCCAAGCTCTGGATCCCATCTCTTATCCTC
CTAGGCCTCGGATCCGGCAGCGCCGTCGGTGTACCCTTCATCGCCGTGCA
GGCCATTCTCCCCATGAAGGACATTTCCATAGGCATGGCACTGATGACTT
TCTCGCAGGACATCGGAGAAGCGGTGTTCATCAGTGTGGCGCAGGCGATT
TTCTTGAACCGGTTGACGGGGGATTTAGCGAAGAGTGTGCCCGGACTGGA
TCCGGTAATGGTGACCCATTTGGGCGCCACAAGTTTGGAGGGTAAGTTGC
CCGGGAAGTACTTGGAGGCGGTGGTGGGGGCGTATGATGTTGCGGTGAGG
GGGACGTTCTTGCTGGCGGTTGCGTTGGCGGGGAGTGTGTTTGTGGCGGC
GGTTTTGGTAAAGCGGAATCCGTTCAAGGTTGGCAATGAGTTGGGGGAGG
GAGATAGAGAAGAGAGAAGCAGGGGAGTGTAACATCATTGCAATTTCCAC
GCCGCTACGAAGGCGACCGACCTTCGTCGGCCTAATCAGCGCCAGCGAAT
ACACTGCCATCGCGATAGCACCTATTCTGGGAGGTATACTCACATCTGAC
CTATCCTGGAGATGGTGTTTCTACATCAACGTGCCTGCAGCAGCCCTACC
ATCCGCCGTGCTTCTCCTTCTTAAGCTTCCCAACATTACCCCCAGGGGCT
CGAAAACACACATTCAGAAACTCCGCGAGCTGGACCTACTCGGATTCTTC
CTCTTCGCACCCGCAGTGCTATGCCTCCTCCTCGCGCTCCAATGGGGCGG
TGATACCTACAGCTGGACCAACGGACGGATCATCGCCCTTCTCGTCCTCT
CGCCCATCATCTTCACGGGTTTCTGTCTCCTCCAGCACCGCAAACAAGAT
ACCGCCATGCTCCCACCCCGCGTCCTCCGTAAACGCATCATAATCACCGG
CGCGGCCTTCAGCCTGTGTCTCTCGGCCTGCCGCGCCATCGTCCAGTACT
ACCCGACTCACCTCCTGCATGTCTCAGCTCTCCCAGGGAAAGTTGTATGA
CAACTATCCGGTCAAATGGGTCTTTCTCGTCAACCTCCTGCTGTTCGAGG
GCGGCATCCTTCTCTCGGGACTGGCCCCGAGTTCAATGATCTTCATCATT
GGAAGAGCTATAACCGGCTTAGGATTTTCGGGGATCAGCCAAGGGTGCAT
GGTGATGCCACGATTTTGACCACTGCCGTCCCGCGAATAACCGATGAGTT
CGGGTCGGTGGCTGATGTTGGTTGGTATGATGCTGCTTTCTTCGGTTCCC
TCGGACTCTTTGCCTACTGCCCGGCATGGCAATGAACCCAGAGGCCATCG
AGCTCTCGGAAGCTCCACAGTCTGGGGCGAATTCCATGAAGCTTCAGCAG
GCTCTAGTGAACAGAGTCAGCGGCACTAGCATCCTGCAGAGCCATGAAGC
TAAGCCTGAAGCTGAGTCCGAGCCCGATGAGACCCTCTATCCCCATGGGA
TGCAATTCGTCCTCATCTCCATGTCCCTTTGTTTCTGTGTCTTCCTGGTT
GGTCTAATGTATCTAACAAGTTTCAACACAACAGTAGAATTG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0055085transmembrane transport
Vocabulary: Molecular Function
TermDefinition
GO:0022857transmembrane transporter activity
Relationships

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

Feature NameUnique NameSpeciesType
ATCC10864_010582ATCC10864_010582Aspergillus niger ATCC 10864gene


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

Feature NameUnique NameSpeciesType
ATCC10864_010582-T1ATCC10864_010582-T1-proteinAspergillus niger ATCC 10864polypeptide


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

Feature NameUnique NameSpeciesType
ATCC10864_010582-T1.cdsATCC10864_010582-T1.cdsAspergillus niger ATCC 10864CDS


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

Feature NameUnique NameSpeciesType
ATCC10864_010582-T1.exon6ATCC10864_010582-T1.exon6Aspergillus niger ATCC 10864exon
ATCC10864_010582-T1.exon5ATCC10864_010582-T1.exon5Aspergillus niger ATCC 10864exon
ATCC10864_010582-T1.exon4ATCC10864_010582-T1.exon4Aspergillus niger ATCC 10864exon
ATCC10864_010582-T1.exon3ATCC10864_010582-T1.exon3Aspergillus niger ATCC 10864exon
ATCC10864_010582-T1.exon2ATCC10864_010582-T1.exon2Aspergillus niger ATCC 10864exon
ATCC10864_010582-T1.exon1ATCC10864_010582-T1.exon1Aspergillus niger ATCC 10864exon


Cross References
External references for this mRNA
DatabaseAccession
InterProIPR036259
InterProIPR011701
PFAMPF07690
InterProIPR020846
Properties
Property NameValue
Producthypothetical protein
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Aspergillus niger ATCC 10864 whole genome analysis2021-11-01
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
MCQH01000240supercontigMCQH01000240:127185..129408 -