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CAN33_38755-T1, CAN33_38755-T1 (mRNA) Aspergillus niger FDAARGOS_311

Overview
NameCAN33_38755-T1
Unique NameCAN33_38755-T1
TypemRNA
OrganismAspergillus niger FDAARGOS_311
Sequences
The following sequences are available for this feature:

mRNA from alignment at NKJJ01000017.1:1648829..1650782-

Legend: polypeptideCDSexon
Hold the cursor over a type above to highlight its positions in the sequence below.
>CAN33_38755-T1 ID=CAN33_38755-T1|Name=CAN33_38755-T1|organism=Aspergillus niger FDAARGOS_311|type=mRNA|length=1954bp|location=Sequence derived from alignment at NKJJ01000017.1:1648829..1650782- (Aspergillus niger FDAARGOS_311)
ATGGCCGCCCGTCGGTCTATTGTCCGTTCCATCCCCGCTCTCCGCGCCGC CTCTCCCCGCACGGCCGTGGCCACCTCCAGATCTGTAGCTGCAGCTTCGG CCTCGAGGCGCCTTTCTACTGTTATAATGCCCTCTTCTTCTTCGACAACT TCTTCTGCAACATCTAAGCTCTCCTCATCCTCACCTGCCACCATGTCAGC AACACGTCGACTCCACGCTACTGCCCAGCAGTTCACCCCCGCAACTACCT CCGCGGCTACTACCGCCACCGAGTACCCGACGGACCATAGCCCCATCGCC AACCCCATCGACACCGCCAATTTCCTGGACAACCAATTTGTGGCTTCTAA GGCTACCACCTGGATCGATCTGCACGATCCTGCTACCAACAACCTCGTTA CTCGGGTGCCGCAAAGCACCGATGAGGAACTCCGTGCCGCCGTCGAGTCG GCCGAGAAGGCCTTCCCAGCCTGGCGCGCAACCAGCGTTATTGCCAAGCA GCAGATCATGTTCAAGTTCGTGAGCTTGATTCGTGCCAACTGGGACCGAC TTGCTGCATCCATCACTCTCGAGCAGGGCAAGACCTTTGCCGATGCCAAG GGCGATGTTCTCCGCGGTCTTCAAGTTGCCGAAACAGCATGTGGTATTAC CACCCAGCTAACGGGCGAGGTGCTCGAAGTGGCCAAGGATATGGAGACTA GGAGCTACAGAGAGCCCTTGGGTGTGGTTGCTGCCATTTGTCCTTTCAGT AAGTGATTCTGCATCCGTCCTGCAAGCTAGGTGACATTGTCCGACGCTAA CCGCACCCCCTCGCCTTCTCGGCAGACTTCCCCGCAATGATTCCCCTGTG GTGCATCCCCATCGCTACCGTGACGGGCAACTGTCTCATCCTCAAGCCAT CTGAGCGGGACCCCGGAGCTGCAATGATCCTGGCCGAGCTGGCCCGGGAA GCAGGCTTCCCCCCGGTGTCATCAACATTGTCCACGGCTCCGCCAAGACA GTCGATTTCATCCTCGACGAACCCGCCATCAAGGCCATCAGCTTCGTCGG CAGCAACCGCGCCGGAGAGTACATCTACACCCGCGGCTCTGCCAACGGCA AGCGTGTCCAGGCCAATCTGGGCGCCAAGAACCATGCCGCCGTAGTCCCA GACTGCAACAAGAACCAGACCCTGAACGCCCTCGTCGGAGCGGCCTTCGG TGCTGCCGGCCAACGCTGCATGGCCCTCAGTACGGTCGTCATGGTCGGCG AGACTCAGGACTGGCTCCCCGAGATGGCCGAACGGGCCAAGGCCCTGAAC GTCAACGGAGGCTTCGAAGAAGGCGCTGACCTCGGCCCCGTCATCAGCCC CGAAAGCAAGAAGCGCATCGAAGACCTGATCGCCAGCGCCGAAGAAGAGG GTGCGACCATCCTCCTCGACGGCAGAGGCTACAAGCCAGAGAAGTACCCC AACGGCAACTTTGTAAGCTTCCACCCAACCCCCTTCCCCGTCTCCTATCC AGCTACATCTTCTCTCTAACCAGCACCAAAACCACAGGTTGGCCCCACCA TCATCACCAACGTAACCCCCGAAATGAAATGCTACAAGGAAGAAATCTTC GGCCCCGTCCTCGTCTGCTTGTCCGTGCCCACACTAGACGACGCCATTGA GCTCATCAACAAGAACGAGTACGGAAACGGAGCTGCCATCTTCACTCGCT CCGGTTCCACGGCCTCTCGCTTCCAGAAGGACATCGAGGCCGGCCAGGTC GGTGTTAACGTGCCCATTCCTGTGCCGTTGCCCATGTTCTCTTTCACCGG TAACAAGAAGAGTATTGCCGGCGGTGGCGCTAATACTTTCTATGGTAAGC CCGGGTTGCAATTTTACACGCAGCAGAAGACGGTGACTAGTTTGTGGAGG AGTGAGGATGCTGTTAGCACTAAGGCTCATACGGTTATGCCGACTCATTC GTGA
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Coding sequence (CDS) from alignment at NKJJ01000017.1:1648829..1650782-

>CAN33_38755-T1 ID=CAN33_38755-T1|Name=CAN33_38755-T1|organism=Aspergillus niger FDAARGOS_311|type=CDS|length=7080bp|location=Sequence derived from alignment at NKJJ01000017.1:1648829..1650782- (Aspergillus niger FDAARGOS_311)
GTTGGCCCCACCATCATCACCAACGTAACCCCCGAAATGAAATGCTACAA
GGAAGAAATCTTCGGCCCCGTCCTCGTCTGCTTGTCCGTGCCCACACTAG
ACGACGCCATTGAGCTCATCAACAAGAACGAGTACGGAAACGGAGCTGCC
ATCTTCACTCGCTCCGGTTCCACGGCCTCTCGCTTCCAGAAGGACATCGA
GGCCGGCCAGGTCGGTGTTAACGTGCCCATTCCTGTGCCGTTGCCCATGT
TCTCTTTCACCGGTAACAAGAAGAGTATTGCCGGCGGTGGCGCTAATACT
TTCTATGGTAAGCCCGGGTTGCAATTTTACACGCAGCAGAAGACGGTGAC
TAGTTTGTGGAGGAGTGAGGATGCTGTTAGCACTAAGGCTCATACGGTTA
TGCCGACTCATTCGTGAACAGTCGATTTCATCCTCGACGAACCCGCCATC
AAGGCCATCAGCTTCGTCGGCAGCAACCGCGCCGGAGAGTACATCTACAC
CCGCGGCTCTGCCAACGGCAAGCGTGTCCAGGCCAATCTGGGCGCCAAGA
ACCATGCCGCCGTAGTCCCAGACTGCAACAAGAACCAGACCCTGAACGCC
CTCGTCGGAGCGGCCTTCGGTGCTGCCGGCCAACGCTGCATGGCCCTCAG
TACGGTCGTCATGGTCGGCGAGACTCAGGACTGGCTCCCCGAGATGGCCG
AACGGGCCAAGGCCCTGAACGTCAACGGAGGCTTCGAAGAAGGCGCTGAC
CTCGGCCCCGTCATCAGCCCCGAAAGCAAGAAGCGCATCGAAGACCTGAT
CGCCAGCGCCGAAGAAGAGGGTGCGACCATCCTCCTCGACGGCAGAGGCT
ACAAGCCAGAGAAGTACCCCAACGGCAACTTTACTTCCCCGCAATGATTC
CCCTGTGGTGCATCCCCATCGCTACCGTGACGGGCAACTGTCTCATCCTC
AAGCCATCTGAGCGGGACCCCGGAGCTGCAATGATCCTGGCCGAGCTGGC
CCGGGAAGCAGGCTTCCCCCCGATGGCCGCCCGTCGGTCTATTGTCCGTT
CCATCCCCGCTCTCCGCGCCGCCTCTCCCCGCACGGCCGTGGCCACCTCC
AGATCTGTAGCTGCAGCTTCGGCCTCGAGGCGCCTTTCTACTGTTATAAT
GCCCTCTTCTTCTTCGACAACTTCTTCTGCAACATCTAAGCTCTCCTCAT
CCTCACCTGCCACCATGTCAGCAACACGTCGACTCCACGCTACTGCCCAG
CAGTTCACCCCCGCAACTACCTCCGCGGCTACTACCGCCACCGAGTACCC
GACGGACCATAGCCCCATCGCCAACCCCATCGACACCGCCAATTTCCTGG
ACAACCAATTTGTGGCTTCTAAGGCTACCACCTGGATCGATCTGCACGAT
CCTGCTACCAACAACCTCGTTACTCGGGTGCCGCAAAGCACCGATGAGGA
ACTCCGTGCCGCCGTCGAGTCGGCCGAGAAGGCCTTCCCAGCCTGGCGCG
CAACCAGCGTTATTGCCAAGCAGCAGATCATGTTCAAGTTCGTGAGCTTG
ATTCGTGCCAACTGGGACCGACTTGCTGCATCCATCACTCTCGAGCAGGG
CAAGACCTTTGCCGATGCCAAGGGCGATGTTCTCCGCGGTCTTCAAGTTG
CCGAAACAGCATGTGGTATTACCACCCAGCTAACGGGCGAGGTGCTCGAA
GTGGCCAAGGATATGGAGACTAGGAGCTACAGAGAGCCCTTGGGTGTGGT
TGCTGCCATTTGTCCTTTCAGTTGGCCCCACCATCATCACCAACGTAACC
CCCGAAATGAAATGCTACAAGGAAGAAATCTTCGGCCCCGTCCTCGTCTG
CTTGTCCGTGCCCACACTAGACGACGCCATTGAGCTCATCAACAAGAACG
AGTACGGAAACGGAGCTGCCATCTTCACTCGCTCCGGTTCCACGGCCTCT
CGCTTCCAGAAGGACATCGAGGCCGGCCAGGTCGGTGTTAACGTGCCCAT
TCCTGTGCCGTTGCCCATGTTCTCTTTCACCGGTAACAAGAAGAGTATTG
CCGGCGGTGGCGCTAATACTTTCTATGGTAAGCCCGGGTTGCAATTTTAC
ACGCAGCAGAAGACGGTGACTAGTTTGTGGAGGAGTGAGGATGCTGTTAG
CACTAAGGCTCATACGGTTATGCCGACTCATTCGTGAACAGTCGATTTCA
TCCTCGACGAACCCGCCATCAAGGCCATCAGCTTCGTCGGCAGCAACCGC
GCCGGAGAGTACATCTACACCCGCGGCTCTGCCAACGGCAAGCGTGTCCA
GGCCAATCTGGGCGCCAAGAACCATGCCGCCGTAGTCCCAGACTGCAACA
AGAACCAGACCCTGAACGCCCTCGTCGGAGCGGCCTTCGGTGCTGCCGGC
CAACGCTGCATGGCCCTCAGTACGGTCGTCATGGTCGGCGAGACTCAGGA
CTGGCTCCCCGAGATGGCCGAACGGGCCAAGGCCCTGAACGTCAACGGAG
GCTTCGAAGAAGGCGCTGACCTCGGCCCCGTCATCAGCCCCGAAAGCAAG
AAGCGCATCGAAGACCTGATCGCCAGCGCCGAAGAAGAGGGTGCGACCAT
CCTCCTCGACGGCAGAGGCTACAAGCCAGAGAAGTACCCCAACGGCAACT
TTACTTCCCCGCAATGATTCCCCTGTGGTGCATCCCCATCGCTACCGTGA
CGGGCAACTGTCTCATCCTCAAGCCATCTGAGCGGGACCCCGGAGCTGCA
ATGATCCTGGCCGAGCTGGCCCGGGAAGCAGGCTTCCCCCCGATGGCCGC
CCGTCGGTCTATTGTCCGTTCCATCCCCGCTCTCCGCGCCGCCTCTCCCC
GCACGGCCGTGGCCACCTCCAGATCTGTAGCTGCAGCTTCGGCCTCGAGG
CGCCTTTCTACTGTTATAATGCCCTCTTCTTCTTCGACAACTTCTTCTGC
AACATCTAAGCTCTCCTCATCCTCACCTGCCACCATGTCAGCAACACGTC
GACTCCACGCTACTGCCCAGCAGTTCACCCCCGCAACTACCTCCGCGGCT
ACTACCGCCACCGAGTACCCGACGGACCATAGCCCCATCGCCAACCCCAT
CGACACCGCCAATTTCCTGGACAACCAATTTGTGGCTTCTAAGGCTACCA
CCTGGATCGATCTGCACGATCCTGCTACCAACAACCTCGTTACTCGGGTG
CCGCAAAGCACCGATGAGGAACTCCGTGCCGCCGTCGAGTCGGCCGAGAA
GGCCTTCCCAGCCTGGCGCGCAACCAGCGTTATTGCCAAGCAGCAGATCA
TGTTCAAGTTCGTGAGCTTGATTCGTGCCAACTGGGACCGACTTGCTGCA
TCCATCACTCTCGAGCAGGGCAAGACCTTTGCCGATGCCAAGGGCGATGT
TCTCCGCGGTCTTCAAGTTGCCGAAACAGCATGTGGTATTACCACCCAGC
TAACGGGCGAGGTGCTCGAAGTGGCCAAGGATATGGAGACTAGGAGCTAC
AGAGAGCCCTTGGGTGTGGTTGCTGCCATTTGTCCTTTCAGTTGGCCCCA
CCATCATCACCAACGTAACCCCCGAAATGAAATGCTACAAGGAAGAAATC
TTCGGCCCCGTCCTCGTCTGCTTGTCCGTGCCCACACTAGACGACGCCAT
TGAGCTCATCAACAAGAACGAGTACGGAAACGGAGCTGCCATCTTCACTC
GCTCCGGTTCCACGGCCTCTCGCTTCCAGAAGGACATCGAGGCCGGCCAG
GTCGGTGTTAACGTGCCCATTCCTGTGCCGTTGCCCATGTTCTCTTTCAC
CGGTAACAAGAAGAGTATTGCCGGCGGTGGCGCTAATACTTTCTATGGTA
AGCCCGGGTTGCAATTTTACACGCAGCAGAAGACGGTGACTAGTTTGTGG
AGGAGTGAGGATGCTGTTAGCACTAAGGCTCATACGGTTATGCCGACTCA
TTCGTGAACAGTCGATTTCATCCTCGACGAACCCGCCATCAAGGCCATCA
GCTTCGTCGGCAGCAACCGCGCCGGAGAGTACATCTACACCCGCGGCTCT
GCCAACGGCAAGCGTGTCCAGGCCAATCTGGGCGCCAAGAACCATGCCGC
CGTAGTCCCAGACTGCAACAAGAACCAGACCCTGAACGCCCTCGTCGGAG
CGGCCTTCGGTGCTGCCGGCCAACGCTGCATGGCCCTCAGTACGGTCGTC
ATGGTCGGCGAGACTCAGGACTGGCTCCCCGAGATGGCCGAACGGGCCAA
GGCCCTGAACGTCAACGGAGGCTTCGAAGAAGGCGCTGACCTCGGCCCCG
TCATCAGCCCCGAAAGCAAGAAGCGCATCGAAGACCTGATCGCCAGCGCC
GAAGAAGAGGGTGCGACCATCCTCCTCGACGGCAGAGGCTACAAGCCAGA
GAAGTACCCCAACGGCAACTTTACTTCCCCGCAATGATTCCCCTGTGGTG
CATCCCCATCGCTACCGTGACGGGCAACTGTCTCATCCTCAAGCCATCTG
AGCGGGACCCCGGAGCTGCAATGATCCTGGCCGAGCTGGCCCGGGAAGCA
GGCTTCCCCCCGATGGCCGCCCGTCGGTCTATTGTCCGTTCCATCCCCGC
TCTCCGCGCCGCCTCTCCCCGCACGGCCGTGGCCACCTCCAGATCTGTAG
CTGCAGCTTCGGCCTCGAGGCGCCTTTCTACTGTTATAATGCCCTCTTCT
TCTTCGACAACTTCTTCTGCAACATCTAAGCTCTCCTCATCCTCACCTGC
CACCATGTCAGCAACACGTCGACTCCACGCTACTGCCCAGCAGTTCACCC
CCGCAACTACCTCCGCGGCTACTACCGCCACCGAGTACCCGACGGACCAT
AGCCCCATCGCCAACCCCATCGACACCGCCAATTTCCTGGACAACCAATT
TGTGGCTTCTAAGGCTACCACCTGGATCGATCTGCACGATCCTGCTACCA
ACAACCTCGTTACTCGGGTGCCGCAAAGCACCGATGAGGAACTCCGTGCC
GCCGTCGAGTCGGCCGAGAAGGCCTTCCCAGCCTGGCGCGCAACCAGCGT
TATTGCCAAGCAGCAGATCATGTTCAAGTTCGTGAGCTTGATTCGTGCCA
ACTGGGACCGACTTGCTGCATCCATCACTCTCGAGCAGGGCAAGACCTTT
GCCGATGCCAAGGGCGATGTTCTCCGCGGTCTTCAAGTTGCCGAAACAGC
ATGTGGTATTACCACCCAGCTAACGGGCGAGGTGCTCGAAGTGGCCAAGG
ATATGGAGACTAGGAGCTACAGAGAGCCCTTGGGTGTGGTTGCTGCCATT
TGTCCTTTCAGTTGGCCCCACCATCATCACCAACGTAACCCCCGAAATGA
AATGCTACAAGGAAGAAATCTTCGGCCCCGTCCTCGTCTGCTTGTCCGTG
CCCACACTAGACGACGCCATTGAGCTCATCAACAAGAACGAGTACGGAAA
CGGAGCTGCCATCTTCACTCGCTCCGGTTCCACGGCCTCTCGCTTCCAGA
AGGACATCGAGGCCGGCCAGGTCGGTGTTAACGTGCCCATTCCTGTGCCG
TTGCCCATGTTCTCTTTCACCGGTAACAAGAAGAGTATTGCCGGCGGTGG
CGCTAATACTTTCTATGGTAAGCCCGGGTTGCAATTTTACACGCAGCAGA
AGACGGTGACTAGTTTGTGGAGGAGTGAGGATGCTGTTAGCACTAAGGCT
CATACGGTTATGCCGACTCATTCGTGAACAGTCGATTTCATCCTCGACGA
ACCCGCCATCAAGGCCATCAGCTTCGTCGGCAGCAACCGCGCCGGAGAGT
ACATCTACACCCGCGGCTCTGCCAACGGCAAGCGTGTCCAGGCCAATCTG
GGCGCCAAGAACCATGCCGCCGTAGTCCCAGACTGCAACAAGAACCAGAC
CCTGAACGCCCTCGTCGGAGCGGCCTTCGGTGCTGCCGGCCAACGCTGCA
TGGCCCTCAGTACGGTCGTCATGGTCGGCGAGACTCAGGACTGGCTCCCC
GAGATGGCCGAACGGGCCAAGGCCCTGAACGTCAACGGAGGCTTCGAAGA
AGGCGCTGACCTCGGCCCCGTCATCAGCCCCGAAAGCAAGAAGCGCATCG
AAGACCTGATCGCCAGCGCCGAAGAAGAGGGTGCGACCATCCTCCTCGAC
GGCAGAGGCTACAAGCCAGAGAAGTACCCCAACGGCAACTTTACTTCCCC
GCAATGATTCCCCTGTGGTGCATCCCCATCGCTACCGTGACGGGCAACTG
TCTCATCCTCAAGCCATCTGAGCGGGACCCCGGAGCTGCAATGATCCTGG
CCGAGCTGGCCCGGGAAGCAGGCTTCCCCCCGATGGCCGCCCGTCGGTCT
ATTGTCCGTTCCATCCCCGCTCTCCGCGCCGCCTCTCCCCGCACGGCCGT
GGCCACCTCCAGATCTGTAGCTGCAGCTTCGGCCTCGAGGCGCCTTTCTA
CTGTTATAATGCCCTCTTCTTCTTCGACAACTTCTTCTGCAACATCTAAG
CTCTCCTCATCCTCACCTGCCACCATGTCAGCAACACGTCGACTCCACGC
TACTGCCCAGCAGTTCACCCCCGCAACTACCTCCGCGGCTACTACCGCCA
CCGAGTACCCGACGGACCATAGCCCCATCGCCAACCCCATCGACACCGCC
AATTTCCTGGACAACCAATTTGTGGCTTCTAAGGCTACCACCTGGATCGA
TCTGCACGATCCTGCTACCAACAACCTCGTTACTCGGGTGCCGCAAAGCA
CCGATGAGGAACTCCGTGCCGCCGTCGAGTCGGCCGAGAAGGCCTTCCCA
GCCTGGCGCGCAACCAGCGTTATTGCCAAGCAGCAGATCATGTTCAAGTT
CGTGAGCTTGATTCGTGCCAACTGGGACCGACTTGCTGCATCCATCACTC
TCGAGCAGGGCAAGACCTTTGCCGATGCCAAGGGCGATGTTCTCCGCGGT
CTTCAAGTTGCCGAAACAGCATGTGGTATTACCACCCAGCTAACGGGCGA
GGTGCTCGAAGTGGCCAAGGATATGGAGACTAGGAGCTACAGAGAGCCCT
TGGGTGTGGTTGCTGCCATTTGTCCTTTCA
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Molecular Function
TermDefinition
GO:0016620oxidoreductase activity, acting on the aldehyde or oxo group of donors, NAD or NADP as acceptor
GO:0004491methylmalonate-semialdehyde dehydrogenase (acylating) activity
GO:0016491oxidoreductase activity
Vocabulary: Biological Process
TermDefinition
GO:0055114oxidation-reduction process
Relationships

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

Feature NameUnique NameSpeciesType
CAN33_38755CAN33_38755Aspergillus niger FDAARGOS_311gene


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

Feature NameUnique NameSpeciesType
CAN33_38755-T1CAN33_38755-T1-proteinAspergillus niger FDAARGOS_311polypeptide


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

Feature NameUnique NameSpeciesType
CAN33_38755-T1.cdsCAN33_38755-T1.cdsAspergillus niger FDAARGOS_311CDS


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

Feature NameUnique NameSpeciesType
CAN33_38755-T1.exon4CAN33_38755-T1.exon4Aspergillus niger FDAARGOS_311exon
CAN33_38755-T1.exon3CAN33_38755-T1.exon3Aspergillus niger FDAARGOS_311exon
CAN33_38755-T1.exon2CAN33_38755-T1.exon2Aspergillus niger FDAARGOS_311exon
CAN33_38755-T1.exon1CAN33_38755-T1.exon1Aspergillus niger FDAARGOS_311exon


Properties
Property NameValue
DBxrefInterPro:IPR016161
DBxrefInterPro:IPR016160
DBxrefInterPro:IPR016163
DBxrefInterPro:IPR016162
DBxrefInterPro:IPR010061
DBxrefInterPro:IPR015590
DBxrefPFAM:PF00171
Productmethylmalonate-semialdehyde dehydrogenase (acylating)
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Aspergillus niger FDAARGOS_311 whole genome analysis2021-11-01
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
NKJJ01000017.1supercontigNKJJ01000017.1:1648829..1650782 -