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ASPNIDRAFT_181275-T1, ASPNIDRAFT_181275-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_181275-T1
Unique NameASPNIDRAFT_181275-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000009.1:1149606..1151509+

Legend: exonpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_181275-T1 ID=ASPNIDRAFT_181275-T1|Name=ASPNIDRAFT_181275-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=1904bp|location=Sequence derived from alignment at ACJE01000009.1:1149606..1151509+ (Aspergillus niger ATCC 1015)
ATGGCCTTCAAACTACCCTTGTCTCAGCCCTCGCCCAGCGTGCGCACCCT AGGACGCCGTGCCGCTAGAGCTCCAATTCTCAGAGCTCGGGGTGTTGCGA CCGTACCTTTCCGTCTGCCAGCTGCCAGAAATGAGCCCAACGTGAGTTGC TGGCTTCTCATCCGCTACCATGGCATACAAATACTAATCTCCTCTCCATG ATAGCTGGACTACACTAGGGGCTCTCCAGAAAGGGCAGAGGTCGAAAAGG TTTTGAAGCAGATGAAGTCACAGCTGCCGCTCAAGAGTCAGTCATACGTC GGAGGCAAAGCGCTCTCGGTGTCCAACACATTGCAACAACCTCTGCCCGC CGAACATGCCACTACTTTCACCAACTACCCTAGCGTGAATGCTGCACAAG TAAATGCGGCTATTGATGCAGCATTGGAGGCAAAGGAAGCATGGCAGAAC ACTCCCTTCGTTGACAGGGCTGCTATTTTCCTCAAGGCTGCCGAGCTTGT CGCCGGCAAATACCGATACGAACTCATCGCTGCTACGATGTTGGGACAAG GCAAGAACATCTGGCAGGGTGAGATCGATGCAGCTGCAGAGTTGGCCGAC TTCTTCCGTCTGAACTGCAACTATGCTGCTGAGCTGCTGGAGAAGCAGCC CGACCGCGGTACTGAGGGAATGTGGACGTGAGTGCAAGCCTTTTCATTTT GGGATGCTCGAATACTAACCCTTCTCTAGCCGTGTGGACTACAGACCCTT GGAGGGATTCGTTTACGCCGTGTCGCCTTTCAACTTCACTGCCATTGGCG GGAACCTAATTAGCGGCCCAGCTCTTATGGGCAATGTCGTCGTCTGGAAG CCTTCCGATTCGAACGTGTACGCGAGTGAGCTCGTCTACAAGATTCTCCT CGAAGCTGGCCTGCCTCCCAATGTTATCCAGTTCGTTACTGGTGACGCGC AGGAGATCACTCAGACGGTGCTTGGACGCAGAGAGTTTGGTGGCCTCAAC TTCACCGGTTCCTCGGACGTCTTCCGTTCCCTGTATGCTCAGGTCGGCGA AAACATCGGCAAGAAGGTCTACCGGGACTACCCTCGTCTAGTTGGCGAGA CCAGCGGCAAGAACTTCCACCTGGTTCATCCCACTGCTGATATCCAGAGT GCTGTTTACCATACCCTTCGGGGTGCTTTTGAGTACCAGGGACAAAAGTG CTCGGCGACGTCCCGACTGTACCTGCCTGAGTCTCGGGCACAGGAGTTCT TGGAGAAGTTGAAGTCCGAGATCAAGGAGATCACGATCGGGTCGCCGGAG GAGATGGGAGCTTTCATGGGCCCTGTTATCCACAAAGCATCTTTCGAGAA GATTAAGTCGGTCATCGATGCCAGCAACAAGGATCCATCCTTGGAGTTGA TTGCTGGTGGTACCTACGACGGCTCAACCGGATATTACGTGCACCCTACT GTGTACCGGGCTAAGGACCCCAACCATGAGCTGTTCGACAAGGAGATCTT CGGTCCAGTGCTCGCAGTCTACGTCTATCCTGATGCCGAGTGGTCTTCAG TCCTGAAGACGGTCGACCAGAGTGGAGGTGGCTTTGCTTTGACCGGAGCT GTGTTCGCAGGTGATCGGCGTGCCATCCGCGAGGCCGAGGATACCTTGCG GTATTCGGCTGGAAACTTCTACATCAGTAAGTGATCATGCTGTTCTTCTC TATAAGTCACTACTAACAAGTTACGCAACAGACTGCAAGACTACTGCCGC CCTGATCGGACAACAGTCCTTTGGTGGCAGTCGCTCGAGCGGAACCAACG ACAAGGCTGGAAGCGCCAATGTGCTTATGAGATTTGCCAGTCCCAGAACG ATCAAGGAGGAATTCTTCCCCTTGAACGGCTTCCGGTACCCCAGCAACGA GTAA
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Coding sequence (CDS) from alignment at ACJE01000009.1:1149606..1151509+

>ASPNIDRAFT_181275-T1 ID=ASPNIDRAFT_181275-T1|Name=ASPNIDRAFT_181275-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=6936bp|location=Sequence derived from alignment at ACJE01000009.1:1149606..1151509+ (Aspergillus niger ATCC 1015)
ATGGCCTTCAAACTACCCTTGTCTCAGCCCTCGCCCAGCGTGCGCACCCT
AGGACGCCGTGCCGCTAGAGCTCCAATTCTCAGAGCTCGGGGTGTTGCGA
CCGTACCTTTCCGTCTGCCAGCTGCCAGAAATGAGCCCAACCTGGACTAC
ACTAGGGGCTCTCCAGAAAGGGCAGAGGTCGAAAAGGTTTTGAAGCAGAT
GAAGTCACAGCTGCCGCTCAAGAGTCAGTCATACGTCGGAGGCAAAGCGC
TCTCGGTGTCCAACACATTGCAACAACCTCTGCCCGCCGAACATGCCACT
ACTTTCACCAACTACCCTAGCGTGAATGCTGCACAAGTAAATGCGGCTAT
TGATGCAGCATTGGAGGCAAAGGAAGCATGGCAGAACACTCCCTTCGTTG
ACAGGGCTGCTATTTTCCTCAAGGCTGCCGAGCTTGTCGCCGGCAAATAC
CGATACGAACTCATCGCTGCTACGATGTTGGGACAAGGCAAGAACATCTG
GCAGGGTGAGATCGATGCAGCTGCAGAGTTGGCCGACTTCTTCCGTCTGA
ACTGCAACTATGCTGCTGAGCTGCTGGAGAAGCAGCCCGACCGCGGTACT
GAGGGAATGTGGACCCGTGTGGACTACAGACCCTTGGAGGGATTCGTTTA
CGCCGTGTCGCCTTTCAACTTCACTGCCATTGGCGGGAACCTAATTAGCG
GCCCAGCTCTTATGGGCAATGTCGTCGTCTGGAAGCCTTCCGATTCGAAC
GTGTACGCGAGTGAGCTCGTCTACAAGATTCTCCTCGAAGCTGGCCTGCC
TCCCAATGTTATCCAGTTCGTTACTGGTGACGCGCAGGAGATCACTCAGA
CGGTGCTTGGACGCAGAGAGTTTGGTGGCCTCAACTTCACCGGTTCCTCG
GACGTCTTCCGTTCCCTGTATGCTCAGGTCGGCGAAAACATCGGCAAGAA
GGTCTACCGGGACTACCCTCGTCTAGTTGGCGAGACCAGCGGCAAGAACT
TCCACCTGGTTCATCCCACTGCTGATATCCAGAGTGCTGTTTACCATACC
CTTCGGGGTGCTTTTGAGTACCAGGGACAAAAGTGCTCGGCGACGTCCCG
ACTGTACCTGCCTGAGTCTCGGGCACAGGAGTTCTTGGAGAAGTTGAAGT
CCGAGATCAAGGAGATCACGATCGGGTCGCCGGAGGAGATGGGAGCTTTC
ATGGGCCCTGTTATCCACAAAGCATCTTTCGAGAAGATTAAGTCGGTCAT
CGATGCCAGCAACAAGGATCCATCCTTGGAGTTGATTGCTGGTGGTACCT
ACGACGGCTCAACCGGATATTACGTGCACCCTACTGTGTACCGGGCTAAG
GACCCCAACCATGAGCTGTTCGACAAGGAGATCTTCGGTCCAGTGCTCGC
AGTCTACGTCTATCCTGATGCCGAGTGGTCTTCAGTCCTGAAGACGGTCG
ACCAGAGTGGAGGTGGCTTTGCTTTGACCGGAGCTGTGTTCGCAGGTGAT
CGGCGTGCCATCCGCGAGGCCGAGGATACCTTGCGGTATTCGGCTGGAAA
CTTCTACATCAACTGCAAGACTACTGCCGCCCTGATCGGACAACAGTCCT
TTGGTGGCAGTCGCTCGAGCGGAACCAACGACAAGGCTGGAAGCGCCAAT
GTGCTTATGAGATTTGCCAGTCCCAGAACGATCAAGGAGGAATTCTTCCC
CTTGAACGGCTTCCGGTACCCCAGCAACGAGTAAATGGCCTTCAAACTAC
CCTTGTCTCAGCCCTCGCCCAGCGTGCGCACCCTAGGACGCCGTGCCGCT
AGAGCTCCAATTCTCAGAGCTCGGGGTGTTGCGACCGTACCTTTCCGTCT
GCCAGCTGCCAGAAATGAGCCCAACCTGGACTACACTAGGGGCTCTCCAG
AAAGGGCAGAGGTCGAAAAGGTTTTGAAGCAGATGAAGTCACAGCTGCCG
CTCAAGAGTCAGTCATACGTCGGAGGCAAAGCGCTCTCGGTGTCCAACAC
ATTGCAACAACCTCTGCCCGCCGAACATGCCACTACTTTCACCAACTACC
CTAGCGTGAATGCTGCACAAGTAAATGCGGCTATTGATGCAGCATTGGAG
GCAAAGGAAGCATGGCAGAACACTCCCTTCGTTGACAGGGCTGCTATTTT
CCTCAAGGCTGCCGAGCTTGTCGCCGGCAAATACCGATACGAACTCATCG
CTGCTACGATGTTGGGACAAGGCAAGAACATCTGGCAGGGTGAGATCGAT
GCAGCTGCAGAGTTGGCCGACTTCTTCCGTCTGAACTGCAACTATGCTGC
TGAGCTGCTGGAGAAGCAGCCCGACCGCGGTACTGAGGGAATGTGGACCC
GTGTGGACTACAGACCCTTGGAGGGATTCGTTTACGCCGTGTCGCCTTTC
AACTTCACTGCCATTGGCGGGAACCTAATTAGCGGCCCAGCTCTTATGGG
CAATGTCGTCGTCTGGAAGCCTTCCGATTCGAACGTGTACGCGAGTGAGC
TCGTCTACAAGATTCTCCTCGAAGCTGGCCTGCCTCCCAATGTTATCCAG
TTCGTTACTGGTGACGCGCAGGAGATCACTCAGACGGTGCTTGGACGCAG
AGAGTTTGGTGGCCTCAACTTCACCGGTTCCTCGGACGTCTTCCGTTCCC
TGTATGCTCAGGTCGGCGAAAACATCGGCAAGAAGGTCTACCGGGACTAC
CCTCGTCTAGTTGGCGAGACCAGCGGCAAGAACTTCCACCTGGTTCATCC
CACTGCTGATATCCAGAGTGCTGTTTACCATACCCTTCGGGGTGCTTTTG
AGTACCAGGGACAAAAGTGCTCGGCGACGTCCCGACTGTACCTGCCTGAG
TCTCGGGCACAGGAGTTCTTGGAGAAGTTGAAGTCCGAGATCAAGGAGAT
CACGATCGGGTCGCCGGAGGAGATGGGAGCTTTCATGGGCCCTGTTATCC
ACAAAGCATCTTTCGAGAAGATTAAGTCGGTCATCGATGCCAGCAACAAG
GATCCATCCTTGGAGTTGATTGCTGGTGGTACCTACGACGGCTCAACCGG
ATATTACGTGCACCCTACTGTGTACCGGGCTAAGGACCCCAACCATGAGC
TGTTCGACAAGGAGATCTTCGGTCCAGTGCTCGCAGTCTACGTCTATCCT
GATGCCGAGTGGTCTTCAGTCCTGAAGACGGTCGACCAGAGTGGAGGTGG
CTTTGCTTTGACCGGAGCTGTGTTCGCAGGTGATCGGCGTGCCATCCGCG
AGGCCGAGGATACCTTGCGGTATTCGGCTGGAAACTTCTACATCAACTGC
AAGACTACTGCCGCCCTGATCGGACAACAGTCCTTTGGTGGCAGTCGCTC
GAGCGGAACCAACGACAAGGCTGGAAGCGCCAATGTGCTTATGAGATTTG
CCAGTCCCAGAACGATCAAGGAGGAATTCTTCCCCTTGAACGGCTTCCGG
TACCCCAGCAACGAGTAAATGGCCTTCAAACTACCCTTGTCTCAGCCCTC
GCCCAGCGTGCGCACCCTAGGACGCCGTGCCGCTAGAGCTCCAATTCTCA
GAGCTCGGGGTGTTGCGACCGTACCTTTCCGTCTGCCAGCTGCCAGAAAT
GAGCCCAACCTGGACTACACTAGGGGCTCTCCAGAAAGGGCAGAGGTCGA
AAAGGTTTTGAAGCAGATGAAGTCACAGCTGCCGCTCAAGAGTCAGTCAT
ACGTCGGAGGCAAAGCGCTCTCGGTGTCCAACACATTGCAACAACCTCTG
CCCGCCGAACATGCCACTACTTTCACCAACTACCCTAGCGTGAATGCTGC
ACAAGTAAATGCGGCTATTGATGCAGCATTGGAGGCAAAGGAAGCATGGC
AGAACACTCCCTTCGTTGACAGGGCTGCTATTTTCCTCAAGGCTGCCGAG
CTTGTCGCCGGCAAATACCGATACGAACTCATCGCTGCTACGATGTTGGG
ACAAGGCAAGAACATCTGGCAGGGTGAGATCGATGCAGCTGCAGAGTTGG
CCGACTTCTTCCGTCTGAACTGCAACTATGCTGCTGAGCTGCTGGAGAAG
CAGCCCGACCGCGGTACTGAGGGAATGTGGACCCGTGTGGACTACAGACC
CTTGGAGGGATTCGTTTACGCCGTGTCGCCTTTCAACTTCACTGCCATTG
GCGGGAACCTAATTAGCGGCCCAGCTCTTATGGGCAATGTCGTCGTCTGG
AAGCCTTCCGATTCGAACGTGTACGCGAGTGAGCTCGTCTACAAGATTCT
CCTCGAAGCTGGCCTGCCTCCCAATGTTATCCAGTTCGTTACTGGTGACG
CGCAGGAGATCACTCAGACGGTGCTTGGACGCAGAGAGTTTGGTGGCCTC
AACTTCACCGGTTCCTCGGACGTCTTCCGTTCCCTGTATGCTCAGGTCGG
CGAAAACATCGGCAAGAAGGTCTACCGGGACTACCCTCGTCTAGTTGGCG
AGACCAGCGGCAAGAACTTCCACCTGGTTCATCCCACTGCTGATATCCAG
AGTGCTGTTTACCATACCCTTCGGGGTGCTTTTGAGTACCAGGGACAAAA
GTGCTCGGCGACGTCCCGACTGTACCTGCCTGAGTCTCGGGCACAGGAGT
TCTTGGAGAAGTTGAAGTCCGAGATCAAGGAGATCACGATCGGGTCGCCG
GAGGAGATGGGAGCTTTCATGGGCCCTGTTATCCACAAAGCATCTTTCGA
GAAGATTAAGTCGGTCATCGATGCCAGCAACAAGGATCCATCCTTGGAGT
TGATTGCTGGTGGTACCTACGACGGCTCAACCGGATATTACGTGCACCCT
ACTGTGTACCGGGCTAAGGACCCCAACCATGAGCTGTTCGACAAGGAGAT
CTTCGGTCCAGTGCTCGCAGTCTACGTCTATCCTGATGCCGAGTGGTCTT
CAGTCCTGAAGACGGTCGACCAGAGTGGAGGTGGCTTTGCTTTGACCGGA
GCTGTGTTCGCAGGTGATCGGCGTGCCATCCGCGAGGCCGAGGATACCTT
GCGGTATTCGGCTGGAAACTTCTACATCAACTGCAAGACTACTGCCGCCC
TGATCGGACAACAGTCCTTTGGTGGCAGTCGCTCGAGCGGAACCAACGAC
AAGGCTGGAAGCGCCAATGTGCTTATGAGATTTGCCAGTCCCAGAACGAT
CAAGGAGGAATTCTTCCCCTTGAACGGCTTCCGGTACCCCAGCAACGAGT
AAATGGCCTTCAAACTACCCTTGTCTCAGCCCTCGCCCAGCGTGCGCACC
CTAGGACGCCGTGCCGCTAGAGCTCCAATTCTCAGAGCTCGGGGTGTTGC
GACCGTACCTTTCCGTCTGCCAGCTGCCAGAAATGAGCCCAACCTGGACT
ACACTAGGGGCTCTCCAGAAAGGGCAGAGGTCGAAAAGGTTTTGAAGCAG
ATGAAGTCACAGCTGCCGCTCAAGAGTCAGTCATACGTCGGAGGCAAAGC
GCTCTCGGTGTCCAACACATTGCAACAACCTCTGCCCGCCGAACATGCCA
CTACTTTCACCAACTACCCTAGCGTGAATGCTGCACAAGTAAATGCGGCT
ATTGATGCAGCATTGGAGGCAAAGGAAGCATGGCAGAACACTCCCTTCGT
TGACAGGGCTGCTATTTTCCTCAAGGCTGCCGAGCTTGTCGCCGGCAAAT
ACCGATACGAACTCATCGCTGCTACGATGTTGGGACAAGGCAAGAACATC
TGGCAGGGTGAGATCGATGCAGCTGCAGAGTTGGCCGACTTCTTCCGTCT
GAACTGCAACTATGCTGCTGAGCTGCTGGAGAAGCAGCCCGACCGCGGTA
CTGAGGGAATGTGGACCCGTGTGGACTACAGACCCTTGGAGGGATTCGTT
TACGCCGTGTCGCCTTTCAACTTCACTGCCATTGGCGGGAACCTAATTAG
CGGCCCAGCTCTTATGGGCAATGTCGTCGTCTGGAAGCCTTCCGATTCGA
ACGTGTACGCGAGTGAGCTCGTCTACAAGATTCTCCTCGAAGCTGGCCTG
CCTCCCAATGTTATCCAGTTCGTTACTGGTGACGCGCAGGAGATCACTCA
GACGGTGCTTGGACGCAGAGAGTTTGGTGGCCTCAACTTCACCGGTTCCT
CGGACGTCTTCCGTTCCCTGTATGCTCAGGTCGGCGAAAACATCGGCAAG
AAGGTCTACCGGGACTACCCTCGTCTAGTTGGCGAGACCAGCGGCAAGAA
CTTCCACCTGGTTCATCCCACTGCTGATATCCAGAGTGCTGTTTACCATA
CCCTTCGGGGTGCTTTTGAGTACCAGGGACAAAAGTGCTCGGCGACGTCC
CGACTGTACCTGCCTGAGTCTCGGGCACAGGAGTTCTTGGAGAAGTTGAA
GTCCGAGATCAAGGAGATCACGATCGGGTCGCCGGAGGAGATGGGAGCTT
TCATGGGCCCTGTTATCCACAAAGCATCTTTCGAGAAGATTAAGTCGGTC
ATCGATGCCAGCAACAAGGATCCATCCTTGGAGTTGATTGCTGGTGGTAC
CTACGACGGCTCAACCGGATATTACGTGCACCCTACTGTGTACCGGGCTA
AGGACCCCAACCATGAGCTGTTCGACAAGGAGATCTTCGGTCCAGTGCTC
GCAGTCTACGTCTATCCTGATGCCGAGTGGTCTTCAGTCCTGAAGACGGT
CGACCAGAGTGGAGGTGGCTTTGCTTTGACCGGAGCTGTGTTCGCAGGTG
ATCGGCGTGCCATCCGCGAGGCCGAGGATACCTTGCGGTATTCGGCTGGA
AACTTCTACATCAACTGCAAGACTACTGCCGCCCTGATCGGACAACAGTC
CTTTGGTGGCAGTCGCTCGAGCGGAACCAACGACAAGGCTGGAAGCGCCA
ATGTGCTTATGAGATTTGCCAGTCCCAGAACGATCAAGGAGGAATTCTTC
CCCTTGAACGGCTTCCGGTACCCCAGCAACGAGTAA
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0010133proline catabolic process to glutamate
GO:0055114oxidation-reduction process
Vocabulary: Molecular Function
TermDefinition
GO:0016620oxidoreductase activity, acting on the aldehyde or oxo group of donors, NAD or NADP as acceptor
GO:00038421-pyrroline-5-carboxylate dehydrogenase activity
GO:0016491oxidoreductase activity
Relationships

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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_181275ASPNIDRAFT_181275Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_181275-T1.exon1ASPNIDRAFT_181275-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_181275-T1.exon2ASPNIDRAFT_181275-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_181275-T1.exon3ASPNIDRAFT_181275-T1.exon3Aspergillus niger ATCC 1015exon
ASPNIDRAFT_181275-T1.exon4ASPNIDRAFT_181275-T1.exon4Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_181275-T1.cdsASPNIDRAFT_181275-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_181275-T1ASPNIDRAFT_181275-T1-proteinAspergillus niger ATCC 1015polypeptide


Properties
Property NameValue
DBxrefInterPro:IPR016161
DBxrefInterPro:IPR029510
DBxrefInterPro:IPR016160
DBxrefInterPro:IPR016162
DBxrefInterPro:IPR016163
DBxrefInterPro:IPR005931
DBxrefInterPro:IPR015590
DBxrefPFAM:PF00171
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
ACJE01000009.1supercontigACJE01000009.1:1149606..1151509 +