jgi.p|Nanoce1779_2|323847, mRNA_9963 (mRNA) Nannochloropsis oceanica

Overview
Namejgi.p|Nanoce1779_2|323847
Unique NamemRNA_9963
TypemRNA
OrganismNannochloropsis oceanica (N. oceanica CCMP1779)
Sequence length2507
Alignment locationscaffold_49:34825..37795 -

Link to JBrowse

Properties
Property NameValue
TranscriptId323933
TrackFilteredModels2
ProteinId323847
Mutants
Expression
No biomaterial libraries express this feature.
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
scaffold_49supercontigscaffold_49:34825..37795 -
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Gene prediction for N. oceanica CCMP17792008-02-01
Annotated Terms
Homology
Relationships

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

Feature NameUnique NameSpeciesType
jgi.p|Nanoce1779_2|323847gene_9963Nannochloropsis oceanica (N. oceanica CCMP1779)gene


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

Feature NameUnique NameSpeciesType
jgi.p|Nanoce1779_2|323847mRNA_9963-proteinNannochloropsis oceanica (N. oceanica CCMP1779)polypeptide


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

Feature NameUnique NameSpeciesType
CDS_9963CDS_9963Nannochloropsis oceanica (N. oceanica CCMP1779)CDS


Sequences
The following sequences are available for this feature:

mRNA sequence

>mRNA_9963 ID=mRNA_9963|Name=jgi.p|Nanoce1779_2|323847|organism=Nannochloropsis oceanica|type=mRNA|length=2507bp
TTCCTTCCTTCCTTTCCCTCCTCGCAGAAAGTCTCCAAAGAACGCAACAT
TTGGATCTACCGTCATGACTGCTTCCAGCGCGGCCAGCCCCAGCTTCTGG
AAATGCTGAAGCGCAAGACCAGCAACGCCCACCATCCACATCACCCCTTC
AACCTTCAAAACACCATCTCGTCGTCTCTTTCCGGCGGAGGCGGGCAGGG
CGGGGGGGGGCGAGGAATCAAGGGAGAGGGGATACGCCTTGACGAGCACG
CCGTTAACATGACACTGGCAAAGCTTAAGCACAAGGGAGGAGGGGGGGCT
GGGGGACGAGGTCGACGTTCGCCTTCCCCTTCCTACTTTACTTCCCACCC
TAACCACCACGAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGT
ACCCTTACAGCCATCACCACAACCACGGCCCGGCTCCCTTCGGCCACTCC
CTCCCTCCCCCTCCCCTCACCCCATCCTTCCAGCACCACCCTGCGCGGCA
GTGCCAGCCCATGGATCTGCCTCCCTACCAAGAAGGGGGGGGGAGGGAGG
GAGGATTCGCCCCTCCAACATCTGCAGCTGCTGCTCTTCCCCGCAACGAC
AGCGGGGCCACCTTTTCCTCCACGTCCACCTCCGACGACTCTTCGTGCTC
AGTCGGCGCGCCTGCCTTCCCTCCGCCCCTTCTTCCAGCCGGAACTTCAC
CCTCCTCCCACCACCGGAATCAGCAGCAGCAGCAGCAGCAGCAGCAGCAG
CAGCAGCAGCAGCACTATTACCAGCAACAATATGCATGGCAAGAAGGAGG
AGCCATCCCGTCCTCTTCATCTCCTCCCTTCTCTCTGTCCCCCCTGGCAC
GTGCTTCTTCCTTGGAGTGGGGCAACAGCGGCGCCGCCTCCAACATCACT
ACCAGCAGCAGCAGGAGCAACAGCACGAGCTTTAAACACGGGCAGCATTA
CCACAATTATCAAGTACAACACCGACAGTGTCTCCAGGACCAGCTCCAGC
AGCAGCAGCAACAGTCTCACCACCCTTCTCTTCGCTCAATCATTGGAAGC
GAAGGAGGGCGTATGACTCTTATGGCCACTCTTTCCGACGCTGGTAGCGC
CAGGAGGAACCACACCACCAACCAAAGCAGCAGCAGCACCAGCAGTAGCA
GTGGCCACAATACCACTCGCGAGAACAGCATGGACGATTCCCTCTACAGT
GGTGAAGGGAAGGAAGAAGGGGGGGAGGGAGGGGGGAGAGGGATTACCAG
GCCACACCCTCCACGGCCTCTGTATTACGTGTCGGCGGAGGGCCAGGCCC
CCGGGTCGGAGGGAGAGGGAGGGAGCACCTCTCCCTCTCCCGCGACTTCG
TGTGCTGTAGGTGGAGTGGGCCCGCTGAGAATGTCCCCTCCTTCCGCCCT
TTGCTCGTGGAGTCGCTCGCTGCCCGAGGGAGGGAGGGAAGGAGGGAGGG
TGAAATTTGAAGGTGCACCAGGTCAGCCTCCGCAGTTGTTGTCCGCACTG
TTGTTGAGTCGTGAAAAGTCCTCAACAAAAACGGGAGGCATTCCTATTTC
TCCGCCTCCTTCCATCCCTACCTCCCTCGCACCCTCCTCTTCTCCGTCCT
CCTTTCCTGCCGGGACGCCTAACCACTGGGCACCAGGCACCAAGGTGATG
GCCTCCTCCTCCACCCCTGCCTCCCTCCCGTCCTCCTTCTCCTCTTCCTC
TATGCTGATGAGGAAACCCCACCAGCTGCACTTGCAGCATCAGATGCAGC
CTCAAACTCAGTTGCAGCAGGGAAGGAGGGAGCGAGGGAGGGTGGCAGAG
CTGCCTCATGCCTCAAGGATGACTCCACCAAGTCAACGGTTGTACAATCG
ACGCATGCCTTCCTCCTCCGAGGACGAGGAGGCGATGGAAGTAGGGGCCG
AAGGGGAGAGTGAGAGCAGTGTGGTTTCGAGCTTGTCGTCTGACGACGAT
TATGGCGGGGAGGACGAGGAGGAGGAGGAGGAACAAGAGCAGCAGCAGCA
GCAGCAGTTGCAGCAGCAGCAGAGGCGGCAACAGCTGCAGAGGCAGAAGC
AGCTGCTGCAGCAGGAAAGGCGACGTCGAGCGCAGCACCACTACCACCAC
CATCATCATCACCATCATCACACTCTCAAGACGGGAGGGGGCGTGGGCGG
AGGAAAATTGGGAGGGAAGGTGGGAGGAGCGGGAATGGTCTCGAAGCGCC
AGCAGCAGATTCAGCAGCAGCAACAGCAGATGGAGCTCCAACAGGAGTGG
CGCAAGCAGCAGCAGCTGCTGCAGCAGCAGGACGTGGGAGTAGACGAGGA
GGAGGCGGCGATGCAGATGAATGAGCGAGAAAGAAATAGAGATACATAGA
AAGACAAAGGAAGAGAGAGACAGAGCGACAGGGAGGTAAAGCGACAGAGA
GAACAACAAGAGACAGAGAGACAGAAAGAGACTATGGAAAGATAAGGCAG
ACTTTCCCTGTTTAATCTATGTTACGAGGGGGTGGGAGTGAGTATAAAGA
GTTAAAA
back to top

protein sequence of jgi.p|Nanoce1779_2|323847

>mRNA_9963-protein ID=mRNA_9963-protein|Name=jgi.p|Nanoce1779_2|323847|organism=Nannochloropsis oceanica|type=polypeptide|length=749bp
MLKRKTSNAHHPHHPFNLQNTISSSLSGGGGQGGGGRGIKGEGIRLDEHA
VNMTLAKLKHKGGGGAGGRGRRSPSPSYFTSHPNHHEQQQQQQQQQQQQY
PYSHHHNHGPAPFGHSLPPPPLTPSFQHHPARQCQPMDLPPYQEGGGREG
GFAPPTSAAAALPRNDSGATFSSTSTSDDSSCSVGAPAFPPPLLPAGTSP
SSHHRNQQQQQQQQQQQQQQHYYQQQYAWQEGGAIPSSSSPPFSLSPLAR
ASSLEWGNSGAASNITTSSSRSNSTSFKHGQHYHNYQVQHRQCLQDQLQQ
QQQQSHHPSLRSIIGSEGGRMTLMATLSDAGSARRNHTTNQSSSSTSSSS
GHNTTRENSMDDSLYSGEGKEEGGEGGGRGITRPHPPRPLYYVSAEGQAP
GSEGEGGSTSPSPATSCAVGGVGPLRMSPPSALCSWSRSLPEGGREGGRV
KFEGAPGQPPQLLSALLLSREKSSTKTGGIPISPPPSIPTSLAPSSSPSS
FPAGTPNHWAPGTKVMASSSTPASLPSSFSSSSMLMRKPHQLHLQHQMQP
QTQLQQGRRERGRVAELPHASRMTPPSQRLYNRRMPSSSEDEEAMEVGAE
GESESSVVSSLSSDDDYGGEDEEEEEEQEQQQQQQLQQQQRRQQLQRQKQ
LLQQERRRRAQHHYHHHHHHHHHTLKTGGGVGGGKLGGKVGGAGMVSKRQ
QQIQQQQQQMELQQEWRKQQQLLQQQDVGVDEEEAAMQMNERERNRDT*
back to top

mRNA from alignment at scaffold_49:34825..37795-

Legend: polypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_9963 ID=mRNA_9963|Name=jgi.p|Nanoce1779_2|323847|organism=Nannochloropsis oceanica|type=mRNA|length=2971bp|location=Sequence derived from alignment at scaffold_49:34825..37795- (Nannochloropsis oceanica)
TTCCTTCCTTCCTTTCCCTCCTCGCAGAAAGTCTCCAAAGAACGCAACAT TTGGATCTACCGTCATGACTGCTTCCAGCGCGGCCAGCCCCAGCTTCTGG AAATGCTGAAGCGCAAGACCAGCAACGCCCACCATCCACATCACCCCTTC AACCTTCAAAACACCATCTCGTCGTCTCTTTCCGGCGGAGGCGGGCAGGG CGGGGGGGGGCGAGGAATCAAGGGAGAGGGGATACGCCTTGACGAGCACG CCGTTAACATGACACTGGCAAAGCTTAAGCACAAGGGAGGAGGGGGGGCT GGGGGACGAGGTCGACGTTCGCCTTCCCCTTCCTACTTTACTTCCCACCC TAACCACCACGAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGT ACCCTTACAGCCATCACCACAACCACGGCCCGGCTCCCTTCGGCCACTCC CTCCCTCCCCCTCCCCTCACCCCATCCTTCCAGCACCACCCTGCGCGGCA GTGCCAGCCCATGGATCTGCCTCCCTACCAAGAAGGGGGGGGGAGGGAGG GAGGATTCGCCCCTCCAACATCTGCAGCTGCTGCTCTTCCCCGCAACGAC AGCGGGGCCACCTTTTCCTCCACGTCCACCTCCGACGACTCTTCGTGCTC AGTCGGCGCGCCTGCCTTCCCTCCGCCCCTTCTTCCAGCCGGAACTTCAC CCTCCTCCCACCACCGGAATCAGCAGCAGCAGCAGCAGCAGCAGCAGCAG CAGCAGCAGCAGCACTATTACCAGCAACAATATGCATGGCAAGAAGGAGG AGCCATCCCGTCCTCTTCATCTCCTCCCTTCTCTCTGTCCCCCCTGGCAC GTGCTTCTTCCTTGGAGTGGGGCAACAGCGGCGCCGCCTCCAACATCACT ACCAGCAGCAGCAGGAGCAACAGCACGAGCTTTAAACACGGGCAGCATTA CCACAATTATCAAGTACAACACCGACAGTGTCTCCAGGACCAGCTCCAGC AGCAGCAGCAACAGTCTCACCACCCTTCTCTTCGCTCAATCATTGGAAGC GAAGGAGGGCGTATGACTCTTATGGCCACTCTTTCCGACGCTGGTAGCGC CAGGAGGAACCACACCACCAACCAAAGCAGCAGCAGCACCAGCAGTAGCA GTGGCCACAATACCACTCGCGAGAACAGCATGGACGATTCCCTCTACAGT GGTGAAGGGAAGGAAGAAGGGGGGGAGGGAGGGGGGAGAGGGATTACCAG GCCACACCCTCCACGGCCTCTGTATTACGTGTCGGCGGAGGGCCAGGCCC CCGGGTCGGAGGGAGAGGGAGGGAGCACCTCTCCCTCTCCCGCGACTTCG TGTGCTGTAGGTGGAGTGGGCCCGCTGAGAATGTCCCCTCCTTCCGCCCT TTGCTCGTGGAGTCGCTCGCTGCCCGAGGGAGGGAGGGAAGGAGGGAGGG TGAAATTTGAAGGTGCACCAGGTCAGCCTCCGCAGTTGTTGTCCGCACTG TTGTTGAGTCGTGAAAAGTCCTCAACAAAAACGGGAGGCATTCCTATTTC TCCGCCTCCTTCCATCCCTACCTCCCTCGCACCCTCCTCTTCTCCGTCCT CCTTTCCTGCCGGGACGCCTAACCACTGGGCACCAGGCACCAAGGTGATG GCCTCCTCCTCCACCCCTGCCTCCCTCCCGTCCTCCTTCTCCTCTTCCTC TATGCTGATGAGGAAACCCCACCAGCTGCACTTGCAGCATCAGATGCAGC CTCAAACTCAGTTGCAGCAGGGAAGGAGGGAGCGAGGGAGGGTGGCAGAG CTGCCTCATGCCTCAAGGATGACTCCACCAAGTCAACGGTTGTACAATCG ACGCATGCCTTCCTCCTCCGAGGACGAGGAGGCGATGGAAGTAGGGGCCG AAGGGGAGAGTGAGAGCAGTGTGGTTTCGAGCTTGTCGTCTGACGACGAT TATGGCGGGGAGGACGAGGAGGAGGAGGAGGAACAAGAGCAGCAGCAGCA GCAGCAGTTGCAGCAGCAGCAGAGGCGGCAACAGCTGCAGAGGCAGAAGC AGCTGCTGCAGCAGGAAAGGCGACGTCGAGCGCAGCACCACTACCACCAC CATCATCATCACCATCATCACACTCTCAAGACGGGAGGGGGCGTGGGCGG AGGAAAATTGGGAGGGAAGGTGGGAGGAGCGGGAATGGTCTCGAAGCGCC AGCAGCAGATTCAGCAGCAGCAACAGCAGATGGAGCTCCAACAGGAGTGG CGCAAGCAGCAGCAGCTGCTGCAGCAGCAGGACGTGGGAGTAGACGAGGA GGAGGCGGCGATGCAGATGGCGAGTTTCAAACTGGGTCGATTTTGGGGGG GAGGGAGGGAGGGAGGGGGGGAAGGGAGGGCGGCGGTGGTCAAAACGGTG GAGGTGTGAAGAAGGGAAGGAGGGAAAAAAGAGAAAGACGATGGTCCAAG TACTGCAATTGACAAGAAAAGGGTGGAGGAAGTGTGCGTGTTTATAAACC TGGGAGAGAAAGGGGGGGAGAAGAGAGAAAGAGAACTGCATTGCCTGATG TGTGTGTGGGAGAATGAGCGAGAAAGAAATAGAGATACATAGAAAGACAA AGGAAGAGAGAGACAGAGCGACAGGGAGGTAAAGCGACAGAGAGAACAAC AAGAGACAGAGAGACAGAAAGAATGGGTGTACGTGTGTGTGTGTCTGTGT GTGTGTGTGTGTCTGTGAGTGTGTATGTGTGTGTGTGTTTGCATGTCTTC CAGCTTCTACATGTGTCTATCGTTAGTCTTTTTCCCTTGTCATATTTTCT CACCGACGACAGAAGCCTGCTTGACAGACTAACCAACCAATAACGACATT GTTATCAGCCACTGTTGTCAAGCAAAGGGCACGCACCAGAAACGACTATG GAAAGATAAGGCAGACTTTCCCTGTTTAATCTATGTTACGAGGGGGTGGG AGTGAGTATAAAGAGTTAAAA
back to top

Coding sequence (CDS) from alignment at scaffold_49:34825..37795-

>mRNA_9963 ID=mRNA_9963|Name=jgi.p|Nanoce1779_2|323847|organism=Nannochloropsis oceanica|type=CDS|length=4494bp|location=Sequence derived from alignment at scaffold_49:34825..37795- (Nannochloropsis oceanica)
AATGAGCGAGAAAGAAATAGAGATACATAGATGCTGAAGCGCAAGACCAG
CAACGCCCACCATCCACATCACCCCTTCAACCTTCAAAACACCATCTCGT
CGTCTCTTTCCGGCGGAGGCGGGCAGGGCGGGGGGGGGCGAGGAATCAAG
GGAGAGGGGATACGCCTTGACGAGCACGCCGTTAACATGACACTGGCAAA
GCTTAAGCACAAGGGAGGAGGGGGGGCTGGGGGACGAGGTCGACGTTCGC
CTTCCCCTTCCTACTTTACTTCCCACCCTAACCACCACGAGCAGCAGCAG
CAGCAGCAGCAGCAGCAGCAGCAGCAGTACCCTTACAGCCATCACCACAA
CCACGGCCCGGCTCCCTTCGGCCACTCCCTCCCTCCCCCTCCCCTCACCC
CATCCTTCCAGCACCACCCTGCGCGGCAGTGCCAGCCCATGGATCTGCCT
CCCTACCAAGAAGGGGGGGGGAGGGAGGGAGGATTCGCCCCTCCAACATC
TGCAGCTGCTGCTCTTCCCCGCAACGACAGCGGGGCCACCTTTTCCTCCA
CGTCCACCTCCGACGACTCTTCGTGCTCAGTCGGCGCGCCTGCCTTCCCT
CCGCCCCTTCTTCCAGCCGGAACTTCACCCTCCTCCCACCACCGGAATCA
GCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCACTATTACC
AGCAACAATATGCATGGCAAGAAGGAGGAGCCATCCCGTCCTCTTCATCT
CCTCCCTTCTCTCTGTCCCCCCTGGCACGTGCTTCTTCCTTGGAGTGGGG
CAACAGCGGCGCCGCCTCCAACATCACTACCAGCAGCAGCAGGAGCAACA
GCACGAGCTTTAAACACGGGCAGCATTACCACAATTATCAAGTACAACAC
CGACAGTGTCTCCAGGACCAGCTCCAGCAGCAGCAGCAACAGTCTCACCA
CCCTTCTCTTCGCTCAATCATTGGAAGCGAAGGAGGGCGTATGACTCTTA
TGGCCACTCTTTCCGACGCTGGTAGCGCCAGGAGGAACCACACCACCAAC
CAAAGCAGCAGCAGCACCAGCAGTAGCAGTGGCCACAATACCACTCGCGA
GAACAGCATGGACGATTCCCTCTACAGTGGTGAAGGGAAGGAAGAAGGGG
GGGAGGGAGGGGGGAGAGGGATTACCAGGCCACACCCTCCACGGCCTCTG
TATTACGTGTCGGCGGAGGGCCAGGCCCCCGGGTCGGAGGGAGAGGGAGG
GAGCACCTCTCCCTCTCCCGCGACTTCGTGTGCTGTAGGTGGAGTGGGCC
CGCTGAGAATGTCCCCTCCTTCCGCCCTTTGCTCGTGGAGTCGCTCGCTG
CCCGAGGGAGGGAGGGAAGGAGGGAGGGTGAAATTTGAAGGTGCACCAGG
TCAGCCTCCGCAGTTGTTGTCCGCACTGTTGTTGAGTCGTGAAAAGTCCT
CAACAAAAACGGGAGGCATTCCTATTTCTCCGCCTCCTTCCATCCCTACC
TCCCTCGCACCCTCCTCTTCTCCGTCCTCCTTTCCTGCCGGGACGCCTAA
CCACTGGGCACCAGGCACCAAGGTGATGGCCTCCTCCTCCACCCCTGCCT
CCCTCCCGTCCTCCTTCTCCTCTTCCTCTATGCTGATGAGGAAACCCCAC
CAGCTGCACTTGCAGCATCAGATGCAGCCTCAAACTCAGTTGCAGCAGGG
AAGGAGGGAGCGAGGGAGGGTGGCAGAGCTGCCTCATGCCTCAAGGATGA
CTCCACCAAGTCAACGGTTGTACAATCGACGCATGCCTTCCTCCTCCGAG
GACGAGGAGGCGATGGAAGTAGGGGCCGAAGGGGAGAGTGAGAGCAGTGT
GGTTTCGAGCTTGTCGTCTGACGACGATTATGGCGGGGAGGACGAGGAGG
AGGAGGAGGAACAAGAGCAGCAGCAGCAGCAGCAGTTGCAGCAGCAGCAG
AGGCGGCAACAGCTGCAGAGGCAGAAGCAGCTGCTGCAGCAGGAAAGGCG
ACGTCGAGCGCAGCACCACTACCACCACCATCATCATCACCATCATCACA
CTCTCAAGACGGGAGGGGGCGTGGGCGGAGGAAAATTGGGAGGGAAGGTG
GGAGGAGCGGGAATGGTCTCGAAGCGCCAGCAGCAGATTCAGCAGCAGCA
ACAGCAGATGGAGCTCCAACAGGAGTGGCGCAAGCAGCAGCAGCTGCTGC
AGCAGCAGGACGTGGGAGTAGACGAGGAGGAGGCGGCGATGCAGATGAAT
GAGCGAGAAAGAAATAGAGATACATAGATGCTGAAGCGCAAGACCAGCAA
CGCCCACCATCCACATCACCCCTTCAACCTTCAAAACACCATCTCGTCGT
CTCTTTCCGGCGGAGGCGGGCAGGGCGGGGGGGGGCGAGGAATCAAGGGA
GAGGGGATACGCCTTGACGAGCACGCCGTTAACATGACACTGGCAAAGCT
TAAGCACAAGGGAGGAGGGGGGGCTGGGGGACGAGGTCGACGTTCGCCTT
CCCCTTCCTACTTTACTTCCCACCCTAACCACCACGAGCAGCAGCAGCAG
CAGCAGCAGCAGCAGCAGCAGCAGTACCCTTACAGCCATCACCACAACCA
CGGCCCGGCTCCCTTCGGCCACTCCCTCCCTCCCCCTCCCCTCACCCCAT
CCTTCCAGCACCACCCTGCGCGGCAGTGCCAGCCCATGGATCTGCCTCCC
TACCAAGAAGGGGGGGGGAGGGAGGGAGGATTCGCCCCTCCAACATCTGC
AGCTGCTGCTCTTCCCCGCAACGACAGCGGGGCCACCTTTTCCTCCACGT
CCACCTCCGACGACTCTTCGTGCTCAGTCGGCGCGCCTGCCTTCCCTCCG
CCCCTTCTTCCAGCCGGAACTTCACCCTCCTCCCACCACCGGAATCAGCA
GCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCACTATTACCAGC
AACAATATGCATGGCAAGAAGGAGGAGCCATCCCGTCCTCTTCATCTCCT
CCCTTCTCTCTGTCCCCCCTGGCACGTGCTTCTTCCTTGGAGTGGGGCAA
CAGCGGCGCCGCCTCCAACATCACTACCAGCAGCAGCAGGAGCAACAGCA
CGAGCTTTAAACACGGGCAGCATTACCACAATTATCAAGTACAACACCGA
CAGTGTCTCCAGGACCAGCTCCAGCAGCAGCAGCAACAGTCTCACCACCC
TTCTCTTCGCTCAATCATTGGAAGCGAAGGAGGGCGTATGACTCTTATGG
CCACTCTTTCCGACGCTGGTAGCGCCAGGAGGAACCACACCACCAACCAA
AGCAGCAGCAGCACCAGCAGTAGCAGTGGCCACAATACCACTCGCGAGAA
CAGCATGGACGATTCCCTCTACAGTGGTGAAGGGAAGGAAGAAGGGGGGG
AGGGAGGGGGGAGAGGGATTACCAGGCCACACCCTCCACGGCCTCTGTAT
TACGTGTCGGCGGAGGGCCAGGCCCCCGGGTCGGAGGGAGAGGGAGGGAG
CACCTCTCCCTCTCCCGCGACTTCGTGTGCTGTAGGTGGAGTGGGCCCGC
TGAGAATGTCCCCTCCTTCCGCCCTTTGCTCGTGGAGTCGCTCGCTGCCC
GAGGGAGGGAGGGAAGGAGGGAGGGTGAAATTTGAAGGTGCACCAGGTCA
GCCTCCGCAGTTGTTGTCCGCACTGTTGTTGAGTCGTGAAAAGTCCTCAA
CAAAAACGGGAGGCATTCCTATTTCTCCGCCTCCTTCCATCCCTACCTCC
CTCGCACCCTCCTCTTCTCCGTCCTCCTTTCCTGCCGGGACGCCTAACCA
CTGGGCACCAGGCACCAAGGTGATGGCCTCCTCCTCCACCCCTGCCTCCC
TCCCGTCCTCCTTCTCCTCTTCCTCTATGCTGATGAGGAAACCCCACCAG
CTGCACTTGCAGCATCAGATGCAGCCTCAAACTCAGTTGCAGCAGGGAAG
GAGGGAGCGAGGGAGGGTGGCAGAGCTGCCTCATGCCTCAAGGATGACTC
CACCAAGTCAACGGTTGTACAATCGACGCATGCCTTCCTCCTCCGAGGAC
GAGGAGGCGATGGAAGTAGGGGCCGAAGGGGAGAGTGAGAGCAGTGTGGT
TTCGAGCTTGTCGTCTGACGACGATTATGGCGGGGAGGACGAGGAGGAGG
AGGAGGAACAAGAGCAGCAGCAGCAGCAGCAGTTGCAGCAGCAGCAGAGG
CGGCAACAGCTGCAGAGGCAGAAGCAGCTGCTGCAGCAGGAAAGGCGACG
TCGAGCGCAGCACCACTACCACCACCATCATCATCACCATCATCACACTC
TCAAGACGGGAGGGGGCGTGGGCGGAGGAAAATTGGGAGGGAAGGTGGGA
GGAGCGGGAATGGTCTCGAAGCGCCAGCAGCAGATTCAGCAGCAGCAACA
GCAGATGGAGCTCCAACAGGAGTGGCGCAAGCAGCAGCAGCTGCTGCAGC
AGCAGGACGTGGGAGTAGACGAGGAGGAGGCGGCGATGCAGATG
back to top
Synonyms
Publications