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ASPNIDRAFT_208150-T1, ASPNIDRAFT_208150-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_208150-T1
Unique NameASPNIDRAFT_208150-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000021.1:1021866..1023843+

Legend: five_prime_UTRexonpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_208150-T1 ID=ASPNIDRAFT_208150-T1|Name=ASPNIDRAFT_208150-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=1978bp|location=Sequence derived from alignment at ACJE01000021.1:1021866..1023843+ (Aspergillus niger ATCC 1015)
CCCCCATTCCCTCTGCCTTTTGGCTCAGGTGCGACTACCGCCCGACAATG GTTGGAAGTACGCTGGCGATCCGCTCCAAGATGGCCTCTCCCTCCGCCGC CATGCAGTTGTCGTCGCTGTCGCGCAGGTCGCTTTCGACGCGACCCCAGC TCCTTCGCTCCGCACGTCCCTTGAGACAGCAGCAATTCCAGCGCTCTACT CGTCGCTCCTACGCCGATGCTGCGCCCGCTGCCCCGACCCCCAAGCCCAA GAAGCGCTTCAGGTTCTTGCGCTGGACCTGGCGCCTGACCTGGCTCTCCA CTATCGGTGCGGCTGGTGCTCTGGCCTACAGTGTCTATGAATTGCGCCAT CCCGTCGAGCAGATCAAGCCTGATCCGACGAAGAAGACCCTTGTTATCCT GGGTAGGTTTCTTGCACCCTGTGTCGCTTATCGCGACACGATCGCGGCCG AACAGCAACTTACGAGTCATTTCCCAATCCAGGTACCGGATGGGGTACTG TTTCCCTGCTGAAGAAGCTCGACACTGAGAATTACAATGTTGTCGTCATC TCTCCTCGCAACTACTTCCTTTTCACTCCCCTCCTCCCCTCCTGCACGAC TGGTTTGATCGAGCACCGCTCCATCATGGAGCCGATCCGTAACATCCTCC GTCAGAAGACCGCCCACGTGAACTTCTACGAAGCCGAAGCCACCAAGATC GACTACGAAAAGCGTGTCGTGTACATCAGCGATGACTCTGAGATCAAGGG AGACATCTCCCACACCGAGGTGCCCTTCGACATGCTTGTCGTTGGTGTCG GTGCTGAAAACGCAACCTTCGGTATGTATTCATTGCTCACGCCCGCCATG GATTTCAATCTAACAATCACTAGGTATCCCCGGTGTCCGGGAGAACTCCT GCTTCCTGAAGGAGGTCGACGATGCTCAGAAGATCCGCAAGCGCATCATG GACTGCATTGAGACTGCCATGTTCAAGGACCAGACTGAAGACGAAGTCAA GCGTCTTCTCCACATGGTTGTTGTTGGCGGTGGCCCGACTGGTGTCGAGT TCGCCGGTGAGCTGCAGGACTTCTTCGAGGACGACTTGAAGAAGTGGGTT CCTGAGATCCAGGAGAACTTCAAGGTTACCCTCGTTGAAGCTCTTCCCAA CGTCCTTCCCATGTTCTCCAAGCAGCTTATCGACTACACCGAATCGACTT TCAAGGAGGAGAAGATCTCTATCCGCGCAAAGACTATGGTCAAGAACGTC ACCGACAAGTACATCGAGGCTATGGTTACCAACCCTGATGGATCCAAGTC CATCGAACGTATTCCCTACGGTCTGCTGGTCTGGGCTACCGGTAACGCTG TTCGCCCCGTGGTTCGCGATCTGATGAACCAGCTCCCTGCCCAGAAGGAC TCGCGTCGTGGTCTTGCTGTGAACGAGTACCTCGTCGTGAACGGCGCTGA GAACGTCTGGGCTGTTGGTGATTGTGCTATCACCAACTACGCCCCTACTG CTCAGGTTGCCAGTCAGGAGGGTGCTTTCCTTGCCCGTCTTTTCAACACC ATGGCCAAGACCGAGGCTATCGAGAAGGAGTTGAAGCAGCTGTCTGAGGC CCAGGCCCAGGCTAAGGGTGAGGAGCGTGACCAGGTCTTTGACGCAATCC GCGAACGCCAGAAGCAGCTGCGGAGAACCAAGCAGATTGGTCCCTTCCAG TACTCCCACCAGGGTAGCATGGCCTACATCGGAAAGGAGCGCGCTGTTGC GGACATCAGCTGGCTGAGCGGCAACATCGCCAGTGGTGGTACCATGACCT ACCTCTTCTGGCGCAGTGCTTACCTGAGCATGTGCTTCAGCAGTAAGTAA CCCTTTATTTGACTGTTAGTGCAACTGTGTGATTTTAACTGACATTAATT ACAGCTCGCAACCGTGTCCTGGTCGCCGTTGACTGGATCAAGGCCAAGCT GTTTGGCCGCGACGTCTCTCGGGAGTAA
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Coding sequence (CDS) from alignment at ACJE01000021.1:1021866..1023843+

>ASPNIDRAFT_208150-T1 ID=ASPNIDRAFT_208150-T1|Name=ASPNIDRAFT_208150-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=6948bp|location=Sequence derived from alignment at ACJE01000021.1:1021866..1023843+ (Aspergillus niger ATCC 1015)
ATGGTTGGAAGTACGCTGGCGATCCGCTCCAAGATGGCCTCTCCCTCCGC
CGCCATGCAGTTGTCGTCGCTGTCGCGCAGGTCGCTTTCGACGCGACCCC
AGCTCCTTCGCTCCGCACGTCCCTTGAGACAGCAGCAATTCCAGCGCTCT
ACTCGTCGCTCCTACGCCGATGCTGCGCCCGCTGCCCCGACCCCCAAGCC
CAAGAAGCGCTTCAGGTTCTTGCGCTGGACCTGGCGCCTGACCTGGCTCT
CCACTATCGGTGCGGCTGGTGCTCTGGCCTACAGTGTCTATGAATTGCGC
CATCCCGTCGAGCAGATCAAGCCTGATCCGACGAAGAAGACCCTTGTTAT
CCTGGGTACCGGATGGGGTACTGTTTCCCTGCTGAAGAAGCTCGACACTG
AGAATTACAATGTTGTCGTCATCTCTCCTCGCAACTACTTCCTTTTCACT
CCCCTCCTCCCCTCCTGCACGACTGGTTTGATCGAGCACCGCTCCATCAT
GGAGCCGATCCGTAACATCCTCCGTCAGAAGACCGCCCACGTGAACTTCT
ACGAAGCCGAAGCCACCAAGATCGACTACGAAAAGCGTGTCGTGTACATC
AGCGATGACTCTGAGATCAAGGGAGACATCTCCCACACCGAGGTGCCCTT
CGACATGCTTGTCGTTGGTGTCGGTGCTGAAAACGCAACCTTCGGTATCC
CCGGTGTCCGGGAGAACTCCTGCTTCCTGAAGGAGGTCGACGATGCTCAG
AAGATCCGCAAGCGCATCATGGACTGCATTGAGACTGCCATGTTCAAGGA
CCAGACTGAAGACGAAGTCAAGCGTCTTCTCCACATGGTTGTTGTTGGCG
GTGGCCCGACTGGTGTCGAGTTCGCCGGTGAGCTGCAGGACTTCTTCGAG
GACGACTTGAAGAAGTGGGTTCCTGAGATCCAGGAGAACTTCAAGGTTAC
CCTCGTTGAAGCTCTTCCCAACGTCCTTCCCATGTTCTCCAAGCAGCTTA
TCGACTACACCGAATCGACTTTCAAGGAGGAGAAGATCTCTATCCGCGCA
AAGACTATGGTCAAGAACGTCACCGACAAGTACATCGAGGCTATGGTTAC
CAACCCTGATGGATCCAAGTCCATCGAACGTATTCCCTACGGTCTGCTGG
TCTGGGCTACCGGTAACGCTGTTCGCCCCGTGGTTCGCGATCTGATGAAC
CAGCTCCCTGCCCAGAAGGACTCGCGTCGTGGTCTTGCTGTGAACGAGTA
CCTCGTCGTGAACGGCGCTGAGAACGTCTGGGCTGTTGGTGATTGTGCTA
TCACCAACTACGCCCCTACTGCTCAGGTTGCCAGTCAGGAGGGTGCTTTC
CTTGCCCGTCTTTTCAACACCATGGCCAAGACCGAGGCTATCGAGAAGGA
GTTGAAGCAGCTGTCTGAGGCCCAGGCCCAGGCTAAGGGTGAGGAGCGTG
ACCAGGTCTTTGACGCAATCCGCGAACGCCAGAAGCAGCTGCGGAGAACC
AAGCAGATTGGTCCCTTCCAGTACTCCCACCAGGGTAGCATGGCCTACAT
CGGAAAGGAGCGCGCTGTTGCGGACATCAGCTGGCTGAGCGGCAACATCG
CCAGTGGTGGTACCATGACCTACCTCTTCTGGCGCAGTGCTTACCTGAGC
ATGTGCTTCAGCACTCGCAACCGTGTCCTGGTCGCCGTTGACTGGATCAA
GGCCAAGCTGTTTGGCCGCGACGTCTCTCGGGAGTAAATGGTTGGAAGTA
CGCTGGCGATCCGCTCCAAGATGGCCTCTCCCTCCGCCGCCATGCAGTTG
TCGTCGCTGTCGCGCAGGTCGCTTTCGACGCGACCCCAGCTCCTTCGCTC
CGCACGTCCCTTGAGACAGCAGCAATTCCAGCGCTCTACTCGTCGCTCCT
ACGCCGATGCTGCGCCCGCTGCCCCGACCCCCAAGCCCAAGAAGCGCTTC
AGGTTCTTGCGCTGGACCTGGCGCCTGACCTGGCTCTCCACTATCGGTGC
GGCTGGTGCTCTGGCCTACAGTGTCTATGAATTGCGCCATCCCGTCGAGC
AGATCAAGCCTGATCCGACGAAGAAGACCCTTGTTATCCTGGGTACCGGA
TGGGGTACTGTTTCCCTGCTGAAGAAGCTCGACACTGAGAATTACAATGT
TGTCGTCATCTCTCCTCGCAACTACTTCCTTTTCACTCCCCTCCTCCCCT
CCTGCACGACTGGTTTGATCGAGCACCGCTCCATCATGGAGCCGATCCGT
AACATCCTCCGTCAGAAGACCGCCCACGTGAACTTCTACGAAGCCGAAGC
CACCAAGATCGACTACGAAAAGCGTGTCGTGTACATCAGCGATGACTCTG
AGATCAAGGGAGACATCTCCCACACCGAGGTGCCCTTCGACATGCTTGTC
GTTGGTGTCGGTGCTGAAAACGCAACCTTCGGTATCCCCGGTGTCCGGGA
GAACTCCTGCTTCCTGAAGGAGGTCGACGATGCTCAGAAGATCCGCAAGC
GCATCATGGACTGCATTGAGACTGCCATGTTCAAGGACCAGACTGAAGAC
GAAGTCAAGCGTCTTCTCCACATGGTTGTTGTTGGCGGTGGCCCGACTGG
TGTCGAGTTCGCCGGTGAGCTGCAGGACTTCTTCGAGGACGACTTGAAGA
AGTGGGTTCCTGAGATCCAGGAGAACTTCAAGGTTACCCTCGTTGAAGCT
CTTCCCAACGTCCTTCCCATGTTCTCCAAGCAGCTTATCGACTACACCGA
ATCGACTTTCAAGGAGGAGAAGATCTCTATCCGCGCAAAGACTATGGTCA
AGAACGTCACCGACAAGTACATCGAGGCTATGGTTACCAACCCTGATGGA
TCCAAGTCCATCGAACGTATTCCCTACGGTCTGCTGGTCTGGGCTACCGG
TAACGCTGTTCGCCCCGTGGTTCGCGATCTGATGAACCAGCTCCCTGCCC
AGAAGGACTCGCGTCGTGGTCTTGCTGTGAACGAGTACCTCGTCGTGAAC
GGCGCTGAGAACGTCTGGGCTGTTGGTGATTGTGCTATCACCAACTACGC
CCCTACTGCTCAGGTTGCCAGTCAGGAGGGTGCTTTCCTTGCCCGTCTTT
TCAACACCATGGCCAAGACCGAGGCTATCGAGAAGGAGTTGAAGCAGCTG
TCTGAGGCCCAGGCCCAGGCTAAGGGTGAGGAGCGTGACCAGGTCTTTGA
CGCAATCCGCGAACGCCAGAAGCAGCTGCGGAGAACCAAGCAGATTGGTC
CCTTCCAGTACTCCCACCAGGGTAGCATGGCCTACATCGGAAAGGAGCGC
GCTGTTGCGGACATCAGCTGGCTGAGCGGCAACATCGCCAGTGGTGGTAC
CATGACCTACCTCTTCTGGCGCAGTGCTTACCTGAGCATGTGCTTCAGCA
CTCGCAACCGTGTCCTGGTCGCCGTTGACTGGATCAAGGCCAAGCTGTTT
GGCCGCGACGTCTCTCGGGAGTAAATGGTTGGAAGTACGCTGGCGATCCG
CTCCAAGATGGCCTCTCCCTCCGCCGCCATGCAGTTGTCGTCGCTGTCGC
GCAGGTCGCTTTCGACGCGACCCCAGCTCCTTCGCTCCGCACGTCCCTTG
AGACAGCAGCAATTCCAGCGCTCTACTCGTCGCTCCTACGCCGATGCTGC
GCCCGCTGCCCCGACCCCCAAGCCCAAGAAGCGCTTCAGGTTCTTGCGCT
GGACCTGGCGCCTGACCTGGCTCTCCACTATCGGTGCGGCTGGTGCTCTG
GCCTACAGTGTCTATGAATTGCGCCATCCCGTCGAGCAGATCAAGCCTGA
TCCGACGAAGAAGACCCTTGTTATCCTGGGTACCGGATGGGGTACTGTTT
CCCTGCTGAAGAAGCTCGACACTGAGAATTACAATGTTGTCGTCATCTCT
CCTCGCAACTACTTCCTTTTCACTCCCCTCCTCCCCTCCTGCACGACTGG
TTTGATCGAGCACCGCTCCATCATGGAGCCGATCCGTAACATCCTCCGTC
AGAAGACCGCCCACGTGAACTTCTACGAAGCCGAAGCCACCAAGATCGAC
TACGAAAAGCGTGTCGTGTACATCAGCGATGACTCTGAGATCAAGGGAGA
CATCTCCCACACCGAGGTGCCCTTCGACATGCTTGTCGTTGGTGTCGGTG
CTGAAAACGCAACCTTCGGTATCCCCGGTGTCCGGGAGAACTCCTGCTTC
CTGAAGGAGGTCGACGATGCTCAGAAGATCCGCAAGCGCATCATGGACTG
CATTGAGACTGCCATGTTCAAGGACCAGACTGAAGACGAAGTCAAGCGTC
TTCTCCACATGGTTGTTGTTGGCGGTGGCCCGACTGGTGTCGAGTTCGCC
GGTGAGCTGCAGGACTTCTTCGAGGACGACTTGAAGAAGTGGGTTCCTGA
GATCCAGGAGAACTTCAAGGTTACCCTCGTTGAAGCTCTTCCCAACGTCC
TTCCCATGTTCTCCAAGCAGCTTATCGACTACACCGAATCGACTTTCAAG
GAGGAGAAGATCTCTATCCGCGCAAAGACTATGGTCAAGAACGTCACCGA
CAAGTACATCGAGGCTATGGTTACCAACCCTGATGGATCCAAGTCCATCG
AACGTATTCCCTACGGTCTGCTGGTCTGGGCTACCGGTAACGCTGTTCGC
CCCGTGGTTCGCGATCTGATGAACCAGCTCCCTGCCCAGAAGGACTCGCG
TCGTGGTCTTGCTGTGAACGAGTACCTCGTCGTGAACGGCGCTGAGAACG
TCTGGGCTGTTGGTGATTGTGCTATCACCAACTACGCCCCTACTGCTCAG
GTTGCCAGTCAGGAGGGTGCTTTCCTTGCCCGTCTTTTCAACACCATGGC
CAAGACCGAGGCTATCGAGAAGGAGTTGAAGCAGCTGTCTGAGGCCCAGG
CCCAGGCTAAGGGTGAGGAGCGTGACCAGGTCTTTGACGCAATCCGCGAA
CGCCAGAAGCAGCTGCGGAGAACCAAGCAGATTGGTCCCTTCCAGTACTC
CCACCAGGGTAGCATGGCCTACATCGGAAAGGAGCGCGCTGTTGCGGACA
TCAGCTGGCTGAGCGGCAACATCGCCAGTGGTGGTACCATGACCTACCTC
TTCTGGCGCAGTGCTTACCTGAGCATGTGCTTCAGCACTCGCAACCGTGT
CCTGGTCGCCGTTGACTGGATCAAGGCCAAGCTGTTTGGCCGCGACGTCT
CTCGGGAGTAAATGGTTGGAAGTACGCTGGCGATCCGCTCCAAGATGGCC
TCTCCCTCCGCCGCCATGCAGTTGTCGTCGCTGTCGCGCAGGTCGCTTTC
GACGCGACCCCAGCTCCTTCGCTCCGCACGTCCCTTGAGACAGCAGCAAT
TCCAGCGCTCTACTCGTCGCTCCTACGCCGATGCTGCGCCCGCTGCCCCG
ACCCCCAAGCCCAAGAAGCGCTTCAGGTTCTTGCGCTGGACCTGGCGCCT
GACCTGGCTCTCCACTATCGGTGCGGCTGGTGCTCTGGCCTACAGTGTCT
ATGAATTGCGCCATCCCGTCGAGCAGATCAAGCCTGATCCGACGAAGAAG
ACCCTTGTTATCCTGGGTACCGGATGGGGTACTGTTTCCCTGCTGAAGAA
GCTCGACACTGAGAATTACAATGTTGTCGTCATCTCTCCTCGCAACTACT
TCCTTTTCACTCCCCTCCTCCCCTCCTGCACGACTGGTTTGATCGAGCAC
CGCTCCATCATGGAGCCGATCCGTAACATCCTCCGTCAGAAGACCGCCCA
CGTGAACTTCTACGAAGCCGAAGCCACCAAGATCGACTACGAAAAGCGTG
TCGTGTACATCAGCGATGACTCTGAGATCAAGGGAGACATCTCCCACACC
GAGGTGCCCTTCGACATGCTTGTCGTTGGTGTCGGTGCTGAAAACGCAAC
CTTCGGTATCCCCGGTGTCCGGGAGAACTCCTGCTTCCTGAAGGAGGTCG
ACGATGCTCAGAAGATCCGCAAGCGCATCATGGACTGCATTGAGACTGCC
ATGTTCAAGGACCAGACTGAAGACGAAGTCAAGCGTCTTCTCCACATGGT
TGTTGTTGGCGGTGGCCCGACTGGTGTCGAGTTCGCCGGTGAGCTGCAGG
ACTTCTTCGAGGACGACTTGAAGAAGTGGGTTCCTGAGATCCAGGAGAAC
TTCAAGGTTACCCTCGTTGAAGCTCTTCCCAACGTCCTTCCCATGTTCTC
CAAGCAGCTTATCGACTACACCGAATCGACTTTCAAGGAGGAGAAGATCT
CTATCCGCGCAAAGACTATGGTCAAGAACGTCACCGACAAGTACATCGAG
GCTATGGTTACCAACCCTGATGGATCCAAGTCCATCGAACGTATTCCCTA
CGGTCTGCTGGTCTGGGCTACCGGTAACGCTGTTCGCCCCGTGGTTCGCG
ATCTGATGAACCAGCTCCCTGCCCAGAAGGACTCGCGTCGTGGTCTTGCT
GTGAACGAGTACCTCGTCGTGAACGGCGCTGAGAACGTCTGGGCTGTTGG
TGATTGTGCTATCACCAACTACGCCCCTACTGCTCAGGTTGCCAGTCAGG
AGGGTGCTTTCCTTGCCCGTCTTTTCAACACCATGGCCAAGACCGAGGCT
ATCGAGAAGGAGTTGAAGCAGCTGTCTGAGGCCCAGGCCCAGGCTAAGGG
TGAGGAGCGTGACCAGGTCTTTGACGCAATCCGCGAACGCCAGAAGCAGC
TGCGGAGAACCAAGCAGATTGGTCCCTTCCAGTACTCCCACCAGGGTAGC
ATGGCCTACATCGGAAAGGAGCGCGCTGTTGCGGACATCAGCTGGCTGAG
CGGCAACATCGCCAGTGGTGGTACCATGACCTACCTCTTCTGGCGCAGTG
CTTACCTGAGCATGTGCTTCAGCACTCGCAACCGTGTCCTGGTCGCCGTT
GACTGGATCAAGGCCAAGCTGTTTGGCCGCGACGTCTCTCGGGAGTAA
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0055114oxidation-reduction process
Vocabulary: Molecular Function
TermDefinition
GO:0016491oxidoreductase activity
Relationships

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

Feature NameUnique NameSpeciesType
NDH2ASPNIDRAFT_208150Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_208150-T1ASPNIDRAFT_208150-T1-proteinAspergillus niger ATCC 1015polypeptide


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_208150-T1.utr5p1ASPNIDRAFT_208150-T1.utr5p1Aspergillus niger ATCC 1015five_prime_UTR


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_208150-T1.exon1ASPNIDRAFT_208150-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_208150-T1.exon2ASPNIDRAFT_208150-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_208150-T1.exon3ASPNIDRAFT_208150-T1.exon3Aspergillus niger ATCC 1015exon
ASPNIDRAFT_208150-T1.exon4ASPNIDRAFT_208150-T1.exon4Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_208150-T1.cdsASPNIDRAFT_208150-T1.cdsAspergillus niger ATCC 1015CDS


Properties
Property NameValue
DBxrefInterPro:IPR036188
DBxrefInterPro:IPR023753
DBxrefPFAM:PF07992
DBxrefPFAM:PF00070
ProductExternal alternative NADH-ubiquinone oxidoreductase mitochondrial
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
ACJE01000021.1supercontigACJE01000021.1:1021866..1023843 +