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Homology
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: D7FWE1_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7FWE1_ECTSI) HSP 1 Score: 425 bits (1093), Expect = 3.140e-144 Identity = 237/309 (76.70%), Postives = 251/309 (81.23%), Query Frame = 2
Query: 236 MGNTQGAEQGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQSCRSSTATSVIKGMTILAPDATGG---TIYAFTASRKTDSSASSQNGNRGGDVSESPPTATTGAGDVGLAKEGRAP---PPGGALGSGGRADVGNGGAVIDVDLSG 1144
MGN+QGA Q GKCGYRVLGVQPNSPASKVGLVSFFDFIV ADGV LE+LDNTFIEMIKASVD+PLP+TVYNYKSMT RDV ITPSSSWGGQGMLGVTIRFDTY NADDNLVRVLEV PGSP+ +AGLQP +DYLLGTAERVFKDPDILF+EVTAHLDQPMSFYVYNTKTDEVRV VVLPTN WGGEGCLGAE+GHGYLHRLPQSCRSSTATSVIKGM ILA DATGG + ASRK Q+ N GG + TA TG D G A++G A PPGGALG G VIDVDLSG
Sbjct: 1 MGNSQGAAQLGKCGYRVLGVQPNSPASKVGLVSFFDFIVAADGVLLEVLDNTFIEMIKASVDKPLPLTVYNYKSMTTRDVTITPSSSWGGQGMLGVTIRFDTYHNADDNLVRVLEVVPGSPSHIAGLQPEHDYLLGTAERVFKDPDILFEEVTAHLDQPMSFYVYNTKTDEVRVAVVLPTNVWGGEGCLGAEVGHGYLHRLPQSCRSSTATSVIKGMCILAADATGGGGKQLSYTAASRK------KQDPN-GGVAPDGFTTAVTGT-DGGPAEQGGAGVGVPPGGALGGAGN--------VIDVDLSG 293
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: A0A7S2Y0B4_9STRA (Hypothetical protein (Fragment) n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2Y0B4_9STRA) HSP 1 Score: 303 bits (777), Expect = 7.810e-96 Identity = 148/213 (69.48%), Postives = 168/213 (78.87%), Query Frame = 2
Query: 236 MGNTQGAEQGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQSCRSSTATSV 874
MG E+ GYRVLGVQ SPASKVGLVSFFDFIV +GVPL+ LDNTFIEMIKAS DRPLP+T+YNYKS T RDV I PS +W GQGMLGVTIRFDTY NAD+N+VRVL+V PGSPA +AGL+ DY+LGTAE+ FKDPD L +EV HLDQPM YV+NT+TD VR V+LPT +W GEGCLGA +G GYLHRLPQ CR ST S+
Sbjct: 1 MGGGPSIEEIESVGYRVLGVQSQSPASKVGLVSFFDFIVAVNGVPLKALDNTFIEMIKASEDRPLPLTLYNYKSETTRDVVIVPSKNWPGQGMLGVTIRFDTYYNADENVVRVLDVVPGSPANIAGLKAEQDYILGTAEKAFKDPDHLIEEVKVHLDQPMEIYVFNTETDHVRTTVILPTFKWAGEGCLGASVGSGYLHRLPQRCRGSTGISL 213
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: A0A7S2WEH5_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2WEH5_9STRA) HSP 1 Score: 296 bits (757), Expect = 2.930e-93 Identity = 139/213 (65.26%), Postives = 166/213 (77.93%), Query Frame = 2
Query: 236 MGNTQGAEQGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQSCRSSTATSV 874
MG T E+ GYRVLGVQPNSPAS GLVSFFDF+V A+ PL+ LDN F+EMIK S +PLP+T+YN KS T RDV ITP +WGGQGMLGVTIRFDTY A+++LVRVL+V SPA LAGLQP NDYLLGTAE+VFKD + L++ V+ H+D + FYVYNT +DEVRV +V+PTN+W G+GCLG +GHGYLHRLP C+ ST TSV
Sbjct: 1 MGQTMSQEEADSVGYRVLGVQPNSPASSAGLVSFFDFVVAANNYPLKELDNKFVEMIKESEGKPLPLTIYNIKSETTRDVVITPRRNWGGQGMLGVTIRFDTYWRAEESLVRVLDVVADSPAHLAGLQPSNDYLLGTAEKVFKDTETLYEAVSQHIDSIVEFYVYNTSSDEVRVAIVMPTNEWNGDGCLGISVGHGYLHRLPHQCKQSTGTSV 213
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: A0A7R9Y981_9STRA (Hypothetical protein n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9Y981_9STRA) HSP 1 Score: 287 bits (735), Expect = 1.080e-90 Identity = 134/205 (65.37%), Postives = 166/205 (80.98%), Query Frame = 2
Query: 236 MGNTQGAEQGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQSC 850
MGN AE K G+RVLGVQ +SPAS+ L++FFDFIV A GVPL LD TF+E+I+ VD+PLPITVYN K ++R+V ITPSS+WGG G+LGVTIRFDTY N +++LVRVLEV SPA +AGL+ G DYLLGT+ERVFK+PD+LF+EVT+H+D P+ YVYNT+TD VR +V+LPTN WGG+G LGA +GHGYLHRLP+ C
Sbjct: 20 MGNGTSAEDAEKVGFRVLGVQSDSPASEAKLINFFDFIVSAAGVPLRTLDATFVELIEKHVDQPLPITVYNCKDNSQREVTITPSSTWGGIGLLGVTIRFDTYANMEESLVRVLEVARHSPAEIAGLKAGEDYLLGTSERVFKNPDVLFEEVTSHIDNPLEMYVYNTETDAVRTIVILPTNNWGGDGTLGASVGHGYLHRLPERC 224
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: A0A835YI02_9STRA (GRASP55/65 PDZ-like domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YI02_9STRA) HSP 1 Score: 286 bits (733), Expect = 2.930e-89 Identity = 146/221 (66.06%), Postives = 172/221 (77.83%), Query Frame = 2
Query: 236 MGNTQGAE--QGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQSCRSSTATSVIKGMTI 892
MGNT E + GYRVLGVQPNSPAS VGLVSFFDFIV A+G+PL+ LD+T +EMIKAS ++PLPITVYNYKS + R + ITPS +GMLGVTIRFD+Y ADD+LVRVL V SPA +AGL P DYLLGTAERVFKD D L DE+ HL+Q M YVY+T+TD+VRVVVVLPT +WGGEGCLGAE+ HGYLHRLP CR++T SV G+++
Sbjct: 1 MGNTASDEGDESTCVGYRVLGVQPNSPASAVGLVSFFDFIVAANGIPLQQLDSTLMEMIKASENKPLPITVYNYKSDSLRSITITPSRKPYYEGMLGVTIRFDSYFQADDHLVRVLSVVKNSPAHIAGLMPETDYLLGTAERVFKDTDALHDELMRHLEQTMEIYVYSTETDQVRVVVVLPTLEWGGEGCLGAEMAHGYLHRLPAQCRTTTGVSVGPGISM 221
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: A0A7S3ZJU3_9STRA (Hypothetical protein n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A7S3ZJU3_9STRA) HSP 1 Score: 275 bits (704), Expect = 2.520e-86 Identity = 138/213 (64.79%), Postives = 153/213 (71.83%), Query Frame = 2
Query: 236 MGNTQGAEQGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQSCRSSTATSV 874
MG E+ GYRVLGVQP SPAS VGLVSFFDF+V DGV L LD+TFI+ IK S D PLP +VYN KS RDV+ITP+ +WGGQGMLGVTIRFDTY AD+ LVRVL V GSPA AG G DYLLGTAERVF D D L DE HLD + YVYN +DEVRV VV+PT QWGG+GCLGA++ HGYLHRLP CR S SV
Sbjct: 1 MGQGASQEEADATGYRVLGVQPGSPASAVGLVSFFDFVVACDGVELRELDSTFIDKIKGSEDVPLPCSVYNLKSRRTRDVSITPTRNWGGQGMLGVTIRFDTYYKADECLVRVLSVADGSPAQAAGFIAGADYLLGTAERVFSDADALLDECQLHLDAAIEVYVYNVDSDEVRVAVVVPTYQWGGDGCLGADVAHGYLHRLPTRCRGSDGVSV 213
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: A0A812RJH1_SYMMI (Gorasp2 protein (Fragment) n=1 Tax=Symbiodinium microadriaticum TaxID=2951 RepID=A0A812RJH1_SYMMI) HSP 1 Score: 269 bits (688), Expect = 2.070e-84 Identity = 129/208 (62.02%), Postives = 160/208 (76.92%), Query Frame = 2
Query: 236 MGNTQGAEQGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQSCRSS 859
MGN+ E+ GYRVLGVQPNSPAS GLVSFFDFIV A+ VPL LD TFI++IKAS D LP+TVYN+KS T R V +TPS +W G+GMLG+TIRFDTY NADD + RVL+V+ SPA LAGLQ +DY+LGT+E+VF+D D LFDE+ H+++P+ FYVYN+ TDEVR VV++P+N WGGEG LG + G+LHR+P R S
Sbjct: 1 MGNSSSKEEQDSVGYRVLGVQPNSPASNCGLVSFFDFIVAANEVPLRTLDTTFIDLIKASEDVILPLTVYNWKSNTTRQVALTPSRNWPGEGMLGITIRFDTYHNADDYVYRVLDVEVNSPAELAGLQANSDYILGTSEKVFRDVDSLFDELKQHVNKPLEFYVYNSDTDEVRNVVIMPSNDWGGEGILGGAVACGFLHRIPSDNRDS 208
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: A0A7S2H0B5_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2H0B5_9STRA) HSP 1 Score: 267 bits (683), Expect = 1.110e-82 Identity = 126/207 (60.87%), Postives = 160/207 (77.29%), Query Frame = 2
Query: 236 MGNTQGAEQGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQSCRS 856
MGN E+ GYRVLGV PNSPA+ GLVSFFDF+V A+ PL++LDN F+++IK ++PLP+T+YN KS T RDV ITP +WGGQGMLGVTIRFD++ A+++LVRVLEV SPA LAGL +DYLLGTAE+VFK+ D L+ EV+ H+++ + FYVYNTK+DEVR VV+PTN W G+G LG +GHGYLHRLP SC++
Sbjct: 1 MGNATSQEEIDSVGYRVLGVLPNSPAASAGLVSFFDFVVAANNYPLKVLDNKFVDLIKEFENKPLPLTIYNIKSDTTRDVVITPRRNWGGQGMLGVTIRFDSFWQAEESLVRVLEVVRDSPAELAGLSANDDYLLGTAEKVFKNTDTLYTEVSKHVEETIEFYVYNTKSDEVRTAVVMPTNDWKGQGSLGISVGHGYLHRLPASCKT 207
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: F0YJB4_AURAN (Uncharacterized protein (Fragment) n=1 Tax=Aureococcus anophagefferens TaxID=44056 RepID=F0YJB4_AURAN) HSP 1 Score: 264 bits (675), Expect = 1.260e-82 Identity = 135/204 (66.18%), Postives = 150/204 (73.53%), Query Frame = 2
Query: 275 GYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASV---------------DRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLP 841
GYRVLGVQPNSPAS VGLVSFFDF+V DGV L LD+TFI+ IKA+ DRPLP VYN KS R V ITP+ +WGGQGMLGVTIRFDTY AD++LVRVLEV PGSPA +AGL+ G DYLLGTAERV D E T HLD+P+ FYVYNT+TDEVRVVV+LPT WGG GCLGA + HGYLHRLP
Sbjct: 2 GYRVLGVQPNSPASDVGLVSFFDFVVAVDGVELRELDSTFIDKIKAARPRRLRSFAPRDAPTRDRPLPCVVYNLKSRQTRSVTITPTRNWGGQGMLGVTIRFDTYHKADEHLVRVLEVAPGSPAEIAGLRAGTDYLLGTAERVLND------ECTLHLDKPVEFYVYNTETDEVRVVVLLPTYSWGGGGCLGAAVAHGYLHRLP 199
BLAST of mRNA_P-littoralis_Contig709.24.1 vs. uniprot
Match: W7U145_9STRA (Golgi reassembly-stacking protein 2 n=1 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7U145_9STRA) HSP 1 Score: 261 bits (666), Expect = 8.600e-80 Identity = 129/204 (63.24%), Postives = 158/204 (77.45%), Query Frame = 2
Query: 272 CGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLDNTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRFDTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFDEVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHRLPQ-SCRSSTATSVIK 880
CGYRVLGVQ SPA+ GLVSFFDFIV A+ +PL +D TFI++I+ DRPL + +YN KS T RD+ +TPS +W GQGMLGVTIRFD Y+ ++++LVRVLEV P SPA LAGLQP D+LLGTAE VFKDPD+L + + +L+Q + FYVYNT+TD VR ++P +WGG GCLGAEIGHGYLH LPQ SCRS+ TSV K
Sbjct: 26 CGYRVLGVQAGSPAAAAGLVSFFDFIVMANHLPLRQVDYTFIDLIREFEDRPLELKIYNSKSQTVRDLVLTPSKNWDGQGMLGVTIRFDYYDQSEEHLVRVLEVVPDSPAELAGLQPMTDFLLGTAETVFKDPDVLEEVLGRNLEQTIDFYVYNTETDTVRTATLMPNLKWGGRGCLGAEIGHGYLHGLPQKSCRSN-GTSVFK 228
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Stop | 1 |
| Start | 1 |
| Seed ortholog | 2880.D7FWE1 |
| Preferred name | GORASP1 |
| PFAMs | GRASP55_65 |
| Model size | 1584 |
| Max annot lvl | 2759|Eukaryota |
| Hectar predicted targeting category | other localisation |
| GOs | GO:0000139,GO:0002009,GO:0002165,GO:0002790,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005783,GO:0005793,GO:0005794,GO:0005795,GO:0005797,GO:0005798,GO:0005801,GO:0005829,GO:0005886,GO:0006464,GO:0006486,GO:0006487,GO:0006807,GO:0006810,GO:0006888,GO:0006900,GO:0006901,GO:0006903,GO:0006996,GO:0007030,GO:0007275,GO:0007399,GO:0007444,GO:0007472,GO:0007476,GO:0007552,GO:0007560,GO:0008104,GO:0008150,GO:0008152,GO:0009058,GO:0009059,GO:0009100,GO:0009101,GO:0009306,GO:0009653,GO:0009791,GO:0009886,GO:0009887,GO:0009888,GO:0009893,GO:0009987,GO:0010256,GO:0010604,GO:0010721,GO:0010769,GO:0010771,GO:0010975,GO:0010977,GO:0012505,GO:0015031,GO:0015833,GO:0016020,GO:0016043,GO:0016050,GO:0016192,GO:0016333,GO:0019222,GO:0019538,GO:0022008,GO:0022603,GO:0022604,GO:0022607,GO:0030154,GO:0031090,GO:0031323,GO:0031325,GO:0031344,GO:0031345,GO:0031396,GO:0031398,GO:0031399,GO:0031401,GO:0031410,GO:0031982,GO:0031984,GO:0031985,GO:0032268,GO:0032270,GO:0032501,GO:0032502,GO:0032940,GO:0033036,GO:0033116,GO:0034645,GO:0035107,GO:0035114,GO:0035120,GO:0035220,GO:0035239,GO:0035295,GO:0036211,GO:0042886,GO:0043085,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043412,GO:0043413,GO:0043933,GO:0044085,GO:0044093,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044267,GO:0044422,GO:0044424,GO:0044431,GO:0044444,GO:0044446,GO:0044464,GO:0044719,GO:0045184,GO:0045595,GO:0045596,GO:0045664,GO:0045665,GO:0046903,GO:0046907,GO:0048193,GO:0048194,GO:0048199,GO:0048207,GO:0048208,GO:0048513,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048563,GO:0048569,GO:0048699,GO:0048707,GO:0048729,GO:0048731,GO:0048736,GO:0048737,GO:0048814,GO:0048856,GO:0048869,GO:0050767,GO:0050768,GO:0050773,GO:0050774,GO:0050789,GO:0050790,GO:0050793,GO:0050794,GO:0051093,GO:0051128,GO:0051129,GO:0051171,GO:0051173,GO:0051179,GO:0051234,GO:0051239,GO:0051241,GO:0051246,GO:0051247,GO:0051338,GO:0051347,GO:0051438,GO:0051443,GO:0051640,GO:0051641,GO:0051648,GO:0051649,GO:0051650,GO:0051656,GO:0051960,GO:0051961,GO:0060255,GO:0060284,GO:0060429,GO:0060562,GO:0061024,GO:0065003,GO:0065007,GO:0065008,GO:0065009,GO:0070085,GO:0071702,GO:0071704,GO:0071705,GO:0071840,GO:0071944,GO:0080090,GO:0090066,GO:0090114,GO:0097708,GO:0098588,GO:0098791,GO:0120035,GO:1901135,GO:1901137,GO:1901564,GO:1901566,GO:1901576,GO:1903320,GO:1903322,GO:1904666,GO:1904668,GO:2000026,GO:2000171 |
| Exons | 6 |
| Evalue | 5.37e-149 |
| EggNOG OGs | COG5233@1|root,KOG3834@2759|Eukaryota |
| Ec32 ortholog description | PDZ domain |
| Ec32 ortholog | Ec-09_004030.1 |
| Description | Golgi organization |
| Cds size | 912 |
| COG category | U |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1680791477.6864688-UTR-P-littoralis_Contig709:84835..85272 | 1680791477.6864688-UTR-P-littoralis_Contig709:84835..85272 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig709 84836..85272 - |
| 1680791477.776277-UTR-P-littoralis_Contig709:99967..100202 | 1680791477.776277-UTR-P-littoralis_Contig709:99967..100202 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig709 99968..100202 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1680791477.7054675-CDS-P-littoralis_Contig709:85272..85567 | 1680791477.7054675-CDS-P-littoralis_Contig709:85272..85567 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig709 85273..85567 - |
| 1680791477.718176-CDS-P-littoralis_Contig709:87334..87438 | 1680791477.718176-CDS-P-littoralis_Contig709:87334..87438 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig709 87335..87438 - |
| 1680791477.7284591-CDS-P-littoralis_Contig709:88155..88338 | 1680791477.7284591-CDS-P-littoralis_Contig709:88155..88338 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig709 88156..88338 - |
| 1680791477.737456-CDS-P-littoralis_Contig709:92065..92162 | 1680791477.737456-CDS-P-littoralis_Contig709:92065..92162 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig709 92066..92162 - |
| 1680791477.7556555-CDS-P-littoralis_Contig709:93271..93377 | 1680791477.7556555-CDS-P-littoralis_Contig709:93271..93377 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig709 93272..93377 - |
| 1680791477.7667542-CDS-P-littoralis_Contig709:99840..99967 | 1680791477.7667542-CDS-P-littoralis_Contig709:99840..99967 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig709 99841..99967 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-littoralis_Contig709.24.1 >prot_P-littoralis_Contig709.24.1 ID=prot_P-littoralis_Contig709.24.1|Name=mRNA_P-littoralis_Contig709.24.1|organism=Pylaiella littoralis U1_48|type=polypeptide|length=304bp
MGNTQGAEQGGKCGYRVLGVQPNSPASKVGLVSFFDFIVEADGVPLEMLD NTFIEMIKASVDRPLPITVYNYKSMTKRDVNITPSSSWGGQGMLGVTIRF DTYENADDNLVRVLEVDPGSPAALAGLQPGNDYLLGTAERVFKDPDILFD EVTAHLDQPMSFYVYNTKTDEVRVVVVLPTNQWGGEGCLGAEIGHGYLHR LPQSCRSSTATSVIKGMTILAPDATGGTIYAFTASRKTDSSASSQNGNRG GDVSESPPTATTGAGDVGLAKEGRAPPPGGALGSGGRADVGNGGAVIDVD LSG* back to topmRNA from alignment at P-littoralis_Contig709:84836..100202- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-littoralis_Contig709.24.1 ID=mRNA_P-littoralis_Contig709.24.1|Name=mRNA_P-littoralis_Contig709.24.1|organism=Pylaiella littoralis U1_48|type=mRNA|length=15367bp|location=Sequence derived from alignment at P-littoralis_Contig709:84836..100202- (Pylaiella littoralis U1_48) CTCGCAGCTCGACAAACACCAAACAGCTAGAGAGGCAGCACCACAGGAGG
ACGCGGAACAGGGCGTCCTTTCATTTTCAACCGCTGCCTCCGCTGTCTCT
ACGAGTGGAACTGCTGCTGTTGTCCCTTCACCGCCCTATCGCAAGTTCGG
CCTCAGAGACGCACCAGCAGAAGAGGTAGAAAAGCAGAGAGATCCGGCAG
AAGGAGAGTTAGTAGAATACCGGTAGGTTGACGTTATGGGGAACACACAG
GGCGCGGAGCAGGGCGGAAAGTGCGGGTATCGAGTGCTTGGGGTGCAGCC
CAACTCTCCAGCCTCCAAGGTTGGGCTTGTGAGCTTCTTCGACTTCATCG
TTGAAGCAGATGGTGAGATTCTGTCTCCCCTGCTGTTGGATGTAGATCTG
GTAATGTGTCTAGCTTTTCGGAAACTATCGCCCTTGTTCTGGATGCACCA
GCAGTGTGGAGCAGCACAGCATTAGACAGCAGACAGAGGTCATGATGGAT
ACTACCTCTTCTTAATCATATGATATGATATGTACAAACTCGAACTGCTG
TATTGCTGTTGTACCGCAATGTGTTTTCGTGCCATCCCCTCCAATCTAGA
GCGCCGAGTCTACACCTCGCATAGGCGCAGGTGGGAGGGGATGGCATGAA
AACATATTGCGGTACAACAGTAATACAGCAGTCCGAGTTCGTACATACCT
ATACAGCACCAGTATTCCCCATCCCTGACCTCTGCCTCCTGTCTACTGCT
GTCTGCTCCTGTGCTGCTCTAGTTTGTACCTACGCGCTTCCACACATCGC
TCTTGTGTCACCAGTGACTACAGTAGCACAGCAGTGCGACATGTGGCCTG
TGGCCTGTGGCCCCGGCCCCCAACCGTGGTTGCATACCGTCATATACCTT
ATGTTCCTCGCGTACGTAGTCTACGCTCCATATTACTCCGTAGTTCCGCT
TCGCCTGATACAGCCAGAACCCCACCGTCCTTACTTACCGTAGTACTTGC
ATTCCCGCCGGCATATTCAGGAACTTCACCAACTTCACAACAGCAGTAGC
AACATACGTATCAATACTTGGTATACCACTGCAGTCAGTGTTCGTGCTCG
TCCATTTCAAACTTGAAAGCAAGACAGATCCATCCTGTTGCGGAAGATTA
GACGGGACTGACCCCCTCTACAGTACGGATGTTCAAAGCTCATCTACTCT
AGATCCTCGTCTAGCAAGAGAGAGGCAACACACTAATGATGCTTCCAAGA
AACGTTCCCGAAACTTCCCATTCGAAGAAGAACAAAAAAACGATGTTTGT
ATGGTATCATAGAAGACTGCTGCACAGAAGTTGTACCAGTTTCGATCATA
TCATACCTCCGTGCGTAGCATGTCACGTGTCCCCCATAACGAAGGCGTTG
CCAACATCGATCAAACTATTGCCCATTTGACGTTTTTCGGAACGCTGTGG
ACGAGATGAAAGCACATGGTTCCAACACCTGGACCTTTTTTTTTTTTGAA
AATCCGCCCAAATGGAGCCCGTGGTAGGTACCTACCGTATCTTCTTCTGC
GACCTACGGTAAAATTCGTTTTTGAACTGGACAGGGGAAAAAACGAGCCG
TGAAAGGCTGATTCTCATGGCACACAGATTTTGAGGAATAGATATCCAAC
AATATGTTTGTGTGTGTGTTGTCGTCCCATTTGTTCTGAACGCCACTCTG
TCATGCGCTCCTTAACCCTTTCGGGACTGGTGAGATTTTGGATATCTCCC
CGCATGGTCGCTCTTTCGTTTGCGAACAACAGGCCAAACAAAACAGAAAA
ACGACCAACAGACCATTTTACCGCAGCGACGTCAACAACAGCTGACGTAC
CGGAATATTTTGCCGAAATCCGCAAATTCCACAGCACCAGCAACAAGAGG
AGCGGAGAGTAGTGATGGAGTGGGTGATGGAGTGGGGTGGAGTACTGGGG
CTTTTATTCACAGCAGTTGGGGAGTAAAGCTACTGCTGTAGAAACACCTA
CCTGGCTCATCTACTCTTCCTGTCGGACTGTTGCCAAGAAAATGCCTGAG
ATATCACACAGACCATCACACACAAAGCCGACGTACCGCTTTCGGTGGGT
GCTATATAGGTACACCACCACCGCCGCCACCACTAGGTAACTACGCCAGC
CCAGGTTGTGATGACAGAAAACATCAAGGTTCACAGCAGTAACTTGCAGA
GGGGGATGCAAAAAAAGGAACCAGCCTCAATTTATCTCTCGAAATAGGTA
GTAGCAGCATGTACAGCAGTATACCGCTCTGTAAACGTACTTCGAAATAT
GATACAACATGATACAAGAGATTGATCCAGTAGTTTTGCTGATGCCACTA
AAGACGCTTACCCTCAGTGAAGGCCACGGGTGTGTCCCAGGGTCCATTTC
CAGTCTCTCTTTGGTATCAATATATGTAGCTCGCGTTAGCGTTGTCTACT
AACTTTACAAGAAAAAATATACTTCGAAGTAATTATCCGCACCCAGAATA
CAACTTACAGCAGCCCCCACCATCCCCACCATCGACAGAGCACGCGCCCA
TAAGCTTTGCCGACACAGCAGTACATCCCATTCTTTACGACAGCCCCAAC
CATGAATGAAGGGGACGTTGGTGCTCACACCGTATGGGAGCTGTGCAACA
CCTCTGTGTTGTTTTTTTATGGAGGGAGTCTGTTTCTAGCAGCCCCGGTC
GTCAGGGTTTTCGGGCGAAAGACGATCTATTCGCGCTGCCAGCGGTTCAT
CTCAGGGCGCTTCAGTCCCGAAAAACTGAGGCTAGGAAGAATAAGCCTCA
CTCCTACCCTCACTGATTCCTTAGGGAAGTCCCGAAAGGGTTAAGGGATA
CAGGTAGTAGGTAGACCAGCCGGGGTCACACAGGAGGAAGTCAACACAGG
TTCTTTCTTCGTTAGTGTCGGGAAAAAGTCGGTGGGTCCCAAGCTGATCA
GCCTGTCTTGTGGATAAAAAAGAAAAAGGGTATCACATCACATGGAAAAA
AAGACAGGTACCGCACTTTTGTTGAAAGTTTTTTCAAGTGAGGACCATGC
AAATTGTAACAGATTTCATCTCTTATGATTCGGCAGCAGGCTTTAATGAG
GAGGCTCGGGATCATTTGGGGAGTTCACACACACACACACACACTGTTGG
AGAGCCACCGCGGTGCGAGCTCTACCGACACCAGGCGAGCAAGTGCGGAA
TAACGTGCTGAAGCAGCCATATTTTGCGTAAAAATCCACCGGTTTCGGCC
AGAATCGGCACGCGCGCCCCAACTCGGAACGAAGGCGCGCTCTGATAGCG
CTCCGCCGGAGCGTGTTGACTGGTGGTCCATTCAACTATCACAATTTACA
GGTGGCAAAAAGAAGCAACACAGGAGGAATGCTCGATATACAAGCTCTGC
ATTCTTGGCTCAAAATGCTGTCTTTTTGTACAGCAGTACAGCAATGCGTG
ATTTTATTGTACATGGAGCAGCGTGCGGATTTATACAAGTTAGACCGCAT
TCTGGGCCAAAAAGAACTGATGCGCATCAAAAGCATTCCTTCTGTGTTGC
TTCATTTTGCCAGACGTATATTGTGATAGTTGAACGAACCACTTGTCAAC
ACAACACACTCCGGCGGAGCGCAATCACAGCCCGCCTTCGTTCCCGAGTC
GGTGCGCGCGCGCCGATTTCAACCTGGCCGAAACCGGTGGATTTTTACTC
AAAATATGGCCACATAATCATGATGTACTCCTGCTACCGTATCTTGCAGG
GCTTCAAACCCGGCGAGAACCAGCAGCTGCTTCAGGAACACGTTATTTCG
CACTTGCTCGCCTGGTGTCGGTAGAGCTCGCACCGCGGTGGCTCGTCAAC
AGTGTGTCTGCACTCCCCAACGATCCCGAGCCCCCCTTATAAAAGCCTGC
TGCCGAATCATAAGGAAATGGAAAATAGAAAATCACTTTAAAATTTCAAG
TACAGTGTCTAGTTTTTTTCCACACACGGGTTTTGATAATTCGTGCTATG
GTTAATGACCCCCATAAAAAAATATTGGAGGCTTACTCAATTTGGACCCC
CAACAATTTCAGGTCATTCTGAGGGAGTCCGTGGTACCAACTCAGTGCCG
GGCGTTCAAAATATGAAGGTCTTCGTGCCGAACGAGGACGATATTTTTGG
TCCTGTTCCAGGGCTGTTTCCGGGCTGCTGGCGAGTACCACACCACAACG
AGGTGGTCTCGTAGGTAGTCGCATGCAGAGTGCTGATAGTCCTCGACACT
ACCCCAAGAAAGCCTCCAGGCGAAGGAAGTGTCCACGCTCGTCATCTATC
AGTCCAGAATACCATATTTTTGCATCGCGCGATAGCCGGGGCTGGTCCGT
GGACGTTTCGCATGCCCTCCGCGCCACCAGAAACTGCTCGTCACAGAGAT
GGGAATAATCGTCAGGGGTTCAGGATAGCGATATGTCCATATCTCTGGGT
GTGTCGTGCAACAATCCGCTTTGCAGTCTGTGGCCTGTGCGCCGAGCATT
GCAGAATCTGGAGGCTTGGAAATTTCCAGCGGGCGGCCTGTCCGGGGCAT
GTATGAATGACCGTGCTGGTTGTGAAAGAAAAAAAAATAAAAGAAAAAAA
AAATTACGTTGGGAAGTAGAACGAGTCTACCCCTACCTTCGTCGCACTTA
CCACCCACAGGCCGCCCTCTGGAACTTTTCAAGCCTCTATATTCTGTAAT
GCTTGGCGCACGACACACCCAGAGATATTGCTACCTTGAATCCCTGACGA
CTATTCCCATCTCTGTGACGAGCAGTCTCTGGTGGTGCGGAGGGCATGCG
AAATGTCCACGGACCAGCCCCGGCTATCGCGCGATGCAAAAATATGGTAT
TCTGGACTGATAGATGACGAGCGTGGACACTTCCTTCGCCTGAAGACTCC
CTTGGGGTAGTGTCGAGGACTCTCAGCACTCTGCATGCGACTACGTACGA
GACCACCTCGTTGTGGTGTGGTACTCGCCAGCAGCCCGGAAACAGCCCTG
GAACAGGACCAAAAATATCGTCCTCGCTCGGCACGAAGACGTTCTTATTT
TGAACGCCCGGCACTGAGTTGGTACCACTGAATTTTCGAGAGCCAGTCTC
CATTTTTTTTATGGGAGTCATGTACCAAAGAATCCGTGTGTCGATTTCGG
CCTGGTTTTGTAGTGTTCCCGGAAGAGTGTTGCGCCAGGGACATGGGTCG
GGTACGTACTTGGAGAAGGCCGCACGCACCACCAATGCACACCACACACA
CCCCGTCGCAGGCACCGGACAAACTCCGAAGGAAGTGCACAGCAGTAGGA
GGCGATCATGCCGGGGGAAGCGTTGAATCTCGAGATGAAGCCAGCCGCGC
AAAGGCTAATCGCGACGTCTACTTGCACGCATCACTTGCCAAAAGATTGC
TGATCATGCCCGAGCCAGGCTTCATCGCGGGTCGGGTGTGTGAGGTGTGT
GGTTGCGGTTGTGGTTGTGGTGCAACAGCAACAACAGCAGCAACAACAAC
AACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAA
CAACAACAACAACACCAACACAACTGTTGTACGTATGTCATACAGGACAG
GATCCCGATGTCTACCCAATACACACCCAATCCCTTCACAGCAGGAAATG
CGGCTTTTCTTGCCGGCATCACAGTGTAGAAGGGCAGGGGGGGGGCGGGG
ATGAGCGCCGAAGGCGCTCGAAATTGGCGGATCGTTTATAGCTTCATGGC
ACGAAGTGTCTAGCTTGCCTGCCTCGCCTTCGCGACCAAAGCCGTTGTGT
TCGGAAAGTAAAAACGACCAGCCAATCATATCATAGCCAAGAGCCTTTTG
GTTATCCGCACCAGCGAATCGAACAAGAACGAACGATAACTATTCTCGCT
GGTGATGTATGTGTCTGTGTCTGTGTCTGTGTCTGTGTCTCTCTCTGTGT
GTTATGTGTGCATTGTTGTTGTTGTTGGTGGTGGTGGTGGTGGTGGTGGT
GGTGGTGGTTCTCACATAAACTCACCACCAAGGTCTAGCCCGTGGTCACA
AACCAGACACATGAAATAGTGCTACCATCATATCATACGTATTACGAGAA
AAAAAAAATGAAAACAGACGATGGTCATCCTAGAAAAAGCACAGATAAGC
CACTGGGGTACCTACTGTGGTGACCAGAGCCCAAAAGTACAGAAACATAG
GCTCGAAAAAAGCGCAAACTGCAAACAAACAAACAAACAAAACAAAATAT
TTTTATGTATAACCAACCAGAGCACAGAACCAGGACAAACCAAGGCAAAC
CAGAGCGCAGGGCCTAGCAAACGTGTGTGTGTCGTTATCCTGTCTGCTCT
GGACGCCAGTTTACACCTTTCGGTACAGTAAAATGAGGTGGACGCGCACT
GTCATAGCCGGTGTCAAACGGGAGGAAAGGTCAGGTCACACACGGGAGCT
TTTTTCTCTTTTTTTTTTCTCTCCAAGTTCCTCCTACGAAAAAGCTTGCC
GTAATTTCCAGGAAAAACAGATTCCAACATCGCGAGAAAGGCAGGGTTCG
ATCCACACTTTTCCCTCCTCAACTTTTATTTTTTCAAGTCGAATTTCTGT
TTACTGATGAAAAATTGGCGTTCCTGTTCGTACTTGTACGATAGAAATGG
GTGGGCGTTCATCAAAAGCCCGAAAGCAGTAGCAACCAGTCGTCCCCTCC
TGCTCGACCACCAGCACATCGGACGAGATTCATTCGAAGCAGCGATGACA
AAAATCCAAAATATCAACATGTTTTTTTTTTTATTGCACCGATAAGAACG
TTCATGCTGTGATGATCGCTTGCAGGGGTGCCGCTGGAGATGCTCGATAA
CACCTTCATCGAGATGATCAAGGCCTCCGTCGACAGGCCCCTCCCGATCA
CCGTGTACAACTACAAATCCATGACAAAAAGGTGTGTGTGTGTAAAGAAA
AGAGGCGTGTGTGTGTGTGAAACGGAACGAGGCGTTTGTGTGCAAAGAGG
CGTGTGTGTGTTTTTTTGTTCACATTCGCTTCCCGTGATCACAGGCCAGG
CCGCCTGACCAAGAAAGGGTACTTCGTAAATCATCCTCGTAGTTGTAAGT
TATTATTATACTTAAGTATGATAAGTCCAGTCCATGACACGAAGGTGCGA
CGAAGTATTCCAAGTCCTGCGGTGTGTACTACTGTTGGAAGCCGCCCGCT
CACGTATGCTTCTTGTGCCTCGGGTACAGTAGGGAATGCTATGATATGAT
ACAGCAGTGACGATATTGGAACAGGAGAGGCAAGACGTCTGTGTGACCAC
GGGCTCGAGAGATCGGGCTTTTGTGTGGAAATAATCATTGTTCAGAATAG
TAACAAACTGTAAACTGGGCTTTCCCACGTGAACGGGGGTTGAGAGCATG
GCGTCGTGTGTGTCTAGAGGGGGCGGAGGTGGGGGGGGGGATCCACAACG
ATCATGTGCGATAAAATGTTCGAATAGACCATGCCTCCTCACAGTGGGGG
GGCGTGGGGCTTCAGGAGTAACGAGGATGGAAAAGCACGCCCTTTCATTT
TTGCTGTACCACAAAGGTTAGGGTAGGACCTATCATATAGCGCTCCCTTT
CGATGTTTATACTGTACGAAGTGTGTCTTGTCTTTACCCGAATCGACAGG
ACTTCTCTCGTGTCGGTCGCAAGTCTCACCAAGTGGAGAAACACGCCATG
CTTCGAGCTGGATACCGTACTCGCCGAATTCGTGTCGGTCGTGCGCGTCA
TAACTGAGAAACACCAAGCTATGTTTCGAACTGGATAGTCGCCGAACTTC
TATCCTTATCGCACCATGTCATTCGTACAAACGTTTTGGGCTGGATAGTC
GCCGCACTCTTAACCTTTATCGCACCATATCATACGTAAAAACGTGCTTG
CCGTATCTCTCAATTTTACCCACCCCCCCCCCCCCAGGACCAAACTATGT
TACTCTTTTTTCGACGTTTAAGTACATGCGCGTCTTTTGTTGTGTATGGT
GACTTTGAACGAGAACTGACGCCCTTTTTCGACACGCAAGAGACGTTAAC
ATCACGCCTTCGAGTTCCTGGGGGGGACAGGGCATGCTCGGGGTGACGAT
CCGCTTCGACACGTACGAAAACGCCGATGATAACTTGGTGGGTTGTTGTT
TTTGATTGGTGTGACTCTTGTTCGTTTTCTTGATATTTTCCATTTGTTAG
ACCACTTGTTATAGCTGAAAAAAATCTCCTTAGAATCCGCCTTTTTCAAC
GAGAAGAATTCCAACAGGATCTTCGAAAAGCACCACTTCTTATAACAGCG
ATTGGTTTTATTTTTCCGTGGGGGATTCATTTTTTTTTTACGGACAGACG
GTGTTGACATCGTTTCAACAGGCTGCTGCTGCTGCTGCTGTAACGTATTT
TTTTGTTATTACTTTAGAATGAATGAAGCCACAGCAATATCAAAGCCATG
CCCCGTAAGCTGTGTGTATGGTCGTGCGTCTCCGATTGTCCTTTGAGGCT
GCGAGGCATCAACAGGCTCACAAAAAAAGAGTGCAGGCGTCGATGACGTG
TGAAAAAAAATAGGAAAAGAGAAGGAAGTCCGCAGCAGCAGCAGGGCAGC
AAGGTATTTTGCGCAGGTACACCAGTTTGGTTTCTCTTCCATAACTATCG
AACCAATTGAGCCAAAGCAATACCGAAGCCATCGACCGTGAGCTGTGTGT
CTTGTCCCTCTCCTCCGTTGGTAATCTTGGGCCGCAAGGCATCAATAGGC
TAGCAATCTAGCTCTTGCATTGCAGAAACCGATCACTCGTGAAAAAAGAG
AAGAAATCTCCGCCGTCTGTCTGTCTGTACTGCTGTACAGGAGTATATAT
ACAGCAGTATGTGTTTGCTGGACTCAACGGCCTTTCTTCTCAATTTTTTC
ACAACTCATCGGTTTCTGCAACGCTTCTATTGCTAGCCAGTTGATACCTT
GCGGCCTTAGATGACAACCGGAGGACAAGGACCAGAGGCATAGCTCACGG
GCGATGGCTTTGGCATTGCTGTGGCTCAATTGGTTCGAGAGTGATGGATG
AAAAACCAAACTCATGTAGCGGCCCAAAATACAAAATACCTGCTGCTGCT
GCTGCTTGCTGCGGCTCCCTCCTCATGCCCGCTCTCCTCCCTCACCCCAA
ACTACTTTTGAGTTCCGTCCATTGCTCTCGAACGATTGAACCCACGGCAA
CAACAAAACAATCGCCCTTGAGCTGTGTGTCTGGTCCCTCTCCTCTGTAG
GTCATCTGGGGCCGCGAGGTATCGATAGGCTTGCAAAAATAACACCGCTG
TATGTAGTTGTTCAAGTCACACGACCCATCGTGAGAGGCTGTGTGAGGAG
GGCCCACACTTTTTCAATAAGCGTTTCCTGATCGATCGAATCGCTTAGAA
AAAGTGATTTTTCTAAGCGATTGGGTCGATCGGAAAAAGTTATGAGAAAA
GTTGAGATCAAAAAAGGGGGTTTTTCCATCTATAACAAGTGGTCGAACCG
CCCAAGATAAAAAAAGGCCTTTTCTAGGGAGGGTGTTTGCAGCTATAGTA
CGTGGTCTTAGTTGTGAATTCACTCTCACCATGTTCGCGTTTATTTTTTC
TCTCCCTTTTTAATTGTTTTGTTACGATTCTGTTTCTTATCTTCTACTTC
GTACTTCGTACCGTATTTCTCAGTCCAAGGGTGTATGGATCCGTCCCAAA
CATGCGGGAAGTTTTACTGTATACTTGCGACTGCAGTAGCCGTGGGCCGT
TGTCGTTCCTGCGCTGGGCTACCGCCGTGTTTGCGAGACTAATGCGTCCC
ATATATTGTCTATATTGTCAGCCCTTCACCTGTCGCCCCGGTGGTCTAGT
GGTTCCCTCGTTAACCTGCTAGATGGAAAGTCGTAGGTTCGCTTCTCTCT
GAGAACGTTTCTTGCGACTTTACAGTGGAAAGTGAAATACTCGTGAGTAG
ACAGAGGGAAGGGATTCCTGTACCTGACTCGCATTAAAAACCAAAAGGCA
CGTATGTACCGCAGGAGGAAGGTTTGGGCAATAAAAATAAAATAAAAGGT
TAAAAAGCTCGTGCGTGACCCCCCGGCTGATGCACCCACTTCATACCGAA
AGGTGTAGACTGGCGCCCAGAATAAACGGGACGGACACACACATTGTTAG
CATTTGCCTGTTTTTGACCACGGAGGCCACCTGCTCGGCTACTGTAATAC
ATCCCATTTCATGCCTTATTGTTTGGGTTAGCAGTAACCTATCTCACACC
ACCGAGAATCGAGAAAATTTAGTTAAGCGGCTGTGCCAAACCGAAGAAAA
GGCGCACGAGAGGCCAACCGGCACAACATAATACTAAATAGGTTTATTGT
TAGCACTAGCCTGTTTGTGGCCACCGAGATCGCCTGCGGGGCTATAACAT
CTCAAATATTGTCTGTATTGTTTGGGCCTGCAGTAGCCTGTTTGCGACCA
TCGAACCCGGGTGAGGTCGATGCAGAAAGAGACGAGGAAGACGGCGCCGA
AGAAGACGGGGAGGAGGCGGCCATGGCAGCCGCGCGACGGGCCGCTTCCT
TCGCCGCCGCTGCGAGGTTGGCCGCGCGCTTGATGGCATTGGCGCGCTGC
AGGCGCGCCAATCGTTGGCGCAGCTCCCGCGTCTTGGCCGCCTGCGTGGC
CTACGAATCCCACGTGCTGTCTGTATTGTTTGGGTTTGCAGTAGCCTGTT
TGTGGCCGCCGAGCCCGCCTGCTTGGCTGGTACATCGCACCTATTGTCTG
CATGGTTTGGCTCAGCAGTAGCCTGTCCATGACCACTCTAAAGGCCGCCT
TCTTCCTGCTGGATGGATCAGTCAGTGCAGCATCCGTAGATTTCTGGAAA
TACATAGGATCAGCTGTCGGTGGAGAACGGCGGTAATTTATTTTTTGTGA
AAACGCCATCATGACCAGCAGCAGCGACAACCGCAAAAACGGCAGCAGCA
GTAACGTGTGTGCTGTCATCCCATGCATTCTGGACCCCAGTCTACAAGTA
ACAAATTTCGGTTCACGTGAGCGCATCAGCCGGGGTCACACGGACAGGAA
TAACAGGCCTTATTTTTCTTTTTTGCCTTCGTTTTTACGGCGAGATGGAT
TCACCCGCCCGCTCTCCCGCCTCGACGTTTGAGTCGAAATTCAGGGACAC
TCCTTGCATCGTAAGGACAACACCAACAACGACAACCACCACCACCACCA
CCACCACCACCACCACCACCACGGCCACATCAGGCAGATTACATAAGAAA
CACACTCTGTCGTAGACGAAAAAGAAAAATGCATTCAAGAAGAAAAGCAC
AGGCGCGAAATTGTTGGATGCGCAAGCAGCCCACAGCACAACAGCAGCCA
CCACCACCACCACCACCACCACCACCACCACCACGACTACAACAGCTAGA
TTATGTCAGAGGAAACACGAGCCGCAAAAAAAAGAAAAATGCATTCAACA
AGAAAAGCACAGGCGCGAAATAATCGGACGCGCTAAGCAGCCCGCAGGAT
TTGTTGGTGTGTACGTGTGTGTGTGGTGTGGATGTACATGTGTGTGTGTT
TGCTTCTGTCCCCGCCATGGAAAAAGTGCAAAAGTACGGCACAACAGACG
GAGACGAAAAAATCGGATCAAGCGTCAACGAGAACAGAGGACAACTCAAA
AAAACGAATGAGTACACACCCTCCCTTGTGCAAGCGGTTGTTGTTGTTGT
TGTCGGTCATCACATTACCTCACCACCAAAGTCTATATATGGCCTGTGGT
CACAAAACAAACCAGGCACACATCGCGCTACTCGTATGAAAGGAGGAAAA
CATAAAAATAAATAAAAAAAGAGGAAATTGACGATGGTGACACCCGAACA
ACAAAATTACGCAGGTCCGAGTCCTCGAGGTGGATCCGGGTTCTCCGGCG
GCACTCGCGGGTCTCCAGCCGGGGAACGACTACCTTCTCGGGACGGCCGA
GAGGGTGTTCAAGGACCCCGACATACTGTTCGACGAAGTCACCGCGCATC
TCGACCAGCCCATGTCTTTCTATGTGTACAACACCAAGACGGATGAGGTG
TGTGTGTCTGTGTGCGTGTGTGCGTGTGCGTGTGTGTGTAATCGGGTCAA
TTTCGTTGGTTGACATCGTACGAAGTATATATGTATATATGTATGATGGT
CGTTCAGCAGCTCCCCAACACGGCTGAGAGGTTCGTTTGTGTGTGTGTGT
TTCGGTGTGTACGTGGGTGTGCGTGTGTGCGTGTGTGTGGGTTTCTGTGT
CCAACTTATGCCAGATTGTGTCTTCCTGCGCTTACAAAGGACACCGAGCA
GGATGATGAGGCTTGTCGTTTCACGTGGACGGTGTGAGAGATTTCCGCCG
GTGAAGATAGACGGGGTACGCCCCGGCGTGTCAGTGAGATCAGAGGCTTT
GCGGTGCTGGTTGAGTGGTGCAGACAGCAGTGATATTGCAGCAGTTACCG
AGTGTGCGTGTACACGTATGAAATGTGTGTCTTGATGTCTGTGTGTGCGT
GTGCGTGTGCGTGTGCGTGTGCGTGTGTGTGTGCACATGTCTTGTGCCTG
TGTGTGTGCATGTATATGTCTTGGTGAGCGTGCGCGTGTGCGTGTGTGAT
TGTGCGTATACGTGCGTGGTTGTGCGTGTGCATGTGCATGTCTGTCTGTA
TGTCGGTCTGTGCGTCTGCTCGTCTGTCTGTGTCTGTGCCTGCGGTTCCT
GCACGTATACATGCCATGATGACGATGAACAGCGATTTTTGTCCGTTTTT
TTTTTTGCCATCAGGTGCGGGTTGTGGTCGTGCTGCCGACGAACCAGTGG
GGAGGCGAGGGGTGCCTCGGGGCGGAAATCGGGCACGGGTATCTACACAG
ACTGCCGCAATCATGTCGGTGAGGAAAGGCGGGGAGAGGAGACTAGAGGG
TTTCCTCCGAGACACGGCGCATTGCCCTTCTGATCAATCGTTCGTTCTCG
CGCAGCTAGGATAGCGGCAGTAGGGTCGTCAGTCTCCCTCAACGTCTGGT
GGATTGCTCGGCGAAACAGGAAGGGTTTCACCGATGAAAGCTGAATACGA
TGCCAGAAATAATGGTCTCAGGCTGTTTCTTACGGTTCACCAGATTTTTG
GTCTTGATTTCAGACCCCCTGCCCAAATTCCACCAGAGGACCCCCCTACC
CCCCCCTTGAAACGACACTGTCGACCACAACAGCAGACAGCACCAACCAG
TGCTCGGCTCCTGGGACACCAATGGCGATCAAACGTATTGGAGCGTGTGC
TCCAGTGTACTCAAGTTGGCCACAGCAATTTTGGTGGGTGTGGGCTTTCG
CTGCTGTGCCGAGATATCGCCGGGGATGTGTGTTGGGGTGGAAATATCCG
GTGAAACAGAAATAGGTCGTCCGAGCCTGATTTCGGCTCGGACGACCTAT
TTTGTTTTGCCGAATTTTCCGACCTCAACCCACACGCCGCCAGAATCTCG
CCACAGCCAGCGCCCACACCCACCAAACTTGCTGTGGCCTATCTCCGAAC
ACTGGGGCGCACGCTCCAGCAGGTTTGATCGCGGTCGGTGTTCCAGAGGC
CGAGTGCTGTTTGGTGCTGTCTCCTGTTGTTCTCAAACAGTAGCCCTTTC
AGCCGTTTGGGCTCTCTGAATTTCTTGGGGGGGGGGGTATCAAGTGAAGA
CGAAAAAAATCACCCTAAAAAATAGCAAGCCGTAAGAAACGGACCCAAAT
GATAATTTCAGAGAACGCTGTTTTTTTCAAGCCACCACCCTTTGTGTTTG
TGTGTCTTGTGTGTTTGTTGCCTTCACTTTTAAAACCATTCCGATCTCTA
CTCCGTACCTCTCAATGTCCGTACTCCTCCGATCATTGATGATTGCCTTT
GGTGCAAAATCACCCCCAAGGATACAGCAGTTTAGTCCCTGTTGTCAAGA
GGACGGGAACCCGACTGCACTCGTTCCCCCCCGCGCGAGTGCTGCTCTAT
GATAGGCATTCATCACCATGCCGGCGTGTAGCATATGCATACACCACGTA
TACCATTTTGGCCAACTTTTCAAAGCTCCACTGCCTCCGAAACACACAAG
CGGGAGTCAATGCTTGCGCTCGCGGGGGTTGATACCAGGCAGGAGCTAGG
CCGGAACTCCCGCGATGAAGGGTCAAAGTTTCTGGTCCGGAAGGCGGCCT
CGCTATTCGCCAAGCACGAATGCAACTCCCAACACTGTAACTCCAATCCG
CTGTCCTTCCTCCCCCTCGAAGCGTCCATACATTTTTATAGCTTTCTCAA
CAGGTACCGTTCTCGCCTGGTACAGCAGTTCCATCCACCTTCATTGACGT
CCCCCCCTTTTTCCCATCGAGACTACATTTTTTCATTCGTTAAGTCTTCC
GTGTCCCCCCCCCCCCCGCGCATTAAAACATTTTCACAAGGGCAGAGGAG
TTCGACCCCAACTCATCTGACCACAGAAAGGACACGTACCGGACGCGAAA
CTCTTTTTATTTTTCTGTAACAAATGGCGCCTTGATTGCATTGAGCTTTA
TGAAACTTATCCCCTTGACCCCCTCCCCCCTCTCCCAATCAAAACGCCCG
TTTAAACGCCCGTTTTTCTTTCGTTTTTTTGTTTGGAAACGTGGCAAAAA
CAAAAACAATGCGACACATACGATATTATATGTAGGAGTTCGACGGCAAC
GAGCGTGATCAAGGGCATGACAATCTTAGCCCCGGATGCAACGGGGGGAA
CAATCTACGCGTTCACCGCGTCCCGAAAAACCGATTCTTCCGCCAGCAGT
CAAAACGGCAACCGCGGCGGTGACGTTTCAGAGTCGCCCCCAACAGCGAC
GACGGGGGCAGGGGATGTTGGGCTGGCAAAAGAAGGGCGGGCGCCCCCCC
CAGGGGGAGCATTGGGAAGTGGTGGGCGTGCTGATGTTGGGAACGGTGGT
GCCGTTATTGATGTGGATTTATCCGGGTAGGGTGGTATTTTAGTGCGTTT
CATTCATACGACGGTAGAGGGTGTGGGGTGCGGCGACGCAAGTTTTTCAG
TAGTGTTTTAATTCTTATGTCTGCCCGTGGCGTTTAGAGGCGACCGTTCG
GTCGTCTCCTTCTCCTGTGTTACATGCCTCGTCCGGGTGTTACGTTGGCG
CTCTAACCTTGCGGAGTTTGTTTATTTATTTTGCATGATGTACGAAGTAT
TCCGTGTTCTACTGCTCGTTTGACAAAACCCTCTGGGTCAGGCGAAGGCG
CAAGGTTCATTCGCTCGTATTTGGTACAACGACGTCCGAGGTGCCGAAAA
TAACTTTAGTATCTTGGGGGCGAGTGCTGTCTGTGTGTGGGAGGTACCGC
CTACCTCAGAAGGTCGATTCAGAGCATCATGTGGCCCCGTACCGGAGTGA
TGTGCTGTCAAGGGGAG back to topCoding sequence (CDS) from alignment at P-littoralis_Contig709:84836..100202- >mRNA_P-littoralis_Contig709.24.1 ID=mRNA_P-littoralis_Contig709.24.1|Name=mRNA_P-littoralis_Contig709.24.1|organism=Pylaiella littoralis U1_48|type=CDS|length=912bp|location=Sequence derived from alignment at P-littoralis_Contig709:84836..100202- (Pylaiella littoralis U1_48) ATGGGGAACACACAGGGCGCGGAGCAGGGCGGAAAGTGCGGGTATCGAGT GCTTGGGGTGCAGCCCAACTCTCCAGCCTCCAAGGTTGGGCTTGTGAGCT TCTTCGACTTCATCGTTGAAGCAGATGGGGTGCCGCTGGAGATGCTCGAT AACACCTTCATCGAGATGATCAAGGCCTCCGTCGACAGGCCCCTCCCGAT CACCGTGTACAACTACAAATCCATGACAAAAAGAGACGTTAACATCACGC CTTCGAGTTCCTGGGGGGGACAGGGCATGCTCGGGGTGACGATCCGCTTC GACACGTACGAAAACGCCGATGATAACTTGGTCCGAGTCCTCGAGGTGGA TCCGGGTTCTCCGGCGGCACTCGCGGGTCTCCAGCCGGGGAACGACTACC TTCTCGGGACGGCCGAGAGGGTGTTCAAGGACCCCGACATACTGTTCGAC GAAGTCACCGCGCATCTCGACCAGCCCATGTCTTTCTATGTGTACAACAC CAAGACGGATGAGGTGCGGGTTGTGGTCGTGCTGCCGACGAACCAGTGGG GAGGCGAGGGGTGCCTCGGGGCGGAAATCGGGCACGGGTATCTACACAGA CTGCCGCAATCATGTCGGAGTTCGACGGCAACGAGCGTGATCAAGGGCAT GACAATCTTAGCCCCGGATGCAACGGGGGGAACAATCTACGCGTTCACCG CGTCCCGAAAAACCGATTCTTCCGCCAGCAGTCAAAACGGCAACCGCGGC GGTGACGTTTCAGAGTCGCCCCCAACAGCGACGACGGGGGCAGGGGATGT TGGGCTGGCAAAAGAAGGGCGGGCGCCCCCCCCAGGGGGAGCATTGGGAA GTGGTGGGCGTGCTGATGTTGGGAACGGTGGTGCCGTTATTGATGTGGAT TTATCCGGGTAG back to top
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