mRNA_P-littoralis_Contig129.62.1 (mRNA) Pylaiella littoralis U1_48

You are viewing an mRNA, more information available on the corresponding polypeptide page

Overview
NamemRNA_P-littoralis_Contig129.62.1
Unique NamemRNA_P-littoralis_Contig129.62.1
TypemRNA
OrganismPylaiella littoralis U1_48 (Pylaiella littoralis U1_48 (Mung))
Homology
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: D8LJR4_ECTSI (PH domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LJR4_ECTSI)

HSP 1 Score: 273 bits (699), Expect = 8.180e-86
Identity = 129/142 (90.85%), Postives = 130/142 (91.55%), Query Frame = 3
Query:   72 MATTMARPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTYQGDNNNXXXXXXXXXXYR 497
            MATTMARPPFHDQKTGVRYDCNNPDH GWLRKES WLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTH+TTYFMYANTEKEKDDWIGAIGRAIVQASSTYQGDNNN          YR
Sbjct:    1 MATTMARPPFHDQKTGVRYDCNNPDHAGWLRKESVWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHETTYFMYANTEKEKDDWIGAIGRAIVQASSTYQGDNNNGDSDSDDEYDYR 142          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: A0A835ZE28_9STRA (PH domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZE28_9STRA)

HSP 1 Score: 200 bits (509), Expect = 7.980e-58
Identity = 93/121 (76.86%), Postives = 103/121 (85.12%), Query Frame = 3
Query:   90 RPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTYQGD 452
            RP + D  TG+ YDCNNPD  G+L K+S+WLKDWR RFF+LKGS LFFAKSE   PHG IDLSSCMTVKSAEQKT KRNALEVST DTT+FM+A TEKEKDDWIGAIGRAIVQ+SSTYQ +
Sbjct:    6 RPQYQDPATGILYDCNNPDFTGYLTKQSSWLKDWRRRFFILKGSKLFFAKSEMAAPHGMIDLSSCMTVKSAEQKTHKRNALEVSTQDTTFFMFAGTEKEKDDWIGAIGRAIVQSSSTYQNE 126          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: W7TJA6_9STRA (Pleckstrin like protein n=2 Tax=Monodopsidaceae TaxID=425072 RepID=W7TJA6_9STRA)

HSP 1 Score: 176 bits (446), Expect = 9.750e-49
Identity = 81/118 (68.64%), Postives = 98/118 (83.05%), Query Frame = 3
Query:   90 RPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTY 443
            R  + D +T +RYD NN D  GWL K+S+WLK+WR R+F+LKGS LFFAK+E  +PHG IDLSSCMTVKSAE K  KRNALEVST +TT+ MYA+TEKEKDDWIGA+GRAIV++S+TY
Sbjct:    2 RGTYMDPETNIRYDTNNADFEGWLTKQSSWLKEWRRRYFILKGSKLFFAKNEMCSPHGMIDLSSCMTVKSAELKAQKRNALEVSTPETTFLMYADTEKEKDDWIGAVGRAIVRSSTTY 119          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: A0A7S2LSC0_9STRA (Hypothetical protein n=1 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2LSC0_9STRA)

HSP 1 Score: 175 bits (444), Expect = 3.810e-48
Identity = 78/126 (61.90%), Postives = 98/126 (77.78%), Query Frame = 3
Query:   72 MATTMARPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTYQG 449
            MA  + RPP+ D  T +R+D +  +  GWL K+SAW+KDWR R+F+LKGS LFFAK+    PHG IDLS+C TVKSA+ KT K N+ E+STHDTT+F+YA+ EKEKDDWIG +GRAIV+ SSTYQG
Sbjct:    1 MANRIGRPPYFDPVTNIRFDTDCAEFEGWLTKQSAWVKDWRRRYFILKGSKLFFAKTGTSAPHGMIDLSTCTTVKSADVKTRKNNSFEISTHDTTFFLYADNEKEKDDWIGNVGRAIVRCSSTYQG 126          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: A0A7S2A403_TRICV (Hypothetical protein n=1 Tax=Trieres chinensis TaxID=1514140 RepID=A0A7S2A403_TRICV)

HSP 1 Score: 175 bits (443), Expect = 4.620e-47
Identity = 78/123 (63.41%), Postives = 97/123 (78.86%), Query Frame = 3
Query:   84 MARPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTYQGD 452
            +ARPPF D  T + YDC++P++ GWL K+S WLKDWR R+F+LKGS LFF KS + TPHG IDL+ C TVKSA+ K+ KRN+ EVST + TY +YA+TEKEKDDWIG +GRAIV+ S TYQ D
Sbjct:   76 IARPPFVDPTTNICYDCSDPEYEGWLTKQSMWLKDWRRRYFLLKGSKLFFCKSPHSTPHGMIDLAKCTTVKSADLKSRKRNSFEVSTPELTYLLYADTEKEKDDWIGNVGRAIVRCSGTYQRD 198          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: A0A7S2AKD7_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2AKD7_9STRA)

HSP 1 Score: 171 bits (434), Expect = 7.280e-47
Identity = 77/124 (62.10%), Postives = 96/124 (77.42%), Query Frame = 3
Query:   72 MATTMARPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTY 443
            MA    R P+ +  T  +++ ++PD  GWL K+S W+K+WR R+F+LKGS LFFAK E  TPHG +DL+ CMTVKSAE K  K+NALEVST DTT+ M+A+TEKEKDDWIGAIGRAIV+ SSTY
Sbjct:   13 MAAAQTRKPYINPSTNEKHETSDPDFQGWLTKQSTWIKEWRRRYFILKGSKLFFAKGEAATPHGMVDLAQCMTVKSAETKAGKKNALEVSTADTTFLMFADTEKEKDDWIGAIGRAIVRCSSTY 136          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: A0A7S4A7D4_9STRA (Hypothetical protein n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A7S4A7D4_9STRA)

HSP 1 Score: 171 bits (432), Expect = 7.950e-47
Identity = 79/119 (66.39%), Postives = 94/119 (78.99%), Query Frame = 3
Query:   99 FHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTYQGDN 455
            + D  TG+RYD +NPDH GWL K+SAWL+DWR R F+LK S LFF+K E   PHG IDL+ CMTVKSAE K  +R+ALEVST DTTY M A+TEKEKDDWIGAIGRAIV+ S+T+  D+
Sbjct:    4 YTDPATGIRYDTSNPDHSGWLTKQSAWLRDWRRRHFILKQSKLFFSKHEGSPPHGMIDLARCMTVKSAEFKARRRHALEVSTQDTTYLMCADTEKEKDDWIGAIGRAIVRCSATFTNDD 122          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: A0A7R9ZAF4_9STRA (Hypothetical protein n=1 Tax=Pseudictyota dubia TaxID=2749911 RepID=A0A7R9ZAF4_9STRA)

HSP 1 Score: 172 bits (435), Expect = 3.100e-46
Identity = 77/129 (59.69%), Postives = 99/129 (76.74%), Query Frame = 3
Query:   72 MATTMARPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTYQGDNN 458
            MA  + RPP+ D  T + YD +NP++ GWL K+S WLKDWR R+F+LKGS LFFAK  +  PHG IDL+ C TVKSA+ K+ KRN+ EVST + TY +YA++EKEKDDWIG +GRAIV+ SSTYQ D++
Sbjct:   38 MAGRLIRPPYVDPTTSICYDTDNPEYEGWLTKQSMWLKDWRRRYFILKGSKLFFAKLPHSAPHGMIDLAQCTTVKSADLKSHKRNSFEVSTPEVTYLLYADSEKEKDDWIGNVGRAIVRCSSTYQRDHS 166          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: A0A7S2R6Y3_9STRA (Hypothetical protein n=1 Tax=Eucampia antarctica TaxID=49252 RepID=A0A7S2R6Y3_9STRA)

HSP 1 Score: 165 bits (417), Expect = 2.210e-44
Identity = 75/123 (60.98%), Postives = 96/123 (78.05%), Query Frame = 3
Query:   90 RPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTYQGDNN 458
            RPP+ D  T + Y+ N  D  G+L K+S WLKDWR RFF+LKGS LFF+KSE   PHG IDLS+C TVKSA+ K+ KRN+ E+ST +TT+ +YA++EKEKDDWIG+ GRAIV+ SST+QG+ N
Sbjct:    6 RPPYVDPTTTMMYETNQADFEGYLTKQSQWLKDWRRRFFILKGSKLFFSKSERARPHGMIDLSTCTTVKSADLKSRKRNSFEISTPETTFLLYADSEKEKDDWIGSAGRAIVRCSSTFQGNTN 128          
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Match: A0A7S1CZ96_CYCTE (Hypothetical protein n=2 Tax=Cyclophora tenuis TaxID=216820 RepID=A0A7S1CZ96_CYCTE)

HSP 1 Score: 166 bits (420), Expect = 3.050e-44
Identity = 78/138 (56.52%), Postives = 103/138 (74.64%), Query Frame = 3
Query:   45 SRLFSLH---LTMATT--MARPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGSNLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYANTEKEKDDWIGAIGRAIVQASSTY 443
            SR+ S H   LT AT   + RP + D++T + YD NN D  GWL K+S WLKDWR R+F+LKGS LFF+K+ Y  PHG IDLS C TVKSA+ K+ KRN+ E+ST + T+ +YA+TEKEKDDWIG++G++IV+ S+TY
Sbjct:   13 SRIASNHFFPLTNATMSHLMRPHYIDKQTNIIYDTNNADFEGWLTKQSMWLKDWRRRYFILKGSKLFFSKTNYSAPHGMIDLSQCTTVKSADLKSKKRNSFEISTPELTFLLYADTEKEKDDWIGSVGKSIVRCSNTY 150          
The following BLAST results are available for this feature:
BLAST of mRNA_P-littoralis_Contig129.62.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D8LJR4_ECTSI8.180e-8690.85PH domain-containing protein n=1 Tax=Ectocarpus si... [more]
A0A835ZE28_9STRA7.980e-5876.86PH domain-containing protein n=1 Tax=Tribonema min... [more]
W7TJA6_9STRA9.750e-4968.64Pleckstrin like protein n=2 Tax=Monodopsidaceae Ta... [more]
A0A7S2LSC0_9STRA3.810e-4861.90Hypothetical protein n=1 Tax=Leptocylindrus danicu... [more]
A0A7S2A403_TRICV4.620e-4763.41Hypothetical protein n=1 Tax=Trieres chinensis Tax... [more]
A0A7S2AKD7_9STRA7.280e-4762.10Hypothetical protein n=1 Tax=Dictyocha speculum Ta... [more]
A0A7S4A7D4_9STRA7.950e-4766.39Hypothetical protein n=1 Tax=Pelagomonas calceolat... [more]
A0A7R9ZAF4_9STRA3.100e-4659.69Hypothetical protein n=1 Tax=Pseudictyota dubia Ta... [more]
A0A7S2R6Y3_9STRA2.210e-4460.98Hypothetical protein n=1 Tax=Eucampia antarctica T... [more]
A0A7S1CZ96_CYCTE3.050e-4456.52Hypothetical protein n=2 Tax=Cyclophora tenuis Tax... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-littoralis_Contig129contigP-littoralis_Contig129:206518..216423 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
Pylaiella littoralis U1_48 OGS1.02022-07-08
Properties
Property NameValue
Stop1
Start1
Seed ortholog2880.D8LJR4
PFAMsPH
Model size1914
Max annot lvl2759|Eukaryota
Hectar predicted targeting categoryother localisation
GOsGO:0003674,GO:0005488,GO:0005543,GO:0008289,GO:0032266,GO:0035091,GO:0043167,GO:0043168,GO:1901981
Exons3
Evalue9.76e-96
EggNOG OGs29TN5@1|root,2RXGP@2759|Eukaryota
Ec32 ortholog descriptionPleckstrin homology domain
Ec32 orthologEc-12_002980.1
Descriptionphosphatidylinositol-3-phosphate binding
Cds size429
COG categoryS
Relationships

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

Feature NameUnique NameSpeciesTypePosition
1680789575.443281-UTR-P-littoralis_Contig129:206517..2065881680789575.443281-UTR-P-littoralis_Contig129:206517..206588Pylaiella littoralis U1_48UTRP-littoralis_Contig129 206518..206588 +
1680789575.494364-UTR-P-littoralis_Contig129:215009..2164231680789575.494364-UTR-P-littoralis_Contig129:215009..216423Pylaiella littoralis U1_48UTRP-littoralis_Contig129 215010..216423 +


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

Feature NameUnique NameSpeciesTypePosition
1680789575.4574752-CDS-P-littoralis_Contig129:206588..2067561680789575.4574752-CDS-P-littoralis_Contig129:206588..206756Pylaiella littoralis U1_48CDSP-littoralis_Contig129 206589..206756 +
1680789575.4699419-CDS-P-littoralis_Contig129:214192..2143361680789575.4699419-CDS-P-littoralis_Contig129:214192..214336Pylaiella littoralis U1_48CDSP-littoralis_Contig129 214193..214336 +
1680789575.4852028-CDS-P-littoralis_Contig129:214892..2150091680789575.4852028-CDS-P-littoralis_Contig129:214892..215009Pylaiella littoralis U1_48CDSP-littoralis_Contig129 214893..215009 +


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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-littoralis_Contig129.62.1prot_P-littoralis_Contig129.62.1Pylaiella littoralis U1_48polypeptideP-littoralis_Contig129 206589..215009 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-littoralis_Contig129.62.1

>prot_P-littoralis_Contig129.62.1 ID=prot_P-littoralis_Contig129.62.1|Name=mRNA_P-littoralis_Contig129.62.1|organism=Pylaiella littoralis U1_48|type=polypeptide|length=143bp
MATTMARPPFHDQKTGVRYDCNNPDHLGWLRKESAWLKDWRPRFFVLKGS
NLFFAKSEYETPHGRIDLSSCMTVKSAEQKTSKRNALEVSTHDTTYFMYA
NTEKEKDDWIGAIGRAIVQASSTYQGDNNNGDSDSDDDYEYR*
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mRNA from alignment at P-littoralis_Contig129:206518..216423+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-littoralis_Contig129.62.1 ID=mRNA_P-littoralis_Contig129.62.1|Name=mRNA_P-littoralis_Contig129.62.1|organism=Pylaiella littoralis U1_48|type=mRNA|length=9906bp|location=Sequence derived from alignment at P-littoralis_Contig129:206518..216423+ (Pylaiella littoralis U1_48)
CCTTCGGTCTACTATAGTACTGCGGCACTACCGTGCCGGCGGGATCGCGT TTATTCTCTCTACACCTCACCATGGCTACCACCATGGCCCGGCCACCTTT CCACGACCAGAAGACCGGGGTTCGATATGACTGTAATAACCCCGACCATC TGGGCTGGTTACGGAAGGAGAGCGCCTGGCTCAAGGACTGGCGCCCGAGG TTCTTCGTTCTCAAGGGCAGCAACCTATTCTTCGCGAAGGTGCGGCCTTT GTCACTACACCAACACCACCACCACCACCACCACCACCACCACCACTACA CACCAGCTCCTTGCAGTGCCGTTAGTTTGTTGGGTTGTTCTTTCGGGCAT GACTCTACAGCACATACGAACTTCGTACATATAATGTCATACCTGGTACT TTTGTACTTTTGAAGGACCTTCGTAAAAGACGGTCTTAAAAAGACTGCTG TCCGGCATACGGTACTGCTGTGGGTGGAACGAGATACCACACCGCCTGCA CTGCTGTGCGCCGATTTTTCAGGCTGATGACTCTGTAAAGCGAGGAGGGC GCCAACACCAAATGATATTCATTCGAAAAGCTCTCGGCGAGATATTTCTA TGATATAATATATACCACCATCATTTTCGGCATTTGATACTACTGGTATA AGCAGTCGTGTTGCACTGCTGTGGGAAGTGTTCAAACTTTCAACACCAGG CCAGGGGGTATGGTATCTTATGCCATCTGTAGGTGAAAGGACCGTTGACA TTTAATTACAGCATACGCTACCGTATACTTTTTTTTATTTCTTACAGAGG CACCAAAACAGCAAAACAGCAAGCAGGCACGGTCCATATACGAGTTCCCA TGGACTTACCTGAATGTTTGGTTGGGGCTTCGAAGTCCTTTACACAGGCT CGTTCACGAAAGAAACTCAAAATTCATTCAAGACATGTTCCCGAACGCAA TAAAAAACCGATGACGACAAATGTGGTACCAAACTGACCGCCGTCAATAG GGGAAGACCGTGACGTTCTCGTATTTTGTTTGAGGCACTACCGGTGGCGC TACAGTAGGGGGAGAAAATGTGCCATTTCACGGTGAATGACGTGGTATAA CACCCCCCCCAAGGTCAGGCTTTCCACACTAAGTGCTATATACAATCAAT TCGAGATGTACTCTTTTTTAACACGTGTGGTCTCTCTGTGTCCCAAGGAG GATATTTGCGGATATGTTTTTCGAAATTCCAAAAAAACTGAGGATATTTG CGGATATGTTTTTCGAAATTCCAAAAAAACTGACGTAGTTTGGCCAATAA TAGCGTAAAAATGTAAAAACGCTTGAAATCGGCCGATTTTAGTCTTTATC CTAGTAACCAGGGTGTTTTTGAGTACTTCACCACACTGAAGTGCGTTTTC TCACGCAGTTTTGTCGATTTAGACCCTGATACTTTGCACGCGTGTTCCTT GGGTTACTACGAAAAATCGACCGACCGGGGTGCATCGTTTTTTTTTGGGA AAACGACACAACAGGGTGCACCCTGGTCGTTTTGCGACTCAACAGGGTGC ATACTTTTCCCGAGGGTGAAACGAACCAAGCTGATTGGTCAAACCTCGAA AACACCCTGTTGAGCCGGAAAATGACCAGGGTGCACCCCGCGGAGGCTAC TTTTCTTCAAAGCTACTGTACACCCTGATTTTTTGAAAGCACCCTGTTAT GTCGGTAAATGAGACCCCTCCACCGGATATTCCTCCGGCAGGAATCACTT TCCGCACCCGTCAAAGGGCACCAAACATGAGATCTTCCACCACCAAACAT ACAATGGTGAAAACCATGAAGGGCACGACGGACCTACCGCATACCCCTCT ACATCAACTCTTCAGGCTCTACACATACGATGGCACAATTCTTCTGTGCC AACAGATCAGAGTGCGTTGCCAGCAAACAAACTGCAGATCCGCCGACAAC AGAGCAGAGACACACCAGCCCGAAACAGAACACATTTGTTGGCCCTGCTT CAACTACTCGTATACGAAGCACGAGTATATATACCTTATATAGAGGCCAA TATATACCGTAATCATGCGAGTCATCGCACCCCCGTGTTAGCTCTTTTGC ATTCCGTATTGCTCCACAACCAGGAGAGTACCTCTGCCGAAAAGGGTGGT TTTGGAAAGATCTCGTCGAGAGCTTTCGTATGACGGGTCGTTTGGTGTTC GCACTCTCCTGGCTGTGGAGCAATACAGAATGCAAAAGAGCTAACACGGG GGTGCGATGACTCGCATGATTACGGTGGCAACACACAACAAGAAGAGGAA GAACGCAGAAGGAAGACAAAGTAGCCACACAACCACACAAAGGAGGTATG GAAGGGACGGCCAGTGAGATGACAGGACACGCGACTCACAGCAGTGCAGA CACAGCAAGTAGGCGTCGGAAGCAGAGAGCAAGCACACAATATCGATGCA CTGAACAAAGAGGGAACCACACACCCACCTTGTACCCACGTTGTCCCTTT ACTTTATACAAGGACACACGGAAGGCGCAACACTACCCTCTGTATTTTTC CCGAACCTTTCATTGCGAACACTCTGTTGCAAGCTCACAACCCTCTGGCA TACTCCGGAGTATCAACATATCGTCACGTCTGACACGTCTGAAGGGCACG AGCGCCCTTTCGCACGTCAACCTCGGAATGGAGTTCCACCCCGACCAATG TCAGTCAAACAAGCGTAGGATTTAGAAACACAGGTACTACGTACAACGCG TGTGGGTGTGTTTGTTGCCATCCAATTTGAGGCTTGAAGCACGAAGAAAA AGCCGAGGGGTACTGGACCATCTCGCACACGGTACAACAAACTGCTATCG TTGGGAGAGTGGGCGCGCCGAAAGAAGAATTGGGTTCGTATCCGATCGTG AATGATCTAGGGAGTATATGCACCGGAAATATAACGCAGAGTATCATATC GCAAGTATTGTTTGGCTTCTGTGTACAATATACATGAGAGTACAGCAGTG TGCTGAACAACACACTGCTTCTGTTGGCACAGAAGAATTGTGCCATCGTA TGTTTAGAGCCTGAAGAGTCGATGTGGAGGGGTATGCGGTAGGTCGTGCC GTTCATGGTTTTCACCATTGTATGTTTGGTGGTGGAAAATCTCATGTTTG GTGCCCTTTAGCGGGTGCGGAGAGTGATTCCTGCCGGAGGAATATCCGGT GGAGGGGTCTCATTTACCGACATAACAGGGTGCTTTCAAAAAATCAGGGT GTAGTTTTGAAGAAAAGTAGCCTCCGCGGGGTGCACCCTGGTCATTTTCT GGCTCAACAGGGTGTTTTCGAGGTTTGACCAATCAGCTTGGTTCGTTTCA CGCTCGGGAAAAGTATGCACCCTGTTGAGTCGCAAAACGACCAGGGTGCA CCCTGTTGTGTCGTAATCCCTTTTTTTTTACCGGATTTCTGTGGTCCCAA TCGAGCAGTGCAGACCCAACATGCCTTTATACTAATGTATCTATTGAAAA AAAAATCGTTGCACCCCGGTCGGTCGATTTTTCGCAGTGACACAACGAAC ACGTGTGCAAAGTTTCAGGGTCTAACTCGAAAAAACCGCGTGAAAAAATG ATGTTGAATTAATTTGGGGTTTCTTGCGTGAACTAGCCTGTACTCGAAGT AAATGGTGTTGGCTGTAAATGTCACATAAAAGGACCGTACATTGTGAATG CACCAAATGGCCCGCCGGGGATCGCCGGTGTGTTCTTCGGTGTGTTCTTC CAGATCAGAGTTAATCCCGTTCCTTGAGTTATCGGAACGTTCACAGAATC TTCCTTTTCAACGGACAGCTTCCTCTCTTGTGTTCGTTGCCAACCTCCCT GGATCCTCGTCCAGAGAGAGGCGAACAGGTTGATGTCTTTGCAAGAAAAA AGAAAAGAAAAAGGGCAACTGCGTTGATGACCCACGCACTCATTTCCCCG TTTTTTCCTGTCGTCGTCGAGAGGAAGATCAACTCGGTGCGCCTCTGCAC CACACGTCACATATGACAGAGCCTGAGAGCAGAGAGCTCTTAAAGTGGCG TCGACGACAGTCAAGGTCGTAGTTCTAGCGTGTGTGGGGGCCGCAGCCAT ATCAAATCATGGTGAAGGAGAGGAATGAAAAACCATCGAGGGACCAGAGC CCGTACTGCTGTAGAACGCATCATCTCACGTCATTTGGGGTACTTCTTTA AAATGCTTCCAAAAATAGAGACTGGACGGCCTGTCTTTGACGAGGAAAAA GTATCGGAAGTTGTGGTTGGACGGTTTGCCGGCACCACGTTTGAAATGAT CTATCCCTGGCATCGTATATACTTCGTATGTATAAAGCTTATACGAAGTA TATTTTTTTATTTCCATTCAACGCTAACTAATTTAGGACGCTGAGGGTCG GTCTTGGCAGAAAATTTCAACTCTAGAATTAGAAAGCGGGTTGTGTCCGA TGTGCCGCAGCTGCGGTCATCTCAAATCTAAAAAGCAGAGGATAAAAACA GATTGAAAAACGCAAAAGGAACGGCCAGCATATCAATAGACAGACGGTCG TAAAATGCATGCTGTGACGATTCCAAGACTGTGGTGCGGGAGCTACCGTG CCTTTAAACCAGTGCACTACAGCAGTGCCCCACGTCGGCCTGACTCAGGC GCGTTGGCAGTACTTTATTTGGGATCGACAACCGAAGAAGGCGGCAAGAA ATGTGTTGTTGCGTGTTGAACACCCTACCTACCCGTTCGGAGGTCTCAAA GCCCAAAATGTCAGCCGCCGTGGGCAACAACTTTCTTCACATTTCTGCAC AACTTTGGTGCTGCTGTTCGGATTCTCACCAGAATCTGCTGTAACAAAAG TGCTCTCTTCTCTGGGGATAAGCAGCTTTCTGCAGAGGTGATCACATATG TTCAGAGGGAGTCTACACGTTATGATGTGACGATCAAAGCGAAGTCGTGT CGATGTGCACCGATGTGCTCCCGGAAAGCACAGCAGACATCACTCTGCTC TTGTTCTTGGTCTGTTCGTTTTTGTTTACCGCGTTTTAGATCTGTTTTAT TCAGCTAACATTTTTGATTTCGTGGATTGGAATAGCTTTTTTGGAGCAGA AAGCTGATTTCTAAAATCTTTTTTAACATCGCACATCTCGCCCAAAGAGA GCCATTTAAGATTTTAGATTCTAGATGCCCGGTTCCACCTGTTGAGACCG ACCCTGAGAGGCGCAGCTGGGAGATTCGCCACCCCGTCAGAATCAAGACG TTTTGACGCCCTTTCGGGTCGCCGCTGCCAACAAATTTATCAAAAACAAG ATGTTCGCGCCCTGAGCGAGCTAATTTTGTACGGCCCGACGCACCTGTCG CGGGCTCAAGACTCGCGCGAGCCTAGCTACAGCCTCGTGAAAGCATGCTG TATACCAATATTGCTCGCTCGCAACACTTATGGTAATAAAATTCCCGGCG CTGAGACTGGATGCGTGCGCACGTGCGTGTGTTATCGCCTTCGGCTCTGA ATTTGCTGACTGTTTTTTCCCCCAGCGCTGAAAATGGATGCGTTACCTCT GAACGAGCAATAAAAAAACTGGCTCTTTTATTTTCCCTTTTCTCTGGAAG CCAAATTCAACGAAGAAAATAGTGAGCACTTTATCATTGCAATGAACGCT TTCAAAGCCCCTTTTCATTTTTCTACCCTCAACGTGTGGTATGCCTACTC TAATATCTGGCAAGTTGCTGGTCCGAAAATAAACTCTCGCTCTTGCTCTC GCTCGGACTCTTGAGACAAAACTCATCCATCTCGGCAACAGGAAGTTATG GATGCCCTCAAAAAGCTATGACCGCTCGAGCGCAAGCAAGCTGCTGCCGC TCCGCAAATTTCAGCCTCTTGCCCGCCCCTAGAGCTAGGGGTGCCCGGTT GGCCTTGCCTGCGCTTCGATGCATATACGGCAAAGGAGAATTCAATTCCG GGGGGGACTTTATGCACCCACCCCCCAAAAATCAACGTCGGCGGCCACAC AGGGTCTTCAACGTGCTTCGTCTGCACATGCTGCACTCTTTTGGTATGCA GTTCCACACCTTTTTCGCCTTGAATTTATCTTTCTCGACTTCCCGCCCTC AACGGAGGACGGGGGGCGGGGGGGGCGTCAGCCCCCCGCGTACGGAGCCC TTGCCTGTAGTTGCGAAGGAGAAGTACTTCGAAGTGTGTTTTAATAATCT TATGCGCATACGTGCTTGTAACAGTATCTGGTTATTTGGGGGGACATGCA TTTGGTGAATCGCTCTTGTGTTGAATCGTACGTTAGCAGCAGCAGTTGGC TCGGTTTCGTTCAAGCGAGGGTCCGGGCATTGATTGCACCGCATTGAGAC GATCCTCCACGACAGTTTATCAAAATCTTTGGGATGTTTTTTCTTTGTTC GGATCGTTTGGGGTATCAATGTTGGCGGGACAGAAATTCACCCGAGCCAC CGGCCAACCAAAAGCCTGTCTTTTCACGAGCCAGCACAAGCCACGCGGAG GTGCGCTGTGCGTGGATAGTATCGTAGCAACCGTCTCGAAGGCCGACATC CCTCCCAGGAACATCGGGGGCCGCTTCAAGGGTCGAAAACAGCAAACATC GACCAGACCTGGGCCACCTTCTGGCTATCGCCAACTAACCCGCGAGATTT TGGGTGCTGATGTTCGGCTTCGCCGTGGGACTCAAGCAAGCAGACCAACA CGAGCGGCGAGTATCAACAGCAGCACCACCGCCACGGCAGAAGTATCAGC TGAAAAAAAAAAGGACGACAAGATGGAGGGGAAAGTCCTCGCGGTGGGCT GGGTTTGGCCTGGCAAATTGTCCCACGCCCTCTCATCCCGTGCAGAAGGA AGGCTTTGCTGTCCCGGCAGCACACACCCGGGTGTAGATGTAATATTCTT CGCATACGCTATCGCCATGCATCACATGGCCCAGCTCATCACATACACCA ACAATTATGGTGGACGCCACGATCGACCCTCCCTGCGTTGTCTGCGTTGA CTTGCTCCCCTCCCACTACGCAGAGATAACTGACTTTTTGTTCCTCTCGG GTGAACTGACCCTGTCTACCTACAAGCTTACACGAGAGACTCCAAGACTC CGAACTCTGGGTCACCACTCAACTGAGATGAAAGGGTGGTACATGTGATC CGAAAAGTCTGCTGATTCATTGGGCTACGCCCGCGAGAGATCGCGTCTCT TCGTCGACGCCGAATGTGAAAAGAGGGCATTCGTCCTCCACAGAAGTTCG TGGTCGTGTGTGCCCTCGATCAAGATCAATTCCACATTCGTCCGAACTTG TTTTTTTACGACAGCAGTAGTGCACGAGTGAATCAAAAAATGGCCCCGTC TTTTTCAACCTCTACGTAACTCCAAGACAGACTGATTCTCAAAAGCTCTG AATTTATTGAACGCTGTGTCATGAAAAAGTCAGGGTCGAATTGTTTCAAC CGCCCCCGTGGGCCCTTTTCCAGGCCAAACGGCCCTTTTCCAGGCTAAAC ATACCCAAGTACTTTGTTGTGACCCTCCTAACAACCCTAGCCCTGTGAGT GCCACAAAGCACGCCGCAGTCTACTGACCGCCTCTCTGCTGTTGTCCACC TGCCATCCCATTACACTTGCTGCTGCTGGCGTCGGTTCCAAAAATACAAA CAAACAAACAAACAAACAAACGCAGTCGGAGTACGAGACGCCACACGGTA GGATCGACCTGAGCTCTTGCATGACGGTGAAGTCGGCGGAGCAGAAGACC AGCAAGCGAAATGCCCTCGAGGTCTCCACCCACGACACCACGTACTTCAT GTACGCCAATACCGAGAAGGTGCAGCAGTATGATGCGATGATGCGGTATC GTGCCCCGGCACAGCCGGAAGTGGTGAACGTAGTGTTGAAGCCATGTATT GAATACGGTTTTGATCAGGTACGTCAGGCCATACTTTTCGGAGCATCGTA TATACCAAGAGCAGGATAAGACGTACGTACCTTTAGAGTTATTGGTGGAG CGAAAACGTTTAAGTAGGCAACAAACCGCGTACTGCAAGTATCATATTCG CGGTTGATGAGCGCTGTTGGCGGGATTTCCGTTTTTTAGCGGCGAGAATG ATAGGAATCACCATTGTTGGCGTGAGGACGATGACCCGTGGTTTTTGCAG ACAGTTTTTTGTGTGATAACTCGGACACACGCACAGCTCACGAAATATAC CCCTCGCACCAAAAAGGAAGGAACGGCACAATACTGCTCTATCGCAGATA CCAATGCTGTCGTGTAATTTTTGTTGTCCCGCGCCCACCCCCCCCCCGCC TGCCTTCCCCGCGTGCTTTTTTTTTTTCGTCACTCTCGAACACCTTCCCT GTCCACCAACCTTTTTGTATCTCAGGAGAAAGACGACTGGATAGGGGCTA TTGGCAGAGCAATAGTTCAGGCATCCAGCACGTACCAGGGGGACAACAAC AACGGGGACTCCGATTCCGACGACGACTACGAGTACCGCTGACGCGGCGC TGACGAGGCGCTGAGGCGGGCTCATGTCATGCTGCCTCGTCCTGCTGTGG CGGAGGAGGAGGCAGCGAGATTCCCGGTGGCGAACAGGGCACGGGCCGGG GCTTAACCAACCCCCTACTCCCTTGTCTGGCTCGCGTCGCCGGTTGTGTG CTTCGAGATCGATGAAATGTTGCCGAGTCAGGCAGGCACGCAGGCAGGCG GGGTGCGTGGAATGGTGGGGACACGGAGACGAGGGTTTTCTGCCGTGGAT ATTCTTTGGGTATGACACGTACGATATGTATGGTAACGTTCTCGCGTTCC CCGGCGGCAGATGCTCCTACTCCTTCGTGCCCACAACACACATATAATAC ACCAACCAGGACCGGTGGCACCATCTCGACGTTTTGTCGAAGGGCGATGG TGGCGGTGCAAAGAAAAAAAAATCGATCGCGACGCCGTGCGGTGCGGTAC GGGTTGGTCTGGTGACGGGTGGTGCACGCAGCTTTGTTTTGGTTGCTGAC TTTCATTGTCCGAACAGATCTGAAAGGAAAGTACGTACAGCACCAAGGCT TTTCGATGAAGAGGATCGATTGGAAGTGCAGTTCCGGGTCGAAGAGGTTG CGCCGCCTGTAGCACTCCCCCCAGGGCGGGCGACCTTGTTTCGTCTGCGG CAAGGAGGGGCTCTCGGGTGATTCGTCCAGGTACCTCACCTCGCGTGTGA TGGTTTTATTGTGTCCCATCCCCCACCCACCAGTACAGGGGCGCCTTGAC GTGCAAGTGATTTTTTTCAGGGTGGGGTAGGCATACAAGTAGAGACACAT GTATAGCGGTAAAAATATGTAGCGAAGGGGAATGTATCTTGGTTCTGGAC CTACTGTAGTAGGATCGATTGCTTGGTTGTGCGTGTTGGAGAGCATTGTG ACTGGGAGTAGTTCCGTTCAGGGTTACCGCAGCCGTGATGATTGATAATT TTTTGGGGCTTTTGTTAGGCTGAAAGGGTGTGGGTTGGCGGCTTTACCCT GACGTGGTTTGCGAGCTGAGCGGTGACTACTGCTCTGGAGCTTCCGTACT GCTGTTGCTGTATCATATCCATCATGTCACATATCCCACAGTAGTCATTT AATCAACAAACGAGGGGTCACTGTCAGTAGACAATTTTCGTTGCATAAAT ATTTCGCGTGCCAACAGCAGTAGTGAAGTTTAGTGACGTGAAGCGCGCAT CCGAACACGATGTTTTTGTCCAACCTTAACTAGATGAGTCCGCAGGTATG ATATGTAGGTTGGACCAGTTGTTCTTGCGGCTACGATATCTAGCAGTTTT GGTTTTGAGATTGTTTGAGTCTGATCGAAGCAGGTCACTTCAAAGTATAT ACGGAGTAAAAAGTGATGGTGAAATCTACGAAGTAATTACCTGGTACAAG GCAAAC
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Coding sequence (CDS) from alignment at P-littoralis_Contig129:206518..216423+

>mRNA_P-littoralis_Contig129.62.1 ID=mRNA_P-littoralis_Contig129.62.1|Name=mRNA_P-littoralis_Contig129.62.1|organism=Pylaiella littoralis U1_48|type=CDS|length=429bp|location=Sequence derived from alignment at P-littoralis_Contig129:206518..216423+ (Pylaiella littoralis U1_48)
ATGGCTACCACCATGGCCCGGCCACCTTTCCACGACCAGAAGACCGGGGT
TCGATATGACTGTAATAACCCCGACCATCTGGGCTGGTTACGGAAGGAGA
GCGCCTGGCTCAAGGACTGGCGCCCGAGGTTCTTCGTTCTCAAGGGCAGC
AACCTATTCTTCGCGAAGTCGGAGTACGAGACGCCACACGGTAGGATCGA
CCTGAGCTCTTGCATGACGGTGAAGTCGGCGGAGCAGAAGACCAGCAAGC
GAAATGCCCTCGAGGTCTCCACCCACGACACCACGTACTTCATGTACGCC
AATACCGAGAAGGAGAAAGACGACTGGATAGGGGCTATTGGCAGAGCAAT
AGTTCAGGCATCCAGCACGTACCAGGGGGACAACAACAACGGGGACTCCG
ATTCCGACGACGACTACGAGTACCGCTGA
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