jgi.p|Nanoce1779_2|663452, mRNA_3696 (mRNA) Nannochloropsis oceanica

Overview
Namejgi.p|Nanoce1779_2|663452
Unique NamemRNA_3696
TypemRNA
OrganismNannochloropsis oceanica (N. oceanica CCMP1779)
Sequence length2358
Alignment locationscaffold_6:998113..1001502 -

Link to JBrowse

Properties
Property NameValue
TranscriptId663538
TrackFilteredModels2
ProteinId663452
Mutants
Expression
No biomaterial libraries express this feature.
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
scaffold_6supercontigscaffold_6:998113..1001502 -
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|663452gene_3696Nannochloropsis oceanica (N. oceanica CCMP1779)gene


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

Feature NameUnique NameSpeciesType
jgi.p|Nanoce1779_2|663452mRNA_3696-proteinNannochloropsis oceanica (N. oceanica CCMP1779)polypeptide


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

Feature NameUnique NameSpeciesType
CDS_3696CDS_3696Nannochloropsis oceanica (N. oceanica CCMP1779)CDS


Sequences
The following sequences are available for this feature:

mRNA sequence

>mRNA_3696 ID=mRNA_3696|Name=jgi.p|Nanoce1779_2|663452|organism=Nannochloropsis oceanica|type=mRNA|length=2358bp
CATACTTTCAAACCTCACGCCCCACACGCATTTTAAGGCCCGCCCGCAAC
GCACCACACACACACACTAAAGGTACCCACTATGCCACTGGCGATGAAGA
AGGAGAGGGTCGCCGCATCAGCAGCGCCATCACGTCGCGGGGGCCGTGGC
GGAGGACGGGGGCATAGCAGCAGTGCTCCCTGCAGCGATCGTCCTTCTTG
CCTCCCCACCAGCACAATGAGTGAGTGCCAGGCCTTGCATACCTCTGACC
AGCAGTACCACATCCACAGCCATGTACCACCCTGCCGCATTTCTTGTCCC
CTAAGCCCACCCATGGCTTCAGTTACTGCACGTAGTAAGGCTCGTACCCG
AGGAAGAGGGCAAGAGCGCGGACGAGGGCGAGGTCGAGGCAAGGGTACAG
GACGGCAGAGTTTGCGTCGGAGTTTTGAGGAGATTAAGAAGGGGGAGGAG
AAGGAGGACGAGGACGAGGAGGAGAAAGAAGAGGGGGAGGGAGAGGGGGA
GGAAGACATATCTATAGCCATGAAAAGAATGGGCACCAAGGGCGATAAGC
GAAGGGCCAGCCACATCCTGAGTCGCCTTAACAGTAGCAACTGGGGCAGC
GGCCGGGGAAATGAGAGAAAAACAGAGGAGGAGCAGCAGATCAGCGACCT
CAGCAGCGAGGGGAATGACGATGAGGACGATGACGAAGACGAGAACTGGC
CGTCCTCCTCCTTGTTTCCTTCTTCTGACGGCGAAGATGAAGATGACACC
CGGGATGCCACCGCTTTGTGGGAGCAGCAGCAGTACCAAGCCCGACTGAT
TCGAAGGGTGGAGGCCCACGAGGCGAAGCATTACCTGAGGGTGTTGCAAC
GCACCCGTTGTCTAACCCCTGCTCAGGTCGAGGCGGAGATGAAGACCATC
CAGTTGCCTAAGGCGAGAATACGCCGCTTCATTCGTGCGGAGATGTATGG
AGAAAAGAATAAGACCGTGTTGGGCGAGGTACAGCTGTTGATGGCCAAAG
CATGTGAGATGCTGGTGGAGGACTTGAGTCATCGGGCATATGTATGCGCA
GAAGAAGATAAGAGGAAGTGCGTGCAGAGGTGTGACGTGGCAAGGGGAAT
CAGCATCAGTGATATGTTTGACTTTTTGGTTGATCTGGTCCCACGGGAGT
ACATGCATATTAAGAGTAAGAGGGGCACTAATAGGAGCAGAATCTGGCTG
GCAATCGCTTCGTTGGAGAGAGCATATGGAGGGGCACTGGGAGGAGAGGA
GGAGGAAAGAGGGCCACAACACCAACATGGGCATCATCGGCAGGTGCGGC
AGCAAGGGAAACCCCGCGGTCGTTCGTTGGGGCGCAGGAATAAAGTCAAT
GCCCAGAAGCAGCAGCAGATAGATGGAAAGGTCGGCAAGGCAAGGATTCA
GGAGGAGGCGCAGGCACAGGAGCAGCAGGAGGAGGATCAGGAGGAGGATC
AGGAGGAGGAAGGACAGCCAGGAGGACAGAGCAGAACAAGGAGATGGACA
CCGACGATGATGGAGGAGGAGGTGAAGGAGTACTGGACCGAGAAAGCGTA
CATGGGCGCGGGGAGTGGCGGCGATGAGGAGGAGGAGGAAGAAGAAGAAG
AAGAAGAAGAAGAAGATGAAGAAGAAGAGGAGGAGGAGGAGGAGGAGGAG
GAGAAGGAAGAGATAGGTATAAAAGAAGATACCTTAAGAAATAAAGACGA
TTGTCTGTTTTACGACTATCAGCAGGAAGAGCAGATGCAACAGCACCAGC
GAGAAAATAAGCAGCAGCAGGAGAATGAGGTAGAGGAGGAAAATGTAGAA
GAGGACCGAGACACACAGACCTGGTCGCCACTGGGATGGCAAGAAGAGGA
GAAGGGTGAAGGTGAGGATAAGGAGGAAGAGGAGGATGTAGTGGGGGAGG
AGGATGTGGTGGTGGAGGAGGAGGAGGACGAGGAGCAGCATCAGCAAGGT
GGACGCACCCTCAGCACTACCACCACCACCACCAGCAGCAGCAGCAGGAG
GATTATCCGCATTTACCACCTGGCGGTGGGGAAGGGGGCTTCATGCTTCT
CACCTCTCGGAACTAGCAAGGAAACAGGGGACAGGGAGGAAGAGAAAAAT
GTTACACCAGGGGAGGGAGCGAATCGGCTCGCCTGCATGAATCCCACGAG
TGCAATATGTGGCCCTTTGAAACATGTCGGAACACTGCGCCGTGGTGGGA
AGACATGCACCTGGGTTACTGGCACGCGAGAGGTGGAGGCAACGAGGGGA
GAACAGAAGAATTCGTCCCCGGAAGACGGGGAGGGTTTCGACAAGCAGCA
GCAGCAGCAGCAGCAGCCGTTGCAGCAGCAGCAGCAGCAGCCGTTGCAGC
ATCACTAG
back to top

protein sequence of jgi.p|Nanoce1779_2|663452

>mRNA_3696-protein ID=mRNA_3696-protein|Name=jgi.p|Nanoce1779_2|663452|organism=Nannochloropsis oceanica|type=polypeptide|length=759bp
MPLAMKKERVAASAAPSRRGGRGGGRGHSSSAPCSDRPSCLPTSTMSECQ
ALHTSDQQYHIHSHVPPCRISCPLSPPMASVTARSKARTRGRGQERGRGR
GRGKGTGRQSLRRSFEEIKKGEEKEDEDEEEKEEGEGEGEEDISIAMKRM
GTKGDKRRASHILSRLNSSNWGSGRGNERKTEEEQQISDLSSEGNDDEDD
DEDENWPSSSLFPSSDGEDEDDTRDATALWEQQQYQARLIRRVEAHEAKH
YLRVLQRTRCLTPAQVEAEMKTIQLPKARIRRFIRAEMYGEKNKTVLGEV
QLLMAKACEMLVEDLSHRAYVCAEEDKRKCVQRCDVARGISISDMFDFLV
DLVPREYMHIKSKRGTNRSRIWLAIASLERAYGGALGGEEEERGPQHQHG
HHRQVRQQGKPRGRSLGRRNKVNAQKQQQIDGKVGKARIQEEAQAQEQQE
EDQEEDQEEEGQPGGQSRTRRWTPTMMEEEVKEYWTEKAYMGAGSGGDEE
EEEEEEEEEEEDEEEEEEEEEEEEKEEIGIKEDTLRNKDDCLFYDYQQEE
QMQQHQRENKQQQENEVEEENVEEDRDTQTWSPLGWQEEEKGEGEDKEEE
EDVVGEEDVVVEEEEDEEQHQQGGRTLSTTTTTTSSSSRRIIRIYHLAVG
KGASCFSPLGTSKETGDREEEKNVTPGEGANRLACMNPTSAICGPLKHVG
TLRRGGKTCTWVTGTREVEATRGEQKNSSPEDGEGFDKQQQQQQQPLQQQ
QQQPLQHH*
back to top

mRNA from alignment at scaffold_6:998113..1001502-

Legend: polypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_3696 ID=mRNA_3696|Name=jgi.p|Nanoce1779_2|663452|organism=Nannochloropsis oceanica|type=mRNA|length=3390bp|location=Sequence derived from alignment at scaffold_6:998113..1001502- (Nannochloropsis oceanica)
CATACTTTCAAACCTCACGCCCCACACGCATTTTAAGGCCCGCCCGCAAC GCACCACACACACACACTAAAGGTACCCACTATGCCACTGGCGATGAAGA AGGAGAGGGTCGCCGCATCAGCAGCGCCATCACGTCGCGGGGGCCGTGGC GGAGGACGGGGGCATAGCAGCAGTGCTCCCTGCAGCGATCGTCCTTCTTG CCTCCCCACCAGCACAATGAGTGAGTGCCAGGCCTTGCATACCTCTGACC AGCAGTACCACATCCACAGCCATGTACCACCCTGCCGCATTTCTTGTCCC CTAAGCCCACCCATGGCTTCAGTTACTGCACGTAGTAAGGCTCGTACCCG AGGAAGAGGGCAAGAGCGCGGACGAGGGCGAGGTCGAGGCAAGGGTACAG GACGGCAGAGTTTGCGTCGGAGTTTTGAGGAGATTAAGAAGGGGGAGGAG AAGGAGGACGAGGACGAGGAGGAGAAAGAAGAGGGGGAGGGAGAGGGGGA GGAAGACATATCTATAGCCATGAAAAGAATGGGCACCAAGGGCGATAAGC GAAGGGCCAGCCACATCCTGAGTCGCCTTAACAGTAGCAACTGGGGCAGC GGCCGGGGAAATGAGAGAAAAACAGAGGAGGAGCAGCAGATCAGCGACCT CAGCAGCGAGGGGAATGACGATGAGGACGATGACGAAGACGAGAACTGGC CGTCCTCCTCCTTGTTTCCTTCTTCTGACGGCGAAGATGAAGATGACACC CGGGATGCCACCGCTTTGTGGGAGCAGCAGCAGTACCAAGCCCGACTGAT TCGAAGGGTGGAGGCCCACGAGGCGAAGCATTACCTGAGGGTGTTGCAAC GCACCCGTTGTCTAACCCCTGCTCAGGTCGAGGCGGAGATGAAGACCATC CAGTTGCCTAAGGCGAGAATACGCCGCTTCATTCGTGCGGAGATGTATGG AGAAAAGAATAAGACCGTGTTGGGCGAGGTACAGCTGTTGATGGCCAAAG CATGTGAGATGCTGGTGGAGGACTTGAGTCATCGGGCATATGTATGCGCA GAAGAAGATAAGAGGAAGTGCGTGCAGAGGTGTGACGTGGCAAGGGGAAT CAGCATCAGTGATATGTTTGACTTTTTGGTTGATCTGGTCCCACGGGAGT ACATGCATATTAAGAGTAAGAGGGGCACTAATAGGAGCAGAATCTGGCTG GCAATCGCTTCGTTGGAGAGAGCATATGGAGGGGCACTGGGAGGAGAGGA GGAGGAAAGAGGGGTAGGGGGGGGGGGGGAGAGAGGAGGAGAAGGAAGGT GGGATAGCGGTTGTGACTAGGCAGGGGCGGTGGGGTATGCCTCCCATGAC TTCAGCGTCGTCCCTCCCTTCCTCTCACGGCGTCGGCAATCATCATCAGC AGCATCATCATGCAGAGCAGCAGCATCATTATCACCATCATCATTATGAG CAACAGGAGCAGCATCGACATTATTTTCCTATCACCGCGGGCCCATCAAT AGTCGTCTCCGCCTTTCCTTCTTTACCTCCACTTCCGCCTCTTTCTCGGC ATCATCAGCCACAACACCAACATGGGCATCATCGGCAGGTGCGGCAGCAA GGGAAACCCCGCGGTCGTTCGTTGGGGCGCAGGAATAAAGTCAATGCCCA GAAGCAGCAGCAGATAGATGGAAAGGTCGGCAAGGCAAGGATTCAGGAGG AGGCGCAGGCACAGGAGCAGCAGGAGGAGGATCAGGAGGAGGATCAGGAG GAGGAAGGACAGCCAGGAGGACAGAGCAGAACAAGGAGATGGACACCGAC GATGATGGAGGAGGAGGTGAAGGAGTACTGGACCGAGAAAGTGGAGAAGA AGGAGGATGGGGGGGGGGAGGAGGAGGGAGACTCCACGGCCATTTCGTTG ATAACTTTGGCCTCGGGTCCTCCTCCTCCTTCTCCTCCTCCTTCTCATCC TCATCGTCATCCTCTTCCTCCTTTCCCTTTTGCCTGTGCACGCACACCCG CTTCTCCATCCCACCTTCCCTCCATCCCTCCTCCTTTTCCTGGCCGGCCA CGGTGTGTGCCACGACAGGCGTACATGGGCGCGGGGAGTGGCGGCGATGA GGAGGAGGAGGAAGAAGAAGAAGAAGAAGAAGAAGAAGATGAAGAAGAAG AGGAGGAGGAGGAGGAGGAGGAGGAGAAGGAAGAGATAGGTATAAAAGAA GATACCTTAAGAAATAAAGACGATTGTCTGTTTTACGACTATCAGCAGGA AGAGCAGATGCAACAGCACCAGCGAGAAAATAAGCAGCAGCAGGAGAATG AGGTAGAGGAGGAAAATGTAGAAGAGGACCGAGACACACAGACCTGGTCG CCACTGGGATGGCAAGAAGAGGAGAAGGGTGAAGGTGAGGATAAGGAGGA AGAGGAGGATGTAGTGGGGGAGGAGGATGTGGTGGTGGAGGAGGAGGAGG ACGAGGAGCAGCATCAGCAAGGTGGAGTCAGTGCCTTTCTCGCCTTGTCC TCCTCTTCCCGACGCTGCGGCAGCTCCCTCATCCCTGAATTGCTACCACC TATCTCCCCAATTCCTCCCTCCCTCCATCTCTCGATTACAACCACCACTT CTCCCTATAACCCTACAACCGCTGGCACTAGCAGCAGCAATACGCCCACA ACCGTCACCATGAGCCCTTCCTCCCCCCCTTACTCTTTTCCGTCCTTCTT CCCTTCCTTCAAAACACTTTCACCGGTATCCCTGCGGCCTCTCCCACCTC CACATGCAGCTGGTGTGCTGTATCACACTGCCACTACTTCCTCACCCTCT TCCTCCTTCCCCTCTTCCCACGCTCCACCTGACATGAATCTATCACGAGC GCACCCTCAGCACTACCACCACCACCACCAGCAGCAGCAGCAGGAGGATT ATCCGCATTTACCACCTGGCGGTGGGGAAGGGGGCTTCATGCTTCTCACC TCTCGGAACTAGCAAGGAAACAGGGGACAGGGAGGAAGAGAAAAATGTTA CACCAGGGGAGGGGTGTGTGTGTGTGGGTGGGTTGGTGGGTGTGTACGGG CAACAGGATGAAAAGTGTGAGTACAGCAAATACGGGTATATGTAGGGTTA GGGTTAGGGTTAGGTTGGTAAATATTATTATTGCCAATATCTACACCAGA GCGAATCGGCTCGCCTGCATGAATCCCACGAGTGCAATATGTGGCCCTTT GAAACATGTCGGAACACTGCGCCGTGGTGGGAAGACATGCACCTGGGTTA CTGGCACGCGAGAGGTGGAGGCAACGAGGGGAGAACAGAAGAATTCGTCC CCGGAAGACGGGGAGGGTTTCGACAAGCAGCAGCAGCAGCAGCAGCAGCC GTTGCAGCAGCAGCAGCAGCAGCCGTTGCAGCATCACTAG
back to top

Coding sequence (CDS) from alignment at scaffold_6:998113..1001502-

>mRNA_3696 ID=mRNA_3696|Name=jgi.p|Nanoce1779_2|663452|organism=Nannochloropsis oceanica|type=CDS|length=11385bp|location=Sequence derived from alignment at scaffold_6:998113..1001502- (Nannochloropsis oceanica)
AGCGAATCGGCTCGCCTGCATGAATCCCACGAGTGCAATATGTGGCCCTT
TGAAACATGTCGGAACACTGCGCCGTGGTGGGAAGACATGCACCTGGGTT
ACTGGCACGCGAGAGGTGGAGGCAACGAGGGGAGAACAGAAGAATTCGTC
CCCGGAAGACGGGGAGGGTTTCGACAAGCAGCAGCAGCAGCAGCAGCAGC
CGTTGCAGCAGCAGCAGCAGCAGCCGTTGCAGCATCACTAGCGCACCCTC
AGCACTACCACCACCACCACCAGCAGCAGCAGCAGGAGGATTATCCGCAT
TTACCACCTGGCGGTGGGGAAGGGGGCTTCATGCTTCTCACCTCTCGGAA
CTAGCAAGGAAACAGGGGACAGGGAGGAAGAGAAAAATGTTACACCAGGG
GAGGGGCGTACATGGGCGCGGGGAGTGGCGGCGATGAGGAGGAGGAGGAA
GAAGAAGAAGAAGAAGAAGAAGAAGATGAAGAAGAAGAGGAGGAGGAGGA
GGAGGAGGAGGAGAAGGAAGAGATAGGTATAAAAGAAGATACCTTAAGAA
ATAAAGACGATTGTCTGTTTTACGACTATCAGCAGGAAGAGCAGATGCAA
CAGCACCAGCGAGAAAATAAGCAGCAGCAGGAGAATGAGGTAGAGGAGGA
AAATGTAGAAGAGGACCGAGACACACAGACCTGGTCGCCACTGGGATGGC
AAGAAGAGGAGAAGGGTGAAGGTGAGGATAAGGAGGAAGAGGAGGATGTA
GTGGGGGAGGAGGATGTGGTGGTGGAGGAGGAGGAGGACGAGGAGCAGCA
TCAGCAAGGTGGACCACAACACCAACATGGGCATCATCGGCAGGTGCGGC
AGCAAGGGAAACCCCGCGGTCGTTCGTTGGGGCGCAGGAATAAAGTCAAT
GCCCAGAAGCAGCAGCAGATAGATGGAAAGGTCGGCAAGGCAAGGATTCA
GGAGGAGGCGCAGGCACAGGAGCAGCAGGAGGAGGATCAGGAGGAGGATC
AGGAGGAGGAAGGACAGCCAGGAGGACAGAGCAGAACAAGGAGATGGACA
CCGACGATGATGGAGGAGGAGGTGAAGGAGTACTGGACCGAGAAAATGCC
ACTGGCGATGAAGAAGGAGAGGGTCGCCGCATCAGCAGCGCCATCACGTC
GCGGGGGCCGTGGCGGAGGACGGGGGCATAGCAGCAGTGCTCCCTGCAGC
GATCGTCCTTCTTGCCTCCCCACCAGCACAATGAGTGAGTGCCAGGCCTT
GCATACCTCTGACCAGCAGTACCACATCCACAGCCATGTACCACCCTGCC
GCATTTCTTGTCCCCTAAGCCCACCCATGGCTTCAGTTACTGCACGTAGT
AAGGCTCGTACCCGAGGAAGAGGGCAAGAGCGCGGACGAGGGCGAGGTCG
AGGCAAGGGTACAGGACGGCAGAGTTTGCGTCGGAGTTTTGAGGAGATTA
AGAAGGGGGAGGAGAAGGAGGACGAGGACGAGGAGGAGAAAGAAGAGGGG
GAGGGAGAGGGGGAGGAAGACATATCTATAGCCATGAAAAGAATGGGCAC
CAAGGGCGATAAGCGAAGGGCCAGCCACATCCTGAGTCGCCTTAACAGTA
GCAACTGGGGCAGCGGCCGGGGAAATGAGAGAAAAACAGAGGAGGAGCAG
CAGATCAGCGACCTCAGCAGCGAGGGGAATGACGATGAGGACGATGACGA
AGACGAGAACTGGCCGTCCTCCTCCTTGTTTCCTTCTTCTGACGGCGAAG
ATGAAGATGACACCCGGGATGCCACCGCTTTGTGGGAGCAGCAGCAGTAC
CAAGCCCGACTGATTCGAAGGGTGGAGGCCCACGAGGCGAAGCATTACCT
GAGGGTGTTGCAACGCACCCGTTGTCTAACCCCTGCTCAGGTCGAGGCGG
AGATGAAGACCATCCAGTTGCCTAAGGCGAGAATACGCCGCTTCATTCGT
GCGGAGATGTATGGAGAAAAGAATAAGACCGTGTTGGGCGAGGTACAGCT
GTTGATGGCCAAAGCATGTGAGATGCTGGTGGAGGACTTGAGTCATCGGG
CATATGTATGCGCAGAAGAAGATAAGAGGAAGTGCGTGCAGAGGTGTGAC
GTGGCAAGGGGAATCAGCATCAGTGATATGTTTGACTTTTTGGTTGATCT
GGTCCCACGGGAGTACATGCATATTAAGAGTAAGAGGGGCACTAATAGGA
GCAGAATCTGGCTGGCAATCGCTTCGTTGGAGAGAGCATATGGAGGGGCA
CTGGGAGGAGAGGAGGAGGAAAGAGGGAGCGAATCGGCTCGCCTGCATGA
ATCCCACGAGTGCAATATGTGGCCCTTTGAAACATGTCGGAACACTGCGC
CGTGGTGGGAAGACATGCACCTGGGTTACTGGCACGCGAGAGGTGGAGGC
AACGAGGGGAGAACAGAAGAATTCGTCCCCGGAAGACGGGGAGGGTTTCG
ACAAGCAGCAGCAGCAGCAGCAGCAGCCGTTGCAGCAGCAGCAGCAGCAG
CCGTTGCAGCATCACTAGCGCACCCTCAGCACTACCACCACCACCACCAG
CAGCAGCAGCAGGAGGATTATCCGCATTTACCACCTGGCGGTGGGGAAGG
GGGCTTCATGCTTCTCACCTCTCGGAACTAGCAAGGAAACAGGGGACAGG
GAGGAAGAGAAAAATGTTACACCAGGGGAGGGGCGTACATGGGCGCGGGG
AGTGGCGGCGATGAGGAGGAGGAGGAAGAAGAAGAAGAAGAAGAAGAAGA
AGATGAAGAAGAAGAGGAGGAGGAGGAGGAGGAGGAGGAGAAGGAAGAGA
TAGGTATAAAAGAAGATACCTTAAGAAATAAAGACGATTGTCTGTTTTAC
GACTATCAGCAGGAAGAGCAGATGCAACAGCACCAGCGAGAAAATAAGCA
GCAGCAGGAGAATGAGGTAGAGGAGGAAAATGTAGAAGAGGACCGAGACA
CACAGACCTGGTCGCCACTGGGATGGCAAGAAGAGGAGAAGGGTGAAGGT
GAGGATAAGGAGGAAGAGGAGGATGTAGTGGGGGAGGAGGATGTGGTGGT
GGAGGAGGAGGAGGACGAGGAGCAGCATCAGCAAGGTGGACCACAACACC
AACATGGGCATCATCGGCAGGTGCGGCAGCAAGGGAAACCCCGCGGTCGT
TCGTTGGGGCGCAGGAATAAAGTCAATGCCCAGAAGCAGCAGCAGATAGA
TGGAAAGGTCGGCAAGGCAAGGATTCAGGAGGAGGCGCAGGCACAGGAGC
AGCAGGAGGAGGATCAGGAGGAGGATCAGGAGGAGGAAGGACAGCCAGGA
GGACAGAGCAGAACAAGGAGATGGACACCGACGATGATGGAGGAGGAGGT
GAAGGAGTACTGGACCGAGAAAATGCCACTGGCGATGAAGAAGGAGAGGG
TCGCCGCATCAGCAGCGCCATCACGTCGCGGGGGCCGTGGCGGAGGACGG
GGGCATAGCAGCAGTGCTCCCTGCAGCGATCGTCCTTCTTGCCTCCCCAC
CAGCACAATGAGTGAGTGCCAGGCCTTGCATACCTCTGACCAGCAGTACC
ACATCCACAGCCATGTACCACCCTGCCGCATTTCTTGTCCCCTAAGCCCA
CCCATGGCTTCAGTTACTGCACGTAGTAAGGCTCGTACCCGAGGAAGAGG
GCAAGAGCGCGGACGAGGGCGAGGTCGAGGCAAGGGTACAGGACGGCAGA
GTTTGCGTCGGAGTTTTGAGGAGATTAAGAAGGGGGAGGAGAAGGAGGAC
GAGGACGAGGAGGAGAAAGAAGAGGGGGAGGGAGAGGGGGAGGAAGACAT
ATCTATAGCCATGAAAAGAATGGGCACCAAGGGCGATAAGCGAAGGGCCA
GCCACATCCTGAGTCGCCTTAACAGTAGCAACTGGGGCAGCGGCCGGGGA
AATGAGAGAAAAACAGAGGAGGAGCAGCAGATCAGCGACCTCAGCAGCGA
GGGGAATGACGATGAGGACGATGACGAAGACGAGAACTGGCCGTCCTCCT
CCTTGTTTCCTTCTTCTGACGGCGAAGATGAAGATGACACCCGGGATGCC
ACCGCTTTGTGGGAGCAGCAGCAGTACCAAGCCCGACTGATTCGAAGGGT
GGAGGCCCACGAGGCGAAGCATTACCTGAGGGTGTTGCAACGCACCCGTT
GTCTAACCCCTGCTCAGGTCGAGGCGGAGATGAAGACCATCCAGTTGCCT
AAGGCGAGAATACGCCGCTTCATTCGTGCGGAGATGTATGGAGAAAAGAA
TAAGACCGTGTTGGGCGAGGTACAGCTGTTGATGGCCAAAGCATGTGAGA
TGCTGGTGGAGGACTTGAGTCATCGGGCATATGTATGCGCAGAAGAAGAT
AAGAGGAAGTGCGTGCAGAGGTGTGACGTGGCAAGGGGAATCAGCATCAG
TGATATGTTTGACTTTTTGGTTGATCTGGTCCCACGGGAGTACATGCATA
TTAAGAGTAAGAGGGGCACTAATAGGAGCAGAATCTGGCTGGCAATCGCT
TCGTTGGAGAGAGCATATGGAGGGGCACTGGGAGGAGAGGAGGAGGAAAG
AGGGAGCGAATCGGCTCGCCTGCATGAATCCCACGAGTGCAATATGTGGC
CCTTTGAAACATGTCGGAACACTGCGCCGTGGTGGGAAGACATGCACCTG
GGTTACTGGCACGCGAGAGGTGGAGGCAACGAGGGGAGAACAGAAGAATT
CGTCCCCGGAAGACGGGGAGGGTTTCGACAAGCAGCAGCAGCAGCAGCAG
CAGCCGTTGCAGCAGCAGCAGCAGCAGCCGTTGCAGCATCACTAGCGCAC
CCTCAGCACTACCACCACCACCACCAGCAGCAGCAGCAGGAGGATTATCC
GCATTTACCACCTGGCGGTGGGGAAGGGGGCTTCATGCTTCTCACCTCTC
GGAACTAGCAAGGAAACAGGGGACAGGGAGGAAGAGAAAAATGTTACACC
AGGGGAGGGGCGTACATGGGCGCGGGGAGTGGCGGCGATGAGGAGGAGGA
GGAAGAAGAAGAAGAAGAAGAAGAAGAAGATGAAGAAGAAGAGGAGGAGG
AGGAGGAGGAGGAGGAGAAGGAAGAGATAGGTATAAAAGAAGATACCTTA
AGAAATAAAGACGATTGTCTGTTTTACGACTATCAGCAGGAAGAGCAGAT
GCAACAGCACCAGCGAGAAAATAAGCAGCAGCAGGAGAATGAGGTAGAGG
AGGAAAATGTAGAAGAGGACCGAGACACACAGACCTGGTCGCCACTGGGA
TGGCAAGAAGAGGAGAAGGGTGAAGGTGAGGATAAGGAGGAAGAGGAGGA
TGTAGTGGGGGAGGAGGATGTGGTGGTGGAGGAGGAGGAGGACGAGGAGC
AGCATCAGCAAGGTGGACCACAACACCAACATGGGCATCATCGGCAGGTG
CGGCAGCAAGGGAAACCCCGCGGTCGTTCGTTGGGGCGCAGGAATAAAGT
CAATGCCCAGAAGCAGCAGCAGATAGATGGAAAGGTCGGCAAGGCAAGGA
TTCAGGAGGAGGCGCAGGCACAGGAGCAGCAGGAGGAGGATCAGGAGGAG
GATCAGGAGGAGGAAGGACAGCCAGGAGGACAGAGCAGAACAAGGAGATG
GACACCGACGATGATGGAGGAGGAGGTGAAGGAGTACTGGACCGAGAAAA
TGCCACTGGCGATGAAGAAGGAGAGGGTCGCCGCATCAGCAGCGCCATCA
CGTCGCGGGGGCCGTGGCGGAGGACGGGGGCATAGCAGCAGTGCTCCCTG
CAGCGATCGTCCTTCTTGCCTCCCCACCAGCACAATGAGTGAGTGCCAGG
CCTTGCATACCTCTGACCAGCAGTACCACATCCACAGCCATGTACCACCC
TGCCGCATTTCTTGTCCCCTAAGCCCACCCATGGCTTCAGTTACTGCACG
TAGTAAGGCTCGTACCCGAGGAAGAGGGCAAGAGCGCGGACGAGGGCGAG
GTCGAGGCAAGGGTACAGGACGGCAGAGTTTGCGTCGGAGTTTTGAGGAG
ATTAAGAAGGGGGAGGAGAAGGAGGACGAGGACGAGGAGGAGAAAGAAGA
GGGGGAGGGAGAGGGGGAGGAAGACATATCTATAGCCATGAAAAGAATGG
GCACCAAGGGCGATAAGCGAAGGGCCAGCCACATCCTGAGTCGCCTTAAC
AGTAGCAACTGGGGCAGCGGCCGGGGAAATGAGAGAAAAACAGAGGAGGA
GCAGCAGATCAGCGACCTCAGCAGCGAGGGGAATGACGATGAGGACGATG
ACGAAGACGAGAACTGGCCGTCCTCCTCCTTGTTTCCTTCTTCTGACGGC
GAAGATGAAGATGACACCCGGGATGCCACCGCTTTGTGGGAGCAGCAGCA
GTACCAAGCCCGACTGATTCGAAGGGTGGAGGCCCACGAGGCGAAGCATT
ACCTGAGGGTGTTGCAACGCACCCGTTGTCTAACCCCTGCTCAGGTCGAG
GCGGAGATGAAGACCATCCAGTTGCCTAAGGCGAGAATACGCCGCTTCAT
TCGTGCGGAGATGTATGGAGAAAAGAATAAGACCGTGTTGGGCGAGGTAC
AGCTGTTGATGGCCAAAGCATGTGAGATGCTGGTGGAGGACTTGAGTCAT
CGGGCATATGTATGCGCAGAAGAAGATAAGAGGAAGTGCGTGCAGAGGTG
TGACGTGGCAAGGGGAATCAGCATCAGTGATATGTTTGACTTTTTGGTTG
ATCTGGTCCCACGGGAGTACATGCATATTAAGAGTAAGAGGGGCACTAAT
AGGAGCAGAATCTGGCTGGCAATCGCTTCGTTGGAGAGAGCATATGGAGG
GGCACTGGGAGGAGAGGAGGAGGAAAGAGGGAGCGAATCGGCTCGCCTGC
ATGAATCCCACGAGTGCAATATGTGGCCCTTTGAAACATGTCGGAACACT
GCGCCGTGGTGGGAAGACATGCACCTGGGTTACTGGCACGCGAGAGGTGG
AGGCAACGAGGGGAGAACAGAAGAATTCGTCCCCGGAAGACGGGGAGGGT
TTCGACAAGCAGCAGCAGCAGCAGCAGCAGCCGTTGCAGCAGCAGCAGCA
GCAGCCGTTGCAGCATCACTAGCGCACCCTCAGCACTACCACCACCACCA
CCAGCAGCAGCAGCAGGAGGATTATCCGCATTTACCACCTGGCGGTGGGG
AAGGGGGCTTCATGCTTCTCACCTCTCGGAACTAGCAAGGAAACAGGGGA
CAGGGAGGAAGAGAAAAATGTTACACCAGGGGAGGGGCGTACATGGGCGC
GGGGAGTGGCGGCGATGAGGAGGAGGAGGAAGAAGAAGAAGAAGAAGAAG
AAGAAGATGAAGAAGAAGAGGAGGAGGAGGAGGAGGAGGAGGAGAAGGAA
GAGATAGGTATAAAAGAAGATACCTTAAGAAATAAAGACGATTGTCTGTT
TTACGACTATCAGCAGGAAGAGCAGATGCAACAGCACCAGCGAGAAAATA
AGCAGCAGCAGGAGAATGAGGTAGAGGAGGAAAATGTAGAAGAGGACCGA
GACACACAGACCTGGTCGCCACTGGGATGGCAAGAAGAGGAGAAGGGTGA
AGGTGAGGATAAGGAGGAAGAGGAGGATGTAGTGGGGGAGGAGGATGTGG
TGGTGGAGGAGGAGGAGGACGAGGAGCAGCATCAGCAAGGTGGACCACAA
CACCAACATGGGCATCATCGGCAGGTGCGGCAGCAAGGGAAACCCCGCGG
TCGTTCGTTGGGGCGCAGGAATAAAGTCAATGCCCAGAAGCAGCAGCAGA
TAGATGGAAAGGTCGGCAAGGCAAGGATTCAGGAGGAGGCGCAGGCACAG
GAGCAGCAGGAGGAGGATCAGGAGGAGGATCAGGAGGAGGAAGGACAGCC
AGGAGGACAGAGCAGAACAAGGAGATGGACACCGACGATGATGGAGGAGG
AGGTGAAGGAGTACTGGACCGAGAAAATGCCACTGGCGATGAAGAAGGAG
AGGGTCGCCGCATCAGCAGCGCCATCACGTCGCGGGGGCCGTGGCGGAGG
ACGGGGGCATAGCAGCAGTGCTCCCTGCAGCGATCGTCCTTCTTGCCTCC
CCACCAGCACAATGAGTGAGTGCCAGGCCTTGCATACCTCTGACCAGCAG
TACCACATCCACAGCCATGTACCACCCTGCCGCATTTCTTGTCCCCTAAG
CCCACCCATGGCTTCAGTTACTGCACGTAGTAAGGCTCGTACCCGAGGAA
GAGGGCAAGAGCGCGGACGAGGGCGAGGTCGAGGCAAGGGTACAGGACGG
CAGAGTTTGCGTCGGAGTTTTGAGGAGATTAAGAAGGGGGAGGAGAAGGA
GGACGAGGACGAGGAGGAGAAAGAAGAGGGGGAGGGAGAGGGGGAGGAAG
ACATATCTATAGCCATGAAAAGAATGGGCACCAAGGGCGATAAGCGAAGG
GCCAGCCACATCCTGAGTCGCCTTAACAGTAGCAACTGGGGCAGCGGCCG
GGGAAATGAGAGAAAAACAGAGGAGGAGCAGCAGATCAGCGACCTCAGCA
GCGAGGGGAATGACGATGAGGACGATGACGAAGACGAGAACTGGCCGTCC
TCCTCCTTGTTTCCTTCTTCTGACGGCGAAGATGAAGATGACACCCGGGA
TGCCACCGCTTTGTGGGAGCAGCAGCAGTACCAAGCCCGACTGATTCGAA
GGGTGGAGGCCCACGAGGCGAAGCATTACCTGAGGGTGTTGCAACGCACC
CGTTGTCTAACCCCTGCTCAGGTCGAGGCGGAGATGAAGACCATCCAGTT
GCCTAAGGCGAGAATACGCCGCTTCATTCGTGCGGAGATGTATGGAGAAA
AGAATAAGACCGTGTTGGGCGAGGTACAGCTGTTGATGGCCAAAGCATGT
GAGATGCTGGTGGAGGACTTGAGTCATCGGGCATATGTATGCGCAGAAGA
AGATAAGAGGAAGTGCGTGCAGAGGTGTGACGTGGCAAGGGGAATCAGCA
TCAGTGATATGTTTGACTTTTTGGTTGATCTGGTCCCACGGGAGTACATG
CATATTAAGAGTAAGAGGGGCACTAATAGGAGCAGAATCTGGCTGGCAAT
CGCTTCGTTGGAGAGAGCATATGGAGGGGCACTGGGAGGAGAGGAGGAGG
AAAGAGGGAGCGAATCGGCTCGCCTGCATGAATCCCACGAGTGCAATATG
TGGCCCTTTGAAACATGTCGGAACACTGCGCCGTGGTGGGAAGACATGCA
CCTGGGTTACTGGCACGCGAGAGGTGGAGGCAACGAGGGGAGAACAGAAG
AATTCGTCCCCGGAAGACGGGGAGGGTTTCGACAAGCAGCAGCAGCAGCA
GCAGCAGCCGTTGCAGCAGCAGCAGCAGCAGCCGTTGCAGCATCACTAGC
GCACCCTCAGCACTACCACCACCACCACCAGCAGCAGCAGCAGGAGGATT
ATCCGCATTTACCACCTGGCGGTGGGGAAGGGGGCTTCATGCTTCTCACC
TCTCGGAACTAGCAAGGAAACAGGGGACAGGGAGGAAGAGAAAAATGTTA
CACCAGGGGAGGGGCGTACATGGGCGCGGGGAGTGGCGGCGATGAGGAGG
AGGAGGAAGAAGAAGAAGAAGAAGAAGAAGAAGATGAAGAAGAAGAGGAG
GAGGAGGAGGAGGAGGAGGAGAAGGAAGAGATAGGTATAAAAGAAGATAC
CTTAAGAAATAAAGACGATTGTCTGTTTTACGACTATCAGCAGGAAGAGC
AGATGCAACAGCACCAGCGAGAAAATAAGCAGCAGCAGGAGAATGAGGTA
GAGGAGGAAAATGTAGAAGAGGACCGAGACACACAGACCTGGTCGCCACT
GGGATGGCAAGAAGAGGAGAAGGGTGAAGGTGAGGATAAGGAGGAAGAGG
AGGATGTAGTGGGGGAGGAGGATGTGGTGGTGGAGGAGGAGGAGGACGAG
GAGCAGCATCAGCAAGGTGGACCACAACACCAACATGGGCATCATCGGCA
GGTGCGGCAGCAAGGGAAACCCCGCGGTCGTTCGTTGGGGCGCAGGAATA
AAGTCAATGCCCAGAAGCAGCAGCAGATAGATGGAAAGGTCGGCAAGGCA
AGGATTCAGGAGGAGGCGCAGGCACAGGAGCAGCAGGAGGAGGATCAGGA
GGAGGATCAGGAGGAGGAAGGACAGCCAGGAGGACAGAGCAGAACAAGGA
GATGGACACCGACGATGATGGAGGAGGAGGTGAAGGAGTACTGGACCGAG
AAAATGCCACTGGCGATGAAGAAGGAGAGGGTCGCCGCATCAGCAGCGCC
ATCACGTCGCGGGGGCCGTGGCGGAGGACGGGGGCATAGCAGCAGTGCTC
CCTGCAGCGATCGTCCTTCTTGCCTCCCCACCAGCACAATGAGTGAGTGC
CAGGCCTTGCATACCTCTGACCAGCAGTACCACATCCACAGCCATGTACC
ACCCTGCCGCATTTCTTGTCCCCTAAGCCCACCCATGGCTTCAGTTACTG
CACGTAGTAAGGCTCGTACCCGAGGAAGAGGGCAAGAGCGCGGACGAGGG
CGAGGTCGAGGCAAGGGTACAGGACGGCAGAGTTTGCGTCGGAGTTTTGA
GGAGATTAAGAAGGGGGAGGAGAAGGAGGACGAGGACGAGGAGGAGAAAG
AAGAGGGGGAGGGAGAGGGGGAGGAAGACATATCTATAGCCATGAAAAGA
ATGGGCACCAAGGGCGATAAGCGAAGGGCCAGCCACATCCTGAGTCGCCT
TAACAGTAGCAACTGGGGCAGCGGCCGGGGAAATGAGAGAAAAACAGAGG
AGGAGCAGCAGATCAGCGACCTCAGCAGCGAGGGGAATGACGATGAGGAC
GATGACGAAGACGAGAACTGGCCGTCCTCCTCCTTGTTTCCTTCTTCTGA
CGGCGAAGATGAAGATGACACCCGGGATGCCACCGCTTTGTGGGAGCAGC
AGCAGTACCAAGCCCGACTGATTCGAAGGGTGGAGGCCCACGAGGCGAAG
CATTACCTGAGGGTGTTGCAACGCACCCGTTGTCTAACCCCTGCTCAGGT
CGAGGCGGAGATGAAGACCATCCAGTTGCCTAAGGCGAGAATACGCCGCT
TCATTCGTGCGGAGATGTATGGAGAAAAGAATAAGACCGTGTTGGGCGAG
GTACAGCTGTTGATGGCCAAAGCATGTGAGATGCTGGTGGAGGACTTGAG
TCATCGGGCATATGTATGCGCAGAAGAAGATAAGAGGAAGTGCGTGCAGA
GGTGTGACGTGGCAAGGGGAATCAGCATCAGTGATATGTTTGACTTTTTG
GTTGATCTGGTCCCACGGGAGTACATGCATATTAAGAGTAAGAGGGGCAC
TAATAGGAGCAGAATCTGGCTGGCAATCGCTTCGTTGGAGAGAGCATATG
GAGGGGCACTGGGAGGAGAGGAGGAGGAAAGAGGG
back to top
Synonyms
Publications