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KYF_001030-T1, KYF_001030-T1 (mRNA) Aspergillus niger KYF3

Overview
NameKYF_001030-T1
Unique NameKYF_001030-T1
TypemRNA
OrganismAspergillus niger KYF3
Sequences
The following sequences are available for this feature:

mRNA from alignment at ch1:2668607..2671053+

Legend: polypeptideexonCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>KYF_001030-T1 ID=KYF_001030-T1|Name=KYF_001030-T1|organism=Aspergillus niger KYF3|type=mRNA|length=2447bp|location=Sequence derived from alignment at ch1:2668607..2671053+ (Aspergillus niger KYF3)
ATGAGCACCTCAATCCTCAACATCCAGCGTGATCGTGAGTACTTTATCTT TCTTATACATATAAGCTATTCAAGTATTAACTACTTACCCGCTAGTAATT TTGAACACGATCCGTTATGCGGCGGGTAATGAGGTGCGATTGCTTCCCCT CCCCTTCTCCTTTACCGTGGATTTGGCCCCCGCCTCGTTTCACCCCGCCG CAGAACTAACGTTTTTGTCTACAGTGGAAGGTTTTGGTGGTGGACGAGAC CAGTCGCAAGCTAATCGACAATGCTGTCAGTGAGGATGATATTCTCAACC TCAATGTCACCAGTAAGTTCCCCTCGGTTTATTCCTCGTCGTCCCGGTGC GGCGCTAATGGCCTCCCGCAAGATGTTGAACAGATCGAGCATCGGCGCTC CCCCAATCCTACGATGGATGCGCTGTATATCCTCTCGCCCCTTCCACACA TTGTCGACTGTATTATGGCGGATTTTGAGAGGAAGAGATACCGGAAAGCG TGGTTGGTTTGGACATCATGTCGGGCGCCTGCTTCCTCAATGGCCGCTTG GTGCTGACGTCGCTCGCAGTTCTCGATCCGGAGCAGCGCGCTAGATTGGA CCGTTCCCAGCTGGCTCGCGACCAGATTGCCAATGTTCAGATCATGAATG CCGACTACTTCCCCAGGGAATCGCGCCTGATTACCTTTCGAGATCCGTGG AGCTTTCCGGTGTTGTTCCACCCTGGTTGTAATCATCTGATCCGCGCGCA CTTGGAGGGGTTGGCACAGAAGGTGAGCTAGGATACCTGTGCAGATTGAG CTGGTATTGACGGGACAGATTGTGTCGCTTTGTGCGAGCTTAGGAGAATA CCCAGTGATCCGGTACTACCGCCCCCGGGCCCCGACACACGAGGCCAGCG TACTGTGTTCACATTTGGCGCGGTTCATCCAGAATGAGCTGGACCAGTTT GCGCAATTCCAGCGCGACTTTCCGCCCCCGTCCCCCAGACCGCGCGGAGT GCTGTTGATCGTGGATCGGTCCATGGACCTGATCGCGCCCCTGCTACATG AGTTTACGTATCAGTCCATGGTGCACGATCTGCTTCCTATCAGCGATGGC GACAAGGTCACGTATAAGACCGTCATCAACGAGGGAAGCCACAACGAGGA GCTCAAGGATATGGAGATCAACGAAGAAGACAACGTGTGGGTGGAGTATC GCCACATGCATATGAAGGACGTGCTCGGCAAGCTGGGTGAAGACTTTGCC AAGTTCCGAGCTGCGAACCCTCAGTTTGCGGAAGAGTGAGTGACGGCACA TTTGATCGTTTCGACCCCTTACTAACGGCGCTGCAGCAATAACAAAGCGA ACGTGAACACTATCAAGGACATGCTGGCGGGTCTGACAGAGTTTCAAAAG GGAAGAGATGCTTATACACTGCATCTTAATATGGCGCAAGAGTGTATGAG TTACTTCCAGAAACACAAGCTCCTCGAAGTAAGCTCGGTTGAACAATGCT TCGCCACTGGCATGGACGAGAACTACAAGAAGGCAAAGAACCTGGCTTCC CAGCTCGTGCAATTGCTAGACGACGATGCGATCAAGCAGCCAGAGAGACT GAGACTCTTGCTACTCTATATTATTTACCGGGGAGGCATCCTCGCAGGTG ACATCCGGAAGCTTTTGGCACACGCGCAACTTGCACCGCAGGACGGTGAA ATTGTGGCCAATCTCGACCTACTTGGAGCCCGGGTGGAGAAGCCTTTGAA GGACGACAAGCCACCCGTGCAGCCGCTGTTCACCAGGAAGCCACCGTCCG GGCCCATCGACGAAGAGGAAAGCCTCTCGCGCTACGACCTGAACCTCAAG TTGATCTTGGAGGAGCTGGTGCGCGGCACGCTGGACCCCAGCGTCTTCCC ATTCACGCGGCCGCACACGGATACCGACACGCCAGGACAACAAGAGGGTC TCTCCCAGGCGTCGCTGCGCAGTGCCAAACCGACGTGGGCCCGGACGCGG TCGACAGGCGAGCAGCCGAAACAGCGGATCATCGTGTTCATGGCAGGTGG TGCTACATATGGAGAGGCACGTACATGCTACGAGATCTCGCAGACGTGCG GCAAGGACGTGTTTCTGGCTACATCGCACATGCTGTCTCCCGGATTGTTC CTGCGCCAGGTGGGCGATCTTAGTGTAGACCGACGCCGGCTGGACATCCC CGCCGAACGGCCCAAGCCCACAGCGCCGGCGCATCTCTTCGAGCGGGAAG CTCCACCGGCGCCGGCGCAGCCGGTGAAGAAGCCGGTCCCGGTTAATCTG AAGCCGATGGCACCGACATCCGCGCTGGCGACGATGTCACTGGGGACGAA CGGCAAAGCGGCGAACGGAGCAGCGCCGCCGGAGAAGGAGAAGGACAAGA AGGAGAAGAAAGAGAAGAAGGAAAAGAAGCACCGGTTCTTCCGGTAG
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Coding sequence (CDS) from alignment at ch1:2668607..2671053+

>KYF_001030-T1 ID=KYF_001030-T1|Name=KYF_001030-T1|organism=Aspergillus niger KYF3|type=CDS|length=14616bp|location=Sequence derived from alignment at ch1:2668607..2671053+ (Aspergillus niger KYF3)
ATGAGCACCTCAATCCTCAACATCCAGCGTGATCTAATTTTGAACACGAT
CCGTTATGCGGCGGGTAATGAGTGGAAGGTTTTGGTGGTGGACGAGACCA
GTCGCAAGCTAATCGACAATGCTGTCAGTGAGGATGATATTCTCAACCTC
AATGTCACCAATGTTGAACAGATCGAGCATCGGCGCTCCCCCAATCCTAC
GATGGATGCGCTGTATATCCTCTCGCCCCTTCCACACATTGTCGACTGTA
TTATGGCGGATTTTGAGAGGAAGAGATACCGGAAAGCGTGGTTGGTTTGG
ACATCATTTCTCGATCCGGAGCAGCGCGCTAGATTGGACCGTTCCCAGCT
GGCTCGCGACCAGATTGCCAATGTTCAGATCATGAATGCCGACTACTTCC
CCAGGGAATCGCGCCTGATTACCTTTCGAGATCCGTGGAGCTTTCCGGTG
TTGTTCCACCCTGGTTGTAATCATCTGATCCGCGCGCACTTGGAGGGGTT
GGCACAGAAGATTGTGTCGCTTTGTGCGAGCTTAGGAGAATACCCAGTGA
TCCGGTACTACCGCCCCCGGGCCCCGACACACGAGGCCAGCGTACTGTGT
TCACATTTGGCGCGGTTCATCCAGAATGAGCTGGACCAGTTTGCGCAATT
CCAGCGCGACTTTCCGCCCCCGTCCCCCAGACCGCGCGGAGTGCTGTTGA
TCGTGGATCGGTCCATGGACCTGATCGCGCCCCTGCTACATGAGTTTACG
TATCAGTCCATGGTGCACGATCTGCTTCCTATCAGCGATGGCGACAAGGT
CACGTATAAGACCGTCATCAACGAGGGAAGCCACAACGAGGAGCTCAAGG
ATATGGAGATCAACGAAGAAGACAACGTGTGGGTGGAGTATCGCCACATG
CATATGAAGGACGTGCTCGGCAAGCTGGGTGAAGACTTTGCCAAGTTCCG
AGCTGCGAACCCTCAGTTTGCGGAAGACAATAACAAAGCGAACGTGAACA
CTATCAAGGACATGCTGGCGGGTCTGACAGAGTTTCAAAAGGGAAGAGAT
GCTTATACACTGCATCTTAATATGGCGCAAGAGTGTATGAGTTACTTCCA
GAAACACAAGCTCCTCGAAGTAAGCTCGGTTGAACAATGCTTCGCCACTG
GCATGGACGAGAACTACAAGAAGGCAAAGAACCTGGCTTCCCAGCTCGTG
CAATTGCTAGACGACGATGCGATCAAGCAGCCAGAGAGACTGAGACTCTT
GCTACTCTATATTATTTACCGGGGAGGCATCCTCGCAGGTGACATCCGGA
AGCTTTTGGCACACGCGCAACTTGCACCGCAGGACGGTGAAATTGTGGCC
AATCTCGACCTACTTGGAGCCCGGGTGGAGAAGCCTTTGAAGGACGACAA
GCCACCCGTGCAGCCGCTGTTCACCAGGAAGCCACCGTCCGGGCCCATCG
ACGAAGAGGAAAGCCTCTCGCGCTACGACCTGAACCTCAAGTTGATCTTG
GAGGAGCTGGTGCGCGGCACGCTGGACCCCAGCGTCTTCCCATTCACGCG
GCCGCACACGGATACCGACACGCCAGGACAACAAGAGGGTCTCTCCCAGG
CGTCGCTGCGCAGTGCCAAACCGACGTGGGCCCGGACGCGGTCGACAGGC
GAGCAGCCGAAACAGCGGATCATCGTGTTCATGGCAGGTGGTGCTACATA
TGGAGAGGCACGTACATGCTACGAGATCTCGCAGACGTGCGGCAAGGACG
TGTTTCTGGCTACATCGCACATGCTGTCTCCCGGATTGTTCCTGCGCCAG
GTGGGCGATCTTAGTGTAGACCGACGCCGGCTGGACATCCCCGCCGAACG
GCCCAAGCCCACAGCGCCGGCGCATCTCTTCGAGCGGGAAGCTCCACCGG
CGCCGGCGCAGCCGGTGAAGAAGCCGGTCCCGGTTAATCTGAAGCCGATG
GCACCGACATCCGCGCTGGCGACGATGTCACTGGGGACGAACGGCAAAGC
GGCGAACGGAGCAGCGCCGCCGGAGAAGGAGAAGGACAAGAAGGAGAAGA
AAGAGAAGAAGGAAAAGAAGCACCGGTTCTTCCGGTAGATGAGCACCTCA
ATCCTCAACATCCAGCGTGATCTAATTTTGAACACGATCCGTTATGCGGC
GGGTAATGAGTGGAAGGTTTTGGTGGTGGACGAGACCAGTCGCAAGCTAA
TCGACAATGCTGTCAGTGAGGATGATATTCTCAACCTCAATGTCACCAAT
GTTGAACAGATCGAGCATCGGCGCTCCCCCAATCCTACGATGGATGCGCT
GTATATCCTCTCGCCCCTTCCACACATTGTCGACTGTATTATGGCGGATT
TTGAGAGGAAGAGATACCGGAAAGCGTGGTTGGTTTGGACATCATTTCTC
GATCCGGAGCAGCGCGCTAGATTGGACCGTTCCCAGCTGGCTCGCGACCA
GATTGCCAATGTTCAGATCATGAATGCCGACTACTTCCCCAGGGAATCGC
GCCTGATTACCTTTCGAGATCCGTGGAGCTTTCCGGTGTTGTTCCACCCT
GGTTGTAATCATCTGATCCGCGCGCACTTGGAGGGGTTGGCACAGAAGAT
TGTGTCGCTTTGTGCGAGCTTAGGAGAATACCCAGTGATCCGGTACTACC
GCCCCCGGGCCCCGACACACGAGGCCAGCGTACTGTGTTCACATTTGGCG
CGGTTCATCCAGAATGAGCTGGACCAGTTTGCGCAATTCCAGCGCGACTT
TCCGCCCCCGTCCCCCAGACCGCGCGGAGTGCTGTTGATCGTGGATCGGT
CCATGGACCTGATCGCGCCCCTGCTACATGAGTTTACGTATCAGTCCATG
GTGCACGATCTGCTTCCTATCAGCGATGGCGACAAGGTCACGTATAAGAC
CGTCATCAACGAGGGAAGCCACAACGAGGAGCTCAAGGATATGGAGATCA
ACGAAGAAGACAACGTGTGGGTGGAGTATCGCCACATGCATATGAAGGAC
GTGCTCGGCAAGCTGGGTGAAGACTTTGCCAAGTTCCGAGCTGCGAACCC
TCAGTTTGCGGAAGACAATAACAAAGCGAACGTGAACACTATCAAGGACA
TGCTGGCGGGTCTGACAGAGTTTCAAAAGGGAAGAGATGCTTATACACTG
CATCTTAATATGGCGCAAGAGTGTATGAGTTACTTCCAGAAACACAAGCT
CCTCGAAGTAAGCTCGGTTGAACAATGCTTCGCCACTGGCATGGACGAGA
ACTACAAGAAGGCAAAGAACCTGGCTTCCCAGCTCGTGCAATTGCTAGAC
GACGATGCGATCAAGCAGCCAGAGAGACTGAGACTCTTGCTACTCTATAT
TATTTACCGGGGAGGCATCCTCGCAGGTGACATCCGGAAGCTTTTGGCAC
ACGCGCAACTTGCACCGCAGGACGGTGAAATTGTGGCCAATCTCGACCTA
CTTGGAGCCCGGGTGGAGAAGCCTTTGAAGGACGACAAGCCACCCGTGCA
GCCGCTGTTCACCAGGAAGCCACCGTCCGGGCCCATCGACGAAGAGGAAA
GCCTCTCGCGCTACGACCTGAACCTCAAGTTGATCTTGGAGGAGCTGGTG
CGCGGCACGCTGGACCCCAGCGTCTTCCCATTCACGCGGCCGCACACGGA
TACCGACACGCCAGGACAACAAGAGGGTCTCTCCCAGGCGTCGCTGCGCA
GTGCCAAACCGACGTGGGCCCGGACGCGGTCGACAGGCGAGCAGCCGAAA
CAGCGGATCATCGTGTTCATGGCAGGTGGTGCTACATATGGAGAGGCACG
TACATGCTACGAGATCTCGCAGACGTGCGGCAAGGACGTGTTTCTGGCTA
CATCGCACATGCTGTCTCCCGGATTGTTCCTGCGCCAGGTGGGCGATCTT
AGTGTAGACCGACGCCGGCTGGACATCCCCGCCGAACGGCCCAAGCCCAC
AGCGCCGGCGCATCTCTTCGAGCGGGAAGCTCCACCGGCGCCGGCGCAGC
CGGTGAAGAAGCCGGTCCCGGTTAATCTGAAGCCGATGGCACCGACATCC
GCGCTGGCGACGATGTCACTGGGGACGAACGGCAAAGCGGCGAACGGAGC
AGCGCCGCCGGAGAAGGAGAAGGACAAGAAGGAGAAGAAAGAGAAGAAGG
AAAAGAAGCACCGGTTCTTCCGGTAGATGAGCACCTCAATCCTCAACATC
CAGCGTGATCTAATTTTGAACACGATCCGTTATGCGGCGGGTAATGAGTG
GAAGGTTTTGGTGGTGGACGAGACCAGTCGCAAGCTAATCGACAATGCTG
TCAGTGAGGATGATATTCTCAACCTCAATGTCACCAATGTTGAACAGATC
GAGCATCGGCGCTCCCCCAATCCTACGATGGATGCGCTGTATATCCTCTC
GCCCCTTCCACACATTGTCGACTGTATTATGGCGGATTTTGAGAGGAAGA
GATACCGGAAAGCGTGGTTGGTTTGGACATCATTTCTCGATCCGGAGCAG
CGCGCTAGATTGGACCGTTCCCAGCTGGCTCGCGACCAGATTGCCAATGT
TCAGATCATGAATGCCGACTACTTCCCCAGGGAATCGCGCCTGATTACCT
TTCGAGATCCGTGGAGCTTTCCGGTGTTGTTCCACCCTGGTTGTAATCAT
CTGATCCGCGCGCACTTGGAGGGGTTGGCACAGAAGATTGTGTCGCTTTG
TGCGAGCTTAGGAGAATACCCAGTGATCCGGTACTACCGCCCCCGGGCCC
CGACACACGAGGCCAGCGTACTGTGTTCACATTTGGCGCGGTTCATCCAG
AATGAGCTGGACCAGTTTGCGCAATTCCAGCGCGACTTTCCGCCCCCGTC
CCCCAGACCGCGCGGAGTGCTGTTGATCGTGGATCGGTCCATGGACCTGA
TCGCGCCCCTGCTACATGAGTTTACGTATCAGTCCATGGTGCACGATCTG
CTTCCTATCAGCGATGGCGACAAGGTCACGTATAAGACCGTCATCAACGA
GGGAAGCCACAACGAGGAGCTCAAGGATATGGAGATCAACGAAGAAGACA
ACGTGTGGGTGGAGTATCGCCACATGCATATGAAGGACGTGCTCGGCAAG
CTGGGTGAAGACTTTGCCAAGTTCCGAGCTGCGAACCCTCAGTTTGCGGA
AGACAATAACAAAGCGAACGTGAACACTATCAAGGACATGCTGGCGGGTC
TGACAGAGTTTCAAAAGGGAAGAGATGCTTATACACTGCATCTTAATATG
GCGCAAGAGTGTATGAGTTACTTCCAGAAACACAAGCTCCTCGAAGTAAG
CTCGGTTGAACAATGCTTCGCCACTGGCATGGACGAGAACTACAAGAAGG
CAAAGAACCTGGCTTCCCAGCTCGTGCAATTGCTAGACGACGATGCGATC
AAGCAGCCAGAGAGACTGAGACTCTTGCTACTCTATATTATTTACCGGGG
AGGCATCCTCGCAGGTGACATCCGGAAGCTTTTGGCACACGCGCAACTTG
CACCGCAGGACGGTGAAATTGTGGCCAATCTCGACCTACTTGGAGCCCGG
GTGGAGAAGCCTTTGAAGGACGACAAGCCACCCGTGCAGCCGCTGTTCAC
CAGGAAGCCACCGTCCGGGCCCATCGACGAAGAGGAAAGCCTCTCGCGCT
ACGACCTGAACCTCAAGTTGATCTTGGAGGAGCTGGTGCGCGGCACGCTG
GACCCCAGCGTCTTCCCATTCACGCGGCCGCACACGGATACCGACACGCC
AGGACAACAAGAGGGTCTCTCCCAGGCGTCGCTGCGCAGTGCCAAACCGA
CGTGGGCCCGGACGCGGTCGACAGGCGAGCAGCCGAAACAGCGGATCATC
GTGTTCATGGCAGGTGGTGCTACATATGGAGAGGCACGTACATGCTACGA
GATCTCGCAGACGTGCGGCAAGGACGTGTTTCTGGCTACATCGCACATGC
TGTCTCCCGGATTGTTCCTGCGCCAGGTGGGCGATCTTAGTGTAGACCGA
CGCCGGCTGGACATCCCCGCCGAACGGCCCAAGCCCACAGCGCCGGCGCA
TCTCTTCGAGCGGGAAGCTCCACCGGCGCCGGCGCAGCCGGTGAAGAAGC
CGGTCCCGGTTAATCTGAAGCCGATGGCACCGACATCCGCGCTGGCGACG
ATGTCACTGGGGACGAACGGCAAAGCGGCGAACGGAGCAGCGCCGCCGGA
GAAGGAGAAGGACAAGAAGGAGAAGAAAGAGAAGAAGGAAAAGAAGCACC
GGTTCTTCCGGTAGATGAGCACCTCAATCCTCAACATCCAGCGTGATCTA
ATTTTGAACACGATCCGTTATGCGGCGGGTAATGAGTGGAAGGTTTTGGT
GGTGGACGAGACCAGTCGCAAGCTAATCGACAATGCTGTCAGTGAGGATG
ATATTCTCAACCTCAATGTCACCAATGTTGAACAGATCGAGCATCGGCGC
TCCCCCAATCCTACGATGGATGCGCTGTATATCCTCTCGCCCCTTCCACA
CATTGTCGACTGTATTATGGCGGATTTTGAGAGGAAGAGATACCGGAAAG
CGTGGTTGGTTTGGACATCATTTCTCGATCCGGAGCAGCGCGCTAGATTG
GACCGTTCCCAGCTGGCTCGCGACCAGATTGCCAATGTTCAGATCATGAA
TGCCGACTACTTCCCCAGGGAATCGCGCCTGATTACCTTTCGAGATCCGT
GGAGCTTTCCGGTGTTGTTCCACCCTGGTTGTAATCATCTGATCCGCGCG
CACTTGGAGGGGTTGGCACAGAAGATTGTGTCGCTTTGTGCGAGCTTAGG
AGAATACCCAGTGATCCGGTACTACCGCCCCCGGGCCCCGACACACGAGG
CCAGCGTACTGTGTTCACATTTGGCGCGGTTCATCCAGAATGAGCTGGAC
CAGTTTGCGCAATTCCAGCGCGACTTTCCGCCCCCGTCCCCCAGACCGCG
CGGAGTGCTGTTGATCGTGGATCGGTCCATGGACCTGATCGCGCCCCTGC
TACATGAGTTTACGTATCAGTCCATGGTGCACGATCTGCTTCCTATCAGC
GATGGCGACAAGGTCACGTATAAGACCGTCATCAACGAGGGAAGCCACAA
CGAGGAGCTCAAGGATATGGAGATCAACGAAGAAGACAACGTGTGGGTGG
AGTATCGCCACATGCATATGAAGGACGTGCTCGGCAAGCTGGGTGAAGAC
TTTGCCAAGTTCCGAGCTGCGAACCCTCAGTTTGCGGAAGACAATAACAA
AGCGAACGTGAACACTATCAAGGACATGCTGGCGGGTCTGACAGAGTTTC
AAAAGGGAAGAGATGCTTATACACTGCATCTTAATATGGCGCAAGAGTGT
ATGAGTTACTTCCAGAAACACAAGCTCCTCGAAGTAAGCTCGGTTGAACA
ATGCTTCGCCACTGGCATGGACGAGAACTACAAGAAGGCAAAGAACCTGG
CTTCCCAGCTCGTGCAATTGCTAGACGACGATGCGATCAAGCAGCCAGAG
AGACTGAGACTCTTGCTACTCTATATTATTTACCGGGGAGGCATCCTCGC
AGGTGACATCCGGAAGCTTTTGGCACACGCGCAACTTGCACCGCAGGACG
GTGAAATTGTGGCCAATCTCGACCTACTTGGAGCCCGGGTGGAGAAGCCT
TTGAAGGACGACAAGCCACCCGTGCAGCCGCTGTTCACCAGGAAGCCACC
GTCCGGGCCCATCGACGAAGAGGAAAGCCTCTCGCGCTACGACCTGAACC
TCAAGTTGATCTTGGAGGAGCTGGTGCGCGGCACGCTGGACCCCAGCGTC
TTCCCATTCACGCGGCCGCACACGGATACCGACACGCCAGGACAACAAGA
GGGTCTCTCCCAGGCGTCGCTGCGCAGTGCCAAACCGACGTGGGCCCGGA
CGCGGTCGACAGGCGAGCAGCCGAAACAGCGGATCATCGTGTTCATGGCA
GGTGGTGCTACATATGGAGAGGCACGTACATGCTACGAGATCTCGCAGAC
GTGCGGCAAGGACGTGTTTCTGGCTACATCGCACATGCTGTCTCCCGGAT
TGTTCCTGCGCCAGGTGGGCGATCTTAGTGTAGACCGACGCCGGCTGGAC
ATCCCCGCCGAACGGCCCAAGCCCACAGCGCCGGCGCATCTCTTCGAGCG
GGAAGCTCCACCGGCGCCGGCGCAGCCGGTGAAGAAGCCGGTCCCGGTTA
ATCTGAAGCCGATGGCACCGACATCCGCGCTGGCGACGATGTCACTGGGG
ACGAACGGCAAAGCGGCGAACGGAGCAGCGCCGCCGGAGAAGGAGAAGGA
CAAGAAGGAGAAGAAAGAGAAGAAGGAAAAGAAGCACCGGTTCTTCCGGT
AGATGAGCACCTCAATCCTCAACATCCAGCGTGATCTAATTTTGAACACG
ATCCGTTATGCGGCGGGTAATGAGTGGAAGGTTTTGGTGGTGGACGAGAC
CAGTCGCAAGCTAATCGACAATGCTGTCAGTGAGGATGATATTCTCAACC
TCAATGTCACCAATGTTGAACAGATCGAGCATCGGCGCTCCCCCAATCCT
ACGATGGATGCGCTGTATATCCTCTCGCCCCTTCCACACATTGTCGACTG
TATTATGGCGGATTTTGAGAGGAAGAGATACCGGAAAGCGTGGTTGGTTT
GGACATCATTTCTCGATCCGGAGCAGCGCGCTAGATTGGACCGTTCCCAG
CTGGCTCGCGACCAGATTGCCAATGTTCAGATCATGAATGCCGACTACTT
CCCCAGGGAATCGCGCCTGATTACCTTTCGAGATCCGTGGAGCTTTCCGG
TGTTGTTCCACCCTGGTTGTAATCATCTGATCCGCGCGCACTTGGAGGGG
TTGGCACAGAAGATTGTGTCGCTTTGTGCGAGCTTAGGAGAATACCCAGT
GATCCGGTACTACCGCCCCCGGGCCCCGACACACGAGGCCAGCGTACTGT
GTTCACATTTGGCGCGGTTCATCCAGAATGAGCTGGACCAGTTTGCGCAA
TTCCAGCGCGACTTTCCGCCCCCGTCCCCCAGACCGCGCGGAGTGCTGTT
GATCGTGGATCGGTCCATGGACCTGATCGCGCCCCTGCTACATGAGTTTA
CGTATCAGTCCATGGTGCACGATCTGCTTCCTATCAGCGATGGCGACAAG
GTCACGTATAAGACCGTCATCAACGAGGGAAGCCACAACGAGGAGCTCAA
GGATATGGAGATCAACGAAGAAGACAACGTGTGGGTGGAGTATCGCCACA
TGCATATGAAGGACGTGCTCGGCAAGCTGGGTGAAGACTTTGCCAAGTTC
CGAGCTGCGAACCCTCAGTTTGCGGAAGACAATAACAAAGCGAACGTGAA
CACTATCAAGGACATGCTGGCGGGTCTGACAGAGTTTCAAAAGGGAAGAG
ATGCTTATACACTGCATCTTAATATGGCGCAAGAGTGTATGAGTTACTTC
CAGAAACACAAGCTCCTCGAAGTAAGCTCGGTTGAACAATGCTTCGCCAC
TGGCATGGACGAGAACTACAAGAAGGCAAAGAACCTGGCTTCCCAGCTCG
TGCAATTGCTAGACGACGATGCGATCAAGCAGCCAGAGAGACTGAGACTC
TTGCTACTCTATATTATTTACCGGGGAGGCATCCTCGCAGGTGACATCCG
GAAGCTTTTGGCACACGCGCAACTTGCACCGCAGGACGGTGAAATTGTGG
CCAATCTCGACCTACTTGGAGCCCGGGTGGAGAAGCCTTTGAAGGACGAC
AAGCCACCCGTGCAGCCGCTGTTCACCAGGAAGCCACCGTCCGGGCCCAT
CGACGAAGAGGAAAGCCTCTCGCGCTACGACCTGAACCTCAAGTTGATCT
TGGAGGAGCTGGTGCGCGGCACGCTGGACCCCAGCGTCTTCCCATTCACG
CGGCCGCACACGGATACCGACACGCCAGGACAACAAGAGGGTCTCTCCCA
GGCGTCGCTGCGCAGTGCCAAACCGACGTGGGCCCGGACGCGGTCGACAG
GCGAGCAGCCGAAACAGCGGATCATCGTGTTCATGGCAGGTGGTGCTACA
TATGGAGAGGCACGTACATGCTACGAGATCTCGCAGACGTGCGGCAAGGA
CGTGTTTCTGGCTACATCGCACATGCTGTCTCCCGGATTGTTCCTGCGCC
AGGTGGGCGATCTTAGTGTAGACCGACGCCGGCTGGACATCCCCGCCGAA
CGGCCCAAGCCCACAGCGCCGGCGCATCTCTTCGAGCGGGAAGCTCCACC
GGCGCCGGCGCAGCCGGTGAAGAAGCCGGTCCCGGTTAATCTGAAGCCGA
TGGCACCGACATCCGCGCTGGCGACGATGTCACTGGGGACGAACGGCAAA
GCGGCGAACGGAGCAGCGCCGCCGGAGAAGGAGAAGGACAAGAAGGAGAA
GAAAGAGAAGAAGGAAAAGAAGCACCGGTTCTTCCGGTAGATGAGCACCT
CAATCCTCAACATCCAGCGTGATCTAATTTTGAACACGATCCGTTATGCG
GCGGGTAATGAGTGGAAGGTTTTGGTGGTGGACGAGACCAGTCGCAAGCT
AATCGACAATGCTGTCAGTGAGGATGATATTCTCAACCTCAATGTCACCA
ATGTTGAACAGATCGAGCATCGGCGCTCCCCCAATCCTACGATGGATGCG
CTGTATATCCTCTCGCCCCTTCCACACATTGTCGACTGTATTATGGCGGA
TTTTGAGAGGAAGAGATACCGGAAAGCGTGGTTGGTTTGGACATCATTTC
TCGATCCGGAGCAGCGCGCTAGATTGGACCGTTCCCAGCTGGCTCGCGAC
CAGATTGCCAATGTTCAGATCATGAATGCCGACTACTTCCCCAGGGAATC
GCGCCTGATTACCTTTCGAGATCCGTGGAGCTTTCCGGTGTTGTTCCACC
CTGGTTGTAATCATCTGATCCGCGCGCACTTGGAGGGGTTGGCACAGAAG
ATTGTGTCGCTTTGTGCGAGCTTAGGAGAATACCCAGTGATCCGGTACTA
CCGCCCCCGGGCCCCGACACACGAGGCCAGCGTACTGTGTTCACATTTGG
CGCGGTTCATCCAGAATGAGCTGGACCAGTTTGCGCAATTCCAGCGCGAC
TTTCCGCCCCCGTCCCCCAGACCGCGCGGAGTGCTGTTGATCGTGGATCG
GTCCATGGACCTGATCGCGCCCCTGCTACATGAGTTTACGTATCAGTCCA
TGGTGCACGATCTGCTTCCTATCAGCGATGGCGACAAGGTCACGTATAAG
ACCGTCATCAACGAGGGAAGCCACAACGAGGAGCTCAAGGATATGGAGAT
CAACGAAGAAGACAACGTGTGGGTGGAGTATCGCCACATGCATATGAAGG
ACGTGCTCGGCAAGCTGGGTGAAGACTTTGCCAAGTTCCGAGCTGCGAAC
CCTCAGTTTGCGGAAGACAATAACAAAGCGAACGTGAACACTATCAAGGA
CATGCTGGCGGGTCTGACAGAGTTTCAAAAGGGAAGAGATGCTTATACAC
TGCATCTTAATATGGCGCAAGAGTGTATGAGTTACTTCCAGAAACACAAG
CTCCTCGAAGTAAGCTCGGTTGAACAATGCTTCGCCACTGGCATGGACGA
GAACTACAAGAAGGCAAAGAACCTGGCTTCCCAGCTCGTGCAATTGCTAG
ACGACGATGCGATCAAGCAGCCAGAGAGACTGAGACTCTTGCTACTCTAT
ATTATTTACCGGGGAGGCATCCTCGCAGGTGACATCCGGAAGCTTTTGGC
ACACGCGCAACTTGCACCGCAGGACGGTGAAATTGTGGCCAATCTCGACC
TACTTGGAGCCCGGGTGGAGAAGCCTTTGAAGGACGACAAGCCACCCGTG
CAGCCGCTGTTCACCAGGAAGCCACCGTCCGGGCCCATCGACGAAGAGGA
AAGCCTCTCGCGCTACGACCTGAACCTCAAGTTGATCTTGGAGGAGCTGG
TGCGCGGCACGCTGGACCCCAGCGTCTTCCCATTCACGCGGCCGCACACG
GATACCGACACGCCAGGACAACAAGAGGGTCTCTCCCAGGCGTCGCTGCG
CAGTGCCAAACCGACGTGGGCCCGGACGCGGTCGACAGGCGAGCAGCCGA
AACAGCGGATCATCGTGTTCATGGCAGGTGGTGCTACATATGGAGAGGCA
CGTACATGCTACGAGATCTCGCAGACGTGCGGCAAGGACGTGTTTCTGGC
TACATCGCACATGCTGTCTCCCGGATTGTTCCTGCGCCAGGTGGGCGATC
TTAGTGTAGACCGACGCCGGCTGGACATCCCCGCCGAACGGCCCAAGCCC
ACAGCGCCGGCGCATCTCTTCGAGCGGGAAGCTCCACCGGCGCCGGCGCA
GCCGGTGAAGAAGCCGGTCCCGGTTAATCTGAAGCCGATGGCACCGACAT
CCGCGCTGGCGACGATGTCACTGGGGACGAACGGCAAAGCGGCGAACGGA
GCAGCGCCGCCGGAGAAGGAGAAGGACAAGAAGGAGAAGAAAGAGAAGAA
GGAAAAGAAGCACCGGTTCTTCCGGTAGATGAGCACCTCAATCCTCAACA
TCCAGCGTGATCTAATTTTGAACACGATCCGTTATGCGGCGGGTAATGAG
TGGAAGGTTTTGGTGGTGGACGAGACCAGTCGCAAGCTAATCGACAATGC
TGTCAGTGAGGATGATATTCTCAACCTCAATGTCACCAATGTTGAACAGA
TCGAGCATCGGCGCTCCCCCAATCCTACGATGGATGCGCTGTATATCCTC
TCGCCCCTTCCACACATTGTCGACTGTATTATGGCGGATTTTGAGAGGAA
GAGATACCGGAAAGCGTGGTTGGTTTGGACATCATTTCTCGATCCGGAGC
AGCGCGCTAGATTGGACCGTTCCCAGCTGGCTCGCGACCAGATTGCCAAT
GTTCAGATCATGAATGCCGACTACTTCCCCAGGGAATCGCGCCTGATTAC
CTTTCGAGATCCGTGGAGCTTTCCGGTGTTGTTCCACCCTGGTTGTAATC
ATCTGATCCGCGCGCACTTGGAGGGGTTGGCACAGAAGATTGTGTCGCTT
TGTGCGAGCTTAGGAGAATACCCAGTGATCCGGTACTACCGCCCCCGGGC
CCCGACACACGAGGCCAGCGTACTGTGTTCACATTTGGCGCGGTTCATCC
AGAATGAGCTGGACCAGTTTGCGCAATTCCAGCGCGACTTTCCGCCCCCG
TCCCCCAGACCGCGCGGAGTGCTGTTGATCGTGGATCGGTCCATGGACCT
GATCGCGCCCCTGCTACATGAGTTTACGTATCAGTCCATGGTGCACGATC
TGCTTCCTATCAGCGATGGCGACAAGGTCACGTATAAGACCGTCATCAAC
GAGGGAAGCCACAACGAGGAGCTCAAGGATATGGAGATCAACGAAGAAGA
CAACGTGTGGGTGGAGTATCGCCACATGCATATGAAGGACGTGCTCGGCA
AGCTGGGTGAAGACTTTGCCAAGTTCCGAGCTGCGAACCCTCAGTTTGCG
GAAGACAATAACAAAGCGAACGTGAACACTATCAAGGACATGCTGGCGGG
TCTGACAGAGTTTCAAAAGGGAAGAGATGCTTATACACTGCATCTTAATA
TGGCGCAAGAGTGTATGAGTTACTTCCAGAAACACAAGCTCCTCGAAGTA
AGCTCGGTTGAACAATGCTTCGCCACTGGCATGGACGAGAACTACAAGAA
GGCAAAGAACCTGGCTTCCCAGCTCGTGCAATTGCTAGACGACGATGCGA
TCAAGCAGCCAGAGAGACTGAGACTCTTGCTACTCTATATTATTTACCGG
GGAGGCATCCTCGCAGGTGACATCCGGAAGCTTTTGGCACACGCGCAACT
TGCACCGCAGGACGGTGAAATTGTGGCCAATCTCGACCTACTTGGAGCCC
GGGTGGAGAAGCCTTTGAAGGACGACAAGCCACCCGTGCAGCCGCTGTTC
ACCAGGAAGCCACCGTCCGGGCCCATCGACGAAGAGGAAAGCCTCTCGCG
CTACGACCTGAACCTCAAGTTGATCTTGGAGGAGCTGGTGCGCGGCACGC
TGGACCCCAGCGTCTTCCCATTCACGCGGCCGCACACGGATACCGACACG
CCAGGACAACAAGAGGGTCTCTCCCAGGCGTCGCTGCGCAGTGCCAAACC
GACGTGGGCCCGGACGCGGTCGACAGGCGAGCAGCCGAAACAGCGGATCA
TCGTGTTCATGGCAGGTGGTGCTACATATGGAGAGGCACGTACATGCTAC
GAGATCTCGCAGACGTGCGGCAAGGACGTGTTTCTGGCTACATCGCACAT
GCTGTCTCCCGGATTGTTCCTGCGCCAGGTGGGCGATCTTAGTGTAGACC
GACGCCGGCTGGACATCCCCGCCGAACGGCCCAAGCCCACAGCGCCGGCG
CATCTCTTCGAGCGGGAAGCTCCACCGGCGCCGGCGCAGCCGGTGAAGAA
GCCGGTCCCGGTTAATCTGAAGCCGATGGCACCGACATCCGCGCTGGCGA
CGATGTCACTGGGGACGAACGGCAAAGCGGCGAACGGAGCAGCGCCGCCG
GAGAAGGAGAAGGACAAGAAGGAGAAGAAAGAGAAGAAGGAAAAGAAGCA
CCGGTTCTTCCGGTAG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0006904vesicle docking involved in exocytosis
GO:0016192vesicle-mediated transport
Relationships

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

Feature NameUnique NameSpeciesType
KYF_001030KYF_001030Aspergillus niger KYF3gene


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

Feature NameUnique NameSpeciesType
KYF_001030-T1KYF_001030-T1-proteinAspergillus niger KYF3polypeptide


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

Feature NameUnique NameSpeciesType
KYF_001030-T1.exon1KYF_001030-T1.exon1Aspergillus niger KYF3exon
KYF_001030-T1.exon2KYF_001030-T1.exon2Aspergillus niger KYF3exon
KYF_001030-T1.exon3KYF_001030-T1.exon3Aspergillus niger KYF3exon
KYF_001030-T1.exon4KYF_001030-T1.exon4Aspergillus niger KYF3exon
KYF_001030-T1.exon5KYF_001030-T1.exon5Aspergillus niger KYF3exon
KYF_001030-T1.exon6KYF_001030-T1.exon6Aspergillus niger KYF3exon
KYF_001030-T1.exon7KYF_001030-T1.exon7Aspergillus niger KYF3exon


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

Feature NameUnique NameSpeciesType
KYF_001030-T1.cdsKYF_001030-T1.cdsAspergillus niger KYF3CDS


Properties
Property NameValue
NoteBUSCO:EOG09261ZJR
DBxrefInterPro:IPR036045
DBxrefInterPro:IPR001619
DBxrefInterPro:IPR027482
DBxrefPFAM:PF00995
Producthypothetical protein
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Whole Genome Assembly and Annotation of Aspergillus Aspergillus niger KYF32020-10-09
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
ch1supercontigch1:2668607..2671053 +