jgi.p|Nanoce1779_2|61186, mRNA_12212 (mRNA) Nannochloropsis oceanica

Overview
Namejgi.p|Nanoce1779_2|61186
Unique NamemRNA_12212
TypemRNA
OrganismNannochloropsis oceanica (N. oceanica CCMP1779)
Sequence length2238
Alignment locationscaffold_128:2741..5758 +

Link to JBrowse

Properties
Property NameValue
TranscriptId61272
TrackFilteredModels2
ProteinId61186
Mutants
Expression
No biomaterial libraries express this feature.
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
scaffold_128supercontigscaffold_128:2741..5758 +
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|61186gene_12212Nannochloropsis oceanica (N. oceanica CCMP1779)gene


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

Feature NameUnique NameSpeciesType
jgi.p|Nanoce1779_2|61186mRNA_12212-proteinNannochloropsis oceanica (N. oceanica CCMP1779)polypeptide


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

Feature NameUnique NameSpeciesType
CDS_12212CDS_12212Nannochloropsis oceanica (N. oceanica CCMP1779)CDS


Sequences
The following sequences are available for this feature:

mRNA sequence

>mRNA_12212 ID=mRNA_12212|Name=jgi.p|Nanoce1779_2|61186|organism=Nannochloropsis oceanica|type=mRNA|length=2238bp
CGTGGACGCCAGATGGCTCCTGCTCCTTCTATTGCAAGAACAGCTGCTCT
GCAATCTTTCTACCTCAGCGATCCCCTCATTTACCATGACGAGGAGGGGG
AAGACGAAGGTGGGACGGAGGAAGAGTTGGATGCTCCTCCCCCCTCAACC
AGCAGTCACAAGAAGCTGAAGAAGGGGCAGCAGCAGCAGACGCAGCAGGA
GAAGGAGGAGGAGGAGGGCTTTGGGGCGAGGACGAGGACTAGGAGAAGGA
GGAATGGCAGCAGAAGCAGCAGCAGCAGCAGCACAACAGCAGCAACAGCA
GCAGCCGGCAGAGGAGTCAATGGTGGAGGGAGGGAAGGAGGAAGGGCCGA
GTGTGAAGGTGGAAGAGTCAGCTGCTACCCGCTTCTTCTTGATTCATACT
CAAGCCACGGAGGCCCTGGAGAAGCTGGACGATCTCCTCCTCGCCCTCCC
TCCCTCCCTCTCTCCCTCCCTCCCTCCCTCCTCTTCGGCGGTGGAGCTCG
TAGGGGAAGTGCGGTCGTTGCTACAAGCCGTTGCCATGGCATCAGCTCCC
CTTCCCTCCCTCACCGCTGCGAGAAATAAAGTGCTCAACGACAGCAAGGA
GGAAGAGGGGGAGGTTGAGGAAGGGGCGGAAGGCGCGGGGGAAGGCGGGT
TAGGACAATCGTCCTTGCCCTCGGCGAGTGATAGGCTCAGTGTCGTTGCT
ACTGGTGCAGCTGCTGCTTCTCTTGAAGAGAGTGGGAGGGAAGAAGGGCA
GCAGGAGGAGGAGGAGGAGGAGGATGGAGGGAGGGAAGGAGGGAGGGAAG
TCGGAAGGAGGAAAACGTCGCTGGAGCGGATGGTGGAGGATCCTGTCCTA
CAAGCTTTGTTACGAGGAGAAAGCGACGACGAGGAGCAGGAGCAGGAGGA
GGAGGAAGAGGAGGAGGAAGAGGAGGGAGTGGAGAGAGAGGGAAAGGTGG
CAGCGGTTGAAGGAGTGATGGTGGTGCAAGAGGAGGAGGAGGGGGCAGAA
ATGAAGGAGGCGGCGGCGGAGCATGAGGAGGTGGAGGAGGTGGAGGAGGT
GGAGGAGGAGGAAGAGGAGGAGGATGGACGGGGAAATGGGCAGGGGCAGG
AGGAGGGCTCAGACTCTCCCTCCTCCCTCTCCTCACCTTCCCCGGTGCCC
GCCAATGCGGAGGTGCCCGCTGAGGAGGTAGGGGGAGCATCATCACCATC
ACAACCACCACCACCACCAGCAGCAGCTGCAGCAGCTGTAGCGAAAGCCT
TCTTCTTGGCCGCGGAGGCAGCAGCTGTCCCTCTTCCTCCCTCGCCCCTT
CCATCCATTCATCCCTCCCTCCCTCCCTCCCTCCCTTCTTCCCACCTTCC
TTTCCGCCTTCCGCCTTCTCCGGCTGCGGCGTCACCTGATTTGGCCCCGC
GAGAAACCGCGGGAAAGAGGATGGAAGAGGAGGAAGAGGAAGGGAAGGAC
GGAGAGGCTGTAGCCGTGGAGGTGGTGGAAAATGCAACGAAGGGAGAGAT
GGAAGAAGAGGACGGGAAGGAGGAGGGAGGGACAGGTAGTCCGAGTGCAC
CTCCCTCCCCTCTACCTCTTCATCCTCTGTCTTCTCCACAAGAGGAGGGG
GGAGGGAGGGAGGGAGGGGAGGAAGAGCCCTCCTCTTTCTTTCCCTTTAC
GGGTACGGAGGACGAGGTAGAAGAAGCAGTGGGGGGGATGAAGGAGGGCG
GGAAGGAGGGGGAGGATGAAGAGGAGCAGTTGGAGAAGGCAGGGGAGTGG
GGGAAAAGAGGGCCTGCAGCTGCTGCTGCTGCTGCTGCTGCTGCCACCCC
TCGATCTTCGTATCCTGACACTCCCCTCTCCATAGCCTCTTCCACCAGCA
GCAAGGGCACGGGCGGGCGGCGCTCTCGGCGGCAACGACGGTCGATCTCG
GGAATTTTCCTGAGGAGGAAAAGCAGCCAGACGGCCTTGAGAAGGAAAGG
GAAACAATGGATAATGACGAGGAAGACGACGAGATGGACCTTACATGCCC
TCTGCTCGACGACAAGGAGGGAGGGACGGAGGGAGGGGTAGACGTCTCCA
TCCTCACCACCGCCAGCACGCGTCGAGAGGGAGAGGAAGGTGGTTTGCTC
CCTCCCTCCCTCCTTCCCTCCCTCCCTTCCTTCTTCCCTCTTTGTTCGCC
ATTCCCCACCCCTTGACATGCATTCTGTGAATCGCTCACTTACCCACCTG
CTTGCTCACACGCCCTGTCCTCCCTCCTTCCCTCCCTC
back to top

protein sequence of jgi.p|Nanoce1779_2|61186

>mRNA_12212-protein ID=mRNA_12212-protein|Name=jgi.p|Nanoce1779_2|61186|organism=Nannochloropsis oceanica|type=polypeptide|length=596bp
MAAEAAAAAAQQQQQQQPAEESMVEGGKEEGPSVKVEESAATRFFLIHTQ
ATEALEKLDDLLLALPPSLSPSLPPSSSAVELVGEVRSLLQAVAMASAPL
PSLTAARNKVLNDSKEEEGEVEEGAEGAGEGGLGQSSLPSASDRLSVVAT
GAAAASLEESGREEGQQEEEEEEDGGREGGREVGRRKTSLERMVEDPVLQ
ALLRGESDDEEQEQEEEEEEEEEEGVEREGKVAAVEGVMVVQEEEEGAEM
KEAAAEHEEVEEVEEVEEEEEEEDGRGNGQGQEEGSDSPSSLSSPSPVPA
NAEVPAEEVGGASSPSQPPPPPAAAAAAVAKAFFLAAEAAAVPLPPSPLP
SIHPSLPPSLPSSHLPFRLPPSPAAASPDLAPRETAGKRMEEEEEEGKDG
EAVAVEVVENATKGEMEEEDGKEEGGTGSPSAPPSPLPLHPLSSPQEEGG
GREGGEEEPSSFFPFTGTEDEVEEAVGGMKEGGKEGEDEEEQLEKAGEWG
KRGPAAAAAAAAAATPRSSYPDTPLSIASSTSSKGTGGRRSRRQRRSISG
IFLRRKSSQTALRRKGKQWIMTRKTTRWTLHALCSTTRREGRREG*
back to top

mRNA from alignment at scaffold_128:2741..5758+

Legend: polypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_12212 ID=mRNA_12212|Name=jgi.p|Nanoce1779_2|61186|organism=Nannochloropsis oceanica|type=mRNA|length=3018bp|location=Sequence derived from alignment at scaffold_128:2741..5758+ (Nannochloropsis oceanica)
CGTGGACGCCAGATGGCTCCTGCTCCTTCTATTGCAAGAACAGCTGCTCT GCAATCTTTCTACCTCAGCGATCCCCTCATTTACCATGACGAGGAGGGGG AAGACGAAGGTGGGACGGAGGAAGAGTTGGATGCTCCTCCCCCCTCAACC AGCAGTCACAAGAAGCTGAAGAAGGGGCAGCAGCAGCAGACGCAGCAGGA GAAGGAGGAGGAGGAGGGCTTTGGGGCGAGGACGAGGACTAGGAGAAGGA GGAATGGCAGCAGAAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGTAAT GATGGAGGGGCGGTGGTGCTTGTGAAGGCATCTACTCCAATGCGTCAGGG AGATTTCAAGGGGAAGGAGGGAGGGGGAAGGGGGGCGGTCATGCACGTTC AAGAGCATGATGACGAAAGAGGGGAAGGAATGGAGGAGGAAGAGAAGGAG CAGCAGCAGCAACAGCAGCAACAGCAGCAGCCGGCAGAGGAGTCAATGGT GGAGGGAGGGAAGGAGGAAGGGCCGAGTGTGAAGGTGGAAGAGTCAGCTG CTACCCGCTTCTTCTTGATTCATACTCAAGCCACGGAGGCCCTGGAGAAG CTGGACGATCTCCTCCTCGCCCTCCCTCCCTCCCTCTCTCCCTCCCTCCC TCCCTCCTCTTCGGCGGTGGAGCTCGTAGGGGAAGTGCGGTCGTTGCTAC AAGCCGTTGCCATGGTGAGGGAGGGAGAGGGGGATGGGAGGAAAGATATG AAAACATTCGAGCGCCCTTTCCGTCTCATGAGACTTTCAACTCAATCAAT CTCCCTCCCTCCCTCCCTCCCTCCCTTCTTCCTTATGCCTGTCCGCTTCA CAGGCATCAGCTCCCCTTCCCTCCCTCACCGCTGCGAGAAATAAAGTGCT CAACGACAGCAAGGAGGAAGAGGGGGAGGTTGAGGAAGGGGCGGAAGGCG CGGGGGAAGGCGGGTTAGGACAATCGTCCTTGCCCTCGGCGAGTGATAGG CTCAGTGTCGTTGCTACTGGTGCAGCTGCTGCTTCTCTTGAAGAGAGTGG GAGGGAAGAAGGGCAGCAGGAGGAGGAGGAGGAGGAGGATGGAGGGAGGG AAGGAGGGAGGGAAGTCGGAAGGAGGAAAACGTCGCTGGAGCGGATGGTG GAGGATCCTGTCCTACAAGCTTTGTTACGAGGGTGAGGGAAGGAGGGAGG GAGGGAGGGAGGGAGGGAGAGAGGGAGGAAAGGATTGTACTTACACACGC ATGCGCACACTTATTCTCACAGAGAAAGCGACGACGAGGAGCAGGAGCAG GAGGAGGAGGAAGAGGAGGAGGAAGAGGAGGGAGTGGAGAGAGAGGGAAA GGTGGCAGCGGTTGAAGGAGTGATGGTGGTGCAAGAGGAGGAGGAGGGGG CAGAAATGAAGGAGGCGGCGGCGGAGCATGAGGAGGTGGAGGAGGTGGAG GAGGTGGAGGAGGAGGAAGAGGAGGAGGATGGACGGGGAAATGGGCAGGG GCAGGAGGAGGGCTCAGACTCTCCCTCCTCCCTCTCCTCACCTTCCCCGG TGCCCGCCAATGCGGAGGTGCCCGCTGAGGAGGTAGGGGGAGCATCATCA CCATCACAACCACCACCACCACCAGCAGCAGCTGCAGCAGCTGTAGCGAA AGCCTTCTTCTTGGCCGCGGAGGCAGCAGCTGTCCCTCTTCCTCCCTCGC CCCTTCCATCCATTCATCCCTCCCTCCCTCCCTCCCTCCCTTCTTCCCAC CTTCCTTTCCGCCTTCCGCCTTCTCCGGCTGCGGCGTCACCTGATTTGGC CCCGCGAGAAACCGCGGGAAAGAGGATGGAAGAGGAGGAAGAGGAAGGGA AGGACGGAGAGGCTGTAGCCGTGGAGGTGGTGGAAAATGCAACGAAGGGA GAGATGGAAGAAGAGGACGGGAAGGAGGAGGGAGGGACAGGTAGTCCGAG TGCACCTCCCTCCCCTCTACCTCTTCATCCTCTGTCTTCTCCACAAGAGG AGGGGGGAGGGAGGGAGGGAGGGGAGGAAGAGCCCTCCTCTTTCTTTCCC TTTACGGGTACGGAGGACGAGGTAGAAGAAGCAGTGGGGGGGATGAAGGA GGGCGGGAAGGAGGGGGAGGATGAAGAGGAGCAGTTGGAGAAGGCAGGGG AGTGGGGGAAAAGAGGGCCTGCAGCTGCTGCTGCTGCTGCTGCTGCTGCC ACCCCTCGATCTTCGTATCCTGACACTCCCCTCTCCATAGCCTCTTCCAC CAGCAGCAAGGTAAAGCTTCTTCCCTCCCTCCCTCCCTCCTTTCCTCTGT CCCTCCCTCCCTCCCTTCCTTCCTTCCTCTTATCTCTTATCGGACACACA AAGAATTTCCGACCCACTTCCCTCCCTCCCTCCCTCCCTCCCTCAGGGCA CGGGCGGGCGGCGCTCTCGGCGGCAACGACGGTCGATCTCGGGAATTTTC CTGAGGAGGAAAAGCAGCCAGACGGCCTTGCTGGAGGAGGAGGAGGAGGA GGTGGAGGAGGAGGTGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAAG AAGAAGAGGAGAAGGAAAGGGAAACAATGGGTGAGGAGGGAGGGAGAGGG AGGGAGGGAAGAAGGGCTTGCTAGTGAGTAGCAGGAGCAGTGCTGGATGA TAATATTGCCAAGCCCGCTTTCCCTCTGTGTCTTCTGCCCCTGTCCTAAG CTCCCTCTCCCTCTCTCCCTCTCTCCTTCCCTCCCTCCAGATAATGACGA GGAAGACGACGAGATGGACCTTACATGCCCTCTGCTCGACGACAAGGAGG GAGGGACGGAGGGAGGGGTAGACGTCTCCATCCTCACCACCGCCAGCACG CGTCGAGAGGGAGAGGAAGGTGGTTTGCTCCCTCCCTCCCTCCTTCCCTC CCTCCCTTCCTTCTTCCCTCTTTGTTCGCCATTCCCCACCCCTTGACATG CATTCTGTGAATCGCTCACTTACCCACCTGCTTGCTCACACGCCCTGTCC TCCCTCCTTCCCTCCCTC
back to top

Coding sequence (CDS) from alignment at scaffold_128:2741..5758+

>mRNA_12212 ID=mRNA_12212|Name=jgi.p|Nanoce1779_2|61186|organism=Nannochloropsis oceanica|type=CDS|length=12516bp|location=Sequence derived from alignment at scaffold_128:2741..5758+ (Nannochloropsis oceanica)
ATGGCAGCAGAAGCAGCAGCAGCAGCAGCACAACAGCAGCAACAGCAGCA
GCCGGCAGAGGAGTCAATGGTGGAGGGAGGGAAGGAGGAAGGGCCGAGTG
TGAAGGTGGAAGAGTCAGCTGCTACCCGCTTCTTCTTGATTCATACTCAA
GCCACGGAGGCCCTGGAGAAGCTGGACGATCTCCTCCTCGCCCTCCCTCC
CTCCCTCTCTCCCTCCCTCCCTCCCTCCTCTTCGGCGGTGGAGCTCGTAG
GGGAAGTGCGGTCGTTGCTACAAGCCGTTGCCATGGCATCAGCTCCCCTT
CCCTCCCTCACCGCTGCGAGAAATAAAGTGCTCAACGACAGCAAGGAGGA
AGAGGGGGAGGTTGAGGAAGGGGCGGAAGGCGCGGGGGAAGGCGGGTTAG
GACAATCGTCCTTGCCCTCGGCGAGTGATAGGCTCAGTGTCGTTGCTACT
GGTGCAGCTGCTGCTTCTCTTGAAGAGAGTGGGAGGGAAGAAGGGCAGCA
GGAGGAGGAGGAGGAGGAGGATGGAGGGAGGGAAGGAGGGAGGGAAGTCG
GAAGGAGGAAAACGTCGCTGGAGCGGATGGTGGAGGATCCTGTCCTACAA
GCTTTGTTACGAGGAGAAAGCGACGACGAGGAGCAGGAGCAGGAGGAGGA
GGAAGAGGAGGAGGAAGAGGAGGGAGTGGAGAGAGAGGGAAAGGTGGCAG
CGGTTGAAGGAGTGATGGTGGTGCAAGAGGAGGAGGAGGGGGCAGAAATG
AAGGAGGCGGCGGCGGAGCATGAGGAGGTGGAGGAGGTGGAGGAGGTGGA
GGAGGAGGAAGAGGAGGAGGATGGACGGGGAAATGGGCAGGGGCAGGAGG
AGGGCTCAGACTCTCCCTCCTCCCTCTCCTCACCTTCCCCGGTGCCCGCC
AATGCGGAGGTGCCCGCTGAGGAGGTAGGGGGAGCATCATCACCATCACA
ACCACCACCACCACCAGCAGCAGCTGCAGCAGCTGTAGCGAAAGCCTTCT
TCTTGGCCGCGGAGGCAGCAGCTGTCCCTCTTCCTCCCTCGCCCCTTCCA
TCCATTCATCCCTCCCTCCCTCCCTCCCTCCCTTCTTCCCACCTTCCTTT
CCGCCTTCCGCCTTCTCCGGCTGCGGCGTCACCTGATTTGGCCCCGCGAG
AAACCGCGGGAAAGAGGATGGAAGAGGAGGAAGAGGAAGGGAAGGACGGA
GAGGCTGTAGCCGTGGAGGTGGTGGAAAATGCAACGAAGGGAGAGATGGA
AGAAGAGGACGGGAAGGAGGAGGGAGGGACAGGTAGTCCGAGTGCACCTC
CCTCCCCTCTACCTCTTCATCCTCTGTCTTCTCCACAAGAGGAGGGGGGA
GGGAGGGAGGGAGGGGAGGAAGAGCCCTCCTCTTTCTTTCCCTTTACGGG
TACGGAGGACGAGGTAGAAGAAGCAGTGGGGGGGATGAAGGAGGGCGGGA
AGGAGGGGGAGGATGAAGAGGAGCAGTTGGAGAAGGCAGGGGAGTGGGGG
AAAAGAGGGCCTGCAGCTGCTGCTGCTGCTGCTGCTGCTGCCACCCCTCG
ATCTTCGTATCCTGACACTCCCCTCTCCATAGCCTCTTCCACCAGCAGCA
AGGGCACGGGCGGGCGGCGCTCTCGGCGGCAACGACGGTCGATCTCGGGA
ATTTTCCTGAGGAGGAAAAGCAGCCAGACGGCCTTGAGAAGGAAAGGGAA
ACAATGGATAATGACGAGGAAGACGACGAGATGGACCTTACATGCCCTCT
GCTCGACGACAAGGAGGGAGGGACGGAGGGAGGGGTAGATGGCAGCAGAA
GCAGCAGCAGCAGCAGCACAACAGCAGCAACAGCAGCAGCCGGCAGAGGA
GTCAATGGTGGAGGGAGGGAAGGAGGAAGGGCCGAGTGTGAAGGTGGAAG
AGTCAGCTGCTACCCGCTTCTTCTTGATTCATACTCAAGCCACGGAGGCC
CTGGAGAAGCTGGACGATCTCCTCCTCGCCCTCCCTCCCTCCCTCTCTCC
CTCCCTCCCTCCCTCCTCTTCGGCGGTGGAGCTCGTAGGGGAAGTGCGGT
CGTTGCTACAAGCCGTTGCCATGGCATCAGCTCCCCTTCCCTCCCTCACC
GCTGCGAGAAATAAAGTGCTCAACGACAGCAAGGAGGAAGAGGGGGAGGT
TGAGGAAGGGGCGGAAGGCGCGGGGGAAGGCGGGTTAGGACAATCGTCCT
TGCCCTCGGCGAGTGATAGGCTCAGTGTCGTTGCTACTGGTGCAGCTGCT
GCTTCTCTTGAAGAGAGTGGGAGGGAAGAAGGGCAGCAGGAGGAGGAGGA
GGAGGAGGATGGAGGGAGGGAAGGAGGGAGGGAAGTCGGAAGGAGGAAAA
CGTCGCTGGAGCGGATGGTGGAGGATCCTGTCCTACAAGCTTTGTTACGA
GGAGAAAGCGACGACGAGGAGCAGGAGCAGGAGGAGGAGGAAGAGGAGGA
GGAAGAGGAGGGAGTGGAGAGAGAGGGAAAGGTGGCAGCGGTTGAAGGAG
TGATGGTGGTGCAAGAGGAGGAGGAGGGGGCAGAAATGAAGGAGGCGGCG
GCGGAGCATGAGGAGGTGGAGGAGGTGGAGGAGGTGGAGGAGGAGGAAGA
GGAGGAGGATGGACGGGGAAATGGGCAGGGGCAGGAGGAGGGCTCAGACT
CTCCCTCCTCCCTCTCCTCACCTTCCCCGGTGCCCGCCAATGCGGAGGTG
CCCGCTGAGGAGGTAGGGGGAGCATCATCACCATCACAACCACCACCACC
ACCAGCAGCAGCTGCAGCAGCTGTAGCGAAAGCCTTCTTCTTGGCCGCGG
AGGCAGCAGCTGTCCCTCTTCCTCCCTCGCCCCTTCCATCCATTCATCCC
TCCCTCCCTCCCTCCCTCCCTTCTTCCCACCTTCCTTTCCGCCTTCCGCC
TTCTCCGGCTGCGGCGTCACCTGATTTGGCCCCGCGAGAAACCGCGGGAA
AGAGGATGGAAGAGGAGGAAGAGGAAGGGAAGGACGGAGAGGCTGTAGCC
GTGGAGGTGGTGGAAAATGCAACGAAGGGAGAGATGGAAGAAGAGGACGG
GAAGGAGGAGGGAGGGACAGGTAGTCCGAGTGCACCTCCCTCCCCTCTAC
CTCTTCATCCTCTGTCTTCTCCACAAGAGGAGGGGGGAGGGAGGGAGGGA
GGGGAGGAAGAGCCCTCCTCTTTCTTTCCCTTTACGGGTACGGAGGACGA
GGTAGAAGAAGCAGTGGGGGGGATGAAGGAGGGCGGGAAGGAGGGGGAGG
ATGAAGAGGAGCAGTTGGAGAAGGCAGGGGAGTGGGGGAAAAGAGGGCCT
GCAGCTGCTGCTGCTGCTGCTGCTGCTGCCACCCCTCGATCTTCGTATCC
TGACACTCCCCTCTCCATAGCCTCTTCCACCAGCAGCAAGGGCACGGGCG
GGCGGCGCTCTCGGCGGCAACGACGGTCGATCTCGGGAATTTTCCTGAGG
AGGAAAAGCAGCCAGACGGCCTTGAGAAGGAAAGGGAAACAATGGATAAT
GACGAGGAAGACGACGAGATGGACCTTACATGCCCTCTGCTCGACGACAA
GGAGGGAGGGACGGAGGGAGGGGTAGATGGCAGCAGAAGCAGCAGCAGCA
GCAGCACAACAGCAGCAACAGCAGCAGCCGGCAGAGGAGTCAATGGTGGA
GGGAGGGAAGGAGGAAGGGCCGAGTGTGAAGGTGGAAGAGTCAGCTGCTA
CCCGCTTCTTCTTGATTCATACTCAAGCCACGGAGGCCCTGGAGAAGCTG
GACGATCTCCTCCTCGCCCTCCCTCCCTCCCTCTCTCCCTCCCTCCCTCC
CTCCTCTTCGGCGGTGGAGCTCGTAGGGGAAGTGCGGTCGTTGCTACAAG
CCGTTGCCATGGCATCAGCTCCCCTTCCCTCCCTCACCGCTGCGAGAAAT
AAAGTGCTCAACGACAGCAAGGAGGAAGAGGGGGAGGTTGAGGAAGGGGC
GGAAGGCGCGGGGGAAGGCGGGTTAGGACAATCGTCCTTGCCCTCGGCGA
GTGATAGGCTCAGTGTCGTTGCTACTGGTGCAGCTGCTGCTTCTCTTGAA
GAGAGTGGGAGGGAAGAAGGGCAGCAGGAGGAGGAGGAGGAGGAGGATGG
AGGGAGGGAAGGAGGGAGGGAAGTCGGAAGGAGGAAAACGTCGCTGGAGC
GGATGGTGGAGGATCCTGTCCTACAAGCTTTGTTACGAGGAGAAAGCGAC
GACGAGGAGCAGGAGCAGGAGGAGGAGGAAGAGGAGGAGGAAGAGGAGGG
AGTGGAGAGAGAGGGAAAGGTGGCAGCGGTTGAAGGAGTGATGGTGGTGC
AAGAGGAGGAGGAGGGGGCAGAAATGAAGGAGGCGGCGGCGGAGCATGAG
GAGGTGGAGGAGGTGGAGGAGGTGGAGGAGGAGGAAGAGGAGGAGGATGG
ACGGGGAAATGGGCAGGGGCAGGAGGAGGGCTCAGACTCTCCCTCCTCCC
TCTCCTCACCTTCCCCGGTGCCCGCCAATGCGGAGGTGCCCGCTGAGGAG
GTAGGGGGAGCATCATCACCATCACAACCACCACCACCACCAGCAGCAGC
TGCAGCAGCTGTAGCGAAAGCCTTCTTCTTGGCCGCGGAGGCAGCAGCTG
TCCCTCTTCCTCCCTCGCCCCTTCCATCCATTCATCCCTCCCTCCCTCCC
TCCCTCCCTTCTTCCCACCTTCCTTTCCGCCTTCCGCCTTCTCCGGCTGC
GGCGTCACCTGATTTGGCCCCGCGAGAAACCGCGGGAAAGAGGATGGAAG
AGGAGGAAGAGGAAGGGAAGGACGGAGAGGCTGTAGCCGTGGAGGTGGTG
GAAAATGCAACGAAGGGAGAGATGGAAGAAGAGGACGGGAAGGAGGAGGG
AGGGACAGGTAGTCCGAGTGCACCTCCCTCCCCTCTACCTCTTCATCCTC
TGTCTTCTCCACAAGAGGAGGGGGGAGGGAGGGAGGGAGGGGAGGAAGAG
CCCTCCTCTTTCTTTCCCTTTACGGGTACGGAGGACGAGGTAGAAGAAGC
AGTGGGGGGGATGAAGGAGGGCGGGAAGGAGGGGGAGGATGAAGAGGAGC
AGTTGGAGAAGGCAGGGGAGTGGGGGAAAAGAGGGCCTGCAGCTGCTGCT
GCTGCTGCTGCTGCTGCCACCCCTCGATCTTCGTATCCTGACACTCCCCT
CTCCATAGCCTCTTCCACCAGCAGCAAGGGCACGGGCGGGCGGCGCTCTC
GGCGGCAACGACGGTCGATCTCGGGAATTTTCCTGAGGAGGAAAAGCAGC
CAGACGGCCTTGAGAAGGAAAGGGAAACAATGGATAATGACGAGGAAGAC
GACGAGATGGACCTTACATGCCCTCTGCTCGACGACAAGGAGGGAGGGAC
GGAGGGAGGGGTAGATGGCAGCAGAAGCAGCAGCAGCAGCAGCACAACAG
CAGCAACAGCAGCAGCCGGCAGAGGAGTCAATGGTGGAGGGAGGGAAGGA
GGAAGGGCCGAGTGTGAAGGTGGAAGAGTCAGCTGCTACCCGCTTCTTCT
TGATTCATACTCAAGCCACGGAGGCCCTGGAGAAGCTGGACGATCTCCTC
CTCGCCCTCCCTCCCTCCCTCTCTCCCTCCCTCCCTCCCTCCTCTTCGGC
GGTGGAGCTCGTAGGGGAAGTGCGGTCGTTGCTACAAGCCGTTGCCATGG
CATCAGCTCCCCTTCCCTCCCTCACCGCTGCGAGAAATAAAGTGCTCAAC
GACAGCAAGGAGGAAGAGGGGGAGGTTGAGGAAGGGGCGGAAGGCGCGGG
GGAAGGCGGGTTAGGACAATCGTCCTTGCCCTCGGCGAGTGATAGGCTCA
GTGTCGTTGCTACTGGTGCAGCTGCTGCTTCTCTTGAAGAGAGTGGGAGG
GAAGAAGGGCAGCAGGAGGAGGAGGAGGAGGAGGATGGAGGGAGGGAAGG
AGGGAGGGAAGTCGGAAGGAGGAAAACGTCGCTGGAGCGGATGGTGGAGG
ATCCTGTCCTACAAGCTTTGTTACGAGGAGAAAGCGACGACGAGGAGCAG
GAGCAGGAGGAGGAGGAAGAGGAGGAGGAAGAGGAGGGAGTGGAGAGAGA
GGGAAAGGTGGCAGCGGTTGAAGGAGTGATGGTGGTGCAAGAGGAGGAGG
AGGGGGCAGAAATGAAGGAGGCGGCGGCGGAGCATGAGGAGGTGGAGGAG
GTGGAGGAGGTGGAGGAGGAGGAAGAGGAGGAGGATGGACGGGGAAATGG
GCAGGGGCAGGAGGAGGGCTCAGACTCTCCCTCCTCCCTCTCCTCACCTT
CCCCGGTGCCCGCCAATGCGGAGGTGCCCGCTGAGGAGGTAGGGGGAGCA
TCATCACCATCACAACCACCACCACCACCAGCAGCAGCTGCAGCAGCTGT
AGCGAAAGCCTTCTTCTTGGCCGCGGAGGCAGCAGCTGTCCCTCTTCCTC
CCTCGCCCCTTCCATCCATTCATCCCTCCCTCCCTCCCTCCCTCCCTTCT
TCCCACCTTCCTTTCCGCCTTCCGCCTTCTCCGGCTGCGGCGTCACCTGA
TTTGGCCCCGCGAGAAACCGCGGGAAAGAGGATGGAAGAGGAGGAAGAGG
AAGGGAAGGACGGAGAGGCTGTAGCCGTGGAGGTGGTGGAAAATGCAACG
AAGGGAGAGATGGAAGAAGAGGACGGGAAGGAGGAGGGAGGGACAGGTAG
TCCGAGTGCACCTCCCTCCCCTCTACCTCTTCATCCTCTGTCTTCTCCAC
AAGAGGAGGGGGGAGGGAGGGAGGGAGGGGAGGAAGAGCCCTCCTCTTTC
TTTCCCTTTACGGGTACGGAGGACGAGGTAGAAGAAGCAGTGGGGGGGAT
GAAGGAGGGCGGGAAGGAGGGGGAGGATGAAGAGGAGCAGTTGGAGAAGG
CAGGGGAGTGGGGGAAAAGAGGGCCTGCAGCTGCTGCTGCTGCTGCTGCT
GCTGCCACCCCTCGATCTTCGTATCCTGACACTCCCCTCTCCATAGCCTC
TTCCACCAGCAGCAAGGGCACGGGCGGGCGGCGCTCTCGGCGGCAACGAC
GGTCGATCTCGGGAATTTTCCTGAGGAGGAAAAGCAGCCAGACGGCCTTG
AGAAGGAAAGGGAAACAATGGATAATGACGAGGAAGACGACGAGATGGAC
CTTACATGCCCTCTGCTCGACGACAAGGAGGGAGGGACGGAGGGAGGGGT
AGATGGCAGCAGAAGCAGCAGCAGCAGCAGCACAACAGCAGCAACAGCAG
CAGCCGGCAGAGGAGTCAATGGTGGAGGGAGGGAAGGAGGAAGGGCCGAG
TGTGAAGGTGGAAGAGTCAGCTGCTACCCGCTTCTTCTTGATTCATACTC
AAGCCACGGAGGCCCTGGAGAAGCTGGACGATCTCCTCCTCGCCCTCCCT
CCCTCCCTCTCTCCCTCCCTCCCTCCCTCCTCTTCGGCGGTGGAGCTCGT
AGGGGAAGTGCGGTCGTTGCTACAAGCCGTTGCCATGGCATCAGCTCCCC
TTCCCTCCCTCACCGCTGCGAGAAATAAAGTGCTCAACGACAGCAAGGAG
GAAGAGGGGGAGGTTGAGGAAGGGGCGGAAGGCGCGGGGGAAGGCGGGTT
AGGACAATCGTCCTTGCCCTCGGCGAGTGATAGGCTCAGTGTCGTTGCTA
CTGGTGCAGCTGCTGCTTCTCTTGAAGAGAGTGGGAGGGAAGAAGGGCAG
CAGGAGGAGGAGGAGGAGGAGGATGGAGGGAGGGAAGGAGGGAGGGAAGT
CGGAAGGAGGAAAACGTCGCTGGAGCGGATGGTGGAGGATCCTGTCCTAC
AAGCTTTGTTACGAGGAGAAAGCGACGACGAGGAGCAGGAGCAGGAGGAG
GAGGAAGAGGAGGAGGAAGAGGAGGGAGTGGAGAGAGAGGGAAAGGTGGC
AGCGGTTGAAGGAGTGATGGTGGTGCAAGAGGAGGAGGAGGGGGCAGAAA
TGAAGGAGGCGGCGGCGGAGCATGAGGAGGTGGAGGAGGTGGAGGAGGTG
GAGGAGGAGGAAGAGGAGGAGGATGGACGGGGAAATGGGCAGGGGCAGGA
GGAGGGCTCAGACTCTCCCTCCTCCCTCTCCTCACCTTCCCCGGTGCCCG
CCAATGCGGAGGTGCCCGCTGAGGAGGTAGGGGGAGCATCATCACCATCA
CAACCACCACCACCACCAGCAGCAGCTGCAGCAGCTGTAGCGAAAGCCTT
CTTCTTGGCCGCGGAGGCAGCAGCTGTCCCTCTTCCTCCCTCGCCCCTTC
CATCCATTCATCCCTCCCTCCCTCCCTCCCTCCCTTCTTCCCACCTTCCT
TTCCGCCTTCCGCCTTCTCCGGCTGCGGCGTCACCTGATTTGGCCCCGCG
AGAAACCGCGGGAAAGAGGATGGAAGAGGAGGAAGAGGAAGGGAAGGACG
GAGAGGCTGTAGCCGTGGAGGTGGTGGAAAATGCAACGAAGGGAGAGATG
GAAGAAGAGGACGGGAAGGAGGAGGGAGGGACAGGTAGTCCGAGTGCACC
TCCCTCCCCTCTACCTCTTCATCCTCTGTCTTCTCCACAAGAGGAGGGGG
GAGGGAGGGAGGGAGGGGAGGAAGAGCCCTCCTCTTTCTTTCCCTTTACG
GGTACGGAGGACGAGGTAGAAGAAGCAGTGGGGGGGATGAAGGAGGGCGG
GAAGGAGGGGGAGGATGAAGAGGAGCAGTTGGAGAAGGCAGGGGAGTGGG
GGAAAAGAGGGCCTGCAGCTGCTGCTGCTGCTGCTGCTGCTGCCACCCCT
CGATCTTCGTATCCTGACACTCCCCTCTCCATAGCCTCTTCCACCAGCAG
CAAGGGCACGGGCGGGCGGCGCTCTCGGCGGCAACGACGGTCGATCTCGG
GAATTTTCCTGAGGAGGAAAAGCAGCCAGACGGCCTTGAGAAGGAAAGGG
AAACAATGGATAATGACGAGGAAGACGACGAGATGGACCTTACATGCCCT
CTGCTCGACGACAAGGAGGGAGGGACGGAGGGAGGGGTAGATGGCAGCAG
AAGCAGCAGCAGCAGCAGCACAACAGCAGCAACAGCAGCAGCCGGCAGAG
GAGTCAATGGTGGAGGGAGGGAAGGAGGAAGGGCCGAGTGTGAAGGTGGA
AGAGTCAGCTGCTACCCGCTTCTTCTTGATTCATACTCAAGCCACGGAGG
CCCTGGAGAAGCTGGACGATCTCCTCCTCGCCCTCCCTCCCTCCCTCTCT
CCCTCCCTCCCTCCCTCCTCTTCGGCGGTGGAGCTCGTAGGGGAAGTGCG
GTCGTTGCTACAAGCCGTTGCCATGGCATCAGCTCCCCTTCCCTCCCTCA
CCGCTGCGAGAAATAAAGTGCTCAACGACAGCAAGGAGGAAGAGGGGGAG
GTTGAGGAAGGGGCGGAAGGCGCGGGGGAAGGCGGGTTAGGACAATCGTC
CTTGCCCTCGGCGAGTGATAGGCTCAGTGTCGTTGCTACTGGTGCAGCTG
CTGCTTCTCTTGAAGAGAGTGGGAGGGAAGAAGGGCAGCAGGAGGAGGAG
GAGGAGGAGGATGGAGGGAGGGAAGGAGGGAGGGAAGTCGGAAGGAGGAA
AACGTCGCTGGAGCGGATGGTGGAGGATCCTGTCCTACAAGCTTTGTTAC
GAGGAGAAAGCGACGACGAGGAGCAGGAGCAGGAGGAGGAGGAAGAGGAG
GAGGAAGAGGAGGGAGTGGAGAGAGAGGGAAAGGTGGCAGCGGTTGAAGG
AGTGATGGTGGTGCAAGAGGAGGAGGAGGGGGCAGAAATGAAGGAGGCGG
CGGCGGAGCATGAGGAGGTGGAGGAGGTGGAGGAGGTGGAGGAGGAGGAA
GAGGAGGAGGATGGACGGGGAAATGGGCAGGGGCAGGAGGAGGGCTCAGA
CTCTCCCTCCTCCCTCTCCTCACCTTCCCCGGTGCCCGCCAATGCGGAGG
TGCCCGCTGAGGAGGTAGGGGGAGCATCATCACCATCACAACCACCACCA
CCACCAGCAGCAGCTGCAGCAGCTGTAGCGAAAGCCTTCTTCTTGGCCGC
GGAGGCAGCAGCTGTCCCTCTTCCTCCCTCGCCCCTTCCATCCATTCATC
CCTCCCTCCCTCCCTCCCTCCCTTCTTCCCACCTTCCTTTCCGCCTTCCG
CCTTCTCCGGCTGCGGCGTCACCTGATTTGGCCCCGCGAGAAACCGCGGG
AAAGAGGATGGAAGAGGAGGAAGAGGAAGGGAAGGACGGAGAGGCTGTAG
CCGTGGAGGTGGTGGAAAATGCAACGAAGGGAGAGATGGAAGAAGAGGAC
GGGAAGGAGGAGGGAGGGACAGGTAGTCCGAGTGCACCTCCCTCCCCTCT
ACCTCTTCATCCTCTGTCTTCTCCACAAGAGGAGGGGGGAGGGAGGGAGG
GAGGGGAGGAAGAGCCCTCCTCTTTCTTTCCCTTTACGGGTACGGAGGAC
GAGGTAGAAGAAGCAGTGGGGGGGATGAAGGAGGGCGGGAAGGAGGGGGA
GGATGAAGAGGAGCAGTTGGAGAAGGCAGGGGAGTGGGGGAAAAGAGGGC
CTGCAGCTGCTGCTGCTGCTGCTGCTGCTGCCACCCCTCGATCTTCGTAT
CCTGACACTCCCCTCTCCATAGCCTCTTCCACCAGCAGCAAGGGCACGGG
CGGGCGGCGCTCTCGGCGGCAACGACGGTCGATCTCGGGAATTTTCCTGA
GGAGGAAAAGCAGCCAGACGGCCTTGAGAAGGAAAGGGAAACAATGGATA
ATGACGAGGAAGACGACGAGATGGACCTTACATGCCCTCTGCTCGACGAC
AAGGAGGGAGGGACGGAGGGAGGGGTAGATGGCAGCAGAAGCAGCAGCAG
CAGCAGCACAACAGCAGCAACAGCAGCAGCCGGCAGAGGAGTCAATGGTG
GAGGGAGGGAAGGAGGAAGGGCCGAGTGTGAAGGTGGAAGAGTCAGCTGC
TACCCGCTTCTTCTTGATTCATACTCAAGCCACGGAGGCCCTGGAGAAGC
TGGACGATCTCCTCCTCGCCCTCCCTCCCTCCCTCTCTCCCTCCCTCCCT
CCCTCCTCTTCGGCGGTGGAGCTCGTAGGGGAAGTGCGGTCGTTGCTACA
AGCCGTTGCCATGGCATCAGCTCCCCTTCCCTCCCTCACCGCTGCGAGAA
ATAAAGTGCTCAACGACAGCAAGGAGGAAGAGGGGGAGGTTGAGGAAGGG
GCGGAAGGCGCGGGGGAAGGCGGGTTAGGACAATCGTCCTTGCCCTCGGC
GAGTGATAGGCTCAGTGTCGTTGCTACTGGTGCAGCTGCTGCTTCTCTTG
AAGAGAGTGGGAGGGAAGAAGGGCAGCAGGAGGAGGAGGAGGAGGAGGAT
GGAGGGAGGGAAGGAGGGAGGGAAGTCGGAAGGAGGAAAACGTCGCTGGA
GCGGATGGTGGAGGATCCTGTCCTACAAGCTTTGTTACGAGGAGAAAGCG
ACGACGAGGAGCAGGAGCAGGAGGAGGAGGAAGAGGAGGAGGAAGAGGAG
GGAGTGGAGAGAGAGGGAAAGGTGGCAGCGGTTGAAGGAGTGATGGTGGT
GCAAGAGGAGGAGGAGGGGGCAGAAATGAAGGAGGCGGCGGCGGAGCATG
AGGAGGTGGAGGAGGTGGAGGAGGTGGAGGAGGAGGAAGAGGAGGAGGAT
GGACGGGGAAATGGGCAGGGGCAGGAGGAGGGCTCAGACTCTCCCTCCTC
CCTCTCCTCACCTTCCCCGGTGCCCGCCAATGCGGAGGTGCCCGCTGAGG
AGGTAGGGGGAGCATCATCACCATCACAACCACCACCACCACCAGCAGCA
GCTGCAGCAGCTGTAGCGAAAGCCTTCTTCTTGGCCGCGGAGGCAGCAGC
TGTCCCTCTTCCTCCCTCGCCCCTTCCATCCATTCATCCCTCCCTCCCTC
CCTCCCTCCCTTCTTCCCACCTTCCTTTCCGCCTTCCGCCTTCTCCGGCT
GCGGCGTCACCTGATTTGGCCCCGCGAGAAACCGCGGGAAAGAGGATGGA
AGAGGAGGAAGAGGAAGGGAAGGACGGAGAGGCTGTAGCCGTGGAGGTGG
TGGAAAATGCAACGAAGGGAGAGATGGAAGAAGAGGACGGGAAGGAGGAG
GGAGGGACAGGTAGTCCGAGTGCACCTCCCTCCCCTCTACCTCTTCATCC
TCTGTCTTCTCCACAAGAGGAGGGGGGAGGGAGGGAGGGAGGGGAGGAAG
AGCCCTCCTCTTTCTTTCCCTTTACGGGTACGGAGGACGAGGTAGAAGAA
GCAGTGGGGGGGATGAAGGAGGGCGGGAAGGAGGGGGAGGATGAAGAGGA
GCAGTTGGAGAAGGCAGGGGAGTGGGGGAAAAGAGGGCCTGCAGCTGCTG
CTGCTGCTGCTGCTGCTGCCACCCCTCGATCTTCGTATCCTGACACTCCC
CTCTCCATAGCCTCTTCCACCAGCAGCAAGGGCACGGGCGGGCGGCGCTC
TCGGCGGCAACGACGGTCGATCTCGGGAATTTTCCTGAGGAGGAAAAGCA
GCCAGACGGCCTTGAGAAGGAAAGGGAAACAATGGATAATGACGAGGAAG
ACGACGAGATGGACCTTACATGCCCTCTGCTCGACGACAAGGAGGGAGGG
ACGGAGGGAGGGGTAG
back to top
Synonyms
Publications