jgi.p|Nanoce1779_2|674058, mRNA_9337 (mRNA) Nannochloropsis oceanica

Overview
Namejgi.p|Nanoce1779_2|674058
Unique NamemRNA_9337
TypemRNA
OrganismNannochloropsis oceanica (N. oceanica CCMP1779)
Sequence length2389
Alignment locationscaffold_35:112120..116537 +

Link to JBrowse

Properties
Property NameValue
TranscriptId674144
TrackFilteredModels2
ProteinId674058
Mutants
Expression
No biomaterial libraries express this feature.
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
scaffold_35supercontigscaffold_35:112120..116537 +
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|674058gene_9337Nannochloropsis oceanica (N. oceanica CCMP1779)gene


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

Feature NameUnique NameSpeciesType
jgi.p|Nanoce1779_2|674058mRNA_9337-proteinNannochloropsis oceanica (N. oceanica CCMP1779)polypeptide


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

Feature NameUnique NameSpeciesType
CDS_9337CDS_9337Nannochloropsis oceanica (N. oceanica CCMP1779)CDS


Sequences
The following sequences are available for this feature:

mRNA sequence

>mRNA_9337 ID=mRNA_9337|Name=jgi.p|Nanoce1779_2|674058|organism=Nannochloropsis oceanica|type=mRNA|length=2389bp
CCTTCCCTCCTTCACTCCCTCCCTCCCCCCCTCCCCCCTCTTCCCCCTCC
TCCTTCTCCTCTCCCAAGAACACCCACTGCTCCCCCCCCGTTGAGAGCGC
CACATGCTCCCATCCTTCCTCCCCCCCACCTTCTTTCCTTGTCTCCTTTC
CTCCCTCCCCCCACACCTCCTCCACCGACGGCCAGACCATCGGATCCTCC
ACCCTCAGCCCTTGTCCTCCGTCCCCTCCTCCATCCTTCCATCCCTCCCT
CGTGTGATGCCCGCTGTTCTGCAGAGACGTAAGGATGGTGGAGGCGGCGG
CAAACACCTCATGGGCCTGCTCCCATACGGCTTCAACGAGGCAGGGGTCG
GCAGAGGGGAATGCCTACGGGGGAGGAGGGAGGGAAGGAAGGAGGGAGGG
AGGGAGGGAGGGCGGGAGGGGTCAATGGAAGATAGCATACACGTAGAAAA
TCGGCGCCTCTTCATCCTAACCCTTCATCCCTCCCTCTCTGCTTCTCTCC
CACTTTCGCTCCTCACCTGAAGCAAGTCCTCCTTCCTCCTCCTATCCCTC
ATTACCCTGACTTTCGCCCCCTCCTCTTCAATGAAAACCACCAGCCCATT
CTCTCCGACCAATGTGCGGCCTCGCCCCGGGAAAAGCCTGCTGCCAGTGC
CACTCCTGCTACTGCTGCCAGAAGAACGACTGAAGAAAGAAGCAGCGGCA
AGATCAGCACCAACAGTAGCCTCATTCTCAGTCACAACTGAGGGGCGGAT
GGAAGTGGAGGAAGAGGAGGAGGATGAGGACGGAGCAGCAGCAGCGGCAG
CAGCAGCAGCATTGGCGGCATCTCGACGGGCGAAGAGCATAGATGGGCTC
AGTCGTTGAAAATGGTAAGCACGTGGACGATCAGGCTGTTCTTGTTGCTG
CTGCTCTTGCTGCTTCTCTTGCCGAAGTTGGAGTCGGCGCACTTGGGCCG
TCAAGTCGTTCAGGTCGAAGAGTTTTAGACATCCGGTGTGCGCCCGCAGA
GAATCCCATTGGAAGCTCATCTTTCCCCGACGATGCGGGTGTTAATGCTG
CTGGTGGATTGTAGGAGAGGAGCGTGGGAATCTCGCCCGCGCGGTGTCGG
GGGAGGGGTCGGGGGACAGAAAGCTTAAGCTAGACGCTTCGTGACCAGCT
TGCCTGGCGTTTGTTGCGCCTGTGAAGTGTGGTGATGTGTGTGGTGTGAA
GTGTGTGTGCTCGACAGTATCCTGGCATTGCACATTAATGTGCGCTGGCA
TGGCGGGGGCGATCCGAAGCAAGAAGCAGGAAGGGGGGGAGGGTTGATGC
AAATAACACTTATTCATCAAGTCCAGCCGCGAAGGACCCCTGCATATGAA
AATATTGAAATCGTCGTTGACCTGGTTGTGGGGATGGTGGGGGAGAAAGA
TGTTTGACTGGATGAGTCACGGGAACAAAACAACAGTGGCACGACACCAA
TTACAACAACAGGATTGGGAGGCGGCGGAAGTGGAGGAAGAGTCTTCGAA
TCGAACCCCCTGTCTGACTCGGGTCTGTGCGGGATTTTACACGGCCAAGT
GCACAGCAGCTGCAGTAGCAGAAACGTGGCTCTCCCCCACGATATGGGCC
GACCCTCATGCCCTGGTGGAATTAAACACTGTGCACAACCTTCGGACATT
CTTCGTCGGAATCCGTACCCGCTGGGTCCTTGAGAATCACGGGCGTACTT
CCGTGGCCGTGCAGACAATGCGAGATATGATCAGCATTACTACTGCCAGC
GCCACTGCATCCATGGCCTTTATCTCCATCTTCATCGGCCTCTCCAAGTT
CAATTTGTCGAGCTCGAGCCTCATCAGCTGTCCCCCTTCGGAGGATGGCA
CTCCCTGCTCCTTGTTCGAGCAACGCATACGCTTCGCACGCTTCGGCCTT
TGCATCGGCAATTTTGTCGTCATCTTCTTCAACATGCTCCTCGCCACGCG
CTACGCCATCAACAGCACCTTCATGCTCAATACCAAAGAGGTGGATGGGA
AGCCCCTCTCCCAGATGTTGACCGTTAATGTCCTCGCACGGGCCTCGTGG
CACTACACCCTAGGCGTCCGCGGATTCTTCCTGGCAGCTCCTCTTGTCTC
GTGGCTCTTTGGATCGTGGATGCTCCTGGGCACCACCGTCCTTTACGTGC
TCGGCGTGGCGCTCATGGAAGAGGACTTCCTCCTCACAGAGGAGGTATGG
CGGGACATTCCGTGCCCTTCGAGTCCCCGCCACGGCCACGACGCACAGAC
ACCGGAAGGGGCTACGAAAGTGGGGGAGGGGGAGAAGGAGGGAGGGAAGG
AGGGAGGGAAGGAGGGAGGGAAGGGGAGGGGGTCTCCACGGCCGCGGAAG
CCGAGTTTGGAGGAAGCGATTTTGTTGCAGTCGGTGTGA
back to top

protein sequence of jgi.p|Nanoce1779_2|674058

>mRNA_9337-protein ID=mRNA_9337-protein|Name=jgi.p|Nanoce1779_2|674058|organism=Nannochloropsis oceanica|type=polypeptide|length=348bp
MKILKSSLTWLWGWWGRKMFDWMSHGNKTTVARHQLQQQDWEAAEVEEES
SNRTPCLTRVCAGFYTAKCTAAAVAETWLSPTIWADPHALVELNTVHNLR
TFFVGIRTRWVLENHGRTSVAVQTMRDMISITTASATASMAFISIFIGLS
KFNLSSSSLISCPPSEDGTPCSLFEQRIRFARFGLCIGNFVVIFFNMLLA
TRYAINSTFMLNTKEVDGKPLSQMLTVNVLARASWHYTLGVRGFFLAAPL
VSWLFGSWMLLGTTVLYVLGVALMEEDFLLTEEVWRDIPCPSSPRHGHDA
QTPEGATKVGEGEKEGGKEGGKEGGKGRGSPRPRKPSLEEAILLQSV*
back to top

mRNA from alignment at scaffold_35:112120..116537+

Legend: polypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_9337 ID=mRNA_9337|Name=jgi.p|Nanoce1779_2|674058|organism=Nannochloropsis oceanica|type=mRNA|length=4418bp|location=Sequence derived from alignment at scaffold_35:112120..116537+ (Nannochloropsis oceanica)
CCTTCCCTCCTTCACTCCCTCCCTCCCCCCCTCCCCCCTCTTCCCCCTCC TCCTTCTCCTCTCCCAAGAACACCCACTGCTCCCCCCCCGTTGAGAGCGC CACATGCTCCCATCCTTCCTCCCCCCCACCTTCTTTCCTTGTCTCCTTTC CTCCCTCCCCCCACACCTCCTCCACCGACGGCCAGACCATCGGATCCTCC ACCCTCAGCCCTTGTCCTCCGTCCCCTCCTCCATCCTTCCATCCCTCCCT CGTGTGATGCCCGCTGTTCTGCAGAGACGTAAGGATGGTGGAGGCGGCGG CAAACACCTCATGGGCCTGCTCCCATACGGCTTCAACGAGGCAGGGGTCG GCAGAGGGGAATGCCTACGGGGGAGGAGGGAGGGAAGGAAGGAGGGAGGG AGGGAGGGAGGGCGGGAGGGGTCAATGGAAGATAGCATACACGTAGAAAA TCGGCGCCTCTTCATCCTAACCCTTCATCCCTCCCTCTCTGCTTCTCTCC CACTTTCGCTCCTCACCTGAAGCAAGTCCTCCTTCCTCCTCCTATCCCTC ATTACCCTGACTTTCGCCCCCTCCTCTTCAATGAAAACCACCAGCCCATT CTCTCCGACCAATGTGCGGCCTCGCCCCGGGAAAAGCCTGCTGCCAGTGC CACTCCTGCTACTGCTGCCAGAAGAACGACTGAAGAAAGAAGCAGCGGCA AGATCAGCACCAACAGTAGCCTCATTCTCAGTCACAACTGAGGGGCGGAT GGAAGTGGAGGAAGAGGAGGAGGATGAGGACGGAGCAGCAGCAGCGGCAG CAGCAGCAGCATTGGCGGCATCTCGACGGGCGAAGAGCATAGATGGGCTC AGTCGTTGAAAATGGTAAGCACGTGGACGATCAGGCTGTTCTTGTTGCTG CTGCTCTTGCTGCTTCTCTTGCCGAAGTTGGAGTCGGCGCACTTGGGCCG TCAAGTCGTTCAGGTCGAAGAGTTTTAGACATCCGGTGTGCGCCCGCAGA GAATCCCATTGGAAGCTCATCTTTCCCCGACGATGCGGGTGTTAATGCTG CTGGTGGATTGTAGGAGAGGAGCGTGGGAATCTCGCCCGCGCGGTGTCGG GGGAGGGGTCGGGGGACAGAAAGCTTAAGCTAGACGCTTCGTGACCAGCT TGCCTGGCGTTTGTTGCGCCTGTGAAGTGTGGTGATGTGTGTGGTGTGAA GTGTGTGTGCTCGACAGTATCCTGGCATTGCACATTAATGTGCGCTGGCA TGGCGGGGGCGATCCGAAGCAAGAAGCAGGAAGGGGGGGAGGGTTGATGC AAATAACACTTATTCATCAAGTCCAGCCGCGAAGGACCCCTGCATATGAA AATATTGAAATCGTCGTTGACCTGGTTGTGGGGATGGTGGGGGAGAAAGA TGTTTGACTGGATGAGTCACGGGAAGTAAGCAGGGAGTGGAATCACGCTG CAGGCGCGGGCGGGGAAAGACAGGAAGACAGCTGTTGCGCGCCTTGCAGG GACCAATGACACACTGGTCTGATCCCCTAAGCTTACTCCACCGCCCAAGT TCACATTCAGACAGCACAGCCTTAATTGAGGGTCAAAGGACGGCTGGGCG GTCTTATATTTTCAAAACCCTGGAGGCAACGAATACGCGCAACGCAAAAC ACCCCCGTGGGTCATACGCTAACGTCTCGATCTCCCGGAGCTGCAACTTT TGGGACAAAACCTTGATTATGTGGATTCAAACACAAACATCATAAGCGCT GGAGGAGGAGGAGCGTGTCGAGTAGAAATTGCGCCTTGCACAGTCATCCC TTTGATACGCGCTACGCACACACACGCTTGAAGCTATTTAGCCTCCCCAC CATCACAACACCCTTTCCACGCGAGACCAAGGAGCTTCACTCACACAACC ACACCTAATCATACTACAGCAAAACAACAGTGGCACGACACCAATTACAA CAACAGGATTGGGAGGCGGCGGAAGTGGAGGAAGAGTCTTCGAATCGAAC CCCCTGTCTGACTCGGGTCTGTGCGGGATTTTACACGGCCAAGTGCACAG CAGCTGCAGTAGCAGAAGTAGCAGCAACAATAAGAGCAGCAACAACAACA GGCACAGGAAGGGGGCAGCTGAACCCAAAATATGAGAAGCGTTGTGTCAC GGGAAGTAGAGCAGATAGCAGTCCCCTTGGTGTGCTTCGCTGCCATCTGT CTCGTCCATGCACGTTACCTGAAGGTCAGCAGCTCAAGAACAAACACGTC CCTCCCCCTCCACATCCCTCTTCTTCCCCTCCCATCACTTCGTCAATTTC TTCCAACCCTTTCCCATTCAAACATGTAAATTCTCAATCCATATACAAGT TCATCGGGTTTCGTCTCGTCACCTCTCAATCCCTTCATTCCCTCCCCTTC CTCCCTCCCTCCTCTCCCTCCCTCCCTGCACTCCAGACGTGGCTCTCCCC CACGATATGGGCCGACCCTCATGCCCTGGTGGAATTAAACACTGTGCACA ACCTTCGGACATTCTTCGTCGGAATCGTAAGTCATACAGGGAGGGGAAGA TGTATATATAGCTACAGAAGGAGCGAGAGAAAGAGAGAGAGAGAGAGAGA GAGAAAGAGAGAGAGAGAGAGAGAAAGAGAGAGAGAGAGAGAGAAAGAGA GAGAGAGAGAGAGAGAGAGAGAGAGAAACGGAGACATAGGGAGCAGGGCG ACGTTACCAAACGCTCAACAACAGTCCCGGTGAAAGGTGTTGTCCACTTT CACTCACTCTCTCCCTTCCTCCCTCCTTTTCATTCCTCCTTCTCTCGGAC AGCGTACCCGCTGGGTCCTTGAGAATCACGGGCGTACTTCCGTGGCCGTG CAGACAATGCGAGATATGATCAGGTAATTAAAATAATATTAGAAGGATGA TTTACGGGTCAAAGAGTTAATTTAATCACGGGCGCACCTCCATGGCCGTG CAAACAATGCGAGATATGACGTGGTACAAACGGCACTTTCCCTCCCTCCC TCCCTCCCTCCCTCCCTCCCTCCCTCCCTCTCTCCCTCCCTCTCTCCCTC TCATCCTTTCACCCTCCTCCTTCCCACCTCCCCCTTCCCTCAGCATTACT ACTGCCAGCGCCACTGCATCCATGGCCTTTATCTCCATCTTCATCGGCCT CTCCAAGTTCAATTTGTCGAGCTCGAGCCTCATCAGCTGTCCCCCTTCGG AGGATGGCACTCCCTGCTCCTTGTTCGAGCAACGCATACGCTTCGCACGG TACGCCCGCCTTCAAGCCCGCCATCCCTCCCTCCGTCCCTTCCTCCCTCC GCCCCTCCCTCCCTCTGTCTCGTTCCTACAAGCATCCCAACCCTGAGCCC TCCCTCCCTCCCTCCCTCCCTCCCTCCTTTCCTCTCTCAGCTTCGGCCTT TGCATCGGCAATTTTGTCGTCATCTTCTTCAACATGCTCCTCGCCACGCG CTACGCCATCAACAGCACCTTCATGCTCAATACCAAAGGTACTTCCCTCC CTCCCTCTCTCCCACCCTCCCTCCCTCCCTCCAGTGGAAGTCATCTATCC CCTGCTCACCTATATACTCCTTCTCTCCCTCCGTCCCTCTCTTCCTCCCT CTCTCTATCCTTCCTTTCTTCCCTCCCCATCATTCAGAGGTGGATGGGAA GCCCCTCTCCCAGATGTTGACCGTTAATGTCCTCGCACGGGCCTCGTGGC ACTACACCCTAGGTAGGTAGGGAAGGAGAGAGAGGGAGGGAGGGAGGGAG GGAGGGAGGGAGGGAGGGAGGGACAGAAGGTGGCGCACTCATTGATTAAC ACCTTGGGAAGGGAGGGAGGGAGGAAGGGAGGGAGGGAGGGAGGGAGGAG GAGGGCGATTTAGATAAGCTCTTTCTACACGAGTGCTTATGCCCGCGCTC ACTGCCAACGCCTCCTTCCTCCCTTTCTCCCTCCCTCCCTCCCTAGGCGT CCGCGGATTCTTCCTGGCAGCTCCTCTTGTCTCGTGGCTCTTTGGATCGT GGATGCTCCTGGGCACCACCGTCCTTTACGTGCTCGGCGTGGCGCTCATG GTAGGTCCTCCTTCCCTCCCTCCCTCCCTTCTTAAACGGTAGGTACACCT ATGCTTCATTCCGTTCTCTCTGCTCAGCTCTATTACCCTCCCTCCCTCCC TCCCTCCCTCTCTCTCTCCCTCCCTCCCTCCCTCTGTGCACGGTAGGAAG AGGACTTCCTCCTCACAGAGGAGGTATGGCGGGACATTCCGTGCCCTTCG AGTCCCCGCCACGGCCACGACGCACAGACACCGGAAGGGGCTACGAAAGT GGGGGAGGGGGAGAAGGAGGGAGGGAAGGAGGGAGGGAAGGAGGGAGGGA AGGGGAGGGGGTCTCCACGGCCGCGGAAGCCGAGTTTGGAGGAAGCGATT TTGTTGCAGTCGGTGTGA
back to top

Coding sequence (CDS) from alignment at scaffold_35:112120..116537+

>mRNA_9337 ID=mRNA_9337|Name=jgi.p|Nanoce1779_2|674058|organism=Nannochloropsis oceanica|type=CDS|length=9396bp|location=Sequence derived from alignment at scaffold_35:112120..116537+ (Nannochloropsis oceanica)
ATGAAAATATTGAAATCGTCGTTGACCTGGTTGTGGGGATGGTGGGGGAG
AAAGATGTTTGACTGGATGAGTCACGGGAACAAAACAACAGTGGCACGAC
ACCAATTACAACAACAGGATTGGGAGGCGGCGGAAGTGGAGGAAGAGTCT
TCGAATCGAACCCCCTGTCTGACTCGGGTCTGTGCGGGATTTTACACGGC
CAAGTGCACAGCAGCTGCAGTAGCAGAAACGTGGCTCTCCCCCACGATAT
GGGCCGACCCTCATGCCCTGGTGGAATTAAACACTGTGCACAACCTTCGG
ACATTCTTCGTCGGAATCCGTACCCGCTGGGTCCTTGAGAATCACGGGCG
TACTTCCGTGGCCGTGCAGACAATGCGAGATATGATCAGCATTACTACTG
CCAGCGCCACTGCATCCATGGCCTTTATCTCCATCTTCATCGGCCTCTCC
AAGTTCAATTTGTCGAGCTCGAGCCTCATCAGCTGTCCCCCTTCGGAGGA
TGGCACTCCCTGCTCCTTGTTCGAGCAACGCATACGCTTCGCACGCTTCG
GCCTTTGCATCGGCAATTTTGTCGTCATCTTCTTCAACATGCTCCTCGCC
ACGCGCTACGCCATCAACAGCACCTTCATGCTCAATACCAAAGAGGTGGA
TGGGAAGCCCCTCTCCCAGATGTTGACCGTTAATGTCCTCGCACGGGCCT
CGTGGCACTACACCCTAGGCGTCCGCGGATTCTTCCTGGCAGCTCCTCTT
GTCTCGTGGCTCTTTGGATCGTGGATGCTCCTGGGCACCACCGTCCTTTA
CGTGCTCGGCGTGGCGCTCATGGAAGAGGACTTCCTCCTCACAGAGGAGG
TATGGCGGGACATTCCGTGCCCTTCGAGTCCCCGCCACGGCCACGACGCA
CAGACACCGGAAGGGGCTACGAAAGTGGGGGAGGGGGAGAAGGAGGGAGG
GAAGGAGGGAGGGAAGGAGGGAGGGAAGGGGAGGGGGTCTCCACGGCCGC
GGAAGCCGAGTTTGGAGGAAGCGATTTTGTTGCAGTCGGTGTGAATGAAA
ATATTGAAATCGTCGTTGACCTGGTTGTGGGGATGGTGGGGGAGAAAGAT
GTTTGACTGGATGAGTCACGGGAACAAAACAACAGTGGCACGACACCAAT
TACAACAACAGGATTGGGAGGCGGCGGAAGTGGAGGAAGAGTCTTCGAAT
CGAACCCCCTGTCTGACTCGGGTCTGTGCGGGATTTTACACGGCCAAGTG
CACAGCAGCTGCAGTAGCAGAAACGTGGCTCTCCCCCACGATATGGGCCG
ACCCTCATGCCCTGGTGGAATTAAACACTGTGCACAACCTTCGGACATTC
TTCGTCGGAATCCGTACCCGCTGGGTCCTTGAGAATCACGGGCGTACTTC
CGTGGCCGTGCAGACAATGCGAGATATGATCAGCATTACTACTGCCAGCG
CCACTGCATCCATGGCCTTTATCTCCATCTTCATCGGCCTCTCCAAGTTC
AATTTGTCGAGCTCGAGCCTCATCAGCTGTCCCCCTTCGGAGGATGGCAC
TCCCTGCTCCTTGTTCGAGCAACGCATACGCTTCGCACGCTTCGGCCTTT
GCATCGGCAATTTTGTCGTCATCTTCTTCAACATGCTCCTCGCCACGCGC
TACGCCATCAACAGCACCTTCATGCTCAATACCAAAGAGGTGGATGGGAA
GCCCCTCTCCCAGATGTTGACCGTTAATGTCCTCGCACGGGCCTCGTGGC
ACTACACCCTAGGCGTCCGCGGATTCTTCCTGGCAGCTCCTCTTGTCTCG
TGGCTCTTTGGATCGTGGATGCTCCTGGGCACCACCGTCCTTTACGTGCT
CGGCGTGGCGCTCATGGAAGAGGACTTCCTCCTCACAGAGGAGGTATGGC
GGGACATTCCGTGCCCTTCGAGTCCCCGCCACGGCCACGACGCACAGACA
CCGGAAGGGGCTACGAAAGTGGGGGAGGGGGAGAAGGAGGGAGGGAAGGA
GGGAGGGAAGGAGGGAGGGAAGGGGAGGGGGTCTCCACGGCCGCGGAAGC
CGAGTTTGGAGGAAGCGATTTTGTTGCAGTCGGTGTGAATGAAAATATTG
AAATCGTCGTTGACCTGGTTGTGGGGATGGTGGGGGAGAAAGATGTTTGA
CTGGATGAGTCACGGGAACAAAACAACAGTGGCACGACACCAATTACAAC
AACAGGATTGGGAGGCGGCGGAAGTGGAGGAAGAGTCTTCGAATCGAACC
CCCTGTCTGACTCGGGTCTGTGCGGGATTTTACACGGCCAAGTGCACAGC
AGCTGCAGTAGCAGAAACGTGGCTCTCCCCCACGATATGGGCCGACCCTC
ATGCCCTGGTGGAATTAAACACTGTGCACAACCTTCGGACATTCTTCGTC
GGAATCCGTACCCGCTGGGTCCTTGAGAATCACGGGCGTACTTCCGTGGC
CGTGCAGACAATGCGAGATATGATCAGCATTACTACTGCCAGCGCCACTG
CATCCATGGCCTTTATCTCCATCTTCATCGGCCTCTCCAAGTTCAATTTG
TCGAGCTCGAGCCTCATCAGCTGTCCCCCTTCGGAGGATGGCACTCCCTG
CTCCTTGTTCGAGCAACGCATACGCTTCGCACGCTTCGGCCTTTGCATCG
GCAATTTTGTCGTCATCTTCTTCAACATGCTCCTCGCCACGCGCTACGCC
ATCAACAGCACCTTCATGCTCAATACCAAAGAGGTGGATGGGAAGCCCCT
CTCCCAGATGTTGACCGTTAATGTCCTCGCACGGGCCTCGTGGCACTACA
CCCTAGGCGTCCGCGGATTCTTCCTGGCAGCTCCTCTTGTCTCGTGGCTC
TTTGGATCGTGGATGCTCCTGGGCACCACCGTCCTTTACGTGCTCGGCGT
GGCGCTCATGGAAGAGGACTTCCTCCTCACAGAGGAGGTATGGCGGGACA
TTCCGTGCCCTTCGAGTCCCCGCCACGGCCACGACGCACAGACACCGGAA
GGGGCTACGAAAGTGGGGGAGGGGGAGAAGGAGGGAGGGAAGGAGGGAGG
GAAGGAGGGAGGGAAGGGGAGGGGGTCTCCACGGCCGCGGAAGCCGAGTT
TGGAGGAAGCGATTTTGTTGCAGTCGGTGTGAATGAAAATATTGAAATCG
TCGTTGACCTGGTTGTGGGGATGGTGGGGGAGAAAGATGTTTGACTGGAT
GAGTCACGGGAACAAAACAACAGTGGCACGACACCAATTACAACAACAGG
ATTGGGAGGCGGCGGAAGTGGAGGAAGAGTCTTCGAATCGAACCCCCTGT
CTGACTCGGGTCTGTGCGGGATTTTACACGGCCAAGTGCACAGCAGCTGC
AGTAGCAGAAACGTGGCTCTCCCCCACGATATGGGCCGACCCTCATGCCC
TGGTGGAATTAAACACTGTGCACAACCTTCGGACATTCTTCGTCGGAATC
CGTACCCGCTGGGTCCTTGAGAATCACGGGCGTACTTCCGTGGCCGTGCA
GACAATGCGAGATATGATCAGCATTACTACTGCCAGCGCCACTGCATCCA
TGGCCTTTATCTCCATCTTCATCGGCCTCTCCAAGTTCAATTTGTCGAGC
TCGAGCCTCATCAGCTGTCCCCCTTCGGAGGATGGCACTCCCTGCTCCTT
GTTCGAGCAACGCATACGCTTCGCACGCTTCGGCCTTTGCATCGGCAATT
TTGTCGTCATCTTCTTCAACATGCTCCTCGCCACGCGCTACGCCATCAAC
AGCACCTTCATGCTCAATACCAAAGAGGTGGATGGGAAGCCCCTCTCCCA
GATGTTGACCGTTAATGTCCTCGCACGGGCCTCGTGGCACTACACCCTAG
GCGTCCGCGGATTCTTCCTGGCAGCTCCTCTTGTCTCGTGGCTCTTTGGA
TCGTGGATGCTCCTGGGCACCACCGTCCTTTACGTGCTCGGCGTGGCGCT
CATGGAAGAGGACTTCCTCCTCACAGAGGAGGTATGGCGGGACATTCCGT
GCCCTTCGAGTCCCCGCCACGGCCACGACGCACAGACACCGGAAGGGGCT
ACGAAAGTGGGGGAGGGGGAGAAGGAGGGAGGGAAGGAGGGAGGGAAGGA
GGGAGGGAAGGGGAGGGGGTCTCCACGGCCGCGGAAGCCGAGTTTGGAGG
AAGCGATTTTGTTGCAGTCGGTGTGAATGAAAATATTGAAATCGTCGTTG
ACCTGGTTGTGGGGATGGTGGGGGAGAAAGATGTTTGACTGGATGAGTCA
CGGGAACAAAACAACAGTGGCACGACACCAATTACAACAACAGGATTGGG
AGGCGGCGGAAGTGGAGGAAGAGTCTTCGAATCGAACCCCCTGTCTGACT
CGGGTCTGTGCGGGATTTTACACGGCCAAGTGCACAGCAGCTGCAGTAGC
AGAAACGTGGCTCTCCCCCACGATATGGGCCGACCCTCATGCCCTGGTGG
AATTAAACACTGTGCACAACCTTCGGACATTCTTCGTCGGAATCCGTACC
CGCTGGGTCCTTGAGAATCACGGGCGTACTTCCGTGGCCGTGCAGACAAT
GCGAGATATGATCAGCATTACTACTGCCAGCGCCACTGCATCCATGGCCT
TTATCTCCATCTTCATCGGCCTCTCCAAGTTCAATTTGTCGAGCTCGAGC
CTCATCAGCTGTCCCCCTTCGGAGGATGGCACTCCCTGCTCCTTGTTCGA
GCAACGCATACGCTTCGCACGCTTCGGCCTTTGCATCGGCAATTTTGTCG
TCATCTTCTTCAACATGCTCCTCGCCACGCGCTACGCCATCAACAGCACC
TTCATGCTCAATACCAAAGAGGTGGATGGGAAGCCCCTCTCCCAGATGTT
GACCGTTAATGTCCTCGCACGGGCCTCGTGGCACTACACCCTAGGCGTCC
GCGGATTCTTCCTGGCAGCTCCTCTTGTCTCGTGGCTCTTTGGATCGTGG
ATGCTCCTGGGCACCACCGTCCTTTACGTGCTCGGCGTGGCGCTCATGGA
AGAGGACTTCCTCCTCACAGAGGAGGTATGGCGGGACATTCCGTGCCCTT
CGAGTCCCCGCCACGGCCACGACGCACAGACACCGGAAGGGGCTACGAAA
GTGGGGGAGGGGGAGAAGGAGGGAGGGAAGGAGGGAGGGAAGGAGGGAGG
GAAGGGGAGGGGGTCTCCACGGCCGCGGAAGCCGAGTTTGGAGGAAGCGA
TTTTGTTGCAGTCGGTGTGAATGAAAATATTGAAATCGTCGTTGACCTGG
TTGTGGGGATGGTGGGGGAGAAAGATGTTTGACTGGATGAGTCACGGGAA
CAAAACAACAGTGGCACGACACCAATTACAACAACAGGATTGGGAGGCGG
CGGAAGTGGAGGAAGAGTCTTCGAATCGAACCCCCTGTCTGACTCGGGTC
TGTGCGGGATTTTACACGGCCAAGTGCACAGCAGCTGCAGTAGCAGAAAC
GTGGCTCTCCCCCACGATATGGGCCGACCCTCATGCCCTGGTGGAATTAA
ACACTGTGCACAACCTTCGGACATTCTTCGTCGGAATCCGTACCCGCTGG
GTCCTTGAGAATCACGGGCGTACTTCCGTGGCCGTGCAGACAATGCGAGA
TATGATCAGCATTACTACTGCCAGCGCCACTGCATCCATGGCCTTTATCT
CCATCTTCATCGGCCTCTCCAAGTTCAATTTGTCGAGCTCGAGCCTCATC
AGCTGTCCCCCTTCGGAGGATGGCACTCCCTGCTCCTTGTTCGAGCAACG
CATACGCTTCGCACGCTTCGGCCTTTGCATCGGCAATTTTGTCGTCATCT
TCTTCAACATGCTCCTCGCCACGCGCTACGCCATCAACAGCACCTTCATG
CTCAATACCAAAGAGGTGGATGGGAAGCCCCTCTCCCAGATGTTGACCGT
TAATGTCCTCGCACGGGCCTCGTGGCACTACACCCTAGGCGTCCGCGGAT
TCTTCCTGGCAGCTCCTCTTGTCTCGTGGCTCTTTGGATCGTGGATGCTC
CTGGGCACCACCGTCCTTTACGTGCTCGGCGTGGCGCTCATGGAAGAGGA
CTTCCTCCTCACAGAGGAGGTATGGCGGGACATTCCGTGCCCTTCGAGTC
CCCGCCACGGCCACGACGCACAGACACCGGAAGGGGCTACGAAAGTGGGG
GAGGGGGAGAAGGAGGGAGGGAAGGAGGGAGGGAAGGAGGGAGGGAAGGG
GAGGGGGTCTCCACGGCCGCGGAAGCCGAGTTTGGAGGAAGCGATTTTGT
TGCAGTCGGTGTGAATGAAAATATTGAAATCGTCGTTGACCTGGTTGTGG
GGATGGTGGGGGAGAAAGATGTTTGACTGGATGAGTCACGGGAACAAAAC
AACAGTGGCACGACACCAATTACAACAACAGGATTGGGAGGCGGCGGAAG
TGGAGGAAGAGTCTTCGAATCGAACCCCCTGTCTGACTCGGGTCTGTGCG
GGATTTTACACGGCCAAGTGCACAGCAGCTGCAGTAGCAGAAACGTGGCT
CTCCCCCACGATATGGGCCGACCCTCATGCCCTGGTGGAATTAAACACTG
TGCACAACCTTCGGACATTCTTCGTCGGAATCCGTACCCGCTGGGTCCTT
GAGAATCACGGGCGTACTTCCGTGGCCGTGCAGACAATGCGAGATATGAT
CAGCATTACTACTGCCAGCGCCACTGCATCCATGGCCTTTATCTCCATCT
TCATCGGCCTCTCCAAGTTCAATTTGTCGAGCTCGAGCCTCATCAGCTGT
CCCCCTTCGGAGGATGGCACTCCCTGCTCCTTGTTCGAGCAACGCATACG
CTTCGCACGCTTCGGCCTTTGCATCGGCAATTTTGTCGTCATCTTCTTCA
ACATGCTCCTCGCCACGCGCTACGCCATCAACAGCACCTTCATGCTCAAT
ACCAAAGAGGTGGATGGGAAGCCCCTCTCCCAGATGTTGACCGTTAATGT
CCTCGCACGGGCCTCGTGGCACTACACCCTAGGCGTCCGCGGATTCTTCC
TGGCAGCTCCTCTTGTCTCGTGGCTCTTTGGATCGTGGATGCTCCTGGGC
ACCACCGTCCTTTACGTGCTCGGCGTGGCGCTCATGGAAGAGGACTTCCT
CCTCACAGAGGAGGTATGGCGGGACATTCCGTGCCCTTCGAGTCCCCGCC
ACGGCCACGACGCACAGACACCGGAAGGGGCTACGAAAGTGGGGGAGGGG
GAGAAGGAGGGAGGGAAGGAGGGAGGGAAGGAGGGAGGGAAGGGGAGGGG
GTCTCCACGGCCGCGGAAGCCGAGTTTGGAGGAAGCGATTTTGTTGCAGT
CGGTGTGAATGAAAATATTGAAATCGTCGTTGACCTGGTTGTGGGGATGG
TGGGGGAGAAAGATGTTTGACTGGATGAGTCACGGGAACAAAACAACAGT
GGCACGACACCAATTACAACAACAGGATTGGGAGGCGGCGGAAGTGGAGG
AAGAGTCTTCGAATCGAACCCCCTGTCTGACTCGGGTCTGTGCGGGATTT
TACACGGCCAAGTGCACAGCAGCTGCAGTAGCAGAAACGTGGCTCTCCCC
CACGATATGGGCCGACCCTCATGCCCTGGTGGAATTAAACACTGTGCACA
ACCTTCGGACATTCTTCGTCGGAATCCGTACCCGCTGGGTCCTTGAGAAT
CACGGGCGTACTTCCGTGGCCGTGCAGACAATGCGAGATATGATCAGCAT
TACTACTGCCAGCGCCACTGCATCCATGGCCTTTATCTCCATCTTCATCG
GCCTCTCCAAGTTCAATTTGTCGAGCTCGAGCCTCATCAGCTGTCCCCCT
TCGGAGGATGGCACTCCCTGCTCCTTGTTCGAGCAACGCATACGCTTCGC
ACGCTTCGGCCTTTGCATCGGCAATTTTGTCGTCATCTTCTTCAACATGC
TCCTCGCCACGCGCTACGCCATCAACAGCACCTTCATGCTCAATACCAAA
GAGGTGGATGGGAAGCCCCTCTCCCAGATGTTGACCGTTAATGTCCTCGC
ACGGGCCTCGTGGCACTACACCCTAGGCGTCCGCGGATTCTTCCTGGCAG
CTCCTCTTGTCTCGTGGCTCTTTGGATCGTGGATGCTCCTGGGCACCACC
GTCCTTTACGTGCTCGGCGTGGCGCTCATGGAAGAGGACTTCCTCCTCAC
AGAGGAGGTATGGCGGGACATTCCGTGCCCTTCGAGTCCCCGCCACGGCC
ACGACGCACAGACACCGGAAGGGGCTACGAAAGTGGGGGAGGGGGAGAAG
GAGGGAGGGAAGGAGGGAGGGAAGGAGGGAGGGAAGGGGAGGGGGTCTCC
ACGGCCGCGGAAGCCGAGTTTGGAGGAAGCGATTTTGTTGCAGTCGGTGT
GAATGAAAATATTGAAATCGTCGTTGACCTGGTTGTGGGGATGGTGGGGG
AGAAAGATGTTTGACTGGATGAGTCACGGGAACAAAACAACAGTGGCACG
ACACCAATTACAACAACAGGATTGGGAGGCGGCGGAAGTGGAGGAAGAGT
CTTCGAATCGAACCCCCTGTCTGACTCGGGTCTGTGCGGGATTTTACACG
GCCAAGTGCACAGCAGCTGCAGTAGCAGAAACGTGGCTCTCCCCCACGAT
ATGGGCCGACCCTCATGCCCTGGTGGAATTAAACACTGTGCACAACCTTC
GGACATTCTTCGTCGGAATCCGTACCCGCTGGGTCCTTGAGAATCACGGG
CGTACTTCCGTGGCCGTGCAGACAATGCGAGATATGATCAGCATTACTAC
TGCCAGCGCCACTGCATCCATGGCCTTTATCTCCATCTTCATCGGCCTCT
CCAAGTTCAATTTGTCGAGCTCGAGCCTCATCAGCTGTCCCCCTTCGGAG
GATGGCACTCCCTGCTCCTTGTTCGAGCAACGCATACGCTTCGCACGCTT
CGGCCTTTGCATCGGCAATTTTGTCGTCATCTTCTTCAACATGCTCCTCG
CCACGCGCTACGCCATCAACAGCACCTTCATGCTCAATACCAAAGAGGTG
GATGGGAAGCCCCTCTCCCAGATGTTGACCGTTAATGTCCTCGCACGGGC
CTCGTGGCACTACACCCTAGGCGTCCGCGGATTCTTCCTGGCAGCTCCTC
TTGTCTCGTGGCTCTTTGGATCGTGGATGCTCCTGGGCACCACCGTCCTT
TACGTGCTCGGCGTGGCGCTCATGGAAGAGGACTTCCTCCTCACAGAGGA
GGTATGGCGGGACATTCCGTGCCCTTCGAGTCCCCGCCACGGCCACGACG
CACAGACACCGGAAGGGGCTACGAAAGTGGGGGAGGGGGAGAAGGAGGGA
GGGAAGGAGGGAGGGAAGGAGGGAGGGAAGGGGAGGGGGTCTCCACGGCC
GCGGAAGCCGAGTTTGGAGGAAGCGATTTTGTTGCAGTCGGTGTGA
back to top
Synonyms
Publications