You are here

ASPNIDRAFT_40489-T1, ASPNIDRAFT_40489-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_40489-T1
Unique NameASPNIDRAFT_40489-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000008.1:632507..634414+

Legend: polypeptideexonCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_40489-T1 ID=ASPNIDRAFT_40489-T1|Name=ASPNIDRAFT_40489-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=1908bp|location=Sequence derived from alignment at ACJE01000008.1:632507..634414+ (Aspergillus niger ATCC 1015)
ATGGCCTCTGAAAAGCCCCGTGTCTGTCTGGCCTACTCCGGTATGTTCTC GCCCGCCCCGACCCCGCATATTGCGGTCTTGATAAGGCTCGATGCACTAA CTTGACAATTACCACTTCAGGCGGTCTTGACACCAGCTGCATTCTGCGCT GGCTCATCGGTACATTTTTCTCCCCATTTCCGGTCGAATTCCGATCGGCT CGACTAACAATTGCTCACAGAGGAGGGTTACGATGTCGTCTGCTTCCTCG GTAATGTCGGCCAGGAGGAGGACTGGGCCGCTGTCGAGGCCAAGGCTCTC AAGATCGGTGCGAAGAAGATGATCATCGAGGACTTGCGCCGTGAATTCAT CACTGAGCTTTGCTTCCCCGCTATCCGTAAGACTGCTAGTCCGGCTACGT GCCCCGATCTGTCCGCTAATGTCTCATTTCAGAGTGCAATGCCATCTACG AGGGCCGCTACCTTCTCGGTACGTCATGACGCTCTGCTAACACGCCCGGG ACACCAATTGACCTCCTCTAGGTACCAGCTTGGCTCGCCCTGTGATTGCC CGCGCTCAGATGCGCGCTGCTCAGCGTGAAGGCTGCCAGTTCGTCTCCCA CGGTGCCACCGGCAAGGGTAACGACCAGGTCCGTTTCGAACTTGCCTTCT ACGCCATCCAGCCCTCCATCAAGGTCATTGCCCCCTGGCGTGACCCTAAG TTCTTCAAGCGTTTCGCTGGTCGCAACGATCTGCTTGACTACGCCGCCCA GACCGGCATCCCTGTTACTTCCACCAAGGTGAGTGGTGTCTATACACATT GCACGAACAAGGCTAATACAATATGATATAGGCCAAGCCCTGGTCCATGG GTTCGTCAAATTGCTCTTCCGCGCGTAATTTTTCTAAAGCATACTGATTA TTGGTATAGACGCCAACTCTGCCCACTGCAGTTACGAGGCCGGTAAGTGA ACCATTGGCAGTAAATTACCCTATCGTCTTACTGACAAGCCAATAGGTGT CCTGGAGGACCCCAACCACACTCCCCCCGCTGACATGTGGACCATGACCG CCGACCCTATGACCGCTCCCAACGAGCCCACCGACCTCACCATCCACTTC GAGCAGGGTGTTCCCACCAAGCTTGTCACTCCCGAGAAGGAGTACACCGA CCCCGTTGAGCTTTTCTACACCCTCAACAAGATCGGTTTCACCCACGGTG TTGGCCGTATCGACATTGTCGAGAACCGTTTCATTGGCCTGAAGAGCCGT GGCTGCTACGACTGTACGTGTTCTGCACTCCATACTGCACTCCCAGCTAG GCCGTTGCTAACATGTTGCAGCTCCCGCCATGACCATCCTCCGCGATGCC CACCTTGACCTCGAGGGTCTGGTCCTGGACGGCCAGGTCCGCGCTCTGCG TGACCAGTTCGTCACCCACAACTGGTCTATCCAGCTTTACAACGGATAGT ACGTGCTTCGCCAATCTTATTCTATAGACAGGTGTTCTAACCCGCCCACA GCTACTTCAGCCCCGAGCGTGAGTTCATCGAGAACAGTCTCAAGTTCTCC CAGCGCGTAAGTACCCGTAAACCCGAATTTAGCTGGCCCGCATCATCTAA CTAAGCTTAACAGCGCGTCAACGGTGAGGTCCGTCTCCGCTGCTACAAGG GCCACGTCTACATCCTCGGTCGCTCCTCCAGCACCGAGAAGCTCTACTCC GAGCAGGAGGCCTCCATGGACTCCCTGGACGACTTTGAGCCCACCGACAC CACCGGTTTCGTTGCCATCCAGACTATCCGGTACGTCCTACCCCAGTCTC TTTATACCAGGCTCGAGTGAAAGCATAAGCTAATATTTCCCGTCCAACAG TCTGAAGAAGTACGGTCTCCAGAAGGCCGAGGAGGGCGAGTCCCTCAGCC GTGCATGA
back to top

Coding sequence (CDS) from alignment at ACJE01000008.1:632507..634414+

>ASPNIDRAFT_40489-T1 ID=ASPNIDRAFT_40489-T1|Name=ASPNIDRAFT_40489-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=15048bp|location=Sequence derived from alignment at ACJE01000008.1:632507..634414+ (Aspergillus niger ATCC 1015)
ATGGCCTCTGAAAAGCCCCGTGTCTGTCTGGCCTACTCCGGCGGTCTTGA
CACCAGCTGCATTCTGCGCTGGCTCATCGAGGAGGGTTACGATGTCGTCT
GCTTCCTCGGTAATGTCGGCCAGGAGGAGGACTGGGCCGCTGTCGAGGCC
AAGGCTCTCAAGATCGGTGCGAAGAAGATGATCATCGAGGACTTGCGCCG
TGAATTCATCACTGAGCTTTGCTTCCCCGCTATCCAGTGCAATGCCATCT
ACGAGGGCCGCTACCTTCTCGGTACCAGCTTGGCTCGCCCTGTGATTGCC
CGCGCTCAGATGCGCGCTGCTCAGCGTGAAGGCTGCCAGTTCGTCTCCCA
CGGTGCCACCGGCAAGGGTAACGACCAGGTCCGTTTCGAACTTGCCTTCT
ACGCCATCCAGCCCTCCATCAAGGTCATTGCCCCCTGGCGTGACCCTAAG
TTCTTCAAGCGTTTCGCTGGTCGCAACGATCTGCTTGACTACGCCGCCCA
GACCGGCATCCCTGTTACTTCCACCAAGGCCAAGCCCTGGTCCATGGACG
CCAACTCTGCCCACTGCAGTTACGAGGCCGGTGTCCTGGAGGACCCCAAC
CACACTCCCCCCGCTGACATGTGGACCATGACCGCCGACCCTATGACCGC
TCCCAACGAGCCCACCGACCTCACCATCCACTTCGAGCAGGGTGTTCCCA
CCAAGCTTGTCACTCCCGAGAAGGAGTACACCGACCCCGTTGAGCTTTTC
TACACCCTCAACAAGATCGGTTTCACCCACGGTGTTGGCCGTATCGACAT
TGTCGAGAACCGTTTCATTGGCCTGAAGAGCCGTGGCTGCTACGACTCTC
CCGCCATGACCATCCTCCGCGATGCCCACCTTGACCTCGAGGGTCTGGTC
CTGGACGGCCAGGTCCGCGCTCTGCGTGACCAGTTCGTCACCCACAACTG
GTCTATCCAGCTTTACAACGGATACTACTTCAGCCCCGAGCGTGAGTTCA
TCGAGAACAGTCTCAAGTTCTCCCAGCGCCGCGTCAACGGTGAGGTCCGT
CTCCGCTGCTACAAGGGCCACGTCTACATCCTCGGTCGCTCCTCCAGCAC
CGAGAAGCTCTACTCCGAGCAGGAGGCCTCCATGGACTCCCTGGACGACT
TTGAGCCCACCGACACCACCGGTTTCGTTGCCATCCAGACTATCCGTCTG
AAGAAGTACGGTCTCCAGAAGGCCGAGGAGGGCGAGTCCCTCAGCCGTGC
ATGAATGGCCTCTGAAAAGCCCCGTGTCTGTCTGGCCTACTCCGGCGGTC
TTGACACCAGCTGCATTCTGCGCTGGCTCATCGAGGAGGGTTACGATGTC
GTCTGCTTCCTCGGTAATGTCGGCCAGGAGGAGGACTGGGCCGCTGTCGA
GGCCAAGGCTCTCAAGATCGGTGCGAAGAAGATGATCATCGAGGACTTGC
GCCGTGAATTCATCACTGAGCTTTGCTTCCCCGCTATCCAGTGCAATGCC
ATCTACGAGGGCCGCTACCTTCTCGGTACCAGCTTGGCTCGCCCTGTGAT
TGCCCGCGCTCAGATGCGCGCTGCTCAGCGTGAAGGCTGCCAGTTCGTCT
CCCACGGTGCCACCGGCAAGGGTAACGACCAGGTCCGTTTCGAACTTGCC
TTCTACGCCATCCAGCCCTCCATCAAGGTCATTGCCCCCTGGCGTGACCC
TAAGTTCTTCAAGCGTTTCGCTGGTCGCAACGATCTGCTTGACTACGCCG
CCCAGACCGGCATCCCTGTTACTTCCACCAAGGCCAAGCCCTGGTCCATG
GACGCCAACTCTGCCCACTGCAGTTACGAGGCCGGTGTCCTGGAGGACCC
CAACCACACTCCCCCCGCTGACATGTGGACCATGACCGCCGACCCTATGA
CCGCTCCCAACGAGCCCACCGACCTCACCATCCACTTCGAGCAGGGTGTT
CCCACCAAGCTTGTCACTCCCGAGAAGGAGTACACCGACCCCGTTGAGCT
TTTCTACACCCTCAACAAGATCGGTTTCACCCACGGTGTTGGCCGTATCG
ACATTGTCGAGAACCGTTTCATTGGCCTGAAGAGCCGTGGCTGCTACGAC
TCTCCCGCCATGACCATCCTCCGCGATGCCCACCTTGACCTCGAGGGTCT
GGTCCTGGACGGCCAGGTCCGCGCTCTGCGTGACCAGTTCGTCACCCACA
ACTGGTCTATCCAGCTTTACAACGGATACTACTTCAGCCCCGAGCGTGAG
TTCATCGAGAACAGTCTCAAGTTCTCCCAGCGCCGCGTCAACGGTGAGGT
CCGTCTCCGCTGCTACAAGGGCCACGTCTACATCCTCGGTCGCTCCTCCA
GCACCGAGAAGCTCTACTCCGAGCAGGAGGCCTCCATGGACTCCCTGGAC
GACTTTGAGCCCACCGACACCACCGGTTTCGTTGCCATCCAGACTATCCG
TCTGAAGAAGTACGGTCTCCAGAAGGCCGAGGAGGGCGAGTCCCTCAGCC
GTGCATGAATGGCCTCTGAAAAGCCCCGTGTCTGTCTGGCCTACTCCGGC
GGTCTTGACACCAGCTGCATTCTGCGCTGGCTCATCGAGGAGGGTTACGA
TGTCGTCTGCTTCCTCGGTAATGTCGGCCAGGAGGAGGACTGGGCCGCTG
TCGAGGCCAAGGCTCTCAAGATCGGTGCGAAGAAGATGATCATCGAGGAC
TTGCGCCGTGAATTCATCACTGAGCTTTGCTTCCCCGCTATCCAGTGCAA
TGCCATCTACGAGGGCCGCTACCTTCTCGGTACCAGCTTGGCTCGCCCTG
TGATTGCCCGCGCTCAGATGCGCGCTGCTCAGCGTGAAGGCTGCCAGTTC
GTCTCCCACGGTGCCACCGGCAAGGGTAACGACCAGGTCCGTTTCGAACT
TGCCTTCTACGCCATCCAGCCCTCCATCAAGGTCATTGCCCCCTGGCGTG
ACCCTAAGTTCTTCAAGCGTTTCGCTGGTCGCAACGATCTGCTTGACTAC
GCCGCCCAGACCGGCATCCCTGTTACTTCCACCAAGGCCAAGCCCTGGTC
CATGGACGCCAACTCTGCCCACTGCAGTTACGAGGCCGGTGTCCTGGAGG
ACCCCAACCACACTCCCCCCGCTGACATGTGGACCATGACCGCCGACCCT
ATGACCGCTCCCAACGAGCCCACCGACCTCACCATCCACTTCGAGCAGGG
TGTTCCCACCAAGCTTGTCACTCCCGAGAAGGAGTACACCGACCCCGTTG
AGCTTTTCTACACCCTCAACAAGATCGGTTTCACCCACGGTGTTGGCCGT
ATCGACATTGTCGAGAACCGTTTCATTGGCCTGAAGAGCCGTGGCTGCTA
CGACTCTCCCGCCATGACCATCCTCCGCGATGCCCACCTTGACCTCGAGG
GTCTGGTCCTGGACGGCCAGGTCCGCGCTCTGCGTGACCAGTTCGTCACC
CACAACTGGTCTATCCAGCTTTACAACGGATACTACTTCAGCCCCGAGCG
TGAGTTCATCGAGAACAGTCTCAAGTTCTCCCAGCGCCGCGTCAACGGTG
AGGTCCGTCTCCGCTGCTACAAGGGCCACGTCTACATCCTCGGTCGCTCC
TCCAGCACCGAGAAGCTCTACTCCGAGCAGGAGGCCTCCATGGACTCCCT
GGACGACTTTGAGCCCACCGACACCACCGGTTTCGTTGCCATCCAGACTA
TCCGTCTGAAGAAGTACGGTCTCCAGAAGGCCGAGGAGGGCGAGTCCCTC
AGCCGTGCATGAATGGCCTCTGAAAAGCCCCGTGTCTGTCTGGCCTACTC
CGGCGGTCTTGACACCAGCTGCATTCTGCGCTGGCTCATCGAGGAGGGTT
ACGATGTCGTCTGCTTCCTCGGTAATGTCGGCCAGGAGGAGGACTGGGCC
GCTGTCGAGGCCAAGGCTCTCAAGATCGGTGCGAAGAAGATGATCATCGA
GGACTTGCGCCGTGAATTCATCACTGAGCTTTGCTTCCCCGCTATCCAGT
GCAATGCCATCTACGAGGGCCGCTACCTTCTCGGTACCAGCTTGGCTCGC
CCTGTGATTGCCCGCGCTCAGATGCGCGCTGCTCAGCGTGAAGGCTGCCA
GTTCGTCTCCCACGGTGCCACCGGCAAGGGTAACGACCAGGTCCGTTTCG
AACTTGCCTTCTACGCCATCCAGCCCTCCATCAAGGTCATTGCCCCCTGG
CGTGACCCTAAGTTCTTCAAGCGTTTCGCTGGTCGCAACGATCTGCTTGA
CTACGCCGCCCAGACCGGCATCCCTGTTACTTCCACCAAGGCCAAGCCCT
GGTCCATGGACGCCAACTCTGCCCACTGCAGTTACGAGGCCGGTGTCCTG
GAGGACCCCAACCACACTCCCCCCGCTGACATGTGGACCATGACCGCCGA
CCCTATGACCGCTCCCAACGAGCCCACCGACCTCACCATCCACTTCGAGC
AGGGTGTTCCCACCAAGCTTGTCACTCCCGAGAAGGAGTACACCGACCCC
GTTGAGCTTTTCTACACCCTCAACAAGATCGGTTTCACCCACGGTGTTGG
CCGTATCGACATTGTCGAGAACCGTTTCATTGGCCTGAAGAGCCGTGGCT
GCTACGACTCTCCCGCCATGACCATCCTCCGCGATGCCCACCTTGACCTC
GAGGGTCTGGTCCTGGACGGCCAGGTCCGCGCTCTGCGTGACCAGTTCGT
CACCCACAACTGGTCTATCCAGCTTTACAACGGATACTACTTCAGCCCCG
AGCGTGAGTTCATCGAGAACAGTCTCAAGTTCTCCCAGCGCCGCGTCAAC
GGTGAGGTCCGTCTCCGCTGCTACAAGGGCCACGTCTACATCCTCGGTCG
CTCCTCCAGCACCGAGAAGCTCTACTCCGAGCAGGAGGCCTCCATGGACT
CCCTGGACGACTTTGAGCCCACCGACACCACCGGTTTCGTTGCCATCCAG
ACTATCCGTCTGAAGAAGTACGGTCTCCAGAAGGCCGAGGAGGGCGAGTC
CCTCAGCCGTGCATGAATGGCCTCTGAAAAGCCCCGTGTCTGTCTGGCCT
ACTCCGGCGGTCTTGACACCAGCTGCATTCTGCGCTGGCTCATCGAGGAG
GGTTACGATGTCGTCTGCTTCCTCGGTAATGTCGGCCAGGAGGAGGACTG
GGCCGCTGTCGAGGCCAAGGCTCTCAAGATCGGTGCGAAGAAGATGATCA
TCGAGGACTTGCGCCGTGAATTCATCACTGAGCTTTGCTTCCCCGCTATC
CAGTGCAATGCCATCTACGAGGGCCGCTACCTTCTCGGTACCAGCTTGGC
TCGCCCTGTGATTGCCCGCGCTCAGATGCGCGCTGCTCAGCGTGAAGGCT
GCCAGTTCGTCTCCCACGGTGCCACCGGCAAGGGTAACGACCAGGTCCGT
TTCGAACTTGCCTTCTACGCCATCCAGCCCTCCATCAAGGTCATTGCCCC
CTGGCGTGACCCTAAGTTCTTCAAGCGTTTCGCTGGTCGCAACGATCTGC
TTGACTACGCCGCCCAGACCGGCATCCCTGTTACTTCCACCAAGGCCAAG
CCCTGGTCCATGGACGCCAACTCTGCCCACTGCAGTTACGAGGCCGGTGT
CCTGGAGGACCCCAACCACACTCCCCCCGCTGACATGTGGACCATGACCG
CCGACCCTATGACCGCTCCCAACGAGCCCACCGACCTCACCATCCACTTC
GAGCAGGGTGTTCCCACCAAGCTTGTCACTCCCGAGAAGGAGTACACCGA
CCCCGTTGAGCTTTTCTACACCCTCAACAAGATCGGTTTCACCCACGGTG
TTGGCCGTATCGACATTGTCGAGAACCGTTTCATTGGCCTGAAGAGCCGT
GGCTGCTACGACTCTCCCGCCATGACCATCCTCCGCGATGCCCACCTTGA
CCTCGAGGGTCTGGTCCTGGACGGCCAGGTCCGCGCTCTGCGTGACCAGT
TCGTCACCCACAACTGGTCTATCCAGCTTTACAACGGATACTACTTCAGC
CCCGAGCGTGAGTTCATCGAGAACAGTCTCAAGTTCTCCCAGCGCCGCGT
CAACGGTGAGGTCCGTCTCCGCTGCTACAAGGGCCACGTCTACATCCTCG
GTCGCTCCTCCAGCACCGAGAAGCTCTACTCCGAGCAGGAGGCCTCCATG
GACTCCCTGGACGACTTTGAGCCCACCGACACCACCGGTTTCGTTGCCAT
CCAGACTATCCGTCTGAAGAAGTACGGTCTCCAGAAGGCCGAGGAGGGCG
AGTCCCTCAGCCGTGCATGAATGGCCTCTGAAAAGCCCCGTGTCTGTCTG
GCCTACTCCGGCGGTCTTGACACCAGCTGCATTCTGCGCTGGCTCATCGA
GGAGGGTTACGATGTCGTCTGCTTCCTCGGTAATGTCGGCCAGGAGGAGG
ACTGGGCCGCTGTCGAGGCCAAGGCTCTCAAGATCGGTGCGAAGAAGATG
ATCATCGAGGACTTGCGCCGTGAATTCATCACTGAGCTTTGCTTCCCCGC
TATCCAGTGCAATGCCATCTACGAGGGCCGCTACCTTCTCGGTACCAGCT
TGGCTCGCCCTGTGATTGCCCGCGCTCAGATGCGCGCTGCTCAGCGTGAA
GGCTGCCAGTTCGTCTCCCACGGTGCCACCGGCAAGGGTAACGACCAGGT
CCGTTTCGAACTTGCCTTCTACGCCATCCAGCCCTCCATCAAGGTCATTG
CCCCCTGGCGTGACCCTAAGTTCTTCAAGCGTTTCGCTGGTCGCAACGAT
CTGCTTGACTACGCCGCCCAGACCGGCATCCCTGTTACTTCCACCAAGGC
CAAGCCCTGGTCCATGGACGCCAACTCTGCCCACTGCAGTTACGAGGCCG
GTGTCCTGGAGGACCCCAACCACACTCCCCCCGCTGACATGTGGACCATG
ACCGCCGACCCTATGACCGCTCCCAACGAGCCCACCGACCTCACCATCCA
CTTCGAGCAGGGTGTTCCCACCAAGCTTGTCACTCCCGAGAAGGAGTACA
CCGACCCCGTTGAGCTTTTCTACACCCTCAACAAGATCGGTTTCACCCAC
GGTGTTGGCCGTATCGACATTGTCGAGAACCGTTTCATTGGCCTGAAGAG
CCGTGGCTGCTACGACTCTCCCGCCATGACCATCCTCCGCGATGCCCACC
TTGACCTCGAGGGTCTGGTCCTGGACGGCCAGGTCCGCGCTCTGCGTGAC
CAGTTCGTCACCCACAACTGGTCTATCCAGCTTTACAACGGATACTACTT
CAGCCCCGAGCGTGAGTTCATCGAGAACAGTCTCAAGTTCTCCCAGCGCC
GCGTCAACGGTGAGGTCCGTCTCCGCTGCTACAAGGGCCACGTCTACATC
CTCGGTCGCTCCTCCAGCACCGAGAAGCTCTACTCCGAGCAGGAGGCCTC
CATGGACTCCCTGGACGACTTTGAGCCCACCGACACCACCGGTTTCGTTG
CCATCCAGACTATCCGTCTGAAGAAGTACGGTCTCCAGAAGGCCGAGGAG
GGCGAGTCCCTCAGCCGTGCATGAATGGCCTCTGAAAAGCCCCGTGTCTG
TCTGGCCTACTCCGGCGGTCTTGACACCAGCTGCATTCTGCGCTGGCTCA
TCGAGGAGGGTTACGATGTCGTCTGCTTCCTCGGTAATGTCGGCCAGGAG
GAGGACTGGGCCGCTGTCGAGGCCAAGGCTCTCAAGATCGGTGCGAAGAA
GATGATCATCGAGGACTTGCGCCGTGAATTCATCACTGAGCTTTGCTTCC
CCGCTATCCAGTGCAATGCCATCTACGAGGGCCGCTACCTTCTCGGTACC
AGCTTGGCTCGCCCTGTGATTGCCCGCGCTCAGATGCGCGCTGCTCAGCG
TGAAGGCTGCCAGTTCGTCTCCCACGGTGCCACCGGCAAGGGTAACGACC
AGGTCCGTTTCGAACTTGCCTTCTACGCCATCCAGCCCTCCATCAAGGTC
ATTGCCCCCTGGCGTGACCCTAAGTTCTTCAAGCGTTTCGCTGGTCGCAA
CGATCTGCTTGACTACGCCGCCCAGACCGGCATCCCTGTTACTTCCACCA
AGGCCAAGCCCTGGTCCATGGACGCCAACTCTGCCCACTGCAGTTACGAG
GCCGGTGTCCTGGAGGACCCCAACCACACTCCCCCCGCTGACATGTGGAC
CATGACCGCCGACCCTATGACCGCTCCCAACGAGCCCACCGACCTCACCA
TCCACTTCGAGCAGGGTGTTCCCACCAAGCTTGTCACTCCCGAGAAGGAG
TACACCGACCCCGTTGAGCTTTTCTACACCCTCAACAAGATCGGTTTCAC
CCACGGTGTTGGCCGTATCGACATTGTCGAGAACCGTTTCATTGGCCTGA
AGAGCCGTGGCTGCTACGACTCTCCCGCCATGACCATCCTCCGCGATGCC
CACCTTGACCTCGAGGGTCTGGTCCTGGACGGCCAGGTCCGCGCTCTGCG
TGACCAGTTCGTCACCCACAACTGGTCTATCCAGCTTTACAACGGATACT
ACTTCAGCCCCGAGCGTGAGTTCATCGAGAACAGTCTCAAGTTCTCCCAG
CGCCGCGTCAACGGTGAGGTCCGTCTCCGCTGCTACAAGGGCCACGTCTA
CATCCTCGGTCGCTCCTCCAGCACCGAGAAGCTCTACTCCGAGCAGGAGG
CCTCCATGGACTCCCTGGACGACTTTGAGCCCACCGACACCACCGGTTTC
GTTGCCATCCAGACTATCCGTCTGAAGAAGTACGGTCTCCAGAAGGCCGA
GGAGGGCGAGTCCCTCAGCCGTGCATGAATGGCCTCTGAAAAGCCCCGTG
TCTGTCTGGCCTACTCCGGCGGTCTTGACACCAGCTGCATTCTGCGCTGG
CTCATCGAGGAGGGTTACGATGTCGTCTGCTTCCTCGGTAATGTCGGCCA
GGAGGAGGACTGGGCCGCTGTCGAGGCCAAGGCTCTCAAGATCGGTGCGA
AGAAGATGATCATCGAGGACTTGCGCCGTGAATTCATCACTGAGCTTTGC
TTCCCCGCTATCCAGTGCAATGCCATCTACGAGGGCCGCTACCTTCTCGG
TACCAGCTTGGCTCGCCCTGTGATTGCCCGCGCTCAGATGCGCGCTGCTC
AGCGTGAAGGCTGCCAGTTCGTCTCCCACGGTGCCACCGGCAAGGGTAAC
GACCAGGTCCGTTTCGAACTTGCCTTCTACGCCATCCAGCCCTCCATCAA
GGTCATTGCCCCCTGGCGTGACCCTAAGTTCTTCAAGCGTTTCGCTGGTC
GCAACGATCTGCTTGACTACGCCGCCCAGACCGGCATCCCTGTTACTTCC
ACCAAGGCCAAGCCCTGGTCCATGGACGCCAACTCTGCCCACTGCAGTTA
CGAGGCCGGTGTCCTGGAGGACCCCAACCACACTCCCCCCGCTGACATGT
GGACCATGACCGCCGACCCTATGACCGCTCCCAACGAGCCCACCGACCTC
ACCATCCACTTCGAGCAGGGTGTTCCCACCAAGCTTGTCACTCCCGAGAA
GGAGTACACCGACCCCGTTGAGCTTTTCTACACCCTCAACAAGATCGGTT
TCACCCACGGTGTTGGCCGTATCGACATTGTCGAGAACCGTTTCATTGGC
CTGAAGAGCCGTGGCTGCTACGACTCTCCCGCCATGACCATCCTCCGCGA
TGCCCACCTTGACCTCGAGGGTCTGGTCCTGGACGGCCAGGTCCGCGCTC
TGCGTGACCAGTTCGTCACCCACAACTGGTCTATCCAGCTTTACAACGGA
TACTACTTCAGCCCCGAGCGTGAGTTCATCGAGAACAGTCTCAAGTTCTC
CCAGCGCCGCGTCAACGGTGAGGTCCGTCTCCGCTGCTACAAGGGCCACG
TCTACATCCTCGGTCGCTCCTCCAGCACCGAGAAGCTCTACTCCGAGCAG
GAGGCCTCCATGGACTCCCTGGACGACTTTGAGCCCACCGACACCACCGG
TTTCGTTGCCATCCAGACTATCCGTCTGAAGAAGTACGGTCTCCAGAAGG
CCGAGGAGGGCGAGTCCCTCAGCCGTGCATGAATGGCCTCTGAAAAGCCC
CGTGTCTGTCTGGCCTACTCCGGCGGTCTTGACACCAGCTGCATTCTGCG
CTGGCTCATCGAGGAGGGTTACGATGTCGTCTGCTTCCTCGGTAATGTCG
GCCAGGAGGAGGACTGGGCCGCTGTCGAGGCCAAGGCTCTCAAGATCGGT
GCGAAGAAGATGATCATCGAGGACTTGCGCCGTGAATTCATCACTGAGCT
TTGCTTCCCCGCTATCCAGTGCAATGCCATCTACGAGGGCCGCTACCTTC
TCGGTACCAGCTTGGCTCGCCCTGTGATTGCCCGCGCTCAGATGCGCGCT
GCTCAGCGTGAAGGCTGCCAGTTCGTCTCCCACGGTGCCACCGGCAAGGG
TAACGACCAGGTCCGTTTCGAACTTGCCTTCTACGCCATCCAGCCCTCCA
TCAAGGTCATTGCCCCCTGGCGTGACCCTAAGTTCTTCAAGCGTTTCGCT
GGTCGCAACGATCTGCTTGACTACGCCGCCCAGACCGGCATCCCTGTTAC
TTCCACCAAGGCCAAGCCCTGGTCCATGGACGCCAACTCTGCCCACTGCA
GTTACGAGGCCGGTGTCCTGGAGGACCCCAACCACACTCCCCCCGCTGAC
ATGTGGACCATGACCGCCGACCCTATGACCGCTCCCAACGAGCCCACCGA
CCTCACCATCCACTTCGAGCAGGGTGTTCCCACCAAGCTTGTCACTCCCG
AGAAGGAGTACACCGACCCCGTTGAGCTTTTCTACACCCTCAACAAGATC
GGTTTCACCCACGGTGTTGGCCGTATCGACATTGTCGAGAACCGTTTCAT
TGGCCTGAAGAGCCGTGGCTGCTACGACTCTCCCGCCATGACCATCCTCC
GCGATGCCCACCTTGACCTCGAGGGTCTGGTCCTGGACGGCCAGGTCCGC
GCTCTGCGTGACCAGTTCGTCACCCACAACTGGTCTATCCAGCTTTACAA
CGGATACTACTTCAGCCCCGAGCGTGAGTTCATCGAGAACAGTCTCAAGT
TCTCCCAGCGCCGCGTCAACGGTGAGGTCCGTCTCCGCTGCTACAAGGGC
CACGTCTACATCCTCGGTCGCTCCTCCAGCACCGAGAAGCTCTACTCCGA
GCAGGAGGCCTCCATGGACTCCCTGGACGACTTTGAGCCCACCGACACCA
CCGGTTTCGTTGCCATCCAGACTATCCGTCTGAAGAAGTACGGTCTCCAG
AAGGCCGAGGAGGGCGAGTCCCTCAGCCGTGCATGAATGGCCTCTGAAAA
GCCCCGTGTCTGTCTGGCCTACTCCGGCGGTCTTGACACCAGCTGCATTC
TGCGCTGGCTCATCGAGGAGGGTTACGATGTCGTCTGCTTCCTCGGTAAT
GTCGGCCAGGAGGAGGACTGGGCCGCTGTCGAGGCCAAGGCTCTCAAGAT
CGGTGCGAAGAAGATGATCATCGAGGACTTGCGCCGTGAATTCATCACTG
AGCTTTGCTTCCCCGCTATCCAGTGCAATGCCATCTACGAGGGCCGCTAC
CTTCTCGGTACCAGCTTGGCTCGCCCTGTGATTGCCCGCGCTCAGATGCG
CGCTGCTCAGCGTGAAGGCTGCCAGTTCGTCTCCCACGGTGCCACCGGCA
AGGGTAACGACCAGGTCCGTTTCGAACTTGCCTTCTACGCCATCCAGCCC
TCCATCAAGGTCATTGCCCCCTGGCGTGACCCTAAGTTCTTCAAGCGTTT
CGCTGGTCGCAACGATCTGCTTGACTACGCCGCCCAGACCGGCATCCCTG
TTACTTCCACCAAGGCCAAGCCCTGGTCCATGGACGCCAACTCTGCCCAC
TGCAGTTACGAGGCCGGTGTCCTGGAGGACCCCAACCACACTCCCCCCGC
TGACATGTGGACCATGACCGCCGACCCTATGACCGCTCCCAACGAGCCCA
CCGACCTCACCATCCACTTCGAGCAGGGTGTTCCCACCAAGCTTGTCACT
CCCGAGAAGGAGTACACCGACCCCGTTGAGCTTTTCTACACCCTCAACAA
GATCGGTTTCACCCACGGTGTTGGCCGTATCGACATTGTCGAGAACCGTT
TCATTGGCCTGAAGAGCCGTGGCTGCTACGACTCTCCCGCCATGACCATC
CTCCGCGATGCCCACCTTGACCTCGAGGGTCTGGTCCTGGACGGCCAGGT
CCGCGCTCTGCGTGACCAGTTCGTCACCCACAACTGGTCTATCCAGCTTT
ACAACGGATACTACTTCAGCCCCGAGCGTGAGTTCATCGAGAACAGTCTC
AAGTTCTCCCAGCGCCGCGTCAACGGTGAGGTCCGTCTCCGCTGCTACAA
GGGCCACGTCTACATCCTCGGTCGCTCCTCCAGCACCGAGAAGCTCTACT
CCGAGCAGGAGGCCTCCATGGACTCCCTGGACGACTTTGAGCCCACCGAC
ACCACCGGTTTCGTTGCCATCCAGACTATCCGTCTGAAGAAGTACGGTCT
CCAGAAGGCCGAGGAGGGCGAGTCCCTCAGCCGTGCATGAATGGCCTCTG
AAAAGCCCCGTGTCTGTCTGGCCTACTCCGGCGGTCTTGACACCAGCTGC
ATTCTGCGCTGGCTCATCGAGGAGGGTTACGATGTCGTCTGCTTCCTCGG
TAATGTCGGCCAGGAGGAGGACTGGGCCGCTGTCGAGGCCAAGGCTCTCA
AGATCGGTGCGAAGAAGATGATCATCGAGGACTTGCGCCGTGAATTCATC
ACTGAGCTTTGCTTCCCCGCTATCCAGTGCAATGCCATCTACGAGGGCCG
CTACCTTCTCGGTACCAGCTTGGCTCGCCCTGTGATTGCCCGCGCTCAGA
TGCGCGCTGCTCAGCGTGAAGGCTGCCAGTTCGTCTCCCACGGTGCCACC
GGCAAGGGTAACGACCAGGTCCGTTTCGAACTTGCCTTCTACGCCATCCA
GCCCTCCATCAAGGTCATTGCCCCCTGGCGTGACCCTAAGTTCTTCAAGC
GTTTCGCTGGTCGCAACGATCTGCTTGACTACGCCGCCCAGACCGGCATC
CCTGTTACTTCCACCAAGGCCAAGCCCTGGTCCATGGACGCCAACTCTGC
CCACTGCAGTTACGAGGCCGGTGTCCTGGAGGACCCCAACCACACTCCCC
CCGCTGACATGTGGACCATGACCGCCGACCCTATGACCGCTCCCAACGAG
CCCACCGACCTCACCATCCACTTCGAGCAGGGTGTTCCCACCAAGCTTGT
CACTCCCGAGAAGGAGTACACCGACCCCGTTGAGCTTTTCTACACCCTCA
ACAAGATCGGTTTCACCCACGGTGTTGGCCGTATCGACATTGTCGAGAAC
CGTTTCATTGGCCTGAAGAGCCGTGGCTGCTACGACTCTCCCGCCATGAC
CATCCTCCGCGATGCCCACCTTGACCTCGAGGGTCTGGTCCTGGACGGCC
AGGTCCGCGCTCTGCGTGACCAGTTCGTCACCCACAACTGGTCTATCCAG
CTTTACAACGGATACTACTTCAGCCCCGAGCGTGAGTTCATCGAGAACAG
TCTCAAGTTCTCCCAGCGCCGCGTCAACGGTGAGGTCCGTCTCCGCTGCT
ACAAGGGCCACGTCTACATCCTCGGTCGCTCCTCCAGCACCGAGAAGCTC
TACTCCGAGCAGGAGGCCTCCATGGACTCCCTGGACGACTTTGAGCCCAC
CGACACCACCGGTTTCGTTGCCATCCAGACTATCCGTCTGAAGAAGTACG
GTCTCCAGAAGGCCGAGGAGGGCGAGTCCCTCAGCCGTGCATGAATGGCC
TCTGAAAAGCCCCGTGTCTGTCTGGCCTACTCCGGCGGTCTTGACACCAG
CTGCATTCTGCGCTGGCTCATCGAGGAGGGTTACGATGTCGTCTGCTTCC
TCGGTAATGTCGGCCAGGAGGAGGACTGGGCCGCTGTCGAGGCCAAGGCT
CTCAAGATCGGTGCGAAGAAGATGATCATCGAGGACTTGCGCCGTGAATT
CATCACTGAGCTTTGCTTCCCCGCTATCCAGTGCAATGCCATCTACGAGG
GCCGCTACCTTCTCGGTACCAGCTTGGCTCGCCCTGTGATTGCCCGCGCT
CAGATGCGCGCTGCTCAGCGTGAAGGCTGCCAGTTCGTCTCCCACGGTGC
CACCGGCAAGGGTAACGACCAGGTCCGTTTCGAACTTGCCTTCTACGCCA
TCCAGCCCTCCATCAAGGTCATTGCCCCCTGGCGTGACCCTAAGTTCTTC
AAGCGTTTCGCTGGTCGCAACGATCTGCTTGACTACGCCGCCCAGACCGG
CATCCCTGTTACTTCCACCAAGGCCAAGCCCTGGTCCATGGACGCCAACT
CTGCCCACTGCAGTTACGAGGCCGGTGTCCTGGAGGACCCCAACCACACT
CCCCCCGCTGACATGTGGACCATGACCGCCGACCCTATGACCGCTCCCAA
CGAGCCCACCGACCTCACCATCCACTTCGAGCAGGGTGTTCCCACCAAGC
TTGTCACTCCCGAGAAGGAGTACACCGACCCCGTTGAGCTTTTCTACACC
CTCAACAAGATCGGTTTCACCCACGGTGTTGGCCGTATCGACATTGTCGA
GAACCGTTTCATTGGCCTGAAGAGCCGTGGCTGCTACGACTCTCCCGCCA
TGACCATCCTCCGCGATGCCCACCTTGACCTCGAGGGTCTGGTCCTGGAC
GGCCAGGTCCGCGCTCTGCGTGACCAGTTCGTCACCCACAACTGGTCTAT
CCAGCTTTACAACGGATACTACTTCAGCCCCGAGCGTGAGTTCATCGAGA
ACAGTCTCAAGTTCTCCCAGCGCCGCGTCAACGGTGAGGTCCGTCTCCGC
TGCTACAAGGGCCACGTCTACATCCTCGGTCGCTCCTCCAGCACCGAGAA
GCTCTACTCCGAGCAGGAGGCCTCCATGGACTCCCTGGACGACTTTGAGC
CCACCGACACCACCGGTTTCGTTGCCATCCAGACTATCCGTCTGAAGAAG
TACGGTCTCCAGAAGGCCGAGGAGGGCGAGTCCCTCAGCCGTGCATGA
back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0006526arginine biosynthetic process
Vocabulary: Molecular Function
TermDefinition
GO:0004055argininosuccinate synthase activity
GO:0005524ATP binding
Relationships

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

Feature NameUnique NameSpeciesType
ARG1ASPNIDRAFT_40489Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_40489-T1ASPNIDRAFT_40489-T1-proteinAspergillus niger ATCC 1015polypeptide


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_40489-T1.exon1ASPNIDRAFT_40489-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon2ASPNIDRAFT_40489-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon3ASPNIDRAFT_40489-T1.exon3Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon4ASPNIDRAFT_40489-T1.exon4Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon5ASPNIDRAFT_40489-T1.exon5Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon6ASPNIDRAFT_40489-T1.exon6Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon7ASPNIDRAFT_40489-T1.exon7Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon8ASPNIDRAFT_40489-T1.exon8Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon9ASPNIDRAFT_40489-T1.exon9Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon10ASPNIDRAFT_40489-T1.exon10Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon11ASPNIDRAFT_40489-T1.exon11Aspergillus niger ATCC 1015exon
ASPNIDRAFT_40489-T1.exon12ASPNIDRAFT_40489-T1.exon12Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_40489-T1.cdsASPNIDRAFT_40489-T1.cdsAspergillus niger ATCC 1015CDS


Properties
Property NameValue
NoteBUSCO:EOG09262A8G
DBxrefInterPro:IPR023434
DBxrefInterPro:IPR018223
DBxrefInterPro:IPR014729
DBxrefInterPro:IPR024074
DBxrefInterPro:IPR001518
DBxrefPFAM:PF00764
Productargininosuccinate synthetase
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
ACJE01000008.1supercontigACJE01000008.1:632507..634414 +