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Homology
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: A0A6H5L2F5_9PHAE (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5L2F5_9PHAE) HSP 1 Score: 388 bits (996), Expect = 2.030e-124 Identity = 206/255 (80.78%), Postives = 221/255 (86.67%), Query Frame = 3
Query: 285 GEVADGSPLLPSPSLSAGAEAVKGEGGDAGXXXXXXXPAAAAPKVGGEPALINVAKLESSSAATSTLWNVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSERLGPWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGAAVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPALMGK 1049
G ADG+PL SPSLSA +G+G G GEPAL++VAKLES AA +TLWNVPN+LTMARV+AIP+FATIFYA+LPRRNIWCS+IFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSERLGPWMTVCSAIILCREL ISALREWMAQLGLRETVKVGNAGKWKTATQM+AI++LLLLEPGAAVTLVNPAT MPIAK LLYVSTVLTVTSGSGYL+AAWPALMGK
Sbjct: 105 GGSADGAPLSSSPSLSA----AEGDGKGGGVQGAEA----------GEPALVDVAKLES--AAATTLWNVPNILTMARVMAIPVFATIFYASLPRRNIWCSAIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSERLGPWMTVCSAIILCRELAISALREWMAQLGLRETVKVGNAGKWKTATQMMAITMLLLLEPGAAVTLVNPATAMPIAKSLLYVSTVLTVTSGSGYLKAAWPALMGK 343
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: A0A835ZDG0_9STRA (CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZDG0_9STRA) HSP 1 Score: 260 bits (664), Expect = 3.100e-77 Identity = 123/192 (64.06%), Postives = 155/192 (80.73%), Query Frame = 3
Query: 474 TSTLWNVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSERLGPWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGAAVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPALMGK 1049
T TLWNVPN+LT+AR++ +PI +FYA + RNIWC+++FAGAA TDWLDG+ AR+ I +PFG+FLDPVADKL+V+ A+ILLSERLG WMTVC++IILCRE+ +SALREWMAQ+G R VKVG AGK KTA QM+A++ LLLL+P AA ++ P + K L+ S VLTVTSG+GYL+AAWPALMGK
Sbjct: 41 TPTLWNVPNILTLARLICVPILGFLFYAPIANRNIWCAALFAGAAITDWLDGWWARKFNIASPFGAFLDPVADKLIVAVAMILLSERLGEWMTVCTSIILCREIAVSALREWMAQIGARGVVKVGMAGKCKTAAQMVALTTLLLLQPSAAPAILPPVAF-DAGKWLMIFSAVLTVTSGTGYLQAAWPALMGK 231
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: A0A7S2V0D2_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2V0D2_9STRA) HSP 1 Score: 217 bits (552), Expect = 1.690e-61 Identity = 118/196 (60.20%), Postives = 149/196 (76.02%), Query Frame = 3
Query: 483 LWNVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSERLGPWMT-VCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGA----AVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPALMGKKT 1055
LWN+PN+LTM RVVAIPIFA +FY +P RN ++IFA A+ TDWLDGY+AR+ I +PFG+FLDPVADKL+V++AL+LL+ G W+ V +AIIL RE+ +SALREWMA G R V+VG AGK KTA QM+++ LLLL + GA V+L++PA A LLY+STVLTVTSG GYL+AAWPAL GK+T
Sbjct: 27 LWNIPNILTMLRVVAIPIFAFVFYLPVPWRNKATAAIFAVASATDWLDGYLARKWKITSPFGAFLDPVADKLMVASALVLLAGSEGGWVVAVPAAIILAREITVSALREWMAGRGERSKVQVGMAGKVKTACQMVSLILLLLAQKGADCPLPVSLLHPA-----ALALLYLSTVLTVTSGWGYLQAAWPALSGKET 217
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: A0A7S2UZN3_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2UZN3_9STRA) HSP 1 Score: 217 bits (552), Expect = 5.450e-60 Identity = 118/196 (60.20%), Postives = 149/196 (76.02%), Query Frame = 3
Query: 483 LWNVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSERLGPWMT-VCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGA----AVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPALMGKKT 1055
LWN+PN+LTM RVVAIPIFA +FY +P RN ++IFA A+ TDWLDGY+AR+ I +PFG+FLDPVADKL+V++AL+LL+ G W+ V +AIIL RE+ +SALREWMA G R V+VG AGK KTA QM+++ LLLL + GA V+L++PA A LLY+STVLTVTSG GYL+AAWPAL GK+T
Sbjct: 140 LWNIPNILTMLRVVAIPIFAFVFYLPVPWRNKATAAIFAVASATDWLDGYLARKWKITSPFGAFLDPVADKLMVASALVLLAGSEGGWVVAVPAAIILAREITVSALREWMAGRGERSKVQVGMAGKVKTACQMVSLILLLLAQKGADCPLPVSLLHPA-----ALALLYLSTVLTVTSGWGYLQAAWPALSGKET 330
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: W7TJV8_9STRA (Cdp-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase n=2 Tax=Monodopsidaceae TaxID=425072 RepID=W7TJV8_9STRA) HSP 1 Score: 213 bits (541), Expect = 3.080e-58 Identity = 111/217 (51.15%), Postives = 151/217 (69.59%), Query Frame = 3
Query: 420 GGEPALINVAKLESSSAATS------TLWNVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSERLG-PWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGAAVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPALMGK 1049
GGE + +A++ A S +LWN+PN+LT+ RV++IP+ I+Y + RN CS +F AA TDWLDGY+ARR + +P G+FLDPVADKL+V+TAL+L+++RL P +TV +AII+CRE+G+SALREWMA G R+TV VG GK+KTATQM+A+S+LL ++P A + + GLL S VLTV S GY++AAWPAL GK
Sbjct: 129 GGEVSWSRLARMAGGGNAASNRGNEPSLWNLPNILTLLRVISIPVLIIIYYTSASWRNAACSGLFVFAAMTDWLDGYLARRMNLSSPLGAFLDPVADKLMVATALVLMADRLNSPVVTVSTAIIICREIGVSALREWMASQGARDTVAVGWWGKFKTATQMLALSVLLYVQPPLASHDALAHKLLEVGVGLLAFSAVLTVYSAVGYVQAAWPALTGK 345
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: A0A831W802_9GAMM (CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase n=2 Tax=Gammaproteobacteria TaxID=1236 RepID=A0A831W802_9GAMM) HSP 1 Score: 192 bits (489), Expect = 4.810e-53 Identity = 100/191 (52.36%), Postives = 136/191 (71.20%), Query Frame = 3
Query: 483 LWNVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILL-SERLGPWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGAAVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPALMGKK 1052
+W++PN+LT +R++ IP+F +FY P + + +F AAFTDWLDG++ARR G+V+P G+FLDPVADKL+V+TAL+LL ++ PWM + +A+I+ RE+ ISALREWMA+LG R TV V GK+KTATQM AI+LL+ P L TY I + LLY++ VLT+ S YLRAAWP+L KK
Sbjct: 1 MWSIPNLLTFSRIIMIPVFIGLFYLPAPWNHQVAALVFMIAAFTDWLDGFLARRMGLVSPLGAFLDPVADKLMVATALVLLVADNPSPWMAISAAVIIGREITISALREWMAELGSRTTVAVSLIGKFKTATQMGAITLLIYRHP-----LFGLPTYR-IGEILLYIAVVLTLWSMMVYLRAAWPSLSDKK 185
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: A0A370DFG8_9GAMM (CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase n=6 Tax=Bacteria TaxID=2 RepID=A0A370DFG8_9GAMM) HSP 1 Score: 187 bits (476), Expect = 3.480e-51 Identity = 99/190 (52.11%), Postives = 135/190 (71.05%), Query Frame = 3
Query: 483 LWNVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSE-RLGPWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGAAVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPALMGK 1049
+WN+PN+LT+ R+V IP+F IFY + I C+++FA AA TDWLDG++ARR G V+PFG+FLDPVADKL+V+ AL+LL + PW+ + +AII+ RE+ ISALREWMA LG R V V GK+KTA QM+AI LLL+++ ++ ++ LLY+S +LT+ S YLRAAWP+LMGK
Sbjct: 1 MWNIPNLLTLLRIVLIPVFVLIFYLPVEWARIGCAAVFALAAVTDWLDGFLARRWGQVSPFGAFLDPVADKLMVAVALLLLVQSEPTPWLALPAAIIIGREITISALREWMAALGARAQVAVSVIGKFKTAAQMLAI-LLLIIQQDLWGLPIHTVGFV-----LLYISAILTLWSMVIYLRAAWPSLMGK 184
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: A0A7S2EJE7_TRICV (Hypothetical protein n=1 Tax=Trieres chinensis TaxID=1514140 RepID=A0A7S2EJE7_TRICV) HSP 1 Score: 186 bits (473), Expect = 2.460e-50 Identity = 106/195 (54.36%), Postives = 135/195 (69.23%), Query Frame = 3
Query: 486 WN-VPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSERLGPWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLE-PGAAVTLVNPATYMPIA------KGLLYVSTVLTVTSGSGYLRAAWPALMG 1046
W+ VPN+LT R AIP+ +FY ++ SIFA A+FTDWLDGY+ARR I + FG+FLDPVADKL+VSTALILL+ R GP + V +++IL RE+ +SALREWMAQ GLR++VKVG GK KTA M+A++LLLL+ PG V A + +A LLY+S ++TVTSGS Y RAA P LMG
Sbjct: 35 WHRVPNVLTYLRCFAIPLLVGLFYTTSEWGHVQTGSIFAVASFTDWLDGYLARRWDITSAFGAFLDPVADKLMVSTALILLAGRHGPAVAVPASVILAREIAVSALREWMAQRGLRDSVKVGFQGKVKTAATMVALTLLLLVPVPG-----VEGAKFAALAGLQQPGMALLYLSALVTVTSGSVYFRAAAPVLMG 224
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: A0A257D3X3_9PSED (CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase n=1 Tax=Pseudomonas sp. PGPPP3 TaxID=2015555 RepID=A0A257D3X3_9PSED) HSP 1 Score: 182 bits (462), Expect = 2.480e-49 Identity = 94/185 (50.81%), Postives = 127/185 (68.65%), Query Frame = 3
Query: 489 NVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILL-SERLGPWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGAAVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPAL 1040
N+PN+LT+ RV+ IP+F +FY ++ S++FA AA TDWLDGY+ARR TPFG+FLDPVADKL+V+ AL+LL E W+T+ +A+I+ RE+ +SALREWMA+LG R V V N GKWKTA QM+A+ +LL P + ++ + GLL+VS LT+ S + YLRAAWP L
Sbjct: 4 NIPNLLTVLRVLLIPVFVLLFYLPFSWSHLAASAVFAFAAATDWLDGYLARRLQQSTPFGAFLDPVADKLIVAVALVLLVDEHASLWLTLPAAVIISREIVVSALREWMAELGARAQVAVSNVGKWKTAAQMLALVILLANSP-------QFSFWIGLGYGLLFVSAALTLWSMTQYLRAAWPHL 181
BLAST of mRNA_P-fluviatile_contig8.14307.1 vs. uniprot
Match: UPI001A9F60D6 (CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase n=1 Tax=unclassified Pseudomonas TaxID=196821 RepID=UPI001A9F60D6) HSP 1 Score: 181 bits (460), Expect = 4.400e-49 Identity = 96/185 (51.89%), Postives = 127/185 (68.65%), Query Frame = 3
Query: 489 NVPNMLTMARVVAIPIFATIFYAALPRRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTALILLSE-RLGPWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWKTATQMIAISLLLLLEPGAAVTLVNPATYMPIAKGLLYVSTVLTVTSGSGYLRAAWPAL 1040
N+PN+LT+ RV+ IPIF +FY++ P ++ S++FA AA TDWLDGY+ARR G TPFG+FLDPVADKL+V+TAL+LL E W+T+ + II+ RE+ +SALREWMA+LG R V V N GKWKTA QM+A+ +LL P ++ + LL V+ VLT+ S YL AAWP L
Sbjct: 2 NIPNLLTLLRVLLIPIFILLFYSSFPASHLVASAVFALAAATDWLDGYLARRLGQSTPFGAFLDPVADKLMVATALVLLVEAHANLWLTLPAVIIIGREIVVSALREWMAELGARAHVAVSNLGKWKTAAQMLALIILLANSP-------TMGFWVVVGYVLLIVAAVLTLWSMLHYLLAAWPHL 179
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 | 385.6 |
| Seed ortholog evalue | 1.9e-104 |
| Seed eggNOG ortholog | 2880.D7FID2 |
| KEGG rclass | RC00002,RC00017,RC02795 |
| KEGG ko | ko:K00995 |
| KEGG Reaction | R01801 |
| KEGG Pathway | ko00564,ko01100,map00564,map01100 |
| GOs | GO:0003674,GO:0003824,GO:0005488,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005739,GO:0006629,GO:0006644,GO:0006650,GO:0006793,GO:0006796,GO:0006996,GO:0008150,GO:0008152,GO:0008444,GO:0008610,GO:0008654,GO:0009058,GO:0009507,GO:0009526,GO:0009536,GO:0009657,GO:0009668,GO:0009941,GO:0009987,GO:0010027,GO:0016043,GO:0016740,GO:0016772,GO:0016780,GO:0017169,GO:0019637,GO:0030145,GO:0031967,GO:0031975,GO:0043167,GO:0043169,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044237,GO:0044238,GO:0044249,GO:0044255,GO:0044422,GO:0044424,GO:0044434,GO:0044435,GO:0044444,GO:0044446,GO:0044464,GO:0045017,GO:0046474,GO:0046486,GO:0046872,GO:0046914,GO:0061024,GO:0071704,GO:0071840,GO:0090407,GO:1901576 |
| EggNOG free text desc. | cardiolipin synthase activity |
| EggNOG OGs | COG0558@1,KOG1617@2759 |
| EC | 2.7.8.5 |
| COG Functional cat. | I |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko01000 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase |
| Ec32 ortholog | Ec-11_001460.1 |
| Exons | 7 |
| Model size | 2628 |
| Cds size | 792 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817220.3084447-UTR-P-fluviatile_contig8:225206..226776 | 1622817220.3084447-UTR-P-fluviatile_contig8:225206..226776 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 225207..226776 - |
| 1693571550.180468-UTR-P-fluviatile_contig8:225206..226776 | 1693571550.180468-UTR-P-fluviatile_contig8:225206..226776 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 225207..226776 - |
| 1622817220.3823285-UTR-P-fluviatile_contig8:234964..235023 | 1622817220.3823285-UTR-P-fluviatile_contig8:234964..235023 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 234965..235023 - |
| 1693571555.2802105-UTR-P-fluviatile_contig8:234964..235023 | 1693571555.2802105-UTR-P-fluviatile_contig8:234964..235023 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 234965..235023 - |
| 1622817220.3945506-UTR-P-fluviatile_contig8:237462..237586 | 1622817220.3945506-UTR-P-fluviatile_contig8:237462..237586 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 237463..237586 - |
| 1693571555.2900927-UTR-P-fluviatile_contig8:237462..237586 | 1693571555.2900927-UTR-P-fluviatile_contig8:237462..237586 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 237463..237586 - |
| 1622817220.4053662-UTR-P-fluviatile_contig8:240317..240400 | 1622817220.4053662-UTR-P-fluviatile_contig8:240317..240400 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 240318..240400 - |
| 1693571555.2995465-UTR-P-fluviatile_contig8:240317..240400 | 1693571555.2995465-UTR-P-fluviatile_contig8:240317..240400 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig8 240318..240400 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817220.3256843-CDS-P-fluviatile_contig8:226776..226956 | 1622817220.3256843-CDS-P-fluviatile_contig8:226776..226956 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 226777..226956 - |
| 1693571550.191375-CDS-P-fluviatile_contig8:226776..226956 | 1693571550.191375-CDS-P-fluviatile_contig8:226776..226956 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 226777..226956 - |
| 1622817220.3368423-CDS-P-fluviatile_contig8:227838..227928 | 1622817220.3368423-CDS-P-fluviatile_contig8:227838..227928 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 227839..227928 - |
| 1693571550.2101333-CDS-P-fluviatile_contig8:227838..227928 | 1693571550.2101333-CDS-P-fluviatile_contig8:227838..227928 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 227839..227928 - |
| 1622817220.3486907-CDS-P-fluviatile_contig8:228623..228716 | 1622817220.3486907-CDS-P-fluviatile_contig8:228623..228716 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 228624..228716 - |
| 1693571550.2229707-CDS-P-fluviatile_contig8:228623..228716 | 1693571550.2229707-CDS-P-fluviatile_contig8:228623..228716 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 228624..228716 - |
| 1622817220.3609033-CDS-P-fluviatile_contig8:229905..230067 | 1622817220.3609033-CDS-P-fluviatile_contig8:229905..230067 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 229906..230067 - |
| 1693571554.4610145-CDS-P-fluviatile_contig8:229905..230067 | 1693571554.4610145-CDS-P-fluviatile_contig8:229905..230067 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 229906..230067 - |
| 1622817220.3720272-CDS-P-fluviatile_contig8:234697..234964 | 1622817220.3720272-CDS-P-fluviatile_contig8:234697..234964 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 234698..234964 - |
| 1693571555.266947-CDS-P-fluviatile_contig8:234697..234964 | 1693571555.266947-CDS-P-fluviatile_contig8:234697..234964 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig8 234698..234964 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig8.14307.1 >prot_P-fluviatile_contig8.14307.1 ID=prot_P-fluviatile_contig8.14307.1|Name=mRNA_P-fluviatile_contig8.14307.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=264bp
MSPPDAGEVADGSPLLPSPSLSAGAEAVKGEGGDAGGGGGKGGPAAAAPK VGGEPALINVAKLESSSAATSTLWNVPNMLTMARVVAIPIFATIFYAALP RRNIWCSSIFAGAAFTDWLDGYIARRQGIVTPFGSFLDPVADKLLVSTAL ILLSERLGPWMTVCSAIILCRELGISALREWMAQLGLRETVKVGNAGKWK TATQMIAISLLLLLEPGAAVTLVNPATYMPIAKGLLYVSTVLTVTSGSGY LRAAWPALMGKKT* back to topmRNA from alignment at P-fluviatile_contig8:225207..240400- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig8.14307.1 ID=mRNA_P-fluviatile_contig8.14307.1|Name=mRNA_P-fluviatile_contig8.14307.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15194bp|location=Sequence derived from alignment at P-fluviatile_contig8:225207..240400- (Porterinema fluviatile SAG_2381) ATGAGGTTCGCAGGCAAACGATCTCCTGGCACCGTTGGTCGGGGCTCGAT
TTCGGCCATCTCGCTTCTTCTTGCCCTGCCAAAGTAAGTGTTCCAGCCCT
CTCTCTCGCCTCGATCCCTCTGTTTTCAGCACAGCAGCGCTCTCTTTGTA
CACAGCAGTAGGCTCCCACTCCAACAGCAATTAGTTGTCTACGGCACAAA
ATGCCCAGGGAGTAGTGAGCTCCACCTTTTCGTGTGATTTATCGTCGGCA
CGCTCCGTCGGCCCCCCTGTGCGGCCTTCTCGGTGGTTTTCGGCGCTTGC
CTGGCTTTCCCCTCCAGGATCCGAGATAACGTCGACGTGCTTCTCCGCAT
CTCTCGTTCAAAAAAAGGACGCCTCCGGGATGCCGCGCTTTGCAGCCCAC
CAGCCCATCGCGGCGGAAAGGTTCTCCCAGCATGCGGAGGCAGCACAATG
TTGGCCACCATATACCTACAATAAGTGGTGACGTAAGCTGGGCCAGTGTC
AATTTGCTTTCTGATAGCAGCCTCTGGTCAGAGTTGGAAGGCGCACAGCA
ATCATCTGTCGTGTTTCGCGCTCTCTCCTCGGCGCTTAGCAATATCGGCC
GATGACAACGCGCTGGACGCCTGAGCGTCTCGGGACAGCTTTTGCAGGAG
AGCGGCTTGGCGTTGTCTATCAATGAACGAGTCGCGGTCAGCTGCCCACA
GGCGATGCGTGTGCATGCGTCCCTCGACGAAGTGGCCGATTTTCATGCTG
GGGTGTATTCAAGCCCATATTTTCATGCCGGGGTGTATTCAAGCCCATAC
TTCATGCTGGGGTGTATTCAAGCCTAACAACGATGGTGGAGTTGAGCTCT
CTCTCGCGCTCTCTCTCCCCACCTTCGGTGCTATGCCGCTACCGGTGTCA
TTTTGATCGATAAGAACACGATTAGCTTCGAAAGTAGGTGGGCCGTCCAC
GGCAAACTGCGCCTTCCATGCGGCAGCACGCCGTACCTAATACAACCAGT
TGTCTATCGTTTGCTGCCGTCCTCCATCTCGAGAGCGAGCCCGCACGTCG
CACTAGATAAGCGTGTTCCAGTGGCCACTGTGTTCTATCTGTGTGGAGGG
TAAGCCTTGAAGCTCAATGGTAGACTCTGCCAAAGCCTGAAGAGATCGTG
TGGAATCGGCGAGGCCGAAGCATCCAGCAGCCGGATCGAAAAAGCCCGGC
ATTTCGGAGGCGGGTGAATACGGCGCTGGTGTCGCAGTCTTGGTCAAGTT
GTAGACGACGATAGATCCCTAGAGCGCTTTTTCGGCGCGCACACAGCTGA
CGGCGCGATGATGAACGACGGTGGAGATGGTGGTGATCCCGGCCCCGAGG
CATCGCGATCTGCTTCTTTGCAGCTTGCGTCTGCAGCGCAACGGGGCTGC
TTTCACACATGTCTCGTTGTTCACGTTGAGGTGTGAGATCGAGCCTCGGT
TTATCTCTACCACACGCGGATCGACGCTCATTTTATGAGGTCTTGCGACA
TCGGAAGCACTTTAGCTTTCCGGAAACCCTCTTGAGTTGCAAAGGTTTGC
TCTCTCCTCGTTTAGAGGGCCCGACGGAAAAAGGATGCTGTCGCTGCAAA
TGGTCAGTATGAAGGCGGAGTTCAGATATGTGCGGCACCAATTTTTAAAA
AAAACTAGAGAGATGACTAGGAGAACCGAAATCCAGCGGTGAACGCACGA
TTCAGTCATCGGGCACCAGAACGCGTTATCACGCGAGACACGCGAGACGA
AAACGCGACGTGGCGCTCAGGCATCTAACTCTAGCTATCCATTCCCCTAT
ATATGGAGCCAACTTTTGCGACCCCGCTTTATTCGCGGCGGACAAAGTAG
TTGGCATGCACGGCAGTGGTAGTCGCTGGCGAAACCCCCCCACTGCCGCT
GTCAAGCAAAGAACAACACACGTTCGGTGCCAGAACCGTCAAATTCGCCG
GTGCCGAATATCTTCCACTCGTTTGTTCACCATCGCCATCCATCATGGTC
TTTCTCGTACAATCGCCACCGCTGTCGGGACACGAAAATCACGGACCCCA
TCGTGAGGGCAATTTTTTTTTTTTGGAGTAGCAGGGGAGCACGGCGAACC
TTCGCTCTTAGAATCTTGAAGATACTCCCCGGCACTCGAAAACGAAGAGA
AAAGTAAAAGCGAGGTACGCTCAAAGCAGGGATGATTATTACGTTTATCA
GAATGTGAGATGTGGAGGTTGTGGTGGTAGCGGTGTTGTCGTGTCGCTAC
TCGTTGCGCACTAGACGGTACTTGTCTATTCCCAATCATACTTGAAAGAG
TTTCTCGAGAGTTGAACGGGTCGATGAAGCGAAGGCAGTTGCTCCTTGGG
GGGCGCTCGCTTGCAGCCTCAATGACATTTTTACTCCCAGACGCACGTTT
TGAACGGAGGGAAGACGCCTCGACAGGGCAGCAGCACTGTTGTTGGGGAT
CCTCCTGCCGGTGCCGAAAACCTTGTGACCTTCGACAATGTGCCAAGCAG
GCGTTGCTTGCATCTGCACTGCCCCCGTGCGTTGGCCAATCCGCGATCTG
ACGAACCTAGAAGCCAACCCGTCACCTCATGTCATCTCGTCTCGGAACTG
TTCCCGTCACTATGAAACTACGGCTGGCCCGACCGCGCCTTCGATTCGCA
CCCGTCGAAGATTCGCCGCTCATCTCCTATCATTACCCTTCGTGTTTGTT
GCGCGCTCGCCTTCGCGGCTTGTTGTTCGTGTCCGCCCGTCGCGTGCGTG
TGCTCGGGTACTACTCGCCGTCATCGGCACCGGCGGCGCCGACGGCTGTG
ATTTGGGGCGGCAGGCTCCTGTTTCTCCCGAGTCTGGCGGGAGCGTTTTT
CGCGCCTGTCGGAGTTCTGTCCTCTGCCGCGCGGCTCCCCCAGGCGTCCT
CGGCTTCTTCGACTTCGCCCGGAAGAGGAGACCGCAACGTAAGAAAAACA
TCAACACTCACATTCTAGTCACAAGTCGTCAACAATCGCACAAGCCTAAT
TCTCAAAATGAGCTGCTGCATGAAGTCGAGGGCTGATCCGCTGCATATGC
GAGACCAAGATATGAGACAGCTGAAACTTTAGGCTGTACGGCGGGGAGGT
CACGGGTTGATGGCGACAGCGGGGCATATGATCAGAAATGTCAGATACTA
AAACAGGCCTTGGCGAGCAGTTTGTGTTGTTCACGAGACCAAATTTTTAT
ACTACACCTGCATTTGTCTGATTCACGACCTGAGCTGCTGCTGGCCTCCT
GCGGGTACGATCTCGTGCCGTCGGATCGAAAAGGGCTTCGAAAAGCGAAC
GTCCTCGCAGCCCACTCAGCGTGGAGTGCCCTACGCCAACGTGTGCACCA
CCGCGCTGTTTATTTTTTCGCGTGTTTTGGGAGAGGAGCGGAAGTATTTC
GCTTGGTCGTCGAGGGATGCGTGTTTCTCCACCAGCGGGTCAGCGGAACA
ATCGCCATGATCGCTGGCGGAGATTGAGCGACTCCGAATCGGCTTCGGAA
CAGCTGGTTGAAGACCCAAGGAGATGGAAAGAGAGACAGTTTTCTCAGGA
GTTCGACTGCACAGGAGAACCCTCGATTCCATCCAATTGCACGTCGGCGC
TCTGTGATGTGGTGAAGATTCTCGTCACTCGAGATCGGAATCGCTTGAAG
AATATGCGGGAAGAATATTGTCGATCGCTTACTCGCACAATCCACTATTA
GGATTGGTCCTCGCGAGTAAACCGCGTTGACGGGTAATCCAGATGGTTTC
GCGAGCCGAATCCTAACCTGCTCGCCGGGTACCCGGATCTCGCACGGGTA
CCCAGGTAATGTCCAAATACTCGGGTAGCCGGGCGGCACACTATCTGTTT
CCAGCCGTTTCGTGGACGTTGAAGTGAGAGGATACTGGGTACGTGTGACC
TGCACAAGGGCTGAACATTACACAGAACGACCAAATCTTACTTGCCACAC
ACTTGTGGCCAGCGTTCGCCTCTTGTGTTGCTTTCGCAGAGAAAGTTACC
GACACTTGCGCGATACGGAAGACAATATGTATGAGGATTGCACGATTGCA
CTCTAGAACGTCCACACGTGTTCCAGCCTCCAGAAATATCGCCTCTTTTT
ACTGTTTTTTGCGGTAGTCGTCTCGATCACGGAGCCCCTTGGCTCGATTA
GCCGCAGGAGTACACAGCAATCTTGCAACGTCTCCGGCTGTAGAGCAGAC
CAAAGTTTCAAGTAGCACTTTTTGAGATCCTCTGGTGCAGCAATGCATAC
GCTGCAAATCTCAGGTGGTTTGGACAACTCTATGGGGGCGTGCATCTGCT
CTAAACCTGTCTGGCAAGGGCTCAGCTCTTCATCGTGCAAACTTGTCGTG
CACGCATCCGGCAAGGGGCCTATCTCGCAACAGCACTGATGCCCATATTT
TTTGGTCGGGAACAGGTGACTTTCAACATCGAGTACGGTCATGACGGTGC
ACACAAATTTTGGCTATCTTTTTTCAGCCCTACTGGTCTGCATCCATCAT
GTTGCCGAACGCCAGGCGATTCGGACAATTCTAGGTTGGCGGCCAAGTCA
CGTGAAGGTTGTGCATCGCAAGCGAAAAAATCAGAGGTCAGAAAGCAACA
ACTGACGTTGTGCGGCGCGAAGGTGTGCCATTTCTCATCGTTTCGGAAGA
AAGTATCAGGGCGTATATACTGCGAACGTAGACCATGAGTGTGCCGGGGC
GGCCTGCTACTTCAGCGGCAAAGTTAGGTCCAGCGTGGTGAGAACCGCCG
ATGGACAGAATTGTGACCCGAGGTGGCCTCGGCAAAAGTCACCATTGGAG
GGGGTCCGCAACATCTTGATAGTATGTTTCGATTTTTGAGCCGACATTTC
TTTTTTGTGTGAGCTTTGGGCTAGGACACGTGTGCGGACACCCGGGGTTT
GGCCATTTTCGGTCTACGCAACGTTATGTTTGTAGGATGGACCACGAGGT
ATCCCCCTTCATTGTCCTAGTATCCGGGTAATCCGAGTACCCGAGTACCC
GGGTACCAGACCTCAAATACCCGGCTGGATTTGGGTTGGACTCGTGCCCG
GATCGGGTATCTGGACGGCCGGGTATTTCCGACGATTCCAGGGTAACTGC
CCGCCGAGGACCAATCTGACCCTGAAAAAGACTGTTTTGTTTTGTCTGCT
TGGACTGTTTTGCAAGGACTTCCCCTGAATCTGCCCCCCTCCGCCCGACT
TTTCCGGCGAGGTTCCCGCTCGCCCTCCCTCACGTTGTTTTGCCCCTCGC
ACCTCCCCCCCGCCCCTGACGCGGAAACAGCGGAAAGGTCCTTCGCTGGG
AAACGGAGGTCACCAGCAGCCTATTCAGAGCGGCAGCGGCAGCAGCGGTA
AATCCGGGCGGCTGTTTTCGATCTCAGGAGGAGGCGGCGGCGGCGGCGGC
GGCAGCGCCGACGACGACAGCGGAAGCTCCAAGAGCATGTCTCCCCCCGA
CGCCGGCGAAGTGGCGGACGGGTCTCCGCTCCTGCCGTCGCCGTCGTTGT
CTGCCGGAGCAGAGGCGGTAAAGGGGGAAGGGGGCGACGCTGGGGGCGGC
GGTGGGAAGGGGGGGCCTGCGGCGGCGGCGCCGAAGGTGGGTGGGGAGCC
GGCGCTGATCAACGTGGCGAAGCTGGAATCTTCTTCAGCGGCGACGTCGA
CCCTGTGGAACGTGCCCAACATGCTGACCATGGCCAGAGTTGTGGCTATT
CCGGTAAGGAGACAAACAACTTAATCGTCGCATCATAGGTCCACGCTCAC
GAATAGGTTTCTTTCGTCGCCAGCGGGGGGGATAACGGACTCAAGGAGGG
AGTGTGTGCCCTTCTGTTGTTGTTGCCGAACTGTCGTGGTCCTGTTTTAG
GACTCGACTCTTCATGTGAAGGTTGCCGTTGGTGGGGGGGCTAGACTCTG
CCCATCTGTCTGGTCAATTGACGGCTCGCAGCAAGGCATCGAACGGCCGT
TGAGAAACGCTTGTGTGTTTTTGCGGCGTTTGATTATGTGTGCACGAAAG
TCCAGCCCTCCGACCTTCCCCCTCCCCCCGCGACTGCCCGACGTGCTGAA
TTCCAACAAAGGAATGCACGCAGCGTAGAACAAGTAAGGGCACTGATGGG
GCAAACGGGAGAGGAAGAGGACGTTCAAGTAGCAGGGGACAGAGTAGTCG
CAGGATGGGAAAACATTGTGAACACAACCGCAGAGGAAGTGATAGGGAAA
ATGATGGTCTGGTGTGGTCAGGCGGTTAAGTGCTGGGACGAAGAGTTGAG
GGAAGAAATAGGGGAACGAAGAGAACTGTTTAAGCGACACATGGATGAGA
AGACAGAGGAGAGTTGGGAAACCTACAGTGCCAAGAGGAAACATGTGAAT
AGAGTAGTGAAAAAGAAGAAGAAAAGCATCTGGGACGAAGTGGTGCAGGA
AGCGAACGGGGGGTTGGAGGGTAGCGTAAAACAGATGTGGCAGGGAGTTA
ATGGATTGGTATAAAAGAATGAGGATGGAGGGGAAGCAGGAGGAGCAACA
TCGCGAGGCGTAGACGGTAAACTAGTCAGCAGTGGCAAGGGTAAGAGGCA
GGTACTAGCAGGACACTATAGGAGACTCGGGGTGCCGTCGGAAAAGGCAG
AATTCGACCAAGTATTCAAGGAAGGGGTAGACGCGTGGGCCCAAGCAGAA
GAGAGAGCTTCGATGGAGGAAGTTGGGTATGCGGAGCTCCAATAGAAGTT
CACCAAGGAAGAGGTTGAGAGTTGTGTGAAGAAACTGCAGTGTCACAAGG
CCGCAGGGGTCGACGGGATAGTGAACGAAATCATGAAGTGCGGGGGGGAG
GGGATGGTTCAGATGATGGTGCTGTTGTTCAACTGGATATGGGAAAACGA
AAACTCACCGCGTAGATGGAGGGAAGAGGTGGTAGTGAACCTATTTAAGA
AAGGAGATAAGACTGACCCAGGAAACTATAGGGGAATCACCCTGTTGAGC
ACAGTGGGGAAAGTGTTCTTTAAGATCCTCAACAACAGAATAGTACGAGT
ACTGGAGATGGAAAAGAGAATTAGTGAGGGCCAAGCAGGTTTCAGGGAGG
CTAGGGGGTCTGGAGATCACCTGTACACGGTAGGGAGGATCATGCAAGGT
CGGAAGAGGGTGGGAAAGCCGACATACTGCGTTTTCCTAGACGTTCAGAA
AGCGTATACAGTATGGAGAAATGGGCTCTGGAAAAAGTTGGCGAAGTATG
TGATAAACGGAAAGATGTGGAGAATGATTAAGAAGATAACGGAGAGCACG
AAAAGCGCCGTGATGTTAGATGGAGAACTCTCGAGATTCTTCGACATTGA
GCAGGGGGTCCCACAGGGGTGCACAATGTCACCAACGTTGTTCCAGGTAT
TTCATCAACGACTTACTGAAAGAGGTAGAGGCGGTAGGGAAGGGAGTAGA
AGTAGGGGAAACCTCGGTATCGGGACTGCTATTTGCTGACGACTTTGTTG
GGATGTCGGACACGCCTGAGGGGCTCCAACCTCAGATTAACGCAGCCAAG
GCCTATGCTGATAAGTGGAGATTCTCGGCCAACGTCCCAAAGTTTGCCGT
AATGGTATGCAACGAAGATGCTGACGAGGAAGTAGGTACCAAGTGGACAT
GGGGGGACAAGGAGCTGCCAAGAGTGGAAAAATACACATACCTTGGAGCA
GAGATAGCAAAAGACTGTAGATGGGATGCACACATGCACAAAATAGCGGA
CAAGGGCAAAGCAAGGGCAGGGAAGTTGCACCCAATCCTAGCAGACCGGC
ACCCTTGATACACGCGTCAAAATGACCATTCTGAAAAGTGTTATCATCCC
GCCACCAGAATACGCGGGAGAAGTTTGGGAAGGGAACAAGAAAAAAGTGG
CAGAGTTGGAGGCAGCGCAAATGAAAGCAGCGAAGATCATTCTAGGATGT
GCTCCCAGCGCACAAGTATCGCAGCGGTAAGAGCAGAGTTGGGGATTAAC
TCCTTAAGAACGGGAAGAGACAGCAGGAAGTTGACATGGCAATACCGTAT
GGAAAACATGGGAAAGGAGAGGTTACCGAGAATAGCTTGGGAGGCGAGAT
GGGTGAACAAGGCCAAGGGCAGACAACCCATTGAGTGGGCTAAGGTCGTA
CAGGGAGAGTGGAGTGGGTTAGATTTTGACGAACGGGAGAGGACGGGAGC
GGAAAGCTTAGAAGGGTACAAGAAGAGTATCTCAGAAGCCTTTGAAAATA
GAGAAGACTAGAGCTTGCGGAAAGAGACAAAGGAAAAGGAGGTTCTAGAA
GTGTACGGAAGGCTGAACGAAGGAATAGGGTTCAAGGAGTTCTGAACGGA
CCATTGGATGAAGGGACAAAAATGAAGGTCAAATTTAGAACGGGCGACAT
TGACCTACGGGAACGTAGAAGGAGGTTTAGGAAGGTAGACGACGACGAAG
ACAAGCTCAAATGTGACTGCGGCGCCGAATGCGAAGACCTGGTACATGTA
GTTGCGGAATGCCCGTTATACGATCAGGCGAGAGAAGGGTTCATGGCTGA
GCTGGAAAAAGTAGACAGTCGGTATAGAGAGAAGTTTGAGGCATGGAAGA
AAGAGGAGAAGACGGTAGCGGTACTCGGGTGTAAGATGTGGCCCAGGAAA
GACAGGAATAAAGTAGACAGGTTAGGGAAAACATTTTTGAACCACCTTTG
GCAAAGTAGGAAGGAACGATTGGCCATCGGTGATCGGTCCTGCGGGAACA
ATGCTCCGTCCTCTCAAGGACGCGTGGTGAATGGTCTAGCAACTGAAGCA
TGCAAAACATTTGTACCCCCCGCGACTGCCCGGCCTCTGCATCCGTCACA
CTCTTTGCGGCTCTTCCTTCCCTTCCCCCGACGCGCGCGTCCATTGCTTG
GGTTTGGGCAGGCATCCTACTTTACCGACGCTTTTCGGCGCGCAGGCAAC
GACGTGTTCGAGTGTGCGTGTGTCGTGCCGGGAGGGCGGGTGGAATTTGA
TGTGCCCGTTGCTAGGTGTTGCTTATGCTTCCTTTCCATCCAGTGATGGG
TCTGTTTTGGGAACGTATTTCCAGTCCGAGTTGGGTTCGGCCCACCAAAG
GACCCGCTCGTACGGCAAATCTTACCGAACCACTTCGTTTTTGTATCGAG
CGAAAAATCCGTCTCCGCCGGGCAGTTCAAACGCGGTCGCTGAACTTCAG
GGAGTTCGCGCGCTGGGGCCAGTCTATCTCCGTCGGGTTCACGTGCCTAG
CGCTAGCTCGTCGAGCACATGGTGGGAGGGCACCCGAGCGAAGTTTACGT
CCGTTCTTAATGCTCCCTCCAACTCGAACTAGAGCGAAAGCCAGGTGAAG
ACCTCGACAATTGAAGGATAAACGAAATCGCGAACGACGAAACCTCGGCA
GGATTCGGCAATTCACAACTCACCATCAAGCTGCGGGCCGTGCGCTCCTG
TTTTGGGCCGGCGCGGTAGTGTGTTTGCGGAAGGGGTTACTTGACGACGA
CCTTGCCAAAATAATTTAGAAAATGCGTAGTCAGACATTGGCCGCCCAAG
GTTACTCAGTGTCGTGATGGAGCAACACGTACCAGCATATGGTCCAGAGC
GACCGCGGTCTGTCAGTGCTTGAATTGGAAGAGATTCGTCAGGCTCCCTC
TTCCCCATGTGTGTCACGACGACGCGGCAGGGCTGGACGCCCGCCCGTCC
AGAGTAACATAAGCGGCTCAACGTGTGATAGCGTTGAACAGAAACGCGTT
TTCACGTATTCGCGTCGATTTGCCGCTTTTTTCTACGTGCTGTTTTCGCC
GTGGTGTAGGGTCGTGTTTTTTTTTTTCTCATGTTGAGACACTTGCTGGT
TGCGCGCGAAAGCCTTACCGCTAGTCGTTGCACGGATTAGTCATGCCCTT
TGCCTTGCACCTGACCGGGGGATCACCCCCAAGATGTGTTGGCCGGTATT
CATGAGTCACCATGTGCTCAGGTGACCGCTGTACGTGTCCTTGCTCGTCT
GAGCACTCTCATTTTTCGTTCCTGCCTCTGATCTCCCTCTGATCTCCCTC
TTTGGCCGAATTCAAGTCTCATGCAGCGGATTCGTCCACGGCTCGCGCCG
TTTCCGTTTCGATTTATTGTGCTGGCGTGTGTTTGAGGAAGGATTCTTCG
GGGCTCTTGTCTTTGCGTGCGTGCCGATCGCTCGCCTCGACCCGCTTGCG
ACCACCGAACCATCTGTTGGTGGTGCCTCTCCTCGAAAAGAAGCAACGAC
TTTTCCCGTTTTTGGAAGGGTCCCCTTGGATGCACCGTTGACGTCCAAAA
TGAGTGAACTGAATTGCACAAAGCAAATCCACTGAACCCCCCCTCCGCCC
CCCGGCTAACATTCCTCCATTTCACGTTCGCAGATTTTCGCGACTATTTT
TTATGCCGCCCTTCCACGGCGCAACATCTGGTGCTCGTCGATTTTCGCGG
GGGCGGCGTTCACGGACTGGTTGGACGGGTACATCGCGCGCAGGCAGGGC
ATCGTGACGCCGTTCGGCTCCTTCCTGGACCCCGTCGCCGACAAGGTAGT
ACCCTTTTGTTCGCTGTCCTTCATGCACACCTCCCAATATTTCATCGCTT
CCTGACCACGTTCCCACCGCCTCTGTTTTCCTTCTTCTGGGTGTGAGTAT
CGTATACGCCCGACGTCCGTGCGCATCGTTTTCTCTCGCTTCCGGTACCA
CGTACTCGTGGTTCTGTTGTGCACCTATTTTTCCGCGTCCCGGGCTTTTT
CGATCGGTCTTTTGGTCCAGGTCTGCTGGTGTGGACGCCGTTGCCGCTTC
TGACCCCCCCATGACATATGCTCCGTCCTCTCGAGGACGCGTGGTCAATG
GTCTAACAACTAAGGCATGCAAAACATGAGTACGCCCCCCATGACAGTCG
GTATAGAGAGAAGTTTGAGGCATGGAACAAAGAGGAGAAGACGGTAGCGG
TACTCGGGTGTAAGATGTGGCCCAGGAAGGACAGGTATAAAGTAGACAGG
TTAGGGAAAACATTTTGAGCCACCTTTGGCAAAGTAGGAAGGAACGATTG
GCCATCGGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGACG
CATGGTCAATGGTCTAACAACTAAGGCATGCAAAACATGAGTACGCCCCC
CATTGCCCCCTCCCGCTGGCTCTCACCTCGGTGGTTGCCATCGGGATTGG
GTTTTCGTCGCTTGGCAACGACGTTGTAAAACAAGCCAATTCACTTCTTG
AACTCGGCAACCAGGTTACCTTTTTTTTTCCTCTGTTTTTTTTTGCGGTA
ACCGTAATGGTGGTCGAGAAGATCATGTTGTGCGGGGTGGAGAACCCTCA
CTCCGCGTAAGGGGGATGATCGCACCACGTTGTGTTAAAATGGACAAGCA
CCCTCGAGGCAGTTACACAGTGCTTACGATTCTCTCTGGAAGTGAAAGCA
CCAGAAAATAAGTTAAGCCATACGCAGCTGTCATCCGTATGCAAGGAAGT
AAGCACAAGATGCCGAACACCCTTAGCAGGATGCAGCGCACCCTTCATGC
GACTCGCCGAACACCTCACGGAGCTTCGCGCTTGGTGTTGTGAGAGCCTG
GTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTAGGGATGCGAGG
TCAATGGTCTGACGACTACGGCATGCACGACTATGAGTACACCCCCCCGT
CCCTTCGCGTATCGTTTGCGGGTGCGCGCGTTAGTTGCTGGTGTCGACGG
CGTTGATACTTCTGTCGGAGCGGCTGGGACCTTGGATGACCGTTTGCTCC
GCGATCATCCTCTGCCGAGAACTGGGGGTGAGCAAGGAGGCGTTATCACC
TCAACAGATGACTGGCGACAGCGCCCGCAATGTTTTTTCCTTTGTCTGTG
GGTCTTCCCGAGGGCCGGAAGAGAGAGTGCAGCCGTGATCGTTTCTTACT
GCCCAGGTGGACCATGCGAAAATGGCGTAATATTATGTCCCATGTGCAAG
TAGTTGGTGTGTTTGACCGTCTGTGGCTAGCTTCTGGGGAAAAATTGCCC
GATGTTGGTGCCTGTGGTTTTCGGCTGAGGGGCATATCTGCGACTACCGA
GGTGTTGGAAGACAAAGCTGTTTTGTGTACATTTTGGCTGTGCTTGAGTG
AGTGCCCGCACACCTCGGCGCCTCCATAATTGCATCGGCTCGGGGGGGGC
GTGAATCGCGTCTTGAGGTGACTGCTGCTGTCTCCGGGCTGTGACGTTTG
ATGACTCTTGCACTCGCCTCGCCTTGAAGCTCGAACCTCGCGATTCCATA
CGCACGACATGAACGTACTCTTCACGCCTGGTGTTTGAAGTTCGTTGCGA
GTTTTGGCGGGTTCGCGCTCTGTGTTTCCCCTCCAATCATTTTCTCCCGC
TCCCTATATTGATGTGTTCGCTAATTCTTGGATCTCGCTGCGATCCTCGT
ACTTCTCTCTCCTCGTGTGTGAGACGTCTAGCAAGCATGCTTATCTTCCT
ATGTTACGATGTGTGTTCTCAGATCAGTGCGCTTCGCGAGTGGATGGCGC
AGCTAGGGCTTAGGGAGACGGTGAAAGTCGGGAATGCCGGGAAATGGAAA
ACCGCCACGCAGGTAAGCAACCTCTCCTCAGCGAGTGCGGTTCTTCGCTA
TTGGCTTTCAAACAATGCGAGATCATAACAACCACTGCGAAGTATAAAAC
AAGCTGAAAAGTGAAAGTCAGGGGTTGAACACTGACAAGTTCAAGAGTTC
AAGGAGTCAAAAGCAAAAATATTGAAGCAAAGCTTGAGAATACGTGGAAA
CCAAAGATGTTTGAAATCAAGGTCGGGAACGCAAGCTAGTTGAAGACCGC
CCATCAGGCAGGCAAGATCTCCTCCTCGCAAAGTTTTTTTTTGCGGGGGC
GGGTTCTGGCTGTGTTTTGCGTGTATGTGTTGGTGTACTTTTGGTTTTTT
TCGTGCGATTCGGTCCGTGTCTGACTTTCCGAAAGCTTAAACACTGCCCC
ATGTCGCGTCTCTCTCTGGTTGACCATCAGTCGTGTGATTAAGCGTTTGG
CACTTTTGGAGCATGTGTCTTCGTGACTGGTGCTTTGAACTTCGAGTGGC
GTCCGAGGAAGACCCACTTGTCGATGATGTACTCCGTCCAAACCATCGAA
ACCCTTAAACTTAGAATCTAGCCGCGCCATGCGCTGAATGCCGTACACTC
TCAAGCGTAGAGAAGTTGGAAAATGACGCCCGTCTATACCGGCACACCGG
CGCCACGTGTGTGCCTTGCCGGCTTGTAGGTTTCTCGTCGTGGAATTTTG
TGTGTTCAATTCGCCGACGTTGGCTTTTTCAGTCGCACTTGGTTGCATCA
TCGTCAACCACCCGTCCGCTTGTCGCTGTCGTGAAGCAATGGTTGACGTG
AACACAAGTCAACCAAATTGAACTGCACTTCCCTTGCCACTTTGTAAGAA
TACTTATGTTGTATCGTTTTATGGTTTTTTTTTTCCCGATACAGATGATC
GCCATCAGCTTGCTGCTGCTCTTGGAGCCGGGCGCCGCGGTGACGCTGGT
CAACCCGGCCACCTACATGCCGATCGCGAAGGGTTTGCTCTACGTCTCAA
CGGTGCTAACGGTCACGTCCGGGAGCGGCTACCTCAGGGCGGCGTGGCCG
GCGCTCATGGGCAAGAAGACGTAGATTTGCTTCGTTCGCAGGATGATGAT
GTGGGCGGGGTGATTGACGGGCAAATTCTTGCTCATCTGTTGTTTTTTAG
AATTGACGGCGCCGGGTAGCCGTCTCGTTTCCTCTAGCAATATATTCTTC
ATGCTATCTGTATCCCGCTGTCTGAAAATCTTCAGTGATCGTTCCCGTGC
TTGTATCCAATTCTGTCTAATAGTGAATCTCTGTTGGACGTGTGTTTGGT
TCCTCGCCACACCTGCGGTGTGATTTGCTGCACCTCATTGGAGATATGAG
GGGGTGGTTGCGTGGTGACCCTTCCCGCTCAATTGTGTCCCCATCATTCC
CCATCCATGTGCGGTGTGATCTTTCCGACCACGACAAAGCGGGACGCGGA
CGCGAGACACGTGGGTCTCCGATGTCGTGCGTGGTGGTTTGGTGGCGAGT
GGGGGGGGCTACCTTTCTTGGGCCCACACAAGCTCTTCCTTAGGGGTCGA
TACGGAGTTGAATTTTGAGTTCGCCCTGCCTGGCGTGAAACAGATTGCAC
TGCAGGAGTCGAACAGCCAGGTGCGTGCATCTCGCGGGAGGGCACACCCT
GCATCCGACAACGCCAACGGGGAGACATTTTGCTGGCAACAGCAAACGAG
ACAGGGCGAACGCCAAAACAGAAACGTGGCCCGTGTATCTTCCTTTCGGC
GGGCGCTAGCTGGCAGTTTTCTTGCGTATTGATTGCGGGATGTCCAAGAC
GAGTGGGCTTCTGCTCACCGCAATCAAGTATATTCTGTGACGTCAAATTT
GGTCTCATGTGCGTGCCAGGCGCACTTATGTTGCCTTGGCCAGGAGGAGA
CATGCTTGAGAGGCTAGATCGGCGCTTTGAAGTGCTCCCCTGGCACCAGT
GTCCGTCCTCCTGCGTTGGTTCCGAGCTTGTTATGTTTACGTTGGCCGTG
AGGACAGGCGGTTTTGTCCATGAACCGATGTTTGTTCTGCCCCCAATAGT
GCTTGGGGGTGGCGGCGCGGTCGTGCCGAAGTTTCGCCGTTTTCACTCAA
AAGACTTGGCATTTCTCGTGTAGACTATGGAATCAAGTGAACAAGCGTGC
TTTGATACACAGGCTGACGGGTATAACGAGTGATTGCCGAACTATATCCC
GCGACGAACCGACTGAGACTGAAATCGAACCCAAACGACGGCTGGTTGTG
ATTTAGTGAGGCCTCGACGCAATTTTTAGGACGAGCAGCTTGTCTGTGGG
TCCGAATACCCCGTCGACCACATGAACACGCCTGTCTGAGGAATTTTGCC
GCGGCCGCATTCAAACACATAACTGGCGGACACCAAAGAAGCCCCGTCAA
CGTAACGCGAGTTCGAGCTACATTCGCCTAGAGGTGAAAGCGTTTAGCCT
TTCCAAGTCCTGGAACCACGGCCCTTAATCCTACAGCGTTTGCCTGATGT
CTCGTGAATGACAAGCTCGATAAAAATTTCCGCTTTCGTTTGCAGTCCCA
ACCGGAAGTGGCAGTAATTTTTTTTAGACAAGAACGGTTTGCTAATGATG
TTGGCTCATGTCGCTGGACCAGTAAAGCAGGATATATATGGCGT back to topCoding sequence (CDS) from alignment at P-fluviatile_contig8:225207..240400- >mRNA_P-fluviatile_contig8.14307.1 ID=mRNA_P-fluviatile_contig8.14307.1|Name=mRNA_P-fluviatile_contig8.14307.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1584bp|location=Sequence derived from alignment at P-fluviatile_contig8:225207..240400- (Porterinema fluviatile SAG_2381) ATGTCTCCCCCCGACGCCGGCGAAGTGGCGGACGGGTCTCCGCTCCTGCC GTCGCCGTCGTTGTCTGCCGGAGCAGAGGCGGTAAAGGGGGAAGGGGGCG ACGCTGGGGGCGGCGGTGGGAAGGGGGGGCCTGCGGCGGCGGCGCCGAAG GTGGGTGGGGAGCCGGCGCTGATCAACGTGGCGAAGCTGGAATCTTCTTC AGCGGCGACGTCGACCCTGTGGAACGTGCCCAACATGCTGACCATGGCCA GAGTTGTGGCTATTCCGATGTCTCCCCCCGACGCCGGCGAAGTGGCGGAC GGGTCTCCGCTCCTGCCGTCGCCGTCGTTGTCTGCCGGAGCAGAGGCGGT AAAGGGGGAAGGGGGCGACGCTGGGGGCGGCGGTGGGAAGGGGGGGCCTG CGGCGGCGGCGCCGAAGGTGGGTGGGGAGCCGGCGCTGATCAACGTGGCG AAGCTGGAATCTTCTTCAGCGGCGACGTCGACCCTGTGGAACGTGCCCAA CATGCTGACCATGGCCAGAGTTGTGGCTATTCCGATTTTCGCGACTATTT TTTATGCCGCCCTTCCACGGCGCAACATCTGGTGCTCGTCGATTTTCGCG GGGGCGGCGTTCACGGACTGGTTGGACGGGTACATCGCGCGCAGGCAGGG CATCGTGACGCCGTTCGGCTCCTTCCTGGACCCCGTCGCCGACAAGATTT TCGCGACTATTTTTTATGCCGCCCTTCCACGGCGCAACATCTGGTGCTCG TCGATTTTCGCGGGGGCGGCGTTCACGGACTGGTTGGACGGGTACATCGC GCGCAGGCAGGGCATCGTGACGCCGTTCGGCTCCTTCCTGGACCCCGTCG CCGACAAGTTGCTGGTGTCGACGGCGTTGATACTTCTGTCGGAGCGGCTG GGACCTTGGATGACCGTTTGCTCCGCGATCATCCTCTGCCGAGAACTGGG GTTGCTGGTGTCGACGGCGTTGATACTTCTGTCGGAGCGGCTGGGACCTT GGATGACCGTTTGCTCCGCGATCATCCTCTGCCGAGAACTGGGGATCAGT GCGCTTCGCGAGTGGATGGCGCAGCTAGGGCTTAGGGAGACGGTGAAAGT CGGGAATGCCGGGAAATGGAAAACCGCCACGCAGATCAGTGCGCTTCGCG AGTGGATGGCGCAGCTAGGGCTTAGGGAGACGGTGAAAGTCGGGAATGCC GGGAAATGGAAAACCGCCACGCAGATGATCGCCATCAGCTTGCTGCTGCT CTTGGAGCCGGGCGCCGCGGTGACGCTGGTCAACCCGGCCACCTACATGC CGATCGCGAAGGGTTTGCTCTACGTCTCAACGGTGCTAACGGTCACGTCC GGGAGCGGCTACCTCAGGGCGGCGTGGCCGGCGCTCATGGGCAAGAAGAC GTAGATGATCGCCATCAGCTTGCTGCTGCTCTTGGAGCCGGGCGCCGCGG TGACGCTGGTCAACCCGGCCACCTACATGCCGATCGCGAAGGGTTTGCTC TACGTCTCAACGGTGCTAACGGTCACGTCCGGGAGCGGCTACCTCAGGGC GGCGTGGCCGGCGCTCATGGGCAAGAAGACGTAG back to top
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