|
Sequences
The following sequences are available for this feature:
mRNA from alignment at KZ851912.1:437296..439550+ Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below. >M747DRAFT_279123-T1 ID=M747DRAFT_279123-T1|Name=M747DRAFT_279123-T1|organism=Aspergillus niger ATCC 13496|type=mRNA|length=2255bp|location=Sequence derived from alignment at KZ851912.1:437296..439550+ (Aspergillus niger ATCC 13496) CATTCACTAAATAACTATCCCACTGGTGGCTTTCAATGACCGTCCGGATT
GTTATCTCACTATTCTTACTGCAACAATGCCCGCGTAAGTGAGCTCGGTG
ACCCCATTTCTCCTCTCCCCTCGTCAGTCTCCAGAGGTTAACCGCGTCTC
TAGTGTTGGCGACCAGCACCGAGGGAACCCAGCGTCCATCATGATGCCCA
ACTCCACAGGGGCGATCACCGCAAACCCATTCGAAGAGCCACAGCGACGG
ATCAACGAGTACACTGCCCAGGAAATCGCAACTTTGCAAGCTCGTCTCGA
TAAGAAGCTCGGCCCCGAATACATCTCTTCCAGGCCTGGGGCTGCGGGAC
AGAGAGTACACTACTTGTCGGCCGATAAATGCATCAACCTGGCAAACGAA
GTTTTCGGGTTCAATGGCTGGTCAAGCTCGATTCAGAATATTCAGATTGA
TTTCGTCGAGGAGAGTCCCAATACTGGGAAGATCAGCCTGGGTCTCTCTG
TTATTGTGAGGGTGACACTGAAAGACGGTACATATCACGAGGTAGGCATC
ACTCTATTGCAGCGAGCCTGCCCTATATCTCAGCTAAGACACGAGTGGTG
TTAGGATATCGGTTACGGTCACATCGAGAACTGTAAAGGAAAGGCTGCTG
CTTTTGAGAAAGCTAAGAAAGAGGGGACAACCGATGCTCTAAAGCGGGCT
CTGAGGAACTTCGGCAATGTCCTGGGCAACTGTGTCTACGATAAGGACTA
TGTGTCGAAGGTCACCAAAGTAAAGACCGTTCCGGTATGTGACCGAGGTG
TGGACAATCTATTCACGACGACTGACACGCTCTAGGCCAAATGGGATGTC
GACGAACTGCACCGTCACCCAGACTTTGTTCCCAGGAAAGAGCCCGTAAA
ACCAAAGCCCAGCCCGGAAGACGATGATCTACCACCTCGGCCAACGGATG
TTGGCAAGAACAGTAGTATCGACGATTCGATGGCATTTGATGGTGACGGG
GAGTTCGGAAGTAAGCAACAATGGCATGTCACGATCCCTTACAACCGCTA
ACCATCACCTTAGGTGACCTATTTGATGAAGCCGACTTCGGGGTAGGCGG
AACAGGCAACCCAGACGAGGTAGTACTAGGACCAGAAACACAGAAGCAGC
CACCGACGCCTCTAAATGGACCCAATGTACCTCTACAGCCATTCAATAAT
AACGCCCGTGCACCGATGAGGCCCAACCCAGCCATGGTAACTCCATCCAA
GCCGGAACGGCCCTTCAACCCAGCTCCTGGTGCCAGACAAAATCCCGCTC
CTCAGCCCTTTAACAGCAGACTCAACCCCTCCGCAGCCCAAAATCAGCAA
GCACCTCAACGACAACCCATGGCCCCTCAAGGGCCCCAGCAAAACCTCCC
CAACAACCGAATGATCCCACCAGCACAAGCAGCAGCAGCCGCATCAACCA
CGGGTGGTGCCGTGCCCATCAAACGTGAATTCGGGGCATCGACCACCAAC
GAACCTCCCAGACCCCAAGACACACTGCCCGGCACGCCCTCCGCATCATT
CTTCTCAGCTCGCGCAGTCGACCTCCTCCGCGACAACCCTAACGGGATCC
CATCCGGAGCCCCAGTCTTCGACCCACACGCGGAGAGTCCCTCCATCCGC
AAGACCGCAGGCATCGACCACAACAAGAGTCTTCCTGTCTCCAGGCCCAT
GCTCGCCGGTGCCGGCGCCGCCTCCCCAGCAACCAATAACACCCGAGACT
TCGTCAACCCATCTCAAGATATGAATCGCAGGATCGGTGCCCCGGGCATG
AACAGTCCCATGAACAGACCCATGTCCACATCATCTTACCGGCCCTTGAC
ACGGCCAAATATCAATGCTCCGGGTGCAGCTGCGGCCGCCAATCGTGCAA
CTACCCCGGGTCTTGCACCGCAGAACGTGAACGGGAAACGACCCCCTCTG
TCTGATGTGACGAATGCCTCGAACCCGAGTGGCGGCAGCGGGCCTGCTCC
ACCAGGGGTCAGTGAGAATGACCCGAAACGACCCAAGGTAAACCCGGGTC
CTGCTGCTGCTGCGGCGGCGCCGCCGCAGCAGCAGCAGTGATGACCTGGT
GTTGAAATAGAATATCGTTTATGATAGGGTCTAGGTCTAGTCTCGGTATT
ATTCGGTGCGTTAAATATATCCATAGGGACGGCGTTCAAGGATGGAATGG
AATGGACACTGGCGGGATCGTATGGATGTTGTATCTTTTGATGAGATGGT
TGAGC back to topCoding sequence (CDS) from alignment at KZ851912.1:437296..439550+ >M747DRAFT_279123-T1 ID=M747DRAFT_279123-T1|Name=M747DRAFT_279123-T1|organism=Aspergillus niger ATCC 13496|type=CDS|length=8895bp|location=Sequence derived from alignment at KZ851912.1:437296..439550+ (Aspergillus niger ATCC 13496) ATGCCCGCTGTTGGCGACCAGCACCGAGGGAACCCAGCGTCCATCATGAT GCCCAACTCCACAGGGGCGATCACCGCAAACCCATTCGAAGAGCCACAGC GACGGATCAACGAGTACACTGCCCAGGAAATCGCAACTTTGCAAGCTCGT CTCGATAAGAAGCTCGGCCCCGAATACATCTCTTCCAGGCCTGGGGCTGC GGGACAGAGAGTACACTACTTGTCGGCCGATAAATGCATCAACCTGGCAA ACGAAGTTTTCGGGTTCAATGGCTGGTCAAGCTCGATTCAGAATATTCAG ATTGATTTCGTCGAGGAGAGTCCCAATACTGGGAAGATCAGCCTGGGTCT CTCTGTTATTGTGAGGGTGACACTGAAAGACGGTACATATCACGAGGATA TCGGTTACGGTCACATCGAGAACTGTAAAGGAAAGGCTGCTGCTTTTGAG AAAGCTAAGAAAGAGGGGACAACCGATGCTCTAAAGCGGGCTCTGAGGAA CTTCGGCAATGTCCTGGGCAACTGTGTCTACGATAAGGACTATGTGTCGA AGGTCACCAAAGTAAAGACCGTTCCGGCCAAATGGGATGTCGACGAACTG CACCGTCACCCAGACTTTGTTCCCAGGAAAGAGCCCGTAAAACCAAAGCC CAGCCCGGAAGACGATGATCTACCACCTCGGCCAACGGATGTTGGCAAGA ACAGTAGTATCGACGATTCGATGGCATTTGATGGTGACGGGGAGTTCGGA AGTGACCTATTTGATGAAGCCGACTTCGGGGTAGGCGGAACAGGCAACCC AGACGAGGTAGTACTAGGACCAGAAACACAGAAGCAGCCACCGACGCCTC TAAATGGACCCAATGTACCTCTACAGCCATTCAATAATAACGCCCGTGCA CCGATGAGGCCCAACCCAGCCATGGTAACTCCATCCAAGCCGGAACGGCC CTTCAACCCAGCTCCTGGTGCCAGACAAAATCCCGCTCCTCAGCCCTTTA ACAGCAGACTCAACCCCTCCGCAGCCCAAAATCAGCAAGCACCTCAACGA CAACCCATGGCCCCTCAAGGGCCCCAGCAAAACCTCCCCAACAACCGAAT GATCCCACCAGCACAAGCAGCAGCAGCCGCATCAACCACGGGTGGTGCCG TGCCCATCAAACGTGAATTCGGGGCATCGACCACCAACGAACCTCCCAGA CCCCAAGACACACTGCCCGGCACGCCCTCCGCATCATTCTTCTCAGCTCG CGCAGTCGACCTCCTCCGCGACAACCCTAACGGGATCCCATCCGGAGCCC CAGTCTTCGACCCACACGCGGAGAGTCCCTCCATCCGCAAGACCGCAGGC ATCGACCACAACAAGAGTCTTCCTGTCTCCAGGCCCATGCTCGCCGGTGC CGGCGCCGCCTCCCCAGCAACCAATAACACCCGAGACTTCGTCAACCCAT CTCAAGATATGAATCGCAGGATCGGTGCCCCGGGCATGAACAGTCCCATG AACAGACCCATGTCCACATCATCTTACCGGCCCTTGACACGGCCAAATAT CAATGCTCCGGGTGCAGCTGCGGCCGCCAATCGTGCAACTACCCCGGGTC TTGCACCGCAGAACGTGAACGGGAAACGACCCCCTCTGTCTGATGTGACG AATGCCTCGAACCCGAGTGGCGGCAGCGGGCCTGCTCCACCAGGGGTCAG TGAGAATGACCCGAAACGACCCAAGGTAAACCCGGGTCCTGCTGCTGCTG CGGCGGCGCCGCCGCAGCAGCAGCAGTGAATGCCCGCTGTTGGCGACCAG CACCGAGGGAACCCAGCGTCCATCATGATGCCCAACTCCACAGGGGCGAT CACCGCAAACCCATTCGAAGAGCCACAGCGACGGATCAACGAGTACACTG CCCAGGAAATCGCAACTTTGCAAGCTCGTCTCGATAAGAAGCTCGGCCCC GAATACATCTCTTCCAGGCCTGGGGCTGCGGGACAGAGAGTACACTACTT GTCGGCCGATAAATGCATCAACCTGGCAAACGAAGTTTTCGGGTTCAATG GCTGGTCAAGCTCGATTCAGAATATTCAGATTGATTTCGTCGAGGAGAGT CCCAATACTGGGAAGATCAGCCTGGGTCTCTCTGTTATTGTGAGGGTGAC ACTGAAAGACGGTACATATCACGAGGATATCGGTTACGGTCACATCGAGA ACTGTAAAGGAAAGGCTGCTGCTTTTGAGAAAGCTAAGAAAGAGGGGACA ACCGATGCTCTAAAGCGGGCTCTGAGGAACTTCGGCAATGTCCTGGGCAA CTGTGTCTACGATAAGGACTATGTGTCGAAGGTCACCAAAGTAAAGACCG TTCCGGCCAAATGGGATGTCGACGAACTGCACCGTCACCCAGACTTTGTT CCCAGGAAAGAGCCCGTAAAACCAAAGCCCAGCCCGGAAGACGATGATCT ACCACCTCGGCCAACGGATGTTGGCAAGAACAGTAGTATCGACGATTCGA TGGCATTTGATGGTGACGGGGAGTTCGGAAGTGACCTATTTGATGAAGCC GACTTCGGGGTAGGCGGAACAGGCAACCCAGACGAGGTAGTACTAGGACC AGAAACACAGAAGCAGCCACCGACGCCTCTAAATGGACCCAATGTACCTC TACAGCCATTCAATAATAACGCCCGTGCACCGATGAGGCCCAACCCAGCC ATGGTAACTCCATCCAAGCCGGAACGGCCCTTCAACCCAGCTCCTGGTGC CAGACAAAATCCCGCTCCTCAGCCCTTTAACAGCAGACTCAACCCCTCCG CAGCCCAAAATCAGCAAGCACCTCAACGACAACCCATGGCCCCTCAAGGG CCCCAGCAAAACCTCCCCAACAACCGAATGATCCCACCAGCACAAGCAGC AGCAGCCGCATCAACCACGGGTGGTGCCGTGCCCATCAAACGTGAATTCG GGGCATCGACCACCAACGAACCTCCCAGACCCCAAGACACACTGCCCGGC ACGCCCTCCGCATCATTCTTCTCAGCTCGCGCAGTCGACCTCCTCCGCGA CAACCCTAACGGGATCCCATCCGGAGCCCCAGTCTTCGACCCACACGCGG AGAGTCCCTCCATCCGCAAGACCGCAGGCATCGACCACAACAAGAGTCTT CCTGTCTCCAGGCCCATGCTCGCCGGTGCCGGCGCCGCCTCCCCAGCAAC CAATAACACCCGAGACTTCGTCAACCCATCTCAAGATATGAATCGCAGGA TCGGTGCCCCGGGCATGAACAGTCCCATGAACAGACCCATGTCCACATCA TCTTACCGGCCCTTGACACGGCCAAATATCAATGCTCCGGGTGCAGCTGC GGCCGCCAATCGTGCAACTACCCCGGGTCTTGCACCGCAGAACGTGAACG GGAAACGACCCCCTCTGTCTGATGTGACGAATGCCTCGAACCCGAGTGGC GGCAGCGGGCCTGCTCCACCAGGGGTCAGTGAGAATGACCCGAAACGACC CAAGGTAAACCCGGGTCCTGCTGCTGCTGCGGCGGCGCCGCCGCAGCAGC AGCAGTGAATGCCCGCTGTTGGCGACCAGCACCGAGGGAACCCAGCGTCC ATCATGATGCCCAACTCCACAGGGGCGATCACCGCAAACCCATTCGAAGA GCCACAGCGACGGATCAACGAGTACACTGCCCAGGAAATCGCAACTTTGC AAGCTCGTCTCGATAAGAAGCTCGGCCCCGAATACATCTCTTCCAGGCCT GGGGCTGCGGGACAGAGAGTACACTACTTGTCGGCCGATAAATGCATCAA CCTGGCAAACGAAGTTTTCGGGTTCAATGGCTGGTCAAGCTCGATTCAGA ATATTCAGATTGATTTCGTCGAGGAGAGTCCCAATACTGGGAAGATCAGC CTGGGTCTCTCTGTTATTGTGAGGGTGACACTGAAAGACGGTACATATCA CGAGGATATCGGTTACGGTCACATCGAGAACTGTAAAGGAAAGGCTGCTG CTTTTGAGAAAGCTAAGAAAGAGGGGACAACCGATGCTCTAAAGCGGGCT CTGAGGAACTTCGGCAATGTCCTGGGCAACTGTGTCTACGATAAGGACTA TGTGTCGAAGGTCACCAAAGTAAAGACCGTTCCGGCCAAATGGGATGTCG ACGAACTGCACCGTCACCCAGACTTTGTTCCCAGGAAAGAGCCCGTAAAA CCAAAGCCCAGCCCGGAAGACGATGATCTACCACCTCGGCCAACGGATGT TGGCAAGAACAGTAGTATCGACGATTCGATGGCATTTGATGGTGACGGGG AGTTCGGAAGTGACCTATTTGATGAAGCCGACTTCGGGGTAGGCGGAACA GGCAACCCAGACGAGGTAGTACTAGGACCAGAAACACAGAAGCAGCCACC GACGCCTCTAAATGGACCCAATGTACCTCTACAGCCATTCAATAATAACG CCCGTGCACCGATGAGGCCCAACCCAGCCATGGTAACTCCATCCAAGCCG GAACGGCCCTTCAACCCAGCTCCTGGTGCCAGACAAAATCCCGCTCCTCA GCCCTTTAACAGCAGACTCAACCCCTCCGCAGCCCAAAATCAGCAAGCAC CTCAACGACAACCCATGGCCCCTCAAGGGCCCCAGCAAAACCTCCCCAAC AACCGAATGATCCCACCAGCACAAGCAGCAGCAGCCGCATCAACCACGGG TGGTGCCGTGCCCATCAAACGTGAATTCGGGGCATCGACCACCAACGAAC CTCCCAGACCCCAAGACACACTGCCCGGCACGCCCTCCGCATCATTCTTC TCAGCTCGCGCAGTCGACCTCCTCCGCGACAACCCTAACGGGATCCCATC CGGAGCCCCAGTCTTCGACCCACACGCGGAGAGTCCCTCCATCCGCAAGA CCGCAGGCATCGACCACAACAAGAGTCTTCCTGTCTCCAGGCCCATGCTC GCCGGTGCCGGCGCCGCCTCCCCAGCAACCAATAACACCCGAGACTTCGT CAACCCATCTCAAGATATGAATCGCAGGATCGGTGCCCCGGGCATGAACA GTCCCATGAACAGACCCATGTCCACATCATCTTACCGGCCCTTGACACGG CCAAATATCAATGCTCCGGGTGCAGCTGCGGCCGCCAATCGTGCAACTAC CCCGGGTCTTGCACCGCAGAACGTGAACGGGAAACGACCCCCTCTGTCTG ATGTGACGAATGCCTCGAACCCGAGTGGCGGCAGCGGGCCTGCTCCACCA GGGGTCAGTGAGAATGACCCGAAACGACCCAAGGTAAACCCGGGTCCTGC TGCTGCTGCGGCGGCGCCGCCGCAGCAGCAGCAGTGAATGCCCGCTGTTG GCGACCAGCACCGAGGGAACCCAGCGTCCATCATGATGCCCAACTCCACA GGGGCGATCACCGCAAACCCATTCGAAGAGCCACAGCGACGGATCAACGA GTACACTGCCCAGGAAATCGCAACTTTGCAAGCTCGTCTCGATAAGAAGC TCGGCCCCGAATACATCTCTTCCAGGCCTGGGGCTGCGGGACAGAGAGTA CACTACTTGTCGGCCGATAAATGCATCAACCTGGCAAACGAAGTTTTCGG GTTCAATGGCTGGTCAAGCTCGATTCAGAATATTCAGATTGATTTCGTCG AGGAGAGTCCCAATACTGGGAAGATCAGCCTGGGTCTCTCTGTTATTGTG AGGGTGACACTGAAAGACGGTACATATCACGAGGATATCGGTTACGGTCA CATCGAGAACTGTAAAGGAAAGGCTGCTGCTTTTGAGAAAGCTAAGAAAG AGGGGACAACCGATGCTCTAAAGCGGGCTCTGAGGAACTTCGGCAATGTC CTGGGCAACTGTGTCTACGATAAGGACTATGTGTCGAAGGTCACCAAAGT AAAGACCGTTCCGGCCAAATGGGATGTCGACGAACTGCACCGTCACCCAG ACTTTGTTCCCAGGAAAGAGCCCGTAAAACCAAAGCCCAGCCCGGAAGAC GATGATCTACCACCTCGGCCAACGGATGTTGGCAAGAACAGTAGTATCGA CGATTCGATGGCATTTGATGGTGACGGGGAGTTCGGAAGTGACCTATTTG ATGAAGCCGACTTCGGGGTAGGCGGAACAGGCAACCCAGACGAGGTAGTA CTAGGACCAGAAACACAGAAGCAGCCACCGACGCCTCTAAATGGACCCAA TGTACCTCTACAGCCATTCAATAATAACGCCCGTGCACCGATGAGGCCCA ACCCAGCCATGGTAACTCCATCCAAGCCGGAACGGCCCTTCAACCCAGCT CCTGGTGCCAGACAAAATCCCGCTCCTCAGCCCTTTAACAGCAGACTCAA CCCCTCCGCAGCCCAAAATCAGCAAGCACCTCAACGACAACCCATGGCCC CTCAAGGGCCCCAGCAAAACCTCCCCAACAACCGAATGATCCCACCAGCA CAAGCAGCAGCAGCCGCATCAACCACGGGTGGTGCCGTGCCCATCAAACG TGAATTCGGGGCATCGACCACCAACGAACCTCCCAGACCCCAAGACACAC TGCCCGGCACGCCCTCCGCATCATTCTTCTCAGCTCGCGCAGTCGACCTC CTCCGCGACAACCCTAACGGGATCCCATCCGGAGCCCCAGTCTTCGACCC ACACGCGGAGAGTCCCTCCATCCGCAAGACCGCAGGCATCGACCACAACA AGAGTCTTCCTGTCTCCAGGCCCATGCTCGCCGGTGCCGGCGCCGCCTCC CCAGCAACCAATAACACCCGAGACTTCGTCAACCCATCTCAAGATATGAA TCGCAGGATCGGTGCCCCGGGCATGAACAGTCCCATGAACAGACCCATGT CCACATCATCTTACCGGCCCTTGACACGGCCAAATATCAATGCTCCGGGT GCAGCTGCGGCCGCCAATCGTGCAACTACCCCGGGTCTTGCACCGCAGAA CGTGAACGGGAAACGACCCCCTCTGTCTGATGTGACGAATGCCTCGAACC CGAGTGGCGGCAGCGGGCCTGCTCCACCAGGGGTCAGTGAGAATGACCCG AAACGACCCAAGGTAAACCCGGGTCCTGCTGCTGCTGCGGCGGCGCCGCC GCAGCAGCAGCAGTGAATGCCCGCTGTTGGCGACCAGCACCGAGGGAACC CAGCGTCCATCATGATGCCCAACTCCACAGGGGCGATCACCGCAAACCCA TTCGAAGAGCCACAGCGACGGATCAACGAGTACACTGCCCAGGAAATCGC AACTTTGCAAGCTCGTCTCGATAAGAAGCTCGGCCCCGAATACATCTCTT CCAGGCCTGGGGCTGCGGGACAGAGAGTACACTACTTGTCGGCCGATAAA TGCATCAACCTGGCAAACGAAGTTTTCGGGTTCAATGGCTGGTCAAGCTC GATTCAGAATATTCAGATTGATTTCGTCGAGGAGAGTCCCAATACTGGGA AGATCAGCCTGGGTCTCTCTGTTATTGTGAGGGTGACACTGAAAGACGGT ACATATCACGAGGATATCGGTTACGGTCACATCGAGAACTGTAAAGGAAA GGCTGCTGCTTTTGAGAAAGCTAAGAAAGAGGGGACAACCGATGCTCTAA AGCGGGCTCTGAGGAACTTCGGCAATGTCCTGGGCAACTGTGTCTACGAT AAGGACTATGTGTCGAAGGTCACCAAAGTAAAGACCGTTCCGGCCAAATG GGATGTCGACGAACTGCACCGTCACCCAGACTTTGTTCCCAGGAAAGAGC CCGTAAAACCAAAGCCCAGCCCGGAAGACGATGATCTACCACCTCGGCCA ACGGATGTTGGCAAGAACAGTAGTATCGACGATTCGATGGCATTTGATGG TGACGGGGAGTTCGGAAGTGACCTATTTGATGAAGCCGACTTCGGGGTAG GCGGAACAGGCAACCCAGACGAGGTAGTACTAGGACCAGAAACACAGAAG CAGCCACCGACGCCTCTAAATGGACCCAATGTACCTCTACAGCCATTCAA TAATAACGCCCGTGCACCGATGAGGCCCAACCCAGCCATGGTAACTCCAT CCAAGCCGGAACGGCCCTTCAACCCAGCTCCTGGTGCCAGACAAAATCCC GCTCCTCAGCCCTTTAACAGCAGACTCAACCCCTCCGCAGCCCAAAATCA GCAAGCACCTCAACGACAACCCATGGCCCCTCAAGGGCCCCAGCAAAACC TCCCCAACAACCGAATGATCCCACCAGCACAAGCAGCAGCAGCCGCATCA ACCACGGGTGGTGCCGTGCCCATCAAACGTGAATTCGGGGCATCGACCAC CAACGAACCTCCCAGACCCCAAGACACACTGCCCGGCACGCCCTCCGCAT CATTCTTCTCAGCTCGCGCAGTCGACCTCCTCCGCGACAACCCTAACGGG ATCCCATCCGGAGCCCCAGTCTTCGACCCACACGCGGAGAGTCCCTCCAT CCGCAAGACCGCAGGCATCGACCACAACAAGAGTCTTCCTGTCTCCAGGC CCATGCTCGCCGGTGCCGGCGCCGCCTCCCCAGCAACCAATAACACCCGA GACTTCGTCAACCCATCTCAAGATATGAATCGCAGGATCGGTGCCCCGGG CATGAACAGTCCCATGAACAGACCCATGTCCACATCATCTTACCGGCCCT TGACACGGCCAAATATCAATGCTCCGGGTGCAGCTGCGGCCGCCAATCGT GCAACTACCCCGGGTCTTGCACCGCAGAACGTGAACGGGAAACGACCCCC TCTGTCTGATGTGACGAATGCCTCGAACCCGAGTGGCGGCAGCGGGCCTG CTCCACCAGGGGTCAGTGAGAATGACCCGAAACGACCCAAGGTAAACCCG GGTCCTGCTGCTGCTGCGGCGGCGCCGCCGCAGCAGCAGCAGTGA back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Cellular Component
Term | Definition |
GO:0005634 | nucleus |
Vocabulary: Biological Process
Term | Definition |
GO:0045002 | double-strand break repair via single-strand annealing |
GO:0000724 | double-strand break repair via homologous recombination |
GO:0000730 | DNA recombinase assembly |
Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
Properties
Property Name | Value |
Note | BUSCO:EOG09261PJZ |
DBxref | InterPro:IPR041247 |
DBxref | InterPro:IPR042525 |
DBxref | InterPro:IPR004585 |
DBxref | PFAM:PF04098 |
Product | hypothetical protein |
Analyses
This mRNA is derived from or has results from the following analyses
Alignments
The following features are aligned
Aligned Feature | Feature Type | Alignment Location |
KZ851912.1 | supercontig | KZ851912.1:437296..439550 + |
|