jgi.p|Nanoce1779_2|122784, mRNA_6601 (mRNA) Nannochloropsis oceanica

Overview
Namejgi.p|Nanoce1779_2|122784
Unique NamemRNA_6601
TypemRNA
OrganismNannochloropsis oceanica (N. oceanica CCMP1779)
Sequence length2518
Alignment locationscaffold_18:239542..242233 -

Link to JBrowse

Properties
Property NameValue
TranscriptId122870
TrackFilteredModels2
ProteinId122784
Mutants
Expression
No biomaterial libraries express this feature.
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
scaffold_18supercontigscaffold_18:239542..242233 -
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|122784gene_6601Nannochloropsis oceanica (N. oceanica CCMP1779)gene


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

Feature NameUnique NameSpeciesType
jgi.p|Nanoce1779_2|122784mRNA_6601-proteinNannochloropsis oceanica (N. oceanica CCMP1779)polypeptide


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

Feature NameUnique NameSpeciesType
CDS_6601CDS_6601Nannochloropsis oceanica (N. oceanica CCMP1779)CDS


Sequences
The following sequences are available for this feature:

mRNA sequence

>mRNA_6601 ID=mRNA_6601|Name=jgi.p|Nanoce1779_2|122784|organism=Nannochloropsis oceanica|type=mRNA|length=2518bp
ACACATCAGAGAAGAGCGAGAACAGCACCCTGTAGAGATGACATACTTTG
CGTCCATATCTCGCTTCGTCCCGGTGCCCTCATCCAGCCGGCGGCGGCGG
CCACGTCCACCAAATAGCAGTAGCAGCAGCACCCGCTCCTGTTGGCGCTG
GTGCCCATCTCCCTCACAATTTGGTTTAGCCTGCAGCTTCTTAGGCCGCG
TGATAGCTCATCCTTGCCTTATTACAAGTGCGTTATTACCGACAAGCAGC
AGCAGCAGTAATTTAAGCCCCGGCTGTAGGCTCAGCCAGTACTTGACCAT
AAGCGGGGCCTACCTTAAGTATCTCTGCAGAGCCCTGGGACCAGACCCGG
ACGTGGCACTGCCAGCACCGCCGAGCAACAACAGCCAGCCATCTCTCTCC
TCATCGTCATTATGCCACTGCTCCTCTGTCTCGACAATCGCACCTCTACG
CACTGAAGCCCAATTGTACGCCTGGGAGCAGCAACGTCGTTGGCGCGCTT
GGATGCTGATTGCCCGGCATTGGGGTGGAACGATAGTGTTGAACCTGATG
TTACTCCGCGATTCACGGTTTTGGACGCTTGTAGAGGGGATGTTGGATCT
TTTTTATACGTCCATGGTGATGTCGATGGTATTTTATGGGGTTGTTGCCT
TATCCAACCCCGGATATCTCCCTCTTCATTTTCCGGTTCAAGAAGAGGAG
AAGGCAGCGAATGAGGACAAGCAGCACCGCAATGGACGAGAAGGAGCAGA
GGAAAGGGAGAAAAAGGAGGAAGAGCAGGATGATGATGATGATGATGATA
ATCATAATGCAAATGAGGAGGAGAAGCAAAAACAGCTGCAGCAAGAGGTG
CTGTTGCGGGAGGAGGGCCGTGATGCTGTTTGTCAGACGGAGGAGAAAGA
AAGAAAGCCTCGCCCGCGCATGGCTTCTGGAGCAGGTGATTTGGACATAA
TTGAAGAGAAAGATGGGCATGAGGAGGCAACTGATGAACTGGCAGGGGAG
GAGGAGGAGAAAGAAGAGAACGATGAAGCAGAGTTGTGTGCTCACTTGGG
CGAGGGTGCATCTTTGACAGGTTCTGACGAGAGGGAGGCAAGGGGGGAGG
AAGACGATCTCGAATCTGATTCGGAATCTTTGCTACTGGAATTGGTGGAG
GCTACTTCCACCCCAGCAATAAGTAGTGCGACGACAAGAGACGGAGCAGG
AGGAGGGGAAGACGGAGAGACTATTAGAAAGTGGCTCCGGCGACGGTACT
GCGCCTCATGCGGCGTACAGCGCATGCCATTGCGAACACATCACTGCAAA
GAGTGCAGAAGGTGTGTGTCTCGGCTGGATCACCATTCTTTGTTTGTGGG
AAATTGTATCGGCGCGGGCAATCACCTCTCATTCGTCCTTTTCCTCTTCT
TCCAATCCCTTCACCTCTCCCTCGCCCTCCTCCTCCTTTTCCTCTTGGAC
CTGCCCTCCCTCCTTTCCCACTACAACTTCGACCGCGGACTCCTTGGTCT
TCTGGGAGGTCTCAGTCAAAATCTGCTTTTGGCCGGCCCACAAGCGCTTG
TAGAAGAGCCCTTTTCCTCCTTTCTCTTCCTCCTCGTTGCAATGTGGTGG
TGCGTGAGTCACGCGGCGCTTTTCGCACAGCTGAAGGTGGTCTGTCTCAA
CCTGCTGACGGTGGAGGCACAAGAGGGGGGAGAAAGACTACCCTACCTTG
CTGGAGGCCATAATCCCTTTGATAAAGGTTACTTCGGAAATGCCATCTCA
TTCTTGAGCCTCTTCTACCAGTACCACCAAGAGAGACGGACGAAGGAAAG
GCGGACAATGCAAGGGAGGGCAGGGAGAGGTGGTCTGTCTTCATCCTTCT
CCTCGTCTTCCTGGCCGTCTACTGCTGCATTTGCCTTCTCTTCCTCCTTC
TCTTCCTCCTTCTCTTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTC
CTCCTCCTCATCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCT
CCTCCTCCTCCTCCTCCTCCTCCTACCCTTCCGCCACATTTGCCTCACCG
CCAGGCTCAGTCTCCGCCTTCTCCTCTATCGGCTCCTCCTCCTCTTCACC
ACACAGCAGCCCTTCCTCCTCCCCTTGCGACTCTCCCACCGCTGCCCTCC
TCTCTTCGTCCTCCATCAACTCCTTCTCCTTCCGCAGCCTCTCCTCTTCC
GCGCTTGGTGCTGCTTCCTCCGTCCCATCCACTACGCCCTCTTCGTTTTT
TACCTACATTCGACATAAATTCACCCCTTCCTCGGCTGGGATCCGGCAGC
AGCAGCGGCATTTGCACCCTCCTTCCTTCCCGCTTTTCCCAACTTTTGGG
CTTAAGAAGAGTCGACCTCTTCCCCTTCCGTTGAAGGTTGCCCCTTGAGC
AGGTCGACGCGTAGATTAGATGTGATTCTCGATGGAGTGGTTGATCCACT
TTTTTGCTCAAGTCAACTTTTAAATTTGATAAGCGCCAGAGCAACGAGAC
TATGAGGCAGTAAGAGAT
back to top

protein sequence of jgi.p|Nanoce1779_2|122784

>mRNA_6601-protein ID=mRNA_6601-protein|Name=jgi.p|Nanoce1779_2|122784|organism=Nannochloropsis oceanica|type=polypeptide|length=787bp
MTYFASISRFVPVPSSSRRRRPRPPNSSSSSTRSCWRWCPSPSQFGLACS
FLGRVIAHPCLITSALLPTSSSSSNLSPGCRLSQYLTISGAYLKYLCRAL
GPDPDVALPAPPSNNSQPSLSSSSLCHCSSVSTIAPLRTEAQLYAWEQQR
RWRAWMLIARHWGGTIVLNLMLLRDSRFWTLVEGMLDLFYTSMVMSMVFY
GVVALSNPGYLPLHFPVQEEEKAANEDKQHRNGREGAEEREKKEEEQDDD
DDDDNHNANEEEKQKQLQQEVLLREEGRDAVCQTEEKERKPRPRMASGAG
DLDIIEEKDGHEEATDELAGEEEEKEENDEAELCAHLGEGASLTGSDERE
ARGEEDDLESDSESLLLELVEATSTPAISSATTRDGAGGGEDGETIRKWL
RRRYCASCGVQRMPLRTHHCKECRRCVSRLDHHSLFVGNCIGAGNHLSFV
LFLFFQSLHLSLALLLLFLLDLPSLLSHYNFDRGLLGLLGGLSQNLLLAG
PQALVEEPFSSFLFLLVAMWWCVSHAALFAQLKVVCLNLLTVEAQEGGER
LPYLAGGHNPFDKGYFGNAISFLSLFYQYHQERRTKERRTMQGRAGRGGL
SSSFSSSSWPSTAAFAFSSSFSSSFSSSSSSSSSSSSSSSSSSSSSSSSS
SSSSSSSSSSSSYPSATFASPPGSVSAFSSIGSSSSSPHSSPSSSPCDSP
TAALLSSSSINSFSFRSLSSSALGAASSVPSTTPSSFFTYIRHKFTPSSA
GIRQQQRHLHPPSFPLFPTFGLKKSRPLPLPLKVAP*
back to top

mRNA from alignment at scaffold_18:239542..242233-

Legend: polypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_6601 ID=mRNA_6601|Name=jgi.p|Nanoce1779_2|122784|organism=Nannochloropsis oceanica|type=mRNA|length=2692bp|location=Sequence derived from alignment at scaffold_18:239542..242233- (Nannochloropsis oceanica)
ACACATCAGAGAAGAGCGAGAACAGCACCCTGTAGAGATGACATACTTTG CGTCCATATCTCGCTTCGTCCCGGTGCCCTCATCCAGCCGGCGGCGGCGG CCACGTCCACCAAATAGCAGTAGCAGCAGCACCCGCTCCTGTTGGCGCTG GTGCCCATCTCCCTCACAATTTGGTTTAGCCTGCAGCTTCTTAGGCCGCG TGATAGCTCATCCTTGCCTTATTACAAGTGCGTTATTACCGACAAGCAGC AGCAGCAGTAATTTAAGCCCCGGCTGTAGGCTCAGCCAGTACTTGACCAT AAGCGGGGCCTACCTTAAGTATCTCTGCAGAGCCCTGGGACCAGACCCGG ACGTGGCACTGCCAGCACCGCCGAGCAACAACAGCCAGCCATCTCTCTCC TCATCGTCATTATGCCACTGCTCCTCTGTCTCGACAATCGCACCTCTACG CACTGAAGCCCAATTGTACGCCTGGGAGCAGCAACGTCGTTGGCGCGCTT GGATGCTGATTGCCCGGCATTGGGGTGGAACGATAGTGTTGAACCTGATG TTACTCCGCGATTCACGGTTTTGGACGCTTGTAGAGGGGATGTTGGATCT TTTTTATACGTCCATGGTGATGTCGATGGTATTTTATGGGGTTGTTGCCT TATCCAACCCCGGATATCTCCCTCTTCATTTTCCGGTTCAAGAAGAGGAG AAGGCAGCGAATGAGGACAAGCAGCACCGCAATGGACGAGAAGGAGCAGA GGAAAGGGAGAAAAAGGAGGAAGAGCAGGATGATGATGATGATGATGATA ATCATAATGCAAATGAGGAGGAGAAGCAAAAACAGCTGCAGCAAGAGGTG CTGTTGCGGGAGGAGGGCCGTGATGCTGTTTGTCAGACGGAGGAGAAAGA AAGAAAGCCTCGCCCGCGCATGGCTTCTGGAGCAGGTGATTTGGACATAA TTGAAGAGAAAGATGGGCATGAGGAGGCAACTGATGAACTGGCAGGGGAG GAGGAGGAGAAAGAAGAGAACGATGAAGCAGAGTTGTGTGCTCACTTGGG CGAGGGTGCATCTTTGACAGGTTCTGACGAGAGGGAGGCAAGGGGGGAGG AAGACGATCTCGAATCTGATTCGGAATCTTTGCTACTGGAATTGGTGGAG GCTACTTCCACCCCAGCAATAAGTAGTGCGACGACAAGAGACGGAGCAGG AGGAGGGGAAGACGGAGAGACTATTAGAAAGTGGCTCCGGCGACGGTACT GCGCCTCATGCGGCGTACAGCGCATGCCATTGCGAACACATCACTGCAAA GAGTGCAGAAGGTGTGTGTCTCGGCTGGATCACCATTCTTTGTTTGTGGG AAATTGTATCGGTAAGAAATGACGGGGAAATCGGAAGCAGAGGTGTGTGT AAATTGGCTGAATTTTATCAGAGAAGACACGTTTTTTCCCCTTCCTCCTC ACATGTATCAGCCAGGCCCGCGGACACTCATGCAACTCCTCCTTTCCTTA TTTACCTACTCTTTCCTCTCATCCTTCCCACGCAGGCGCGGGCAATCACC TCTCATTCGTCCTTTTCCTCTTCTTCCAATCCCTTCACCTCTCCCTCGCC CTCCTCCTCCTTTTCCTCTTGGACCTGCCCTCCCTCCTTTCCCACTACAA CTTCGACCGCGGACTCCTTGGTCTTCTGGGAGGTCTCAGTCAAAATCTGC TTTTGGCCGGCCCACAAGCGCTTGTAGAAGAGCCCTTTTCCTCCTTTCTC TTCCTCCTCGTTGCAATGTGGTGGTGCGTGAGTCACGCGGCGCTTTTCGC ACAGCTGAAGGTGGTCTGTCTCAACCTGCTGACGGTGGAGGCACAAGAGG GGGGAGAAAGACTACCCTACCTTGCTGGAGGCCATAATCCCTTTGATAAA GGTTACTTCGGAAATGCCATCTCATTCTTGAGCCTCTTCTACCAGTACCA CCAAGAGAGACGGACGAAGGAAAGGCGGACAATGCAAGGGAGGGCAGGGA GAGGTGGTCTGTCTTCATCCTTCTCCTCGTCTTCCTGGCCGTCTACTGCT GCATTTGCCTTCTCTTCCTCCTTCTCTTCCTCCTTCTCTTCCTCCTCCTC CTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCATCCTCCTCCTCCTCCT CCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTAC CCTTCCGCCACATTTGCCTCACCGCCAGGCTCAGTCTCCGCCTTCTCCTC TATCGGCTCCTCCTCCTCTTCACCACACAGCAGCCCTTCCTCCTCCCCTT GCGACTCTCCCACCGCTGCCCTCCTCTCTTCGTCCTCCATCAACTCCTTC TCCTTCCGCAGCCTCTCCTCTTCCGCGCTTGGTGCTGCTTCCTCCGTCCC ATCCACTACGCCCTCTTCGTTTTTTACCTACATTCGACATAAATTCACCC CTTCCTCGGCTGGGATCCGGCAGCAGCAGCGGCATTTGCACCCTCCTTCC TTCCCGCTTTTCCCAACTTTTGGGCTTAAGAAGAGTCGACCTCTTCCCCT TCCGTTGAAGGTTGCCCCTTGAGCAGGTCGACGCGTAGATTAGATGTGAT TCTCGATGGAGTGGTTGATCCACTTTTTTGCTCAAGTCAACTTTTAAATT TGATAAGCGCCAGAGCAACGAGACTATGAGGCAGTAAGAGAT
back to top

Coding sequence (CDS) from alignment at scaffold_18:239542..242233-

>mRNA_6601 ID=mRNA_6601|Name=jgi.p|Nanoce1779_2|122784|organism=Nannochloropsis oceanica|type=CDS|length=4722bp|location=Sequence derived from alignment at scaffold_18:239542..242233- (Nannochloropsis oceanica)
GCGCGGGCAATCACCTCTCATTCGTCCTTTTCCTCTTCTTCCAATCCCTT
CACCTCTCCCTCGCCCTCCTCCTCCTTTTCCTCTTGGACCTGCCCTCCCT
CCTTTCCCACTACAACTTCGACCGCGGACTCCTTGGTCTTCTGGGAGGTC
TCAGTCAAAATCTGCTTTTGGCCGGCCCACAAGCGCTTGTAGAAGAGCCC
TTTTCCTCCTTTCTCTTCCTCCTCGTTGCAATGTGGTGGTGCGTGAGTCA
CGCGGCGCTTTTCGCACAGCTGAAGGTGGTCTGTCTCAACCTGCTGACGG
TGGAGGCACAAGAGGGGGGAGAAAGACTACCCTACCTTGCTGGAGGCCAT
AATCCCTTTGATAAAGGTTACTTCGGAAATGCCATCTCATTCTTGAGCCT
CTTCTACCAGTACCACCAAGAGAGACGGACGAAGGAAAGGCGGACAATGC
AAGGGAGGGCAGGGAGAGGTGGTCTGTCTTCATCCTTCTCCTCGTCTTCC
TGGCCGTCTACTGCTGCATTTGCCTTCTCTTCCTCCTTCTCTTCCTCCTT
CTCTTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCAT
CCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCC
TCCTCCTCCTCCTACCCTTCCGCCACATTTGCCTCACCGCCAGGCTCAGT
CTCCGCCTTCTCCTCTATCGGCTCCTCCTCCTCTTCACCACACAGCAGCC
CTTCCTCCTCCCCTTGCGACTCTCCCACCGCTGCCCTCCTCTCTTCGTCC
TCCATCAACTCCTTCTCCTTCCGCAGCCTCTCCTCTTCCGCGCTTGGTGC
TGCTTCCTCCGTCCCATCCACTACGCCCTCTTCGTTTTTTACCTACATTC
GACATAAATTCACCCCTTCCTCGGCTGGGATCCGGCAGCAGCAGCGGCAT
TTGCACCCTCCTTCCTTCCCGCTTTTCCCAACTTTTGGGCTTAAGAAGAG
TCGACCTCTTCCCCTTCCGTTGAAGGTTGCCCCTTGAATGACATACTTTG
CGTCCATATCTCGCTTCGTCCCGGTGCCCTCATCCAGCCGGCGGCGGCGG
CCACGTCCACCAAATAGCAGTAGCAGCAGCACCCGCTCCTGTTGGCGCTG
GTGCCCATCTCCCTCACAATTTGGTTTAGCCTGCAGCTTCTTAGGCCGCG
TGATAGCTCATCCTTGCCTTATTACAAGTGCGTTATTACCGACAAGCAGC
AGCAGCAGTAATTTAAGCCCCGGCTGTAGGCTCAGCCAGTACTTGACCAT
AAGCGGGGCCTACCTTAAGTATCTCTGCAGAGCCCTGGGACCAGACCCGG
ACGTGGCACTGCCAGCACCGCCGAGCAACAACAGCCAGCCATCTCTCTCC
TCATCGTCATTATGCCACTGCTCCTCTGTCTCGACAATCGCACCTCTACG
CACTGAAGCCCAATTGTACGCCTGGGAGCAGCAACGTCGTTGGCGCGCTT
GGATGCTGATTGCCCGGCATTGGGGTGGAACGATAGTGTTGAACCTGATG
TTACTCCGCGATTCACGGTTTTGGACGCTTGTAGAGGGGATGTTGGATCT
TTTTTATACGTCCATGGTGATGTCGATGGTATTTTATGGGGTTGTTGCCT
TATCCAACCCCGGATATCTCCCTCTTCATTTTCCGGTTCAAGAAGAGGAG
AAGGCAGCGAATGAGGACAAGCAGCACCGCAATGGACGAGAAGGAGCAGA
GGAAAGGGAGAAAAAGGAGGAAGAGCAGGATGATGATGATGATGATGATA
ATCATAATGCAAATGAGGAGGAGAAGCAAAAACAGCTGCAGCAAGAGGTG
CTGTTGCGGGAGGAGGGCCGTGATGCTGTTTGTCAGACGGAGGAGAAAGA
AAGAAAGCCTCGCCCGCGCATGGCTTCTGGAGCAGGTGATTTGGACATAA
TTGAAGAGAAAGATGGGCATGAGGAGGCAACTGATGAACTGGCAGGGGAG
GAGGAGGAGAAAGAAGAGAACGATGAAGCAGAGTTGTGTGCTCACTTGGG
CGAGGGTGCATCTTTGACAGGTTCTGACGAGAGGGAGGCAAGGGGGGAGG
AAGACGATCTCGAATCTGATTCGGAATCTTTGCTACTGGAATTGGTGGAG
GCTACTTCCACCCCAGCAATAAGTAGTGCGACGACAAGAGACGGAGCAGG
AGGAGGGGAAGACGGAGAGACTATTAGAAAGTGGCTCCGGCGACGGTACT
GCGCCTCATGCGGCGTACAGCGCATGCCATTGCGAACACATCACTGCAAA
GAGTGCAGAAGGTGTGTGTCTCGGCTGGATCACCATTCTTTGTTTGTGGG
AAATTGTATCGGCGCGGGCAATCACCTCTCATTCGTCCTTTTCCTCTTCT
TCCAATCCCTTCACCTCTCCCTCGCCCTCCTCCTCCTTTTCCTCTTGGAC
CTGCCCTCCCTCCTTTCCCACTACAACTTCGACCGCGGACTCCTTGGTCT
TCTGGGAGGTCTCAGTCAAAATCTGCTTTTGGCCGGCCCACAAGCGCTTG
TAGAAGAGCCCTTTTCCTCCTTTCTCTTCCTCCTCGTTGCAATGTGGTGG
TGCGTGAGTCACGCGGCGCTTTTCGCACAGCTGAAGGTGGTCTGTCTCAA
CCTGCTGACGGTGGAGGCACAAGAGGGGGGAGAAAGACTACCCTACCTTG
CTGGAGGCCATAATCCCTTTGATAAAGGTTACTTCGGAAATGCCATCTCA
TTCTTGAGCCTCTTCTACCAGTACCACCAAGAGAGACGGACGAAGGAAAG
GCGGACAATGCAAGGGAGGGCAGGGAGAGGTGGTCTGTCTTCATCCTTCT
CCTCGTCTTCCTGGCCGTCTACTGCTGCATTTGCCTTCTCTTCCTCCTTC
TCTTCCTCCTTCTCTTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTC
CTCCTCCTCATCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCTCCT
CCTCCTCCTCCTCCTCCTCCTCCTACCCTTCCGCCACATTTGCCTCACCG
CCAGGCTCAGTCTCCGCCTTCTCCTCTATCGGCTCCTCCTCCTCTTCACC
ACACAGCAGCCCTTCCTCCTCCCCTTGCGACTCTCCCACCGCTGCCCTCC
TCTCTTCGTCCTCCATCAACTCCTTCTCCTTCCGCAGCCTCTCCTCTTCC
GCGCTTGGTGCTGCTTCCTCCGTCCCATCCACTACGCCCTCTTCGTTTTT
TACCTACATTCGACATAAATTCACCCCTTCCTCGGCTGGGATCCGGCAGC
AGCAGCGGCATTTGCACCCTCCTTCCTTCCCGCTTTTCCCAACTTTTGGG
CTTAAGAAGAGTCGACCTCTTCCCCTTCCGTTGAAGGTTGCCCCTTGAAT
GACATACTTTGCGTCCATATCTCGCTTCGTCCCGGTGCCCTCATCCAGCC
GGCGGCGGCGGCCACGTCCACCAAATAGCAGTAGCAGCAGCACCCGCTCC
TGTTGGCGCTGGTGCCCATCTCCCTCACAATTTGGTTTAGCCTGCAGCTT
CTTAGGCCGCGTGATAGCTCATCCTTGCCTTATTACAAGTGCGTTATTAC
CGACAAGCAGCAGCAGCAGTAATTTAAGCCCCGGCTGTAGGCTCAGCCAG
TACTTGACCATAAGCGGGGCCTACCTTAAGTATCTCTGCAGAGCCCTGGG
ACCAGACCCGGACGTGGCACTGCCAGCACCGCCGAGCAACAACAGCCAGC
CATCTCTCTCCTCATCGTCATTATGCCACTGCTCCTCTGTCTCGACAATC
GCACCTCTACGCACTGAAGCCCAATTGTACGCCTGGGAGCAGCAACGTCG
TTGGCGCGCTTGGATGCTGATTGCCCGGCATTGGGGTGGAACGATAGTGT
TGAACCTGATGTTACTCCGCGATTCACGGTTTTGGACGCTTGTAGAGGGG
ATGTTGGATCTTTTTTATACGTCCATGGTGATGTCGATGGTATTTTATGG
GGTTGTTGCCTTATCCAACCCCGGATATCTCCCTCTTCATTTTCCGGTTC
AAGAAGAGGAGAAGGCAGCGAATGAGGACAAGCAGCACCGCAATGGACGA
GAAGGAGCAGAGGAAAGGGAGAAAAAGGAGGAAGAGCAGGATGATGATGA
TGATGATGATAATCATAATGCAAATGAGGAGGAGAAGCAAAAACAGCTGC
AGCAAGAGGTGCTGTTGCGGGAGGAGGGCCGTGATGCTGTTTGTCAGACG
GAGGAGAAAGAAAGAAAGCCTCGCCCGCGCATGGCTTCTGGAGCAGGTGA
TTTGGACATAATTGAAGAGAAAGATGGGCATGAGGAGGCAACTGATGAAC
TGGCAGGGGAGGAGGAGGAGAAAGAAGAGAACGATGAAGCAGAGTTGTGT
GCTCACTTGGGCGAGGGTGCATCTTTGACAGGTTCTGACGAGAGGGAGGC
AAGGGGGGAGGAAGACGATCTCGAATCTGATTCGGAATCTTTGCTACTGG
AATTGGTGGAGGCTACTTCCACCCCAGCAATAAGTAGTGCGACGACAAGA
GACGGAGCAGGAGGAGGGGAAGACGGAGAGACTATTAGAAAGTGGCTCCG
GCGACGGTACTGCGCCTCATGCGGCGTACAGCGCATGCCATTGCGAACAC
ATCACTGCAAAGAGTGCAGAAGGTGTGTGTCTCGGCTGGATCACCATTCT
TTGTTTGTGGGAAATTGTATCG
back to top
Synonyms
Publications