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Homology
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: D7FM52_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FM52_ECTSI) HSP 1 Score: 520 bits (1339), Expect = 1.280e-183 Identity = 283/350 (80.86%), Postives = 309/350 (88.29%), Query Frame = 1
Query: 1 MARQPACVLGALVLGCAALGGDGFVGPIAGGRPRAAMAKGRGC-----TATSRRSPGLLKLAAEKEKEKDGVAMEAPTDDEQLGNDKLVYDSRTGRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPK 1035
M +P C L L L C+ GGDGFVGP AGGRPRAA+A+GR TA SRRS GL+++A ++EKE GVA E P D+ LG+DKL+YD+R+GRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDA+QSFYYN RQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLF+SAMAAYSR XXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLG SWQ+IEP+R +NPLATLL+L+ PTIAASKKFTDLCLYQDNGTVASGPCPSCG N+VFFGSMLGV+GNID+SEF C++C E IKIRRADLRARTLPK
Sbjct: 1 MPGRPTCALVVLGLACSTRGGDGFVGPTAGGRPRAALARGRAAITRATTAPSRRSAGLVRMATDQEKE--GVATEEPKDE--LGDDKLIYDARSGRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAIQSFYYNQRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFMSAMAAYSRGDKIXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGASWQIIEPIRYLNPLATLLLLTAPTIAASKKFTDLCLYQDNGTVASGPCPSCGAQNRVFFGSMLGVKGNIDDSEFKCDNCGEIIKIRRADLRARTLPK 346
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A835YSN6_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YSN6_9STRA) HSP 1 Score: 317 bits (812), Expect = 1.690e-104 Identity = 176/280 (62.86%), Postives = 222/280 (79.29%), Query Frame = 1
Query: 199 VAMEAPTDDEQLGNDKLVYDSRTGRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPKS 1038
+A+E +++ +DKL+YDSRTGRFYEKK+EE+CR+EYCAIDE+TG+ +LLT EKERIF D++QSFYY++RQ+L DDDF+KLKEDL WEGSPVV++NR E LFL+AM+AY + XXXXXXXXXXXXXXXXXXXXX VAVSTEPKCYIDTGICTVTFQED FR Y+P L LG ++L+EP+R++NPL TL++ + PT +K FTD ++ +A GPCPSCG N VFFG++LGV+G +E+ F C++CKE I IRR DLRART PK+
Sbjct: 6 MAVEGAEQEQESPSDKLIYDSRTGRFYEKKIEEICRDEYCAIDESTGEQVLLTLEEKERIFLDSIQSFYYSDRQVLADDDFEKLKEDLVWEGSPVVMLNRQETLFLNAMSAYLKGXXXXXXXXXXXXXXXXXXXXXKVAVSTEPKCYIDTGICTVTFQEDKFREATLYVPVGIPTLLFSLGALYELLEPLRSVNPLVTLVLATLPTYFFTKFFTDNVFATNDPKIAYGPCPSCGASNHVFFGNVLGVEGPGEEANFKCSNCKEEITIRRRDLRARTSPKA 285
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A835Z693_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z693_9STRA) HSP 1 Score: 307 bits (787), Expect = 3.670e-100 Identity = 162/264 (61.36%), Postives = 194/264 (73.48%), Query Frame = 1
Query: 241 DKLVYDSRTGRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLP 1032
D L+YD+RTGRFYEKK+EE+CR+EYCAIDETTG+ +LLT EKERIF DA+QSFYY++RQ+L+DDDF+KLKEDL WEGS VV++NR E +FL AM Y + XXXXXXXXXX VAVSTEPKCYIDTGICTVTFQED FRR Y P L LG +++ EP+R++NPL TL++ + PT A +K FTD + VA GPCPSCG N VFFG++LGV G D +EF C+ CKE I IRR DLRART P
Sbjct: 58 DTLIYDARTGRFYEKKIEEICRDEYCAIDETTGEQVLLTLQEKERIFLDAIQSFYYSDRQILEDDDFEKLKEDLIWEGSDVVMLNRQETVFLYAMQTYLKGEPFLTXXXXXXXXXXLRDAGSKVAVSTEPKCYIDTGICTVTFQEDKFRRATLYTPVGIPTLLFTLGALYEVFEPLRSVNPLVTLILATIPTWAFTKAFTDSVFITNEAKVAYGPCPSCGATNHVFFGNVLGVVGPGDTAEFKCSKCKEQITIRRRDLRARTAP 321
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A7S4N636_9STRA (Hypothetical protein n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4N636_9STRA) HSP 1 Score: 241 bits (616), Expect = 3.700e-74 Identity = 144/271 (53.14%), Postives = 199/271 (73.43%), Query Frame = 1
Query: 235 GNDKLVYDSRTGRFYEKKLEEV-C--REEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPKS 1038
G ++ YD TGRFYE ++E+ C +EYCA+D++TGK + LT EKERIF D++QS+Y + RQ+LDD +FD LKEDL+W GSPVV +NR+E FL+A+ AY+ XXXXXXXXXXXXXXXXXXXXXX +AVST+PKCYID+GIC VTFQ+D FR YLP IF + +LG+ ++ IEP+ +NP+ L + + P S +FTD ++ +N ++A GPCPSC N+V+FG +LGV+G + +E C +CK I++++ LRA +LPK+
Sbjct: 70 GKKEIGYDEVTGRFYETGMDEIECIPDDEYCAVDKSTGKLVRLTVKEKERIFLDSLQSYYTSGRQILDDAEFDTLKEDLSWNGSPVVALNREETRFLNALQAYNXXXXXXXXXXXXXXXXXXXXXXXXIAVSTDPKCYIDSGICRVTFQKDNFRNNLLYLPLGAIFTVVWLGLGFEFIEPLIRLNPIVLLGLGAYPIYKYSIEFTDKFIFPNN-SIAYGPCPSCEAENRVYFGDILGVEGYNEVAEIKCKNCKAVIEVQQKTLRASSLPKA 339
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A7S2CL01_9STRA (Hypothetical protein n=1 Tax=Florenciella parvula TaxID=236787 RepID=A0A7S2CL01_9STRA) HSP 1 Score: 241 bits (614), Expect = 1.060e-73 Identity = 151/302 (50.00%), Postives = 206/302 (68.21%), Query Frame = 1
Query: 130 TATSRRSPGLLKLAAEKEKEKDGVAMEAPTDDEQLGNDKLVYDSRTGRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPK 1035
T S+ SP + A E E E DG +++ P G + L+YDSRTGRFYEK++ +CR+E+CAIDETTG P++L+ EKE+IF + +QS+YY+ R++L+D DFDKLKEDL WEGSPV +++RDE FL+AM AY XXXXXXXXXXXXXXXXXXXXXX VS EPKC IDTGIC+VT+ +D R+ +Y P +F L + S++L P++ +NPL L++ S + F + Y+ N +ASGPCP C N+V+FG +LG+ G +E+ C++CK + I RA+LR T K
Sbjct: 41 TRRSKMSPVVRFNAPETEPE-DGTSLKKP------GREALIYDSRTGRFYEKEIAALCRDEFCAIDETTGNPIVLSVDEKEKIFVECMQSYYYDGREVLNDADFDKLKEDLIWEGSPVAILSRDETKFLAAMGAYLXXXXXXXXXXXXXXXXXXXXXXXXXXVSKEPKCSIDTGICSVTWTKDKVRQAVSYSPVGVVFLLLWEVFSYEL-TPLKYVNPLIGLIVGSPLIFFGTILFAENIFYK-NPLIASGPCPECNEENRVYFGGVLGIDGFDEEATMKCSNCKTPLTIARANLRVNTPSK 333
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A6T5NR44_HETAK (Hypothetical protein n=3 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6T5NR44_HETAK) HSP 1 Score: 234 bits (596), Expect = 1.510e-71 Identity = 139/268 (51.87%), Postives = 185/268 (69.03%), Query Frame = 1
Query: 232 LGNDKLVYDSRTGRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPK 1035
+ D L+YD RTGRFYEK +EEVCR+E+C IDETTG+ ++L+ EKERIF D++Q++YY+ ++L+DDDFD+LK DL WEGSP+ +NR+E LFL+AM A XXXXXXXXXXXXXXXXXXXXXX AV+TEPKCY+DTG+C VTF +D R Y PA I ++G ++++ R INP+ TLL S P I A K + +A GPCPSCG N+++FG++LGV+G D + C +CK + I + L+ T K
Sbjct: 43 MNKDGLIYDPRTGRFYEKSIEEVCRDEFCTIDETTGEQVVLSVKEKERIFLDSLQAYYYDGSKVLNDDDFDQLKADLVWEGSPLATLNREETLFLNAMGAXXXXXXXXXXXXXXXXXXXXXXXXXXXAVATEPKCYVDTGVCKVTFVKDEARMATLYAPAFLIATFLWIGTAFEVFSFFRDINPIITLLAGS-PLIYAGTKVGTENFWLSEPLIAKGPCPSCGFENRIYFGTILGVEGVGDAGDVTCPNCKVKMNIEKRTLKVVTETK 309
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A7S1FNE7_9STRA (Hypothetical protein n=2 Tax=Corethron hystrix TaxID=216773 RepID=A0A7S1FNE7_9STRA) HSP 1 Score: 227 bits (578), Expect = 1.510e-68 Identity = 134/264 (50.76%), Postives = 178/264 (67.42%), Query Frame = 1
Query: 247 LVYDSRTGRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPKS 1038
L+YD+ +GRF+E + E + EEYCA+DE TGK + LT EKER+F D++QS+Y++ RQ+L DD+FD LKEDL W GS +V +NR E FLSAM AY++XXXXXXXXXXXXXXX AVSTEPKC+IDTGICTVT QED FR YLP I +L +S++++ +NP+ +I + P + TD ++ N +A GPCPSC N+VFFG +LGVQG +++E C CK+ + R+ LRA TLPK+
Sbjct: 74 LMYDADSGRFFESEGECIPAEEYCAVDENTGKLIRLTIEEKERMFLDSLQSYYFSGRQLLSDDEFDLLKEDLQWSGSALVSLNRKEARFLSAMKAYNKXXXXXXXXXXXXXXXELKNENSKFAVSTEPKCFIDTGICTVTLQEDFFRSNLLYLPVLSILYFTWLVLSYEILH----LNPIFLTIIGAFPIYKGTLTITDQYVFT-NQKIAYGPCPSCEAENRVFFGDILGVQGFGEQAEVKCPQCKDKFTVLRSTLRASTLPKA 332
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A448Z6R2_9STRA (Uncharacterized protein n=1 Tax=Pseudo-nitzschia multistriata TaxID=183589 RepID=A0A448Z6R2_9STRA) HSP 1 Score: 225 bits (573), Expect = 7.550e-68 Identity = 143/267 (53.56%), Postives = 180/267 (67.42%), Query Frame = 1
Query: 247 LVYDSRTGRFYEKKLE-EVC--REEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIA-ASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPK 1035
L +D +TGRF+E ++ E C EE+C IDE TG + LT EKERIF DA+QS+Y RQ+L D+DFD LKEDL W GS VV++NR E +L+AM A XXXXXXXXXXXXXXXXXXXXXX AV TEPKCYID+G+C VT QED FR YLPA + +LG++++LIEP +NP+ L L P I SKK T+ ++ D +A GPCPSC N+++FG +LGV+G DE C +CK ++R LRA TLPK
Sbjct: 64 LKFDDKTGRFFETDIDLEECIPEEEFCTIDEDTGSKIRLTVAEKERIFLDALQSYYATGRQLLSDEDFDLLKEDLQWNGSDVVVVNRQETAYLAAMEAXXXXXXXXXXXXXXXXXXXXXXXXXKFAVDTEPKCYIDSGVCKVTLQEDKFRSNLLYLPAGLTLSVVWLGLAFELIEPFIRVNPII-LFALGLPLIVDGSKKITEELIFTDK-LIAYGPCPSCEYENRIYFGDILGVEGFGDEGSVKCPNCKTVFTVQRKTLRASTLPK 328
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A7S2I6A5_9STRA (Hypothetical protein n=1 Tax=Helicotheca tamesis TaxID=374047 RepID=A0A7S2I6A5_9STRA) HSP 1 Score: 222 bits (566), Expect = 1.160e-66 Identity = 137/263 (52.09%), Postives = 184/263 (69.96%), Query Frame = 1
Query: 247 LVYDSRTGRFYE-KKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLP 1032
+ YD TGRFYE + E + EE+C I + TG+P+ LT EKER+F DA+QS+Y + +Q++ DDDFD LKEDL+W GS +V M+R E +L+A+ A XXXXXXXXXXXXXXXXXXXXXX AVS EPKC I+TGICTVT +ED FR YLPA IF L +LGI ++LIEP +NP+ + + + ++ T+ ++ DN +A GPCP CG N+V+FG++LGV+G DE+ C +CKET ++++ LRA TLP
Sbjct: 65 IAYDESTGRFYEFDEGECIPDEEFCVISDDTGEPIRLTIEEKERMFMDALQSYYISGKQVMSDDDFDSLKEDLSWNGSKLVEMSRKEASYLAAVQAXXXXXXXXXXXXXXXXXXXXXXXXXQFAVSKEPKCLIETGICTVTLEEDRFRSNLLYLPAGSIFFLLWLGIGFELIEPWARLNPVILIALGLPLIVQGTETVTNNYIFPDN-KIAYGPCPKCGAQNRVYFGNILGVEGFGDEASVKCGNCKETFTVQKSTLRASTLP 326
BLAST of mRNA_P-fluviatile_contig87.14926.1 vs. uniprot
Match: A0A7S2KZH4_9STRA (Hypothetical protein n=1 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2KZH4_9STRA) HSP 1 Score: 218 bits (556), Expect = 2.300e-65 Identity = 130/263 (49.43%), Postives = 174/263 (66.16%), Query Frame = 1
Query: 247 LVYDSRTGRFYEKKLEEVCREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKLKEDLAWEGSPVVLMNRDEQLFLSAMAAYSRXXXXXXXXXXXXXXXXXXXXXXVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISWQLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCGVPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPK 1035
+ YD TGRFYE E +EYCAIDE TGK LT EKERIF DA+QS+Y + RQ+L D++FD++K DL+W GS +V MNR E +L+AM AY +XXXXXXXXXXXXXXXX AVSTEP+CYIDTGIC VT QED FR YLP I L +LG+ ++LI + INP+ L+ S +++ T+ +++D +A GPCP+C N+++FG +LG++G D ++ C +CK +++ LRA TLPK
Sbjct: 62 IGYDEATGRFYETTNECDPVDEYCAIDEETGKLFRLTNAEKERIFLDALQSYYASGRQLLSDEEFDQIKSDLSWAGSDLVNMNRKEAKYLNAMQAYLKXXXXXXXXXXXXXXXXLKEDDSKFAVSTEPQCYIDTGICKVTLQEDYFRTNLLYLPVGAILTLVWLGLGYELIGGLIRINPIIFTLVGSPLIAKYAQELTNSYIFKDF-KIAYGPCPNCEAENRIYFGDILGIEGFGDVADVKCTNCKTMFSVQKDSLRASTLPK 323
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 |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 521.2 |
| Seed ortholog evalue | 3.8e-145 |
| Seed eggNOG ortholog | 2880.D7FM52 |
| GOs | GO:0003674,GO:0003824,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0006091,GO:0008150,GO:0008152,GO:0009507,GO:0009534,GO:0009535,GO:0009536,GO:0009579,GO:0009767,GO:0009773,GO:0009987,GO:0015979,GO:0016020,GO:0016491,GO:0016730,GO:0019684,GO:0019904,GO:0022900,GO:0031976,GO:0031984,GO:0034357,GO:0042651,GO:0042802,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044237,GO:0044422,GO:0044424,GO:0044434,GO:0044435,GO:0044436,GO:0044444,GO:0044446,GO:0044464,GO:0055035,GO:0055114 |
| EggNOG free text desc. | photosynthetic electron transport in photosystem I |
| EggNOG OGs | 2CE1K@1,2QRSK@2759 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| Hectar predicted targeting category | signal peptide |
| Ec32 ortholog description | conserved unknown protein |
| Ec32 ortholog | Ec-01_010670.1 |
| Exons | 9 |
| Model size | 1041 |
| Cds size | 1041 |
| Stop | 1 |
| Start | 1 |
Relationships
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817296.228962-CDS-P-fluviatile_contig87:82183..82274 | 1622817296.228962-CDS-P-fluviatile_contig87:82183..82274 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 82184..82274 - |
| 1693571974.7846582-CDS-P-fluviatile_contig87:82183..82274 | 1693571974.7846582-CDS-P-fluviatile_contig87:82183..82274 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 82184..82274 - |
| 1622817296.2403586-CDS-P-fluviatile_contig87:82970..83062 | 1622817296.2403586-CDS-P-fluviatile_contig87:82970..83062 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 82971..83062 - |
| 1693571974.798947-CDS-P-fluviatile_contig87:82970..83062 | 1693571974.798947-CDS-P-fluviatile_contig87:82970..83062 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 82971..83062 - |
| 1622817296.251323-CDS-P-fluviatile_contig87:83822..84008 | 1622817296.251323-CDS-P-fluviatile_contig87:83822..84008 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 83823..84008 - |
| 1693571974.8078039-CDS-P-fluviatile_contig87:83822..84008 | 1693571974.8078039-CDS-P-fluviatile_contig87:83822..84008 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 83823..84008 - |
| 1622817296.263111-CDS-P-fluviatile_contig87:85634..85749 | 1622817296.263111-CDS-P-fluviatile_contig87:85634..85749 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 85635..85749 - |
| 1693571974.8160763-CDS-P-fluviatile_contig87:85634..85749 | 1693571974.8160763-CDS-P-fluviatile_contig87:85634..85749 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 85635..85749 - |
| 1622817296.285254-CDS-P-fluviatile_contig87:86483..86560 | 1622817296.285254-CDS-P-fluviatile_contig87:86483..86560 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 86484..86560 - |
| 1693571974.8257773-CDS-P-fluviatile_contig87:86483..86560 | 1693571974.8257773-CDS-P-fluviatile_contig87:86483..86560 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 86484..86560 - |
| 1622817296.297441-CDS-P-fluviatile_contig87:87752..87895 | 1622817296.297441-CDS-P-fluviatile_contig87:87752..87895 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 87753..87895 - |
| 1693571974.8343387-CDS-P-fluviatile_contig87:87752..87895 | 1693571974.8343387-CDS-P-fluviatile_contig87:87752..87895 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 87753..87895 - |
| 1622817296.3102682-CDS-P-fluviatile_contig87:89586..89701 | 1622817296.3102682-CDS-P-fluviatile_contig87:89586..89701 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 89587..89701 - |
| 1693571974.8423076-CDS-P-fluviatile_contig87:89586..89701 | 1693571974.8423076-CDS-P-fluviatile_contig87:89586..89701 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 89587..89701 - |
| 1622817296.3219888-CDS-P-fluviatile_contig87:91308..91442 | 1622817296.3219888-CDS-P-fluviatile_contig87:91308..91442 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 91309..91442 - |
| 1693571974.8505516-CDS-P-fluviatile_contig87:91308..91442 | 1693571974.8505516-CDS-P-fluviatile_contig87:91308..91442 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 91309..91442 - |
| 1622817296.3324027-CDS-P-fluviatile_contig87:92602..92690 | 1622817296.3324027-CDS-P-fluviatile_contig87:92602..92690 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 92603..92690 - |
| 1693571974.8586855-CDS-P-fluviatile_contig87:92602..92690 | 1693571974.8586855-CDS-P-fluviatile_contig87:92602..92690 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig87 92603..92690 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig87.14926.1 >prot_P-fluviatile_contig87.14926.1 ID=prot_P-fluviatile_contig87.14926.1|Name=mRNA_P-fluviatile_contig87.14926.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=347bp
MARQPACVLGALVLGCAALGGDGFVGPIAGGRPRAAMAKGRGCTATSRRS PGLLKLAAEKEKEKDGVAMEAPTDDEQLGNDKLVYDSRTGRFYEKKLEEV CREEYCAIDETTGKPMLLTTGEKERIFTDAVQSFYYNNRQMLDDDDFDKL KEDLAWEGSPVVLMNRDEQLFLSAMAAYSRGEQIIDDEEFDKLKASLREA GSVVAVSTEPKCYIDTGICTVTFQEDLFRRFATYLPANFIFGLAFLGISW QLIEPVRAINPLATLLILSGPTIAASKKFTDLCLYQDNGTVASGPCPSCG VPNQVFFGSMLGVQGNIDESEFNCNSCKETIKIRRADLRARTLPKS* back to topmRNA from alignment at P-fluviatile_contig87:82184..92690- Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig87.14926.1 ID=mRNA_P-fluviatile_contig87.14926.1|Name=mRNA_P-fluviatile_contig87.14926.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=10507bp|location=Sequence derived from alignment at P-fluviatile_contig87:82184..92690- (Porterinema fluviatile SAG_2381) ATGGCTAGGCAACCTGCGTGTGTACTGGGGGCGCTTGTATTGGGCTGCGC
TGCTCTTGGCGGGGATGGATTCGTAGGGCCAATAGCAGGTGTGTGCCCTG
GATAGGTCTCCCTCCACCCCCGAGTGTGCACATATTCGACCTACCTCGCA
GCCGAGAGCGTGTGTGCCGGTTGCCACGTTATCCTCATCTCGAGAGCAAC
TGAGGTCATCGTGTTCCTCTCAATCGCTCGAATTATCTTACGACGGGGTT
GGCGATTGGAAAATGTGGCGTAGCGCAACGATGTTCGACTCGCCGTGTGA
GTTGTTCATCATTTTAGCACTGCGCCCTATCTCTAATCAACTCATTTTTC
TTTTTGAGAACGGGCACAGCCGGCCAAAATCTTCCGTAGGCTTGCCGCTA
TTCGGCTCTCTCCGGGTGTACTCGTAAGTCCACACGCCCTTCTCCGGGCG
AACCTTTGGTGTATTCTAAGCTTACTGTGTGTAATCTTGACTTGAGCGGT
CGCAGAAATTTGGCCGTAGTGATTTTTTTGCGGAAACGTTAGACTCCCGC
CGGCGTCGTTTTGCTTCTCTCGTTTCACCGGAACGGAGCGGCCGTGTCGG
CTGTGCCGGCTGTATCACGTCTCGTCCACCTTGAGGTCTTGCTAAAATGT
GACTAATTGAGCGCAACGCGGTCGTTCGACACTGTCGAGTACCCGGAGAA
TTTGCCAACAGCAGCAGTGCCGGCTCGGCACACGCTGTGCAGCAGCCAGA
TCCGGGCAACTTTCAATCCAGAACACCTCCCCTCCCTTCGGCAAGGGTAC
TGGCTGTCATTTGTGACTGTTTTGCCCTGGACGAATCCACCAATGAACGG
CGCGGGTTGGTTCCTGCCTGCTGTCGGTTTTCTCTCTACGACGCCCATCT
GAAACTCGTCACCATCCGTTTGTCTGGCCATGGACGCGTCCGCAATGCCA
CCCAACTTGCTTCACCACTTTTGCTAGTCTCTTCAGCTGAACATTGTGAT
GAGGGTACAACCTAGCTGACGAAGTGAACACACACGAGTGAGGACGGATC
CAGAGATCAAGCGGTGAGAGAGGGAGCCTTCAAGTACAGAAAACACAAGC
AGATTCGAAGGATCGCGCCGGCGTGTTCGATAGAGTTGTGGCAGTGCCCC
CGCAGACCTCTTTTGTTCTTCCAAGGGGGGGCTGGATAGCTTTCCGTTAA
CTCCTGGCTTCGATCCTTTTCCCCTTGTCTGCCCGGCCGACCATGTAGGT
GGTCGGCCAAGAGCAGCAATGGCCAAGGGCCGAGGGTGCACAGCAACAAG
CCGGCGATCGCCGGGACTTCTGAAATTGGCGGCTGAGAAGGAGAAGGAGA
AAGACGGGGTAGCGATGGAGGCGCCAACGGATGTGAGTATCTGCAATAAT
ATGCCGCAGCCCTTTTGCCACACGTCGCACAGGTCCTTACGGGGTGGGAT
TTGGGGAGAGAGCAGCGCCCCATGGGCCTTTTGTATGGAAATGGGGAAAC
GTCGGGCGCGCTTTAGTAACGAGGCTACGTCGTTTCCACATAGACAAGTA
CAGAAGCCGACGCCAACGTCTGGAGTGCCCTACCGCCGGTTACGTTCATG
CCACGCACTGCTGCTCTAGGGGTGGCTGTGTAGGCCATCGCCCGTGGCGA
AGAACAGCAATAAACTTCGTCATCGCGCCATCTCTACCGCGGGAAAATCC
ACCACGCCGCACCGTAACCCCTCAGCTACAGGCCACACCGTAAACCCCCA
ACTACCCGCCGCACCGTAACCTCTCGGCTACACGCCTCACCGTATCCCCT
TAGCTACACGCCACCTGATCTCCGATTTCCGCTCGTGCCGGCGGTCAAAA
GTCTGGTTTTTTCGCGTTTGGCGGGTTCGTCTACGCCCACCGAATTCCCG
GCGTATTTTTCGCTCTATCCTTGATTTTTTTGGGACAGGGTGGGCAAGAG
CGGCGGAGGTGCAGACGCACTGCCTCCTTCTGACCTGAACGAACGTCGTT
TGCACACGCATGCATCCCGGGAGGAGACGCAAAAAATCGCGGAGCGTTTG
GTGCACGTTTGATACATTAATTTGAACATCGTCCACATTTGGCGAAGGAC
TTCTTTCTGCAGCAATGTCCTTTCTTCGTCATGTGTAGAATTCAGCAGTC
CCCATTAGGCGTAAAAGGCACCTTTTTTTTCTTTGCATGGCCTGGCGATC
CGCTCGAGTCCTTGCCTCCTAGTGAAAGGCTAGACCAGATGCGTTTTCCA
CGGCCGCATGCCGCTGTGTGACGAAGTTGTTGTGCTCTCCAAAGGGGAGC
GCGCGTTGAACGGCGGGCTTTGGCGCCTGCTAGTCAGACGAGAAATGTGT
TCTGTTTGCATGGAGTTTTGCTGCTTCGTGGAGCTTATTGGAATGCCCCT
CTCGCCTTTCGTGGTTTGCTGCCGCGGACCAACGCTTGTGCTGCAGGCTG
TCGTTGCCCAGCGAGTCCGTCTCTTCGTTGTTGATGCCTCTCTCTGGTTG
CCCGTCTGTGGTGAATTGCTTAGGTGTTCACGTAGTCCTGCCGGTGCGGG
CTGTAGTGGCACCGCTGCCGGAATAAGAACGCTGCCGCAATAACGGATGA
AGATAACAGTTTGCAGAGGCTGAAATGAACCCATCAGACCGGTCAGCGCT
GACAGGTCTAATGGGTTCATTTCAGCTTCTTTAAAGTGAAGTGTTCCCAG
GGATCGCTCTGCAAGCAGCCCGCAAGGAGGATTTGGTGAGCTTTGAAACC
ACTTCAAGGGGTGTGATATGACCAAAGTGCAGCACCACATGTACCGATAG
ACAATATCGTTCGTCAGCGCTTGGGGGGTCCTGCGTGAGGCAGCATGTAT
GCTGCAGAAGCGGAAGCATGTGGTGCGCCATTTCGGGGGGCTCTGTGGGT
TTACGTCTTTTTTTTTCAGCTTGTTCGCGTTTCCCGTTTTCCTCTCCCAT
CTTTACTCTTCGTCGCGGTGTGACGACTGGCTGCGGCAGGACGAACAGCT
CGGGAACGACAAGCTCGTATACGACAGCCGAACCGGCCGTTTCTACGAGA
AGAAGCTGGAGGAGGTCTGCAGGGAAGAGTACTGCGCCATCGACGAGACT
ACGGGTGAGAGACAGGAGCGGACGAAGGGGGAGTCTAAAGGGGAAATGCG
TAGCAGCGGCCATGTTCGTCTCGTTGTGAAGGAAGGGCAAGGGAAGGACA
AGAGGGCGCGGGGGAAGGTGGGACGGAATGGGCGTAGAGATTTCGAAAGA
GGAAAGCTAGCGGAGTGGTTGTGGGTGTAGGGGAAGGGGGTCGGACGCGG
GGGGGGGGGTGTACTCATAGTCGTGCATGCCGTAGTCGTTAGACCATTGA
CCTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCACCGGAC
CAGGCTCTCACACCACCAAGCGCGAAGCGCCGTGAGGTATTCGGCGAGTC
GCATGAAGGGTGCGCTGCATCCTGCTAAGGGTGTTCGGCATCTTGTGCTT
ACTTCCTTGCATGCGGATGACAGCTGCGTATGGGTTAATTTATTTTCTGG
TGCTTTCACTTCCAGAGACAGTTGTAAGCACTATGTAACTGCCTCGAGGG
TGCTTGACCATTTTAACACAACGTGGTGCGATCATCCCCCTTGCGCGGAG
TGAGGGTTCTCCACCCGCACAACATGATCTTCTCGACCACCATTATGGTT
ACCGCCAAAAAAACAGAGGAAAAAAAAGACGGTAACCTGGTTGCCGAGTT
CACGAAGTGAATTGGCTTGTTTTACAACGTCGTTGCCACGACGAAAACCC
AATCCCGATGGCAAACACCGAGATGAGAGCCAGCGGGAGGGGGGCAAACG
GAAGGGCTGCCGCGAAGGTGGGACGTAGACGAGCAGTGGGCGCAGATAAT
CTGTGGACGAAAAGCGTCAGGGACAGAGTGTGGTTCAAGCATGGGAGGGA
GTGGAGGGAGATGGATGAGTGGGCGGCGGGGAGAGGTCGGCGACGGCGAG
GCTGCACGGTACTTGGGTTACGCAAGTCTGCACATCAGACGAGAAGGGAG
GGGGGTGTACTCATCTTCGTGCATGCCGTAGTCGTTAGACCATTGACCTC
GCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCACCGGACCAGG
CTCTCACACCACCAAGCGCGAAGCGCCGTGAGGTATTCGGCGAGTCGCAT
GAAGGGTGCGCTGCATCCTGCTAAGGGTGTTCGGCATCTTGTGCTTACTT
TCTTGCATACGGATGACAGCTGCGTATGGCTTAATTTATTTTCTGGTGCT
TTCACCTCCAGAGACAGTTGTAATCACTGTGTAACTGCCTCGAGGGTGCT
TGACCATTTTAACACAACGTGGTGCGATCATCCCCCTTACGCGGAGTGAG
GGTTCTCCACCCCGCACAACATGATCTTCTCGACCACCATTATGGTTACC
GCCATAAAAAACAGAGGAAAAAAAAAGACGGTAACCTGGTTGCCGATTTC
ACGAAGTGAATTGGCTTGTTTTACAACGTCGTTGCCAAGCGACGAAAACC
CAATCCCGATGGCAAACACCGAAATGAGAGCCAACGGGGACAAGGAGGAG
GATATAATGGAGGGTGAACGGATTCAGGAGACACAAAAGAGAAACAGAAA
CACAGGATTGGTGAGGTGTTCCAGAGAAAGGGACCGAGAGCAAGAGCGAG
AATTTATGCGTGCGATTGAGTCGAGGAGGCTCAGCGCGAGGCTTACAGCT
TGGCTGGAACTAACCAGGCGCTCTTTTCGAAACGCATTTACTCAGGCAAG
CCGATGCTTTTGACGACTGGAGAGAAGGAGCGCATCTTCACGGACGCCGT
CCAGAGCTTCTACTACAACAACAGACAGATGCTCGACGACGACGACTTTG
ACAAGCTGAAGGAGGACCTGGCGTGGGAGGGAAGCCCGGTGAGAGCGGAG
ATAAATCGGAAGCAGGGGAGGCTAACACGCAGTGGTGATCAACGATAAGC
GGCTTGCGCTTGTTTCGTCTGCGCCGTATATGGCCCGTCTCGATCCGCAA
GAAAATCCGGAGCGGGTGGCACGATCCTCGTCGATCTCTCCTTGCCGCAT
TGGTGGGATAATAGAGGGAGTGAGTCGCAGGTTTGACATGGAGGCGAAAA
TCCCCTCGTACACAAACACACCTTGCCTGCTCCATGGTACCAAAACATCG
CGGACAGGAGGTGCGAGGTTCCGCTTGTTCGTTTGGATTCGAGGCCAATT
TTTCTCGACTGTAATTGTTATCGTCGCGGACTTCTTGAAGGGATCTGAAG
CCGAGTGTTTAGAAATCAGCCGTGTGCGACGCTGAGGCAATATTTTGAGT
CATTTACATTACTGCACTCCCTAGAGGAAAGGAATGCCGATCGTTGCGCT
TTCATCAATCCCCTCTTAGAGACCATTCCGACGCCGCCCTCGTGGGACTC
GGCACTCATTCCCATGTGGAGCCTCCGAGGTTCGAAAGTCGCCGCATGGA
AATACATTATACATCTACCGTCACATACGGCACACACGGTTTTTCCCCCT
CCGGCACGCCATTCGCGCTAGTTGCGACGGCGTGGGATTGGTGCCATGTA
CCGCCGGCAGGATACTGTCCCCATGAAGAGAGGGCAGGGCACCCGTCCGC
GTGTAGGAATTATTGATGTTTTGACTTTCCCCTCCACGCGTGGGTGCTCA
CGACGTTGTTGGCGTCGACCACGTCCGCCTGCCTGGCGCTTCACATCCGG
GTGTCTGCTTCCGAATCGTTTCTTTGTTGTTTCTCCTGACCGCGATGCGA
CCACGCTTTTACGAGCACCGCATGCACCTTGCACCGATGCCTTGCCTTGG
CTGTGCCTTTGTTGGGTGGCCTTATACTCCGCCAGCGACACCACCGGGCA
AGTCGACTGAACTACCAACACGAAGTTCAGTCCCGAGCAGAGAAATCTGT
AAAAGAGATCATGCCACGCTTTCTCCATCATGCCCCCCCCCCCCCGCTCT
CCCTACCCGCGGTCTCCACGTACCCACAGTCACGGCCTGTCCGTGAGGAA
CCCCTCCGGTTCTCCACGTGTTCACGTGTGCTTTTCTCGCGGTCACGGTT
GTATGATTGTTTGCTTGTGTGCCACCACAGGTGGTGTTGATGAACCGAGA
CGAGCAGCTCTTCTTGAGCGCCATGGCGGCGTACAGCCGCGGGGAGCAGA
TCATTGAGTGAGTGGGCGAGCGAGCGATGTTACGACGACCGAGAGCGAGA
GCACATGAGCGAGTTTTGCGTGATTTGCTTGGTTTGGGGTCTACTTTTCA
CTGTATTCTTACAGAACTTGTTGTTCTGAGTTTTCTGAGTAGCAGAGATC
GAAACTGCCGAAGAAAAGACGGAAGTTCCACCGGAGACTGTACAAATTGA
TGCATAGTTCATTCTCACCGGTGGAGCATCCCGATCGGGGAGTTGCGGGC
GAGATTGGACGGAACGTGTGTGGCGCGTGCACGCGTGTGTTCTTGAACGC
TGTCGACTGCATCGATCGGCTGACCAGTGAAACCCCTAAATTTGAACTGA
GGAGGTAGGGTGCGAGTGGGCCTCCACGAGCGCCGCGGCGTGAGGAGGCG
AGACGATTGTCACCTTGTTTATGTGTTGCAGCTGCTCTCTCAAGAGTCCC
GCAAGACTCGCACTTCATTGGGAGGAGAGCCGTGGCCCTTCGATCTATCT
TCGCCGAGTGATCCTGGCTGACAGGTAGCCCACAATGGGTCATGTTGGGC
GGCATGTGCAGGTTGTGTTGTGACAGTAGAGGTCTGGGTGAGGATCACAT
GCCGGGACACCGTGATTCATGGCGTTGCCGTCCTTCGCCTTTGCTCTCTT
TTTTGTCGCCGCTTGCTGCTCGGACCGATTACAATGGCGTTGTTGCTAAT
GTTGTTGTTGCGGTTGATCATGGTGGTGTGGGGGACAACAGCGACGAGGA
GTTCGACAAGCTGAAGGCGTCCCTGCGAGAGGCTGGGAGCGTGGTGGCCG
TGAGCACCGAGCCCAAGTGCTACATCGACACGGGCATCTGTACCGTAACG
TTTCAGGTGAGAGAAGAAAGTACCATAAGAAGTGACAAAAAGGGGGCTGG
AATATCCATGCTTGATTTTCGTTGCTACCTGCTCCCGCCGCGTTGCTCTT
GCCCCCCCGCCCCCACCCCCAAAACGACTTTTTGCATCGTGCTTCCTTGC
CCCGTAACAATATCTTCTCCTAGTGAGGCTCGCAATTACCGTTATGAAGC
AGCGTATCAAATTGTCGACCTGCCCCATTCTTGATACTATGCCGTGGGGA
TTACGCTGCTTGCCGCTACGTACAAATGCGCTGACGGGGGGGGGGGTGTA
CTCATGAAAACGCATGCCGTAGTCGGTCAGACCATAGACCTCGCGTCACC
TACAATGCCGGGACGGAGCGATACGCCGGGTTTTCGCCGGCCAGGCGCGT
TTCACAAGGATAAGCCAGCATCTGGCCATCATCCTTGTGTTTGCTGAGCC
AAACCGGGTCTGCCATGGGTTGATTGGGCATCCGGTAAACCAAACGTTTC
ACATTCGGCAGGCTCGACTATTCTTCAAGTACCGCAAGGGACTTCGATCT
TTGCGCGCACTTATCATATTGGCGCGCCACACACAGCGAACACGTCGCTT
CGTGTGTGATACACTTGGAGAATAATCTGCTTATATACCCCACAGGTGGA
TATTTCATAAGTATGATTGCTCTAGGGCGTTCCAACTATCCAGCGTTCAG
CGGACATCCTATAGGGTGTGATCTCTAGGACCGGAGTCCACAAGCTCACA
GGATATACCGCATGAACAACCCCCATGCTGACGGGGGGGGGGGGGCGTAC
TCATGTATACTCATGTTTTGCATGCCTTAGTTGTTAGACCATTGACCGCG
CGTCCTCGAGAGGACGGCGCTGACGGGGGGGGGGTTGTCAAAGACAGAAA
TTCGTGGCCGCGGCCACCGTGAAGACCGTGGAAGCTTGCACATTTCCTCG
GCGGGTTACAGCAACCCGGCACTATGCTAGCCAAGGCGAAGTGCAGGAAG
GTGGAGGAGTCACATGTTGTTGCTGAATATATTTGACCGCGCAGAGGCGG
AACGAGCCCAGATTGGCTTTGCCTTTTTAACATATCGGCCGCGATGAGAG
GAGGGGCAGAGGCGGGCGCTTCGTACATCGGAGAACGGTTGTCACTGCAC
GGATCGCTGCTCTCGTTTGACCTACTGCTCTGAAACGGCGACATTTGGTC
TGTCGCGTTGTAACTCGTTATGCTATCGATTCGCAGATCTGTTCTTCGGG
AGGAGCATGGAAGGCAGAAGCCCTCTCGCTGTACTCATGCCCTACCTGTA
CCTCTCCACCCTACCCGACCACTTTCCATGTCGCGCAAATGCTGATGCCT
CTCGCCCGGCTCGCTGCCGTTATCAGTTATCCCTTCGTTTCAGTTGAGTT
CTTCTTGCCCAGCCGGCGCATTCGTCGCTTTCCCTCTCTGCCTGCTCTTG
TTCCTATCCCTCCTTTCCCTCTCTCGTGTTGTCTACTTATTACTCCCGCA
ACAACACGTGCAGTCTTTTTTTTTTAAATCGGATTATTGTGCGTTTTTTC
TCAGCTATTGGTGTGTGACGAGTGGGCTACAATTTTACAATGTTGTTCAT
GTGCTCGCGCACGTGTCGCTGCACATTTTCAGGAGGACCTGTTCCGCCGC
TTCGCCACCTACCTACCGGCGAACTTCATCTTCGGCCTGGCCTTCCTCGG
AATCTCGTGGCAGCTGATCGAACCGGTGCGAGCGATAAACCCTCTCGCGA
CCCTCTTGATCCTCAGCGGGCCCACCATCGCGGCGAGCAAGAAGTTTACC
GACCTCTGCCTCTACCAGGTGACTACTGATCTGCTGCTGTTGTCTTTGGC
GTTGTTTCCACCTGTCAGCCCGGCCGGGTCGGTCTCGCTCATCTTTTTTT
GCCCGTATGTCTGTCTTGCGATTTTTCTACTGGCTCATCAACGCGCTGCT
TTGTCGCGTCTGCTTCCGTCCAGCCCTCACGTGTCCGCTCGCATGTCTCC
TTGTCGCTCTCCCTCGGTGTCATCATCGAAGATGGCTCACGTGCTTTGTC
AATAGCCGTGATTTTTTCATGAATAGCCGGATAGCTCTACACGCAACCCT
CTTCTGGCTCCTCTTTCGTCCCGTCAGCCTTGCCCTGAGACGGATCACCT
TTTCCCCCCACTACGACTGGAACGTAAAGAAGTTGGACGCAATTGGGGTT
TGTTGAACAAAACGGTCTGGTAGACCGGCGCCAGAAGTATCTCGTGAAAA
AATCGGCTTTCCTTAGATCACAACTTACGCCAGGGGGTGTCGGGACGTCG
TCGACGTTTAACATCTGGGTGTGTGCTGCGAGCGATCGCCCCCCGCGCAC
TGCCACCCGAACTTCCCGTTCCACATGCAGTCTCGCACATGCATCATTCA
TTCTGTTCGCGTCCTCGTTGAGGTTCCTCTCTGCCATTCCTCATCGTCTG
TTCGTGCGATGCAAAAATTTGGGCAACGACTACGTCATATCGACCTGCTT
TCCCCTCTAGCTCGTCTCCGCTTCTTGATCGAGCATCATCATTCCGTCGC
GAACGTGCGCGTATCTTTGCTTCGTCAGGACAACGGCACCGTAGCTTCGG
GACCTTGCCCCTCTTGCGGAGTGCCCAACCAGGTGTTCTTCGGCAGTATG
CTGGGGGTTCAAGGAAACATGTGAGGCATTCGGGAGATAAGTTATTGGTT
TTGGTCTTTCAGAGAGATAGGACGGGGCCCGGCTCTCAAACGGCATCTAA
TCGTAGGCACAAGAGTTTGCGCGCAAGCTAGGCATTTTAACGTTGAAAGG
TAGATGCGCCCAAGGCTTTCGCGAAAGGAGAGATATCGAGGCAGGCTAGA
GGCAGAAGGATCGCAACGAGGCGGTATTGGGTTGCCCCCTGGCTGAGCCA
TTGCAGCAAGGCCAAGTGGGACAGGGAGTTTGGGACAGTCGGAGCTGACA
CGCCCCTCACAACGTCCCCGTTCCATTGCTGTGCATTGCTTTGACTCTGC
TTGCTTTTGCTTTGCTGTGTATGGCCTTCCTCGGATGTAGGATTCAAATT
TTGGTCACCTTGAAACATTGTTCCTCCCCCTTTCCTCGTTGCACACTATC
CATTTCTTCTCATCCACTCCGTGCCCCATATCCCTGTGCACACAAGACGA
TGAAATAGCGAAAAAACTTGAGCAAGTGGATGTCGGTGGTTCCTTTGCGA
GGAACTGAAACGGCGCTCCCTCACGACGTGACTTGGTTACAGTGAAATGC
TCCCAGATTTCGACATTCACCAAAAAAGACAATGAGCGAATCCTTCCTCG
CCCCCCCCTACCCTCGGGCGCGCTCCGATGGTGTCGTCTCTCCGACCCTT
CCTCGCGCACCTGCAGAGACGAGTCGGAGTTCAACTGCAACTCTTGCAAG
GAGACCATCAAGATCCGCCGTGCGGATCTGCGGGCTCGCACCCTGCCAAA
ATCGTGA back to topCoding sequence (CDS) from alignment at P-fluviatile_contig87:82184..92690- >mRNA_P-fluviatile_contig87.14926.1 ID=mRNA_P-fluviatile_contig87.14926.1|Name=mRNA_P-fluviatile_contig87.14926.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2082bp|location=Sequence derived from alignment at P-fluviatile_contig87:82184..92690- (Porterinema fluviatile SAG_2381) ATGGCTAGGCAACCTGCGTGTGTACTGGGGGCGCTTGTATTGGGCTGCGC TGCTCTTGGCGGGGATGGATTCGTAGGGCCAATAGCAGATGGCTAGGCAA CCTGCGTGTGTACTGGGGGCGCTTGTATTGGGCTGCGCTGCTCTTGGCGG GGATGGATTCGTAGGGCCAATAGCAGGTGGTCGGCCAAGAGCAGCAATGG CCAAGGGCCGAGGGTGCACAGCAACAAGCCGGCGATCGCCGGGACTTCTG AAATTGGCGGCTGAGAAGGAGAAGGAGAAAGACGGGGTAGCGATGGAGGC GCCAACGGATGTGGTCGGCCAAGAGCAGCAATGGCCAAGGGCCGAGGGTG CACAGCAACAAGCCGGCGATCGCCGGGACTTCTGAAATTGGCGGCTGAGA AGGAGAAGGAGAAAGACGGGGTAGCGATGGAGGCGCCAACGGATGACGAA CAGCTCGGGAACGACAAGCTCGTATACGACAGCCGAACCGGCCGTTTCTA CGAGAAGAAGCTGGAGGAGGTCTGCAGGGAAGAGTACTGCGCCATCGACG AGACTACGGGACGAACAGCTCGGGAACGACAAGCTCGTATACGACAGCCG AACCGGCCGTTTCTACGAGAAGAAGCTGGAGGAGGTCTGCAGGGAAGAGT ACTGCGCCATCGACGAGACTACGGGCAAGCCGATGCTTTTGACGACTGGA GAGAAGGAGCGCATCTTCACGGACGCCGTCCAGAGCTTCTACTACAACAA CAGACAGATGCTCGACGACGACGACTTTGACAAGCTGAAGGAGGACCTGG CGTGGGAGGGAAGCCCGGCAAGCCGATGCTTTTGACGACTGGAGAGAAGG AGCGCATCTTCACGGACGCCGTCCAGAGCTTCTACTACAACAACAGACAG ATGCTCGACGACGACGACTTTGACAAGCTGAAGGAGGACCTGGCGTGGGA GGGAAGCCCGGTGGTGTTGATGAACCGAGACGAGCAGCTCTTCTTGAGCG CCATGGCGGCGTACAGCCGCGGGGAGCAGATCATTGAGTGGTGTTGATGA ACCGAGACGAGCAGCTCTTCTTGAGCGCCATGGCGGCGTACAGCCGCGGG GAGCAGATCATTGACGACGAGGAGTTCGACAAGCTGAAGGCGTCCCTGCG AGAGGCTGGGAGCGTGGTGGCCGTGAGCACCGAGCCCAAGTGCTACATCG ACACGGGCATCTGTACCGTAACGTTTCAGCGACGAGGAGTTCGACAAGCT GAAGGCGTCCCTGCGAGAGGCTGGGAGCGTGGTGGCCGTGAGCACCGAGC CCAAGTGCTACATCGACACGGGCATCTGTACCGTAACGTTTCAGGAGGAC CTGTTCCGCCGCTTCGCCACCTACCTACCGGCGAACTTCATCTTCGGCCT GGCCTTCCTCGGAATCTCGTGGCAGCTGATCGAACCGGTGCGAGCGATAA ACCCTCTCGCGACCCTCTTGATCCTCAGCGGGCCCACCATCGCGGCGAGC AAGAAGTTTACCGACCTCTGCCTCTACCAGGAGGACCTGTTCCGCCGCTT CGCCACCTACCTACCGGCGAACTTCATCTTCGGCCTGGCCTTCCTCGGAA TCTCGTGGCAGCTGATCGAACCGGTGCGAGCGATAAACCCTCTCGCGACC CTCTTGATCCTCAGCGGGCCCACCATCGCGGCGAGCAAGAAGTTTACCGA CCTCTGCCTCTACCAGGACAACGGCACCGTAGCTTCGGGACCTTGCCCCT CTTGCGGAGTGCCCAACCAGGTGTTCTTCGGCAGTATGCTGGGGGTTCAA GGAAACATGACAACGGCACCGTAGCTTCGGGACCTTGCCCCTCTTGCGGA GTGCCCAACCAGGTGTTCTTCGGCAGTATGCTGGGGGTTCAAGGAAACAT AGACGAGTCGGAGTTCAACTGCAACTCTTGCAAGGAGACCATCAAGATCC GCCGTGCGGATCTGCGGGCTCGCACCCTGCCAAAATCGTGAAGACGAGTC GGAGTTCAACTGCAACTCTTGCAAGGAGACCATCAAGATCCGCCGTGCGG ATCTGCGGGCTCGCACCCTGCCAAAATCGTGA back to top
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