jgi.p|Nanoce1779_2|559137, mRNA_7918 (mRNA) Nannochloropsis oceanica

Overview
Namejgi.p|Nanoce1779_2|559137
Unique NamemRNA_7918
TypemRNA
OrganismNannochloropsis oceanica (N. oceanica CCMP1779)
Sequence length2272
Alignment locationscaffold_22:166696..169501 -

Link to JBrowse

Properties
Property NameValue
TranscriptId559223
TrackFilteredModels2
ProteinId559137
Mutants
Expression
No biomaterial libraries express this feature.
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
scaffold_22supercontigscaffold_22:166696..169501 -
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|559137gene_7918Nannochloropsis oceanica (N. oceanica CCMP1779)gene


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

Feature NameUnique NameSpeciesType
jgi.p|Nanoce1779_2|559137mRNA_7918-proteinNannochloropsis oceanica (N. oceanica CCMP1779)polypeptide


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

Feature NameUnique NameSpeciesType
CDS_7918CDS_7918Nannochloropsis oceanica (N. oceanica CCMP1779)CDS


Sequences
The following sequences are available for this feature:

mRNA sequence

>mRNA_7918 ID=mRNA_7918|Name=jgi.p|Nanoce1779_2|559137|organism=Nannochloropsis oceanica|type=mRNA|length=2272bp
ATATTCGTCCTTCTTTATTTCCATTGACCATTCGCACGGTATGATCATGC
CCACTTCACTACTCCACCACCCACAGCAGAGGTGTAAGCAGAAAGAGAAA
CCCGTAGTGCCCTCAGTTCCCCCTACAGGCTGTCCCTGTAAATTAAGCCG
GTGCGCTGCTTCCCTTGCGTCATCGTCATCATCACATGGCCCGCCAAGGC
GACCCCACCACTGCAGCAGCTTCATGCCCTTCCCCTCCTCCTCCTCCTTC
GCCCACTCCTGCTGCTTTCAATCCATCATCACAATCTTCACACGACCCTC
CATCACAATCTTCGCTGCCGCAGCCACCGCAGCCACCACGGTCACAGCAG
CAAGAGGAGCCACGGTCGTCGCCGCCGCCGCCACCATCGCGGTTCAGCCA
GGCCGCTTTTTGGTGGGGCCGCACCCTGGGAGAAGGAGCCTATGCACGGG
TAGTCCACGCCAGACTTAAGCCTCGGCCTCAATTGCCAAATCATTACGCT
GAAGGAAAAGACTTCGCCATCAAAGTGATGGAAAAACGCCATATCCACCG
GGAGAACAAGGTGCGGCAAGTCCTGGCCGAGAAAACCGTCTTGGCCCGTC
TCTCGCACCCGGGCATTGTGAAATTGTGGTTTACGTTTCAGGATGCGGAT
AATTTGTACCTGGTCCTTGACTATCATGTAGGTGGGGATTTGATGCGTGT
GATAAGGTATTTCAAGGAGGGAGGAGGAGGAGGAGGGGGAGGAGGAGGAG
GAGAAAAAAGAGGGGAACTTCCAGCCTCTCATTCTTCCCTGCACTCTTGT
TGCCCCGTGCAGCTCGCCCGTTTCTACGTAGGGGAGGTTATCCTGGCCTT
GGGATACCTGCACTCACAGAGAATAGTGCACAGAGACGTAAAGCCCGAGA
ATATCCTTGTAGGACAGGACGGTCATGTAAAGCTGGCGGATTTTGGCTCA
GAGGAGGAGGGAGGGAGGGAAGAGCCCCGGCGTTCCTTCGTGGGTACAGC
TGAGTACGTCTCTCCGGAAGTCTTGATTGGTGAGCCTGCCACTCCTGCGG
TAGACTTTTGGGCTGTGGGCTGCCTCCTCTTCCACCTACTCACTGGCGTC
CCTCCGTTCCTCGCTCCCTCTGAGTATTTAACCTTCGACCTGATAATGCA
GCACTGCAATGGCTCTTTCCCCCTCTCCTTCCCACCTTCATTGCCCCCCT
CGTCCTCAGCCAGGAGTGTGATTGAGGGAATGCTGGTCCGGTGCCCCGAG
GAGAGGCTGGGGACTAGTGGAGGGAGGGAGGGAGGGAGGGAGGAAGGGGA
GATTAAGAGGCATGCTTTTTTCAGGGGTTTTGAATGGGAGGACGTTTTTG
AGAGGCCGGCACCCTGGGCGCCGGGGATGGAAGGGAGGGAAGGGGGGGGT
GAAGAAGAGAGGTGGAGGGATGGGAGGATGGAGAAGGATGTTTTTTCGGG
GGATATCAGTGGTGGTGGTGGTGAGGAGGAAGACGACTCGAAGGACGAGG
AGGGGGACGAGCGACGGACTAAGGTAGGGGAGCAGGCGCGAGCACGACGA
CAGCTACGGAGATGGGACAAGTACCTTTTTGATGAGAAGGAGGGAAGGAG
GGAGGGAGAGGAAAAGGAGCGGTGTGTCTTTGCCGGGTGGGTTTGGAAGA
GGACGAGGCTCCTATCGCAGAAGAAGGTAGAGCTGCTTCTGACGAACAGA
CCGCGTTTGGTTTACCTTGAAGCCAAGACATGGGAAAGGAAAGGAGAAAT
CAATCTCATTCAGGACGGCGATAAGGGAAGGATAGGCTGGAGGGAAGCCT
CTCTTTCCACCTTTAAAGGGGAGCATGCATTTAACGTAATCACGCCCCAA
CGAACGCATCACTTTAAAGACGAGATGCTCGGGTCCGCGGTGTGGATAGA
AAAGATTCGCGAGAGTATAGAAACTGGTAAAATGGGCATCAATTGAGATA
CCTCTGTCTCTGTCTTCCCCCCCCTCATCGCATTCTTCTCCTTCGCGAGC
AGCGTTGTCCTCGTCCTCCCCGACGGCATCGCCTTCCCGATCTTGGGGGA
AAGGAGGTGCAGAAGGAAGAGAGGAATGAAGGACAGTCCGACCGAATTCT
CCATTTGAAGAGAAAAGTCGGCCTCATCGATGGCCGTATCGGGCGTGGGG
GGTAGTGATAGTGCTGCTGGGGTATGGATGAGAGGAAACAGGGGTTGGTG
GGAAAGATAAAAAGTATGTGAATGAGATTATTGTGCAGCAAGAAAAAGAA
ACAAGATAACCCAAATGCTCAG
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protein sequence of jgi.p|Nanoce1779_2|559137

>mRNA_7918-protein ID=mRNA_7918-protein|Name=jgi.p|Nanoce1779_2|559137|organism=Nannochloropsis oceanica|type=polypeptide|length=587bp
MARQGDPTTAAASCPSPPPPPSPTPAAFNPSSQSSHDPPSQSSLPQPPQP
PRSQQQEEPRSSPPPPPSRFSQAAFWWGRTLGEGAYARVVHARLKPRPQL
PNHYAEGKDFAIKVMEKRHIHRENKVRQVLAEKTVLARLSHPGIVKLWFT
FQDADNLYLVLDYHVGGDLMRVIRYFKEGGGGGGGGGGGEKRGELPASHS
SLHSCCPVQLARFYVGEVILALGYLHSQRIVHRDVKPENILVGQDGHVKL
ADFGSEEEGGREEPRRSFVGTAEYVSPEVLIGEPATPAVDFWAVGCLLFH
LLTGVPPFLAPSEYLTFDLIMQHCNGSFPLSFPPSLPPSSSARSVIEGML
VRCPEERLGTSGGREGGREEGEIKRHAFFRGFEWEDVFERPAPWAPGMEG
REGGGEEERWRDGRMEKDVFSGDISGGGGEEEDDSKDEEGDERRTKVGEQ
ARARRQLRRWDKYLFDEKEGRREGEEKERCVFAGWVWKRTRLLSQKKVEL
LLTNRPRLVYLEAKTWERKGEINLIQDGDKGRIGWREASLSTFKGEHAFN
VITPQRTHHFKDEMLGSAVWIEKIRESIETGKMGIN*
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mRNA from alignment at scaffold_22:166696..169501-

Legend: polypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_7918 ID=mRNA_7918|Name=jgi.p|Nanoce1779_2|559137|organism=Nannochloropsis oceanica|type=mRNA|length=2806bp|location=Sequence derived from alignment at scaffold_22:166696..169501- (Nannochloropsis oceanica)
ATATTCGTCCTTCTTTATTTCCATTGACCATTCGCACGGTATGATCATGC CCACTTCACTACTCCACCACCCACAGCAGAGGTGTAAGCAGAAAGAGAAA CCCGTAGTGCCCTCAGTTCCCCCTACAGGCTGTCCCTGTAAATTAAGCCG GTGCGCTGCTTCCCTTGCGTCATCGTCATCATCACATGGCCCGCCAAGGC GACCCCACCACTGCAGCAGCTTCATGCCCTTCCCCTCCTCCTCCTCCTTC GCCCACTCCTGCTGCTTTCAATCCATCATCACAATCTTCACACGACCCTC CATCACAATCTTCGCTGCCGCAGCCACCGCAGCCACCACGGTCACAGCAG CAAGAGGAGCCACGGTCGTCGCCGCCGCCGCCACCATCGCGGTTCAGCCA GGCCGCTTTTTGGTGGGGCCGCACCCTGGGAGAAGGAGCCTATGCACGGG TAGTCCACGCCAGACTTAAGCCTCGGCCTGTTACTCTAGTCACGACCAAC GAAGGCAGAAACAGGAGCAGTAGCAGCGGCGGCAGCAACGGCAGCGGTCA GCAGCCGTCACAGCAGCAGCAGTCCTCGCAGTCACAGCAGCAATTGCCAA ATCATTACGCTGAAGGAAAAGACTTCGCCATCAAAGTGATGGAAAAACGC CATATCCACCGGGAGAACAAGGTGCGGCAAGTCCTGGCCGAGAAAACCGT CTTGGCCCGTCTCTCGCACCCGGGCATTGTGAAATTGTGGTTTACGTTTC AGGATGCGGATAATTTGTACCTGGTCCTTGACTATCATGTAGGTGGGGAT TTGATGCGTGTGATAAGGTATTTCAAGGAGGGAGGAGGAGGAGGAGGGGG AGGAGGAGGAGGAGAAAAAAGAGGGGAACTTCCAGCCTCTCATTCTTCCC TGCACTCTTGTTGCCCCGTGCAGCTCGCCCGTTTCTACGTAGGGGAGGTT ATCCTGGCCTTGGGATACCTGCACTCACAGAGAATAGTGCACAGAGACGT AAAGCCCGAGAATATCCTTGTAGGACAGGACGGTCATGTAAAGCTGGCGG ATTTTGGCTCAGTCTTGGTGCTGGGGGAAGAAGGGAAGGAGGGAGGGGGA GAGAAAGGTAAGGGGAGGAAGGGAGAGAAGGGCAGTGAGAGGAATGGCGT CATGGGTGCCAAGCTTGTAAGAGCAGCCAAGAAGAGCAATGACGCCCTTA CAGTAGTCGATGTGGACAAGACCGAGGCGCAAGTTGAGGAGGAGGAGGAG GAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGAGGGAGGGAGGGAAGAGCC CCGGCGTTCCTTCGTGGGTACAGCTGAGTACGTCTCTCCGGAAGTCTTGA TTGGTGAGCCTGCCACTCCTGCGGTAGACTTTTGGGCTGTGGGCTGCCTC CTCTTCCACCTACTCACTGGCGTCCCTCCGTTCCTCGCTCCCTCTGAGTA TTTAACCTTCGACCTGATAATGCAGCACTGCAATGGCTCTTTCCCCCTCT CCTTCCCACCTTCATTGCCCCCCTCGTCCTCAGCCAGGAGTGTGATTGAG GGAATGCTGGTCCGGTGCCCCGAGGAGAGGCTGGGGACTAGTGGAGGGAG GGAGGGAGGGAGGGAGGAAGGGGAGATTAAGAGGCATGCTTTTTTCAGGG GTTTTGAATGGGAGGACGTTTTTGAGAGGCCGGCACCCTGGGCGCCGGGG ATGGAAGGGAGGGAAGGGGGGGGTGAAGAAGAGAGGTGGAGGGATGGGAG GATGGAGAAGGATGTGTGGGGGCGTTGGGTGGAGGGGGAGGAAGGGGAGG AAGCCATGCCGATGGCGTTGCTGGAGCTGGGGGAAGAGGAGCTGGGGGAA GAGAGGCAGGGGAAGAGGGCGGGGAGGAACGGAGAAAAGAAGGGCGAGAA GGGCAGTTTTTCGGGGGATATCAGTGGTGGTGGTGGTGAGGAGGAAGACG ACTCGAAGGACGAGGAGGGGGACGAGCGACGGACTAAGGTAGGGGAGCAG GCGCGAGCACGACGACAGCTACGGAGATGGGACAAGTACCTTTTTGATGA GAAGGAGGGAAGGAGGGAGGGAGAGGAAAAGGAGCGGTGTGTCTTTGCCG GGTGGGTTTGGAAGAGGACGAGGCTCCTATCGCAGAAGAAGGTAGAGCTG CTTCTGACGAACAGACCGCGTTTGGTTTACCTTGAAGCCAAGACATGGGA AAGGAAAGGAGAAATCAATCTCATTCAGGACGGCGATAAGGGAAGGATAG GCTGGAGGGAAGCCTCTCTTTCCACCTTGTCCCCCGTTCCTGTTTCATCC TCCCCCTCTTCCTCCTCCCCGGCCGTTCCCGGGGTGAGGGTAGAGAGTAA AGGGGAGCATGCATTTAACGTAATCACGCCCCAACGAACGCATCACTTTA AAGACGAGATGCTCGGGTCCGCGGTGTGGATAGAAAAGATTCGCGAGAGT ATAGAAACTGGTAAAATGGGCATCAATTGAGATACCTCTGTCTCTGTCTT CCCCCCCCTCATCGCATTCTTCTCCTTCGCGAGCAGCGTTGTCCTCGTCC TCCCCGACGGCATCGCCTTCCCGATCTTGGGGGAAAGGAGGTGCAGAAGG AAGAGAGGAATGAAGGACAGTCCGACCGAATTCTCCATTTGAAGAGAAAA GTCGGCCTCATCGATGGCCGTATCGGGCGTGGGGGGTAGTGATAGTGCTG CTGGGGTATGGATGAGAGGAAACAGGGGTTGGTGGGAAAGATAAAAAGTA TGTGAATGAGATTATTGTGCAGCAAGAAAAAGAAACAAGATAACCCAAAT GCTCAG
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Coding sequence (CDS) from alignment at scaffold_22:166696..169501-

>mRNA_7918 ID=mRNA_7918|Name=jgi.p|Nanoce1779_2|559137|organism=Nannochloropsis oceanica|type=CDS|length=8805bp|location=Sequence derived from alignment at scaffold_22:166696..169501- (Nannochloropsis oceanica)
TAAAGGGGAGCATGCATTTAACGTAATCACGCCCCAACGAACGCATCACT
TTAAAGACGAGATGCTCGGGTCCGCGGTGTGGATAGAAAAGATTCGCGAG
AGTATAGAAACTGGTAAAATGGGCATCAATTGATTTTTCGGGGGATATCA
GTGGTGGTGGTGGTGAGGAGGAAGACGACTCGAAGGACGAGGAGGGGGAC
GAGCGACGGACTAAGGTAGGGGAGCAGGCGCGAGCACGACGACAGCTACG
GAGATGGGACAAGTACCTTTTTGATGAGAAGGAGGGAAGGAGGGAGGGAG
AGGAAAAGGAGCGGTGTGTCTTTGCCGGGTGGGTTTGGAAGAGGACGAGG
CTCCTATCGCAGAAGAAGGTAGAGCTGCTTCTGACGAACAGACCGCGTTT
GGTTTACCTTGAAGCCAAGACATGGGAAAGGAAAGGAGAAATCAATCTCA
TTCAGGACGGCGATAAGGGAAGGATAGGCTGGAGGGAAGCCTCTCTTTCC
ACCTTGAGGAGGAGGGAGGGAGGGAAGAGCCCCGGCGTTCCTTCGTGGGT
ACAGCTGAGTACGTCTCTCCGGAAGTCTTGATTGGTGAGCCTGCCACTCC
TGCGGTAGACTTTTGGGCTGTGGGCTGCCTCCTCTTCCACCTACTCACTG
GCGTCCCTCCGTTCCTCGCTCCCTCTGAGTATTTAACCTTCGACCTGATA
ATGCAGCACTGCAATGGCTCTTTCCCCCTCTCCTTCCCACCTTCATTGCC
CCCCTCGTCCTCAGCCAGGAGTGTGATTGAGGGAATGCTGGTCCGGTGCC
CCGAGGAGAGGCTGGGGACTAGTGGAGGGAGGGAGGGAGGGAGGGAGGAA
GGGGAGATTAAGAGGCATGCTTTTTTCAGGGGTTTTGAATGGGAGGACGT
TTTTGAGAGGCCGGCACCCTGGGCGCCGGGGATGGAAGGGAGGGAAGGGG
GGGGTGAAGAAGAGAGGTGGAGGGATGGGAGGATGGAGAAGGATGTCAAT
TGCCAAATCATTACGCTGAAGGAAAAGACTTCGCCATCAAAGTGATGGAA
AAACGCCATATCCACCGGGAGAACAAGGTGCGGCAAGTCCTGGCCGAGAA
AACCGTCTTGGCCCGTCTCTCGCACCCGGGCATTGTGAAATTGTGGTTTA
CGTTTCAGGATGCGGATAATTTGTACCTGGTCCTTGACTATCATGTAGGT
GGGGATTTGATGCGTGTGATAAGGTATTTCAAGGAGGGAGGAGGAGGAGG
AGGGGGAGGAGGAGGAGGAGAAAAAAGAGGGGAACTTCCAGCCTCTCATT
CTTCCCTGCACTCTTGTTGCCCCGTGCAGCTCGCCCGTTTCTACGTAGGG
GAGGTTATCCTGGCCTTGGGATACCTGCACTCACAGAGAATAGTGCACAG
AGACGTAAAGCCCGAGAATATCCTTGTAGGACAGGACGGTCATGTAAAGC
TGGCGGATTTTGGCTCAATGGCCCGCCAAGGCGACCCCACCACTGCAGCA
GCTTCATGCCCTTCCCCTCCTCCTCCTCCTTCGCCCACTCCTGCTGCTTT
CAATCCATCATCACAATCTTCACACGACCCTCCATCACAATCTTCGCTGC
CGCAGCCACCGCAGCCACCACGGTCACAGCAGCAAGAGGAGCCACGGTCG
TCGCCGCCGCCGCCACCATCGCGGTTCAGCCAGGCCGCTTTTTGGTGGGG
CCGCACCCTGGGAGAAGGAGCCTATGCACGGGTAGTCCACGCCAGACTTA
AGCCTCGGCCTTAAAGGGGAGCATGCATTTAACGTAATCACGCCCCAACG
AACGCATCACTTTAAAGACGAGATGCTCGGGTCCGCGGTGTGGATAGAAA
AGATTCGCGAGAGTATAGAAACTGGTAAAATGGGCATCAATTGATTTTTC
GGGGGATATCAGTGGTGGTGGTGGTGAGGAGGAAGACGACTCGAAGGACG
AGGAGGGGGACGAGCGACGGACTAAGGTAGGGGAGCAGGCGCGAGCACGA
CGACAGCTACGGAGATGGGACAAGTACCTTTTTGATGAGAAGGAGGGAAG
GAGGGAGGGAGAGGAAAAGGAGCGGTGTGTCTTTGCCGGGTGGGTTTGGA
AGAGGACGAGGCTCCTATCGCAGAAGAAGGTAGAGCTGCTTCTGACGAAC
AGACCGCGTTTGGTTTACCTTGAAGCCAAGACATGGGAAAGGAAAGGAGA
AATCAATCTCATTCAGGACGGCGATAAGGGAAGGATAGGCTGGAGGGAAG
CCTCTCTTTCCACCTTGAGGAGGAGGGAGGGAGGGAAGAGCCCCGGCGTT
CCTTCGTGGGTACAGCTGAGTACGTCTCTCCGGAAGTCTTGATTGGTGAG
CCTGCCACTCCTGCGGTAGACTTTTGGGCTGTGGGCTGCCTCCTCTTCCA
CCTACTCACTGGCGTCCCTCCGTTCCTCGCTCCCTCTGAGTATTTAACCT
TCGACCTGATAATGCAGCACTGCAATGGCTCTTTCCCCCTCTCCTTCCCA
CCTTCATTGCCCCCCTCGTCCTCAGCCAGGAGTGTGATTGAGGGAATGCT
GGTCCGGTGCCCCGAGGAGAGGCTGGGGACTAGTGGAGGGAGGGAGGGAG
GGAGGGAGGAAGGGGAGATTAAGAGGCATGCTTTTTTCAGGGGTTTTGAA
TGGGAGGACGTTTTTGAGAGGCCGGCACCCTGGGCGCCGGGGATGGAAGG
GAGGGAAGGGGGGGGTGAAGAAGAGAGGTGGAGGGATGGGAGGATGGAGA
AGGATGTCAATTGCCAAATCATTACGCTGAAGGAAAAGACTTCGCCATCA
AAGTGATGGAAAAACGCCATATCCACCGGGAGAACAAGGTGCGGCAAGTC
CTGGCCGAGAAAACCGTCTTGGCCCGTCTCTCGCACCCGGGCATTGTGAA
ATTGTGGTTTACGTTTCAGGATGCGGATAATTTGTACCTGGTCCTTGACT
ATCATGTAGGTGGGGATTTGATGCGTGTGATAAGGTATTTCAAGGAGGGA
GGAGGAGGAGGAGGGGGAGGAGGAGGAGGAGAAAAAAGAGGGGAACTTCC
AGCCTCTCATTCTTCCCTGCACTCTTGTTGCCCCGTGCAGCTCGCCCGTT
TCTACGTAGGGGAGGTTATCCTGGCCTTGGGATACCTGCACTCACAGAGA
ATAGTGCACAGAGACGTAAAGCCCGAGAATATCCTTGTAGGACAGGACGG
TCATGTAAAGCTGGCGGATTTTGGCTCAATGGCCCGCCAAGGCGACCCCA
CCACTGCAGCAGCTTCATGCCCTTCCCCTCCTCCTCCTCCTTCGCCCACT
CCTGCTGCTTTCAATCCATCATCACAATCTTCACACGACCCTCCATCACA
ATCTTCGCTGCCGCAGCCACCGCAGCCACCACGGTCACAGCAGCAAGAGG
AGCCACGGTCGTCGCCGCCGCCGCCACCATCGCGGTTCAGCCAGGCCGCT
TTTTGGTGGGGCCGCACCCTGGGAGAAGGAGCCTATGCACGGGTAGTCCA
CGCCAGACTTAAGCCTCGGCCTTAAAGGGGAGCATGCATTTAACGTAATC
ACGCCCCAACGAACGCATCACTTTAAAGACGAGATGCTCGGGTCCGCGGT
GTGGATAGAAAAGATTCGCGAGAGTATAGAAACTGGTAAAATGGGCATCA
ATTGATTTTTCGGGGGATATCAGTGGTGGTGGTGGTGAGGAGGAAGACGA
CTCGAAGGACGAGGAGGGGGACGAGCGACGGACTAAGGTAGGGGAGCAGG
CGCGAGCACGACGACAGCTACGGAGATGGGACAAGTACCTTTTTGATGAG
AAGGAGGGAAGGAGGGAGGGAGAGGAAAAGGAGCGGTGTGTCTTTGCCGG
GTGGGTTTGGAAGAGGACGAGGCTCCTATCGCAGAAGAAGGTAGAGCTGC
TTCTGACGAACAGACCGCGTTTGGTTTACCTTGAAGCCAAGACATGGGAA
AGGAAAGGAGAAATCAATCTCATTCAGGACGGCGATAAGGGAAGGATAGG
CTGGAGGGAAGCCTCTCTTTCCACCTTGAGGAGGAGGGAGGGAGGGAAGA
GCCCCGGCGTTCCTTCGTGGGTACAGCTGAGTACGTCTCTCCGGAAGTCT
TGATTGGTGAGCCTGCCACTCCTGCGGTAGACTTTTGGGCTGTGGGCTGC
CTCCTCTTCCACCTACTCACTGGCGTCCCTCCGTTCCTCGCTCCCTCTGA
GTATTTAACCTTCGACCTGATAATGCAGCACTGCAATGGCTCTTTCCCCC
TCTCCTTCCCACCTTCATTGCCCCCCTCGTCCTCAGCCAGGAGTGTGATT
GAGGGAATGCTGGTCCGGTGCCCCGAGGAGAGGCTGGGGACTAGTGGAGG
GAGGGAGGGAGGGAGGGAGGAAGGGGAGATTAAGAGGCATGCTTTTTTCA
GGGGTTTTGAATGGGAGGACGTTTTTGAGAGGCCGGCACCCTGGGCGCCG
GGGATGGAAGGGAGGGAAGGGGGGGGTGAAGAAGAGAGGTGGAGGGATGG
GAGGATGGAGAAGGATGTCAATTGCCAAATCATTACGCTGAAGGAAAAGA
CTTCGCCATCAAAGTGATGGAAAAACGCCATATCCACCGGGAGAACAAGG
TGCGGCAAGTCCTGGCCGAGAAAACCGTCTTGGCCCGTCTCTCGCACCCG
GGCATTGTGAAATTGTGGTTTACGTTTCAGGATGCGGATAATTTGTACCT
GGTCCTTGACTATCATGTAGGTGGGGATTTGATGCGTGTGATAAGGTATT
TCAAGGAGGGAGGAGGAGGAGGAGGGGGAGGAGGAGGAGGAGAAAAAAGA
GGGGAACTTCCAGCCTCTCATTCTTCCCTGCACTCTTGTTGCCCCGTGCA
GCTCGCCCGTTTCTACGTAGGGGAGGTTATCCTGGCCTTGGGATACCTGC
ACTCACAGAGAATAGTGCACAGAGACGTAAAGCCCGAGAATATCCTTGTA
GGACAGGACGGTCATGTAAAGCTGGCGGATTTTGGCTCAATGGCCCGCCA
AGGCGACCCCACCACTGCAGCAGCTTCATGCCCTTCCCCTCCTCCTCCTC
CTTCGCCCACTCCTGCTGCTTTCAATCCATCATCACAATCTTCACACGAC
CCTCCATCACAATCTTCGCTGCCGCAGCCACCGCAGCCACCACGGTCACA
GCAGCAAGAGGAGCCACGGTCGTCGCCGCCGCCGCCACCATCGCGGTTCA
GCCAGGCCGCTTTTTGGTGGGGCCGCACCCTGGGAGAAGGAGCCTATGCA
CGGGTAGTCCACGCCAGACTTAAGCCTCGGCCTTAAAGGGGAGCATGCAT
TTAACGTAATCACGCCCCAACGAACGCATCACTTTAAAGACGAGATGCTC
GGGTCCGCGGTGTGGATAGAAAAGATTCGCGAGAGTATAGAAACTGGTAA
AATGGGCATCAATTGATTTTTCGGGGGATATCAGTGGTGGTGGTGGTGAG
GAGGAAGACGACTCGAAGGACGAGGAGGGGGACGAGCGACGGACTAAGGT
AGGGGAGCAGGCGCGAGCACGACGACAGCTACGGAGATGGGACAAGTACC
TTTTTGATGAGAAGGAGGGAAGGAGGGAGGGAGAGGAAAAGGAGCGGTGT
GTCTTTGCCGGGTGGGTTTGGAAGAGGACGAGGCTCCTATCGCAGAAGAA
GGTAGAGCTGCTTCTGACGAACAGACCGCGTTTGGTTTACCTTGAAGCCA
AGACATGGGAAAGGAAAGGAGAAATCAATCTCATTCAGGACGGCGATAAG
GGAAGGATAGGCTGGAGGGAAGCCTCTCTTTCCACCTTGAGGAGGAGGGA
GGGAGGGAAGAGCCCCGGCGTTCCTTCGTGGGTACAGCTGAGTACGTCTC
TCCGGAAGTCTTGATTGGTGAGCCTGCCACTCCTGCGGTAGACTTTTGGG
CTGTGGGCTGCCTCCTCTTCCACCTACTCACTGGCGTCCCTCCGTTCCTC
GCTCCCTCTGAGTATTTAACCTTCGACCTGATAATGCAGCACTGCAATGG
CTCTTTCCCCCTCTCCTTCCCACCTTCATTGCCCCCCTCGTCCTCAGCCA
GGAGTGTGATTGAGGGAATGCTGGTCCGGTGCCCCGAGGAGAGGCTGGGG
ACTAGTGGAGGGAGGGAGGGAGGGAGGGAGGAAGGGGAGATTAAGAGGCA
TGCTTTTTTCAGGGGTTTTGAATGGGAGGACGTTTTTGAGAGGCCGGCAC
CCTGGGCGCCGGGGATGGAAGGGAGGGAAGGGGGGGGTGAAGAAGAGAGG
TGGAGGGATGGGAGGATGGAGAAGGATGTCAATTGCCAAATCATTACGCT
GAAGGAAAAGACTTCGCCATCAAAGTGATGGAAAAACGCCATATCCACCG
GGAGAACAAGGTGCGGCAAGTCCTGGCCGAGAAAACCGTCTTGGCCCGTC
TCTCGCACCCGGGCATTGTGAAATTGTGGTTTACGTTTCAGGATGCGGAT
AATTTGTACCTGGTCCTTGACTATCATGTAGGTGGGGATTTGATGCGTGT
GATAAGGTATTTCAAGGAGGGAGGAGGAGGAGGAGGGGGAGGAGGAGGAG
GAGAAAAAAGAGGGGAACTTCCAGCCTCTCATTCTTCCCTGCACTCTTGT
TGCCCCGTGCAGCTCGCCCGTTTCTACGTAGGGGAGGTTATCCTGGCCTT
GGGATACCTGCACTCACAGAGAATAGTGCACAGAGACGTAAAGCCCGAGA
ATATCCTTGTAGGACAGGACGGTCATGTAAAGCTGGCGGATTTTGGCTCA
ATGGCCCGCCAAGGCGACCCCACCACTGCAGCAGCTTCATGCCCTTCCCC
TCCTCCTCCTCCTTCGCCCACTCCTGCTGCTTTCAATCCATCATCACAAT
CTTCACACGACCCTCCATCACAATCTTCGCTGCCGCAGCCACCGCAGCCA
CCACGGTCACAGCAGCAAGAGGAGCCACGGTCGTCGCCGCCGCCGCCACC
ATCGCGGTTCAGCCAGGCCGCTTTTTGGTGGGGCCGCACCCTGGGAGAAG
GAGCCTATGCACGGGTAGTCCACGCCAGACTTAAGCCTCGGCCTTAAAGG
GGAGCATGCATTTAACGTAATCACGCCCCAACGAACGCATCACTTTAAAG
ACGAGATGCTCGGGTCCGCGGTGTGGATAGAAAAGATTCGCGAGAGTATA
GAAACTGGTAAAATGGGCATCAATTGATTTTTCGGGGGATATCAGTGGTG
GTGGTGGTGAGGAGGAAGACGACTCGAAGGACGAGGAGGGGGACGAGCGA
CGGACTAAGGTAGGGGAGCAGGCGCGAGCACGACGACAGCTACGGAGATG
GGACAAGTACCTTTTTGATGAGAAGGAGGGAAGGAGGGAGGGAGAGGAAA
AGGAGCGGTGTGTCTTTGCCGGGTGGGTTTGGAAGAGGACGAGGCTCCTA
TCGCAGAAGAAGGTAGAGCTGCTTCTGACGAACAGACCGCGTTTGGTTTA
CCTTGAAGCCAAGACATGGGAAAGGAAAGGAGAAATCAATCTCATTCAGG
ACGGCGATAAGGGAAGGATAGGCTGGAGGGAAGCCTCTCTTTCCACCTTG
AGGAGGAGGGAGGGAGGGAAGAGCCCCGGCGTTCCTTCGTGGGTACAGCT
GAGTACGTCTCTCCGGAAGTCTTGATTGGTGAGCCTGCCACTCCTGCGGT
AGACTTTTGGGCTGTGGGCTGCCTCCTCTTCCACCTACTCACTGGCGTCC
CTCCGTTCCTCGCTCCCTCTGAGTATTTAACCTTCGACCTGATAATGCAG
CACTGCAATGGCTCTTTCCCCCTCTCCTTCCCACCTTCATTGCCCCCCTC
GTCCTCAGCCAGGAGTGTGATTGAGGGAATGCTGGTCCGGTGCCCCGAGG
AGAGGCTGGGGACTAGTGGAGGGAGGGAGGGAGGGAGGGAGGAAGGGGAG
ATTAAGAGGCATGCTTTTTTCAGGGGTTTTGAATGGGAGGACGTTTTTGA
GAGGCCGGCACCCTGGGCGCCGGGGATGGAAGGGAGGGAAGGGGGGGGTG
AAGAAGAGAGGTGGAGGGATGGGAGGATGGAGAAGGATGTCAATTGCCAA
ATCATTACGCTGAAGGAAAAGACTTCGCCATCAAAGTGATGGAAAAACGC
CATATCCACCGGGAGAACAAGGTGCGGCAAGTCCTGGCCGAGAAAACCGT
CTTGGCCCGTCTCTCGCACCCGGGCATTGTGAAATTGTGGTTTACGTTTC
AGGATGCGGATAATTTGTACCTGGTCCTTGACTATCATGTAGGTGGGGAT
TTGATGCGTGTGATAAGGTATTTCAAGGAGGGAGGAGGAGGAGGAGGGGG
AGGAGGAGGAGGAGAAAAAAGAGGGGAACTTCCAGCCTCTCATTCTTCCC
TGCACTCTTGTTGCCCCGTGCAGCTCGCCCGTTTCTACGTAGGGGAGGTT
ATCCTGGCCTTGGGATACCTGCACTCACAGAGAATAGTGCACAGAGACGT
AAAGCCCGAGAATATCCTTGTAGGACAGGACGGTCATGTAAAGCTGGCGG
ATTTTGGCTCAATGGCCCGCCAAGGCGACCCCACCACTGCAGCAGCTTCA
TGCCCTTCCCCTCCTCCTCCTCCTTCGCCCACTCCTGCTGCTTTCAATCC
ATCATCACAATCTTCACACGACCCTCCATCACAATCTTCGCTGCCGCAGC
CACCGCAGCCACCACGGTCACAGCAGCAAGAGGAGCCACGGTCGTCGCCG
CCGCCGCCACCATCGCGGTTCAGCCAGGCCGCTTTTTGGTGGGGCCGCAC
CCTGGGAGAAGGAGCCTATGCACGGGTAGTCCACGCCAGACTTAAGCCTC
GGCCT
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Synonyms
Publications