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Homology
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: D7G3K3_ECTSI (G-patch domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G3K3_ECTSI) HSP 1 Score: 377 bits (968), Expect = 2.930e-107 Identity = 217/285 (76.14%), Postives = 226/285 (79.30%), Query Frame = 3
Query: 2796 GKRSRGFSEGESDRAARAAKTLGGTPSARGLALPETMDAAQEEQLRQQKEMQRLEERVREAAARQAMPGAVPAK---------EGEGERRMRELYEERLREYGELAAVEDENGDADRDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEVEAEEDFEKNKLAEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXXVKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
GKRSRGFSEG+SDR R AK+ GLALPETMDA QEEQLRQQKEMQRLE RVREAAARQAMPGA EGE ERRMRELYEERLREYG+LA DE + +RDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAE AL+VTLQAKGAHH+GQYLPK+EL+RFLKKS KA KGEE EAEEDFEKNKLAEDNIGFQMLKK GWTEGKGLGKEG VKETHEV EGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY
Sbjct: 822 GKRSRGFSEGDSDRPRRDAKSA-------GLALPETMDADQEEQLRQQKEMQRLEARVREAAARQAMPGAXXXXXXXXXXGKPEGEAERRMRELYEERLREYGDLATG-DEKEEEERDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAEGALNVTLQAKGAHHMGQYLPKDELERFLKKSGKAAKGEEAEAEEDFEKNKLAEDNIGFQMLKKAGWTEGKGLGKEGEGAAVPVNMAAGADGAGVG-VKETHEVTEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 1097
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: A0A7S2R910_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2R910_9STRA) HSP 1 Score: 241 bits (615), Expect = 1.810e-68 Identity = 140/249 (56.22%), Postives = 164/249 (65.86%), Query Frame = 3
Query: 2889 ALPETMDAAQEEQLRQQKEMQRLEERVREAAARQ---AMPGAVPAKEGEGERRMRELYEERLREYGELAAVEDENGDADRDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEV-EAEEDFEKNKLAEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXXVKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
ALP MD A QL+ QK+MQ LE+RVR+AA Q MPGA A E L++ER + Y +LA+VED+ RDTVEDAEATGGVIDGGTWEHRKRA+EML TAESAL +T ++G HHL YLPKE+L+ F+K + GEE + DFEKNKL N+GFQML+ GW EG+GLG V THEV +GD+EFEQYRKRMMLAYRFRPNPLNNPRRSYY
Sbjct: 21 ALPAVMDEAARRQLQDQKKMQLLEQRVRDAARMQMGGGMPGAQEADE-------LALFQERKKAYAQLASVEDDR----RDTVEDAEATGGVIDGGTWEHRKRAREMLATAESALELTASSRGVHHLADYLPKEDLEAFMKNAQAKAAGEEAADTGGDFEKNKLDSSNVGFQMLQNAGWKEGEGLGATAQGMVNPVDMRATAGESAGLGVAPTHEVGQGDDEFEQYRKRMMLAYRFRPNPLNNPRRSYY 258
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: A0A836C909_9STRA (G-patch domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836C909_9STRA) HSP 1 Score: 234 bits (597), Expect = 2.560e-66 Identity = 145/242 (59.92%), Postives = 176/242 (72.73%), Query Frame = 3
Query: 2904 MDAAQEEQLRQQKEMQRLEERVREAAARQAMPGAVPAKEGEGERRMRELYEERLREYGELAAVEDENGDADRDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTL--QAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEVEAEEDFEKNKLAEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXXVKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
MDAA ++QLR+Q+E+QRLE R+REAA RQ M GA A +++L+ ERL+EY ELAA DE +DTVE AE GVI+GGTWEHRKRA+EML TA++ALS+TL +AKG H+GQYLP EEL+RFLK + A GE +EA EDFEK+KL E NIG+QML++ GW EG+GLGKEG XXXXXXXX T V D+EF+ YRKRMMLAY+FRPNPLNNPRR+YY
Sbjct: 1 MDAAADKQLREQQELQRLEARIREAARRQMMGGAPGAGAEAKLAAVQDLHGERLKEYAELAARADEEF---KDTVEMAERNRGVIEGGTWEHRKRAQEMLSTADTALSMTLTAKAKGGTHIGQYLPPEELERFLKGAKAAANGETLEAPEDFEKHKLDESNIGYQMLQRAGWKEGEGLGKEGSGASAPVNMAGAXXXXXXXXATATDAVEGDDDEFDSYRKRMMLAYKFRPNPLNNPRRAYY 239
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: A0A7S2BY99_9STRA (Hypothetical protein n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2BY99_9STRA) HSP 1 Score: 235 bits (600), Expect = 1.090e-65 Identity = 133/251 (52.99%), Postives = 164/251 (65.34%), Query Frame = 3
Query: 2871 PSARGLALPETMDAAQEEQLRQQKEMQRLEERVREAAARQAMPGAVPAKEGEGERRMRELYEERLREYGELAAVEDENGDADRDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEVEAEEDFEKNKLAEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXXVKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
P ALPE MDAA +Q + QKEMQ LE R+R++A Q A + + L+EERL+ Y LA + E DA +DTVE+AE GGVI+GGTWEHRKRAKEML TA+SAL++TL K HH+ ++PK+ELD FL K++ GEEV+AE+DF+KN L NIGFQML+K GW EG+GLG VK+TH V + D+ F+QYRKRMMLAYRFRPNPLNNPRRSYY
Sbjct: 73 PRDHAAALPENMDAAASKQYKMQKEMQMLEARIRDSAQAQMSKEAKDLADAQ-------LHEERLKAYTTLAEKDSE--DAPKDTVEEAEYFGGVIEGGTWEHRKRAKEMLATADSALNLTLSGKAGHHISDFIPKDELDTFLNKAEAVTTGEEVKAEQDFKKNMLDASNIGFQMLQKAGWKEGEGLGASAAGIVAPVDMNKKAGEGHGLGVKDTHAVEQDDDVFDQYRKRMMLAYRFRPNPLNNPRRSYY 314
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: A0A7S2R9A4_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2R9A4_9STRA) HSP 1 Score: 241 bits (615), Expect = 2.660e-63 Identity = 140/249 (56.22%), Postives = 164/249 (65.86%), Query Frame = 3
Query: 2889 ALPETMDAAQEEQLRQQKEMQRLEERVREAAARQ---AMPGAVPAKEGEGERRMRELYEERLREYGELAAVEDENGDADRDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEV-EAEEDFEKNKLAEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXXVKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
ALP MD A QL+ QK+MQ LE+RVR+AA Q MPGA A E L++ER + Y +LA+VED+ RDTVEDAEATGGVIDGGTWEHRKRA+EML TAESAL +T ++G HHL YLPKE+L+ F+K + GEE + DFEKNKL N+GFQML+ GW EG+GLG V THEV +GD+EFEQYRKRMMLAYRFRPNPLNNPRRSYY
Sbjct: 492 ALPAVMDEAARRQLQDQKKMQLLEQRVRDAARMQMGGGMPGAQEADE-------LALFQERKKAYAQLASVEDDR----RDTVEDAEATGGVIDGGTWEHRKRAREMLATAESALELTASSRGVHHLADYLPKEDLEAFMKNAQAKAAGEEAADTGGDFEKNKLDSSNVGFQMLQNAGWKEGEGLGATAQGMVNPVDMRATAGESAGLGVAPTHEVGQGDDEFEQYRKRMMLAYRFRPNPLNNPRRSYY 729
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: A0A6V1MSH4_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1MSH4_HETAK) HSP 1 Score: 211 bits (538), Expect = 8.730e-59 Identity = 117/199 (58.79%), Postives = 143/199 (71.86%), Query Frame = 3
Query: 3036 RMRELYEERLREYGELAAVEDENGDAD-RDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKG--AHHLGQYLPKEELDRFLKKSDKAVKGEEVEAEEDFEKNKLAEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXXVKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
R++EL++ERL Y ELA E G+ D RDTVEDAEATGG I+GGTWEHRKRA EMLKTA+ +L +TL AKG AHH+GQ+LPKEELDRFLKKSD A +G+ +E E D+ KL N+GFQML+K GW EG+ +G + V+ THEV + D+EF+QYRKRMMLAYRFRPNP+NNPRR+YY
Sbjct: 14 RLQELHDERLSHYQELARRAAEAGEEDERDTVEDAEATGGYIEGGTWEHRKRAMEMLKTADQSLELTLLAKGQRAHHIGQFLPKEELDRFLKKSDAAKEGKALE-ESDYADKKLDSSNLGFQMLQKAGWKEGEAVGGKKEGLVEPVNMHKPAGEGAGVGVQATHEVDQDDDEFDQYRKRMMLAYRFRPNPMNNPRRAYY 211
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: A0A812XNS5_SYMMI (Sugp1 protein n=1 Tax=Symbiodinium microadriaticum TaxID=2951 RepID=A0A812XNS5_SYMMI) HSP 1 Score: 187 bits (474), Expect = 2.950e-47 Identity = 113/252 (44.84%), Postives = 145/252 (57.54%), Query Frame = 3
Query: 2895 PETMDAAQEEQLRQQKEMQRLEERVREAAARQAMPGAVPAKEG------EGERRMRELYEERLREYGELAAVEDENGDADRDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEVEAEEDFEKNKLAEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXX---VKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
P +DA Q+R+QKE+Q +E+R+REAA Q++ + ++G ++R L + L Y ELAA +D RDTVEDAE + GVIDGG+WEHRKRAKEML TA +TL + HH+ Q+LP+ E D+FL+K DF +KL EDNIGFQ+L+K GW G GLG EG TH + D+EF+ YRKRMML+YRFRPNPLNNPRR YY
Sbjct: 221 PPVVDARMAAQIREQKELQLIEQRIREAARLQSLMKSAQDEDGALDDPSSSYNQLRTLQGDLLNHYAELAARDD----GSRDTVEDAEQSMGVIDGGSWEHRKRAKEMLATAVKNQELTLATRNKHHISQFLPQAEHDKFLQKKGPTS---------DFSDHKLTEDNIGFQILEKAGWNPGSGLGSEGTASTLEPVSVLGAAQRPDGAGVGTSSTHSAEDNDDEFDSYRKRMMLSYRFRPNPLNNPRRDYY 459
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: A0A4D9D8P2_9STRA (G-patch domain-containing protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9D8P2_9STRA) HSP 1 Score: 186 bits (471), Expect = 3.330e-45 Identity = 125/251 (49.80%), Postives = 156/251 (62.15%), Query Frame = 3
Query: 2892 LPETMDAAQEEQLRQQKEMQRLEERVREAAARQAMPGAVPAKEGEGERRMRELYEERLREYGELAAVEDEN---GDADRDT-VEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEVEAEEDFEKNKL-AEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXXVKETHEVA--EGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
LP MDAA QL++QK +Q LE+++REAA +A+ A KEG E EL++ER Y ELA E + G+A R E+ A GGV DGGTWEHRKRAKEML+TAE AL VTL +KG HH+ QYLP E++R L+ + K G+ + E DF N+L AE ++G QMLKK+GW EG+GLG EG E EG ++FE YR+RMMLAYRFRPNPLNNPRR+YY
Sbjct: 429 LPTVMDAAATTQLQEQKRIQALEKKIREAARLKAL--AEGGKEGGKEA---ELFQERALYYEELAEKEGKGQSEGEAIRAIEAENRRAAGGVEDGGTWEHRKRAKEMLQTAEDALHVTLASKGRHHVAQYLPAGEMERLLQSAGKGGAGKGGD-EGDFAANRLEAETHMGMQMLKKQGWNEGQGLGAEGKTGVKAPVNMQTTGGEGVGVGGXXEEEVGEEGGDDFENYRRRMMLAYRFRPNPLNNPRRAYY 673
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: W7TVU2_9STRA (Splicing factor 4 n=2 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7TVU2_9STRA) HSP 1 Score: 177 bits (450), Expect = 1.650e-43 Identity = 122/251 (48.61%), Postives = 151/251 (60.16%), Query Frame = 3
Query: 2892 LPETMDAAQEEQLRQQKEMQRLEERVREAAARQAMPGAVPAKEGEGERRMRELYEERLREYGELAAVEDEN---GDADRDT-VEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEVEAEEDFEKNKL-AEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXX--VKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY 3623
LP MDAA QL++QK +Q LE+++REAA +A+ A KEG E EL++ER Y ELA E + G+A R E+ A GGV DGGTWEHRKRAKEML+TAE AL VTL +KG HH+ QYLP E++R L+ + K G+ + E DF N+L AE N+G Q+LKK+GW EG+GLG EG FE YR+RMMLAYRFRPNPLNNPRR+YY
Sbjct: 284 LPTVMDAAAMTQLQEQKRIQALEKKIREAARLKAL--AEGGKEGGKEV---ELFQERALYYEELAEKEGKGQSEGEAIRAIEAENRRAAGGVEDGGTWEHRKRAKEMLQTAEDALHVTLASKGRHHVAQYLPAGEMERLLQSAGKGGAGKGGD-EGDFAANRLEAETNVGMQLLKKQGWNEGQGLGAEGKTGVKAPVNMQTTGGEGVGVGGXXXXXXXXXXXXXFENYRRRMMLAYRFRPNPLNNPRRAYY 528
BLAST of mRNA_P-fluviatile_contig68.13340.1 vs. uniprot
Match: A0A7S3MG47_9STRA (Hypothetical protein (Fragment) n=2 Tax=Spumella elongata TaxID=89044 RepID=A0A7S3MG47_9STRA) HSP 1 Score: 172 bits (436), Expect = 2.080e-41 Identity = 112/258 (43.41%), Postives = 137/258 (53.10%), Query Frame = 3
Query: 2976 AAARQAMPGAVPAKEGEG---ERRMRELYEERLREYGELAAVEDENGDADRDTVEDAEATGGVIDGGTWEHRKRAKEMLKTAESALSVTLQAKGAHHLGQYLPKEELDRFLKKSDKAVKGEEVEAEEDFEKNKLAEDNIGFQMLKKKGWTEGKGLGKEGXXXXXXXXXXXXXXXXXXXX-------------------------------VKETHEVAEGDNEFEQYRKRMMLAYRFRPNPLNNPRRSYY*ERGYVCV 3647
AA + A P V +++G + LY ERL +Y ELAA++D+N RDTVE+AE GGVI+GGTWEHRKRAKEML TA +L +TL G HH+ YLP + LD FLK ++ VKG E NK+ E N+GFQ+LKK GW+EG GLG + V THEV D EF+QYRKRMMLAYRFRPNPLNNPR + GYV +
Sbjct: 316 AAGQDAFPVNVASRKGAALLMAEKQAALYLERLAQYQELAALDDDNY---RDTVEEAERNGGVIEGGTWEHRKRAKEMLTTAAKSLELTLLGSGKHHMADYLPPDVLDAFLKNAESVVKGTPSSVNT-VEVNKIDETNVGFQLLKKSGWSEGTGLGAQNSGILNPISSTQGNFNGNSQSSSSGSNTVRAPVVVNGVSITGGSGPEGAGIGVAATHEVNAEDTEFDQYRKRMMLAYRFRPNPLNNPRPN----EGYVAL 565
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 | 282.3 |
| Seed ortholog evalue | 7.3e-73 |
| Seed eggNOG ortholog | 2880.D7G3K3 |
| Preferred name | SUGP1 |
| KEGG ko | ko:K13096 |
| GOs | GO:0000375,GO:0000377,GO:0000398,GO:0003674,GO:0003676,GO:0003723,GO:0005488,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0006139,GO:0006396,GO:0006397,GO:0006725,GO:0006807,GO:0008150,GO:0008152,GO:0008380,GO:0009987,GO:0010467,GO:0016070,GO:0016071,GO:0031974,GO:0031981,GO:0034641,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0044237,GO:0044238,GO:0044422,GO:0044424,GO:0044428,GO:0044446,GO:0044464,GO:0046483,GO:0070013,GO:0071704,GO:0090304,GO:0097159,GO:1901360,GO:1901363 |
| EggNOG free text desc. | RNA processing |
| EggNOG OGs | KOG0965@1,KOG0965@2759 |
| COG Functional cat. | L |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko03041 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | SWAP/Surp |
| Ec32 ortholog | Ec-19_004980.1 |
| Exons | 12 |
| Model size | 4328 |
| Cds size | 2538 |
| Stop | 1 |
| Start | 1 |
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 |
| 1622817088.1499958-UTR-P-fluviatile_contig68:387453..388500 | 1622817088.1499958-UTR-P-fluviatile_contig68:387453..388500 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 387454..388500 - |
| 1693571074.8115501-UTR-P-fluviatile_contig68:387453..388500 | 1693571074.8115501-UTR-P-fluviatile_contig68:387453..388500 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 387454..388500 - |
| 1622817088.160411-UTR-P-fluviatile_contig68:389175..389338 | 1622817088.160411-UTR-P-fluviatile_contig68:389175..389338 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 389176..389338 - |
| 1693571074.8241165-UTR-P-fluviatile_contig68:389175..389338 | 1693571074.8241165-UTR-P-fluviatile_contig68:389175..389338 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 389176..389338 - |
| 1622817088.1721141-UTR-P-fluviatile_contig68:390047..390339 | 1622817088.1721141-UTR-P-fluviatile_contig68:390047..390339 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 390048..390339 - |
| 1693571074.8346868-UTR-P-fluviatile_contig68:390047..390339 | 1693571074.8346868-UTR-P-fluviatile_contig68:390047..390339 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 390048..390339 - |
| 1622817088.182322-UTR-P-fluviatile_contig68:390828..391056 | 1622817088.182322-UTR-P-fluviatile_contig68:390828..391056 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 390829..391056 - |
| 1693571074.8449018-UTR-P-fluviatile_contig68:390828..391056 | 1693571074.8449018-UTR-P-fluviatile_contig68:390828..391056 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 390829..391056 - |
| 1622817088.2921944-UTR-P-fluviatile_contig68:399900..399960 | 1622817088.2921944-UTR-P-fluviatile_contig68:399900..399960 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 399901..399960 - |
| 1693571074.941805-UTR-P-fluviatile_contig68:399900..399960 | 1693571074.941805-UTR-P-fluviatile_contig68:399900..399960 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig68 399901..399960 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817088.1925645-CDS-P-fluviatile_contig68:391056..391194 | 1622817088.1925645-CDS-P-fluviatile_contig68:391056..391194 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 391057..391194 - |
| 1693571074.8553908-CDS-P-fluviatile_contig68:391056..391194 | 1693571074.8553908-CDS-P-fluviatile_contig68:391056..391194 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 391057..391194 - |
| 1622817088.202606-CDS-P-fluviatile_contig68:391846..392161 | 1622817088.202606-CDS-P-fluviatile_contig68:391846..392161 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 391847..392161 - |
| 1693571074.8673189-CDS-P-fluviatile_contig68:391846..392161 | 1693571074.8673189-CDS-P-fluviatile_contig68:391846..392161 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 391847..392161 - |
| 1622817088.2133882-CDS-P-fluviatile_contig68:393166..393250 | 1622817088.2133882-CDS-P-fluviatile_contig68:393166..393250 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 393167..393250 - |
| 1693571074.8751218-CDS-P-fluviatile_contig68:393166..393250 | 1693571074.8751218-CDS-P-fluviatile_contig68:393166..393250 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 393167..393250 - |
| 1622817088.2233598-CDS-P-fluviatile_contig68:393765..394065 | 1622817088.2233598-CDS-P-fluviatile_contig68:393765..394065 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 393766..394065 - |
| 1693571074.8832066-CDS-P-fluviatile_contig68:393765..394065 | 1693571074.8832066-CDS-P-fluviatile_contig68:393765..394065 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 393766..394065 - |
| 1622817088.2338414-CDS-P-fluviatile_contig68:395110..395278 | 1622817088.2338414-CDS-P-fluviatile_contig68:395110..395278 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 395111..395278 - |
| 1693571074.8914776-CDS-P-fluviatile_contig68:395110..395278 | 1693571074.8914776-CDS-P-fluviatile_contig68:395110..395278 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 395111..395278 - |
| 1622817088.247083-CDS-P-fluviatile_contig68:395888..395984 | 1622817088.247083-CDS-P-fluviatile_contig68:395888..395984 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 395889..395984 - |
| 1693571074.899721-CDS-P-fluviatile_contig68:395888..395984 | 1693571074.899721-CDS-P-fluviatile_contig68:395888..395984 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 395889..395984 - |
| 1622817088.2570882-CDS-P-fluviatile_contig68:396320..396748 | 1622817088.2570882-CDS-P-fluviatile_contig68:396320..396748 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 396321..396748 - |
| 1693571074.9077861-CDS-P-fluviatile_contig68:396320..396748 | 1693571074.9077861-CDS-P-fluviatile_contig68:396320..396748 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 396321..396748 - |
| 1622817088.2670019-CDS-P-fluviatile_contig68:397806..398358 | 1622817088.2670019-CDS-P-fluviatile_contig68:397806..398358 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 397807..398358 - |
| 1693571074.9159102-CDS-P-fluviatile_contig68:397806..398358 | 1693571074.9159102-CDS-P-fluviatile_contig68:397806..398358 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 397807..398358 - |
| 1622817088.2797215-CDS-P-fluviatile_contig68:399443..399900 | 1622817088.2797215-CDS-P-fluviatile_contig68:399443..399900 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 399444..399900 - |
| 1693571074.928562-CDS-P-fluviatile_contig68:399443..399900 | 1693571074.928562-CDS-P-fluviatile_contig68:399443..399900 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig68 399444..399900 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig68.13340.1 >prot_P-fluviatile_contig68.13340.1 ID=prot_P-fluviatile_contig68.13340.1|Name=mRNA_P-fluviatile_contig68.13340.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=846bp
MLVNGEPPPPPPRGPGSEASSPPARAALLPTPGTAATSSVPGDPQQRPGV TPGAPGALGPSFLSTPPVAGAGKVMNSLFAPEQDNPSGAPPPPPRRAGEG GGSAPPPPPRMLVRPAADNGAPGEGAVIGIGVPPPPPPRKQSSGLPMDGS GPGGGRDSGRTSPRQQHSPFLRPRSPRGPLGPPGAPHGPLGPPPDRPSMG PYHRNAPPPHSGNRDSRGPPPPGMPPFGAQPMVGGRGGGRGPPSPRHGAN NMGPGGWEPGPGPGGKNMAPGRGGSMGGRGGGSRGNFPPTMEPGSRGGGD GGLGGSGGGGGRRAGSPQSGMPPPRPGSGVCRSFLASGPPHPPGPPPTAP GAEEAGQRPWFPSALGALAAESPHGNNPPPRPPGPPVPPPMGSPPAPPGA PPPTPPAPPVPPALPTLPPPILARPPLLPPPPPPLPPGMSARLPPPPPPP PGAPPLPPGPPPAMPVFADDGNFLAKMLKEQEEEERKKKLRQAEEDRKKA EEEEKLEKERVAHAKRVAAENKRTKRFALGGGFGGGRARAARPKMGNIRG KVIKAFVADSDDDESEEEDGSKDASAKADGSSVSASAASTALNGGSSVGG GAGGTASSAGGSEAASSASGAGQLGVGLGAAVALSQASGGGSELDEETKV MIRQTAEWFHANPDKSKVVMEKSRGNSQFKFLFDASSPGGRFYRQVLEEI KTEEEVKRVCSGFGEANASGYGPAPQDSSNIYGPGAGLAAAAARSAGGGG GGDTALGGATGAGGGQSWSNLGAGGGARGGDGKAAPGGNAAQIVAQISAQ VAMRSASKFGAAPRRPRRPQPLAQPAPARTDGGPGPGAHLRRRRR* back to topmRNA from alignment at P-fluviatile_contig68:387454..399960- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig68.13340.1 ID=mRNA_P-fluviatile_contig68.13340.1|Name=mRNA_P-fluviatile_contig68.13340.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=12507bp|location=Sequence derived from alignment at P-fluviatile_contig68:387454..399960- (Porterinema fluviatile SAG_2381) ACGAGCCCTGCTGCTGAAGCCAAGCTCGCTTGTGCTGCGCAGAAAACGGG
AGCTCGCGAGATGCTAGTAAATGGAGAGCCACCTCCACCCCCGCCCCGTG
GCCCTGGGTCAGAGGCTTCCAGCCCACCCGCTCGAGCTGCGTTACTCCCT
ACGCCAGGCACAGCGGCTACGTCGTCGGTGCCTGGTGATCCACAGCAGAG
GCCAGGAGTAACCCCCGGCGCACCTGGTGCTCTAGGCCCTTCGTTCTTGT
CCACCCCACCAGTTGCGGGCGCGGGAAAAGTGATGAACTCTCTTTTCGCT
CCCGAACAGGATAATCCGTCCGGTGCGCCTCCGCCGCCGCCAAGGCGCGC
GGGAGAGGGAGGAGGATCGGCACCCCCGCCGCCGCCAAGGATGCTGGTGC
GGCCAGCAGCCGACAACGGTGCGCCGGGTGAAGGTGCTGTTATCGGTATC
GGCGTGCCTCCTCCTCCGCCTCCTAGGAAGCAGTCTTCTGGACTCCCTAT
GGATGGATCTGGACCAGGTACGTGGAACGAAAACTTGTGAACAGCAGTGG
ATGTCGCCGTGTGGGAGCCCTTAAATCCCCTCTGAAGTGTAGATCTCTTT
TTGTTCAGCAGCAGCTGCGCGCGGCGGCGGTGCCTTGAAGCATCAGAAGT
TGAGTACGATAGGCATGATTGCTTGTTCGTCGGCAGGGCGTCGTGTGACG
AGAGAGAGGAATATGGATTGTACCCACATCGAGAATCGGCGGACTGCGGG
CAAATAAAGAGTAAAGCATCTGCAGTATGCTTGAACGCTGCTCAGTTCGC
CGTGCGTATCCTTGGAATTAGATTTAAGGACGAGACACGCCGCTCTAGGC
CAATCGATATGCGTAGGCTCTTGGAGGGACCGCCGACAACCGCGGGCATC
TTCCGAGACGTGCGGTGCCAAGTTGGAGAGTCCGGCAGGTGTCCATGGCA
TACCCAGTGGCAAGTCTGTTTCTATCGAATTATCCATAACACCGTCGGTC
AAGTCCAGAGGGCGAGGAACTCGGCACGCGCACTGATCGATCAACTTCGG
CGGGTTCACTTCAACACATCATAAGCCTTTGAGTCAGGGTTGCGTACAGA
GGTCCCCACGTATGTCGTGGGCGCCAGGGTGTACTGATTGCGCCAGTCGA
GATCGATCGATCGTCCGTTCATTTGCCCGCGTAATCGGGAAGCGTTGTGT
ACACTCAGTGCTGTTGCCGAAAAGCAGTGCGTGGTGTTGAACCACGTTAA
CACATAAGAGATTCGGCTCAACTTGTAAGCATGTGTCGTGAGGTGCAAGA
AAAAAAGGAGCAACTTTTATGGCGTCGTATCACGCGGTCAAATACGCGGT
CATTGATATACTCCGGGTCCCCCCCGGCCAGATGTCCCTACAGAACCGTT
GCCCTAGGATACCATCAAAGTGAATTTCATTGTTGTCCTGCAAAAGTGAG
AGTGTCTTATCCGCATTCCGAAAACCCAAACGGCTCAAAACTTTGATGCC
CGTGCACCCCCTCCCATTCACTCTCGCCGACTTCTTTCCCCAACCGCTGA
ATCCCCGCCCATTCCGCCGCTCGAAACGCAATCGGTCCAAATGCTTTCGC
AGGAGGGGGGCGGGATTCAGGGCGCACCTCGCCGAGGCAGCAGCATTCCC
CCTTCCTCCGCCCGCGCAGTCCGCGCGGCCCCCTCGGGCCCCCCGGCGCA
CCCCACGGCCCCCTCGGCCCACCTCCAGACCGACCTTCGATGGGACCATA
CCACAGAAACGCCCCCCCGCCGCATTCCGGCAACAGGGACTCGAGAGGAC
CTCCGCCGCCTGGTATGCCCCCGTTCGGGGCCCAGCCAATGGTGGGAGGA
CGAGGAGGGGGTAGAGGACCGCCGTCGCCGCGGCACGGCGCAAACAATAT
GGGGCCCGGGGGGTGGGAGCCGGGGCCGGGACCGGGTGGAAAAAACATGG
CCCCCGGAAGGGGTGGAAGCATGGGAGGGCGCGGCGGCGGGTCGCGTGGA
AACTTCCCTCCCACGATGGAGCCGGGTAGCAGAGGAGGAGGGGACGGCGG
CTTAGGAGGGAGCGGCGGCGGAGGTGGGAGGCGGGCGGGATCGCCGCAAT
CGGGAATGCCCCCACCGCGTCCCGGCTCAGGTGTGTGTAGGTCATTTCTC
GCCTGTGGTGTTTTGGTACCACCCGCTTGCGTCTGTACGTCGTTCTTCGT
TCGTTCGTCCTTCCGTTGCGTCTCGGCAAGGTTACTTTCGTGTTGCTTAC
GAGGATGGAGCTGCTTCTGTGTTTTGAGCTGTTTTGGCTCTAGCAAGCAT
TTGGATTTCGACAAGGCACACCTACTGCTATCGTTACCTGTTCCCCTCTC
CTCGCTATCCCCTGCCCCCCCGATCTTGGCACGTCACGTGATCCTTTGCC
CGCTTCCAGGGCAGGACGTGAACATGCAGAGTTTGCGCACCCTCGTTCCA
TTGGTTGAAGAGACAGAGAGGGTTGTGGCTTGCTTTCTATCTCACATCGA
TTAGGCTGTTTAGGCTGACCAGATGGCCTTAGTATATTTTCGCGACTTAC
TGGGAGATTGGACAAGGGTTGACTTGGGTTTGACAGCTGTACTGAGTCTC
CCACGCCGACCGAAATGCCTGCGCCAAGAACGATTAAGATCAAGTGGCGG
ATATGTTGGATTTCAGCGCGAGACGAAACGTATGTTCTTTTTGTACTCTC
CGGGTCTGACATGGCGATCGCTCTCGCCGTTGCATCAACGGCGTGTCGAC
ACGTGCGTCAGATTTGTGAGTTGCGGCGAAATATCCTCAATCCCACTTCC
TACAGCCTGTTGTGCCGCCTGTTCGATGGTGACCGATGATACACGGCACT
TTGTATCGTTCGGTTCAACTGGATGTCACTTGATGGGTAGTGTGCGTTGG
GATCCGAACAGTATTTGCATCATTTGCGTACCACTAAACTCAGTTTAACA
TTTTCGGTGATTGTGTGTGTCAGAGAGGGAGAGAGAGAGACGGAGGCAGA
GAGAGAGAGAGAGAGAGAGAGAGAGAGAAAGAGAGCGAGAAATACCATCT
TGCAACAAGCGCTGATCCTCTAGTGTTTTGCAGTCCCACTGCACGGTATC
GAAAGGTACAGCTGTCTGCCTCCCCCGAAGCCGTCCCCCTCCCGGGTGCA
TTGCTTATCGATATTCACACCCGCCCTCCCCTCCCCTCGCTCTTTGCCTT
CTTATGCAGCAGCCGGTCCGCCTCACCCGCCTGGTCCGCCACCGACCGCG
CCTGGTGCAGAAGAAGCAGGACAACGGCCTTGGTTCCCCTCCGCTTTGGG
AGCGCTAGCGGCAGAATCACCGCACGGGAACAACCCTCCGCCGCGACCCC
CCGGTCCTCCAGTACCCCCTCCCATGGGCTCACCCCCCGCGCCGCCCGGA
GCCCCGCCGCCGACCCCGCCGGCGCCGCCGGTTCCGCCGGCGCTTCCCAC
GCTGCCTCCGCCGATACTCGCACGGCCCCCTCTGTTGCCGCCGCCTCCGC
CTCCCCTCCCACCCGGGATGAGCGCGCGGTTGCCGCCGCCGCCACCGCCG
CCGCCCGGTGCGCCGCCGCTGCCACCCGGTCCGCCGCCGGCCATGCCGGT
GTTCGCCGACGACGGAAACTTCTTGGCCAAGATGCTCAAGGTGCTGGGCC
GCGTATTTGTGCGAGGAAGTGGGGAATAGAGAGGGGGGGTGGGGGGGATG
TACTCAATTCACGCATGCCGTAGCCGTTAGGCCATAGGCCTCTCATCCCT
ACTACGGTATCCTGATTGCCTAGCTCACGCAGTGAGTAACATCCTTTAGA
GCGCCAAGCAGCGGTTTTACTGTGATGGCTCTGACTCAGTGACGGCTTGT
ACAAGATCGCCGATGACATGAACCCAATGCCACGTAATCTGCTGACGTTT
GTGATAGCTGAGTTTGTGTGACTCTTTTTTTTGCTTCCGTCTTTGCTCTC
GTGCGTTGCGCGTCCTTCGTCATAAGGAGCAAGAGGAGGAAGAGCGCAAA
AAGAAGCTGCGGCAGGCGGAGGAGGACAGGAAAAAGGCGGAGGAGGAAGA
GAAGCTCGAGAAGGAACGCGTGGTCAGTGTGTTTGTTCCCCCGCATTATC
TCGAACGCTGCCGTGTGTGCCGTACCGTCCCCTGCGATCGCCTACTATCC
AATCGCCCGTGGTGCTCTTGACAAGTACGTTCATTTATGCGCAGGTCGGG
CATTGTCAATTTTGTCACGAGTGAGTGTGAAAACCACAAGATTACGGTAC
GGTCAACTGTTGCTTTTACCCACCCGCCCCCCCCCCCTTAACCTCATCAA
AAATTCTGACATTTCTTGCGCCTGAAGCCATTGACATCTTACGACTAAAT
GGTCGTCGTTCACCTCTTCTAACCCCCCACCCCCCGGCTCTTATCGTAAT
TATTTGTAATTTGACATGGCGAAAACGTAGGAATGCACTTTCGGGAAGGT
GGTCGTACTTCCATCAAAAGGGGGGCGGTGCTCATACACCGCTTTGGAAG
TGGTCAACTTGTGTTTGCGAAAGGGTCACGACCGCTATGCCTACCCAACG
GTCAATGGCGTAACGGCCGATGGTAAGCGACAAATTAAATCATCATCCCT
TTGCCCCGTGCCTCCACCCGCCCGACCACCGCTGTCCCCGATTGTCTCGG
CCTTTTGTGAACGATGGCGAAACGATTCGAAGGCTCACGCCAAGAGGGTT
GCCGCGGAAAACAAGCGCACCAAGAGGTTCGCGCTCGGAGGAGGGTTCGG
CGGCGGCCGGGCGAGGGCGGCACGCCCCAAGATGGGTAACATCCGGGGGA
AGGTGATCAAGGCCTTCGTAGCCGACAGCGATGATGATGAGAGCGAGGAG
GTGAGAGAGACAAGGGAGGAGGGGGGAGAGTCGCGGGGGCAGGAGATATG
TGGATGTGGAGAGAGGAGGGAGAAGAGAGAGAAAGGGGCAAAGAGAGAGA
AAGGGGAAAAGGGAAAGGGGGAGGAACATGGAGGGGATGGAGGTGGGGGA
GGAGCAATGAGGGGCAAAGCTAGCCGAAGGAGAGAGAGGAGGCGCAGCGC
GAGAGGGAGAGCGAGCGAGCGAGAAAGAGGTGGGAGGCAGACGGGGGAAG
TAGTGAGGTAAGCATAGAGGGTGGAGGGGGAGAGAGAGAAACGGAAAAAA
GGGGGGGGTAGGAACATGGGGCAGAGAGGGGAACAGGAGGACGACAGGGG
CAACGGGAGAAGGAGGAGAGGGGAGGGGGTACAGCGAGAGAAGGAGATTA
AGGGAGAGATGTAGGGAGGCAGCCAGGGGAATGGGGAGAAAGGAGGGTGG
GTGGGAGGAAGGGGGCTTTCTACTACGAGTTCTTGCGATCGGTGGGCTGT
CTTCTCGTATGTCTGCTCTGTGTTGTTTCTATTGTTTCTATTGTTTTCAC
ACACCACAGCAGCAACTCTACTCATCAGAGACTGTCCTCCCTCACCATCC
TTGAGGGAGGAGGGAGCAACACTGGTGTTCTTCAGTGTTGTTGATGCCGT
GGTTGAAGGACCAGTGTCACGAGGGAGACGAAACATGCAATTTCCAATTT
AACGGAAACTTGTTGACCAAACGCCTTAGCTCTCAATCTGGAATCAACGA
GCTCTCGCACTCATCGACGTGCCATCCCAGCCGTGTTTCCCTTGCTTTCA
TGTGTTTCACGGCGAGGGGAATGCCTTGTGTGACGCGTAGCTGTTGCTTG
AGAACGGCAGCAAAACATGACGCCGCCAACCTCTCACACACCCCACCCCG
CCCCACCCAGCCTGGCCCTGTCCCATTCTACACCCACCAAACCTAAACCC
ACCCCATCCCACCCCACCTCACACCACCCTTTCCCATTCCGCCCCATCCC
ATCCCACGCTTTCCTATCCTACCCCACACCCCACCACCTATGCAGGAGGA
CGGCTCGAAGGATGCTTCCGCTAAGGCCGATGGATCGTCGGTTTCGGCCT
CAGCTGCATCGACGGCACTCAACGGCGGCAGCTCCGTCGGTGGAGGCGCC
GGCGGCACCGCATCATCGGCAGGAGGAAGCGAGGCCGCTTCCTCTGCCTC
CGGGGCTGGGCAGCTGGGAGTCGGGCTCGGGGCCGCTGTGGCGTTGTCCC
AGGCGTCTGGCGGCGGGTCGGAGCTGGACGAGGAGACGAAGGTCATGATC
CGGCAGACGGCGGAGTGGTTCCACGCAAACCCGGACAAGAGCAAGGTTTG
TTCGATCGGTTATACACTTGCGGCATGACATGGTTTGACGCGGTCGTCCC
AGGTTAGCGCTATCCACTTAGTCAGAGTTGGCAGATTTCCAGCTCGAGCC
GTTGCATCTTGTCGTTGTACGCTTGTAAGGGCCTGTCATGTAATAGGAGG
AGAGATTCGAAAGTTTTCGGGTAAAGCGGGATAAATGCAAGGTGTCTTGT
GTGTCAGTTGGCGCACAAACACAGTGGACAACATTCCCGTGATCTTTAGA
GGAGCACTGTTGTGGAAAGGGTGGGTTCTGTCGTGGGCTCTGGGTAGCTG
GCAAAGACCTTGTCTCCGGCGACGCTAGCAGTGGGCAAACTTGATGAAAA
ACATTAAACTATGGTAGACGTTGGTCGACAGAAGTGGAGTGAAACAGGGT
ACCGATCCGTGAGAGGGAAGTGCCGGAAAGCACGGTCTTCGTTGCTCGGC
AACCGCGATCGAAGCCCCCGCTCGACACTCCCGCCTTTCATTTTCTTGGT
TGCCAAACAGGTGGTGATGGAGAAGAGCCGAGGAAACTCGCAGTTCAAGT
TCTTGTTCGACGCGTCTTCGCCTGGCGGTCGCTTTTACCGACAGGTAGGT
AGGGTCAGGGGGAGGGTAATTGTTCCAATCGATTCGATTCCACGGCGTTA
TTTCATGGTTTGGTGCCTCGTGCTTTGTTGCTTTCACGTATATATTGTTG
CTTTCACGTATTCTGCCTCTGTTGTTGTTATTGTTGTGGCTGTGGTTGTT
GTTGTTGTTGTTGTTGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGT
GGTGGTGGTGGTGTTGGCTGTGGTTGTTGTCATTGTCGTAAGGAACGGAG
TATGAGAGATACAGGAATAAGAGAGATATAGGGATAAGAGAGATATAGGA
ATAGGAGAGATACAGGGATATGAGAGATACAGGATGTGACGGAAGCGAAG
GCAGTGAGAGAGAGAGAGAAGTAGAGACGGAGCGCAATGGCCCTCGAAAA
TTGTGCCGTGGTCAGCTTGTTCAGGCCGTGGATCCTTCCCACGTGTATTT
ACCTTGATGATATAATCCTTTCCATTCGGAACATGAGCGCTATATTAGGG
AATGTATGTCTCGTATGTCTCGTCGTTTGTTGCGATCGATGCAGTCATCA
ACCTCGTCAAAATGCCAGCACTGAAACCCGTGGCGCCAACTTGGGAAGGC
AGTCGACGCTTGCGCGAGGCCTGACCGTTGAAATTCGAAGGATGCTTTTG
GCGTTGAGATTTAGTCACCAATGAGAGGAAAGGAAGGGAGGGCGGATATG
AAGCCAACATGTCCAAAAAAGGGGCAGGCCTATTCACCCGATTCCCGCTG
TCGCTCTCCTGTCGTCGCTGCTGCTGTAGTTGCGGTGCCGTAATTGCTGT
CGTGCCTTGGCCTCAAAACCGTGCCGATCTCTGGCATCTGCCCACCACCG
GAAATCCCCAATTCCGTGCAATACCTTCCGATGAGCGGTTCACTGATTGG
GCCGCACACCTAAACATAACGAGCTTCCCTGACCGGGCCACCAATCTACC
CGTAAATAAAAATGCTGGGCCTGGGCTGCGCTGCTGCGGGGGGCGGCAGG
TTCTTGAGGAGATCAAGACCGAGGAGGAGGTGAAGCGGGTCTGCAGCGGG
TTCGGCGAGGCTAACGCGTCGGGCTATGGCCCCGCCCCGCAGGACTCCTC
GAACATCTACGGCCCCGGTGCGGGACTCGCTGCCGCCGCCGCGAGAAGTG
CCGGCGGCGGCGGCGGCGGGGACACCGCGCTGGGGGGGGCGACGGGGGCC
GGCGGCGGCCAGTCGTGGTCCAACCTCGGCGCGGGAGGCGGCGCGAGGGG
AGGTGACGGCAAAGCGGCACCGGGTGGTAATGCGGCGCAGATTGTGGCTC
AGATCTCCGCACAGGTGCGAGGCAAGGTTTTGGCCTTTGCAGAAAGTTAG
GCTTTCGTTTGTTGAGGACGGGAGCGGGGAGAGAAGGTGTTCGATGGGTC
AGAGGAGAGGGGAGGGATCCATGTGTGGATAGGGAATCTTTACTTTTCTG
CTTTCCAGCCTCTTCAACATTTTTGGGTATCACTAGATGGTCACCCTGGT
TCATTTATTGCGTTGCCTGTCTTTGTTCGTTGTTTGTTTCTTTCTTCAGC
GTGCTGTAGGTTGTAGGCTGCGAAGCAGAGATTGTTTCGCGCTCTTTGTT
GAGGGACTTCGCCGCACGGAGTCCCAAGGCCGCGATCTGAAACTCAATCT
AGTTCGATTGGCGACTACCACAAAGCCTGACCCCTCCTGTTTACGGGGCG
TATGTCGAGTTCGCGATGCTGAAGTCGTGTGGATGGATGTCGTGAAACCA
ACACACCGGGATCGAGTAGGTCTCGTCATGTTTTTATGTTTTTTTGCGCC
AGATCAGATACGAGAAAATGCAGCTGTCGTTCATGATTGGTTCACAATCG
CGCCCACGCACGTGCGTGCGCACTCCTCCAACCCCTCCACCCCCGAACCC
CCGTCCCTAACCCCTTCCTCCCGCTTGACCGACACAATCTCTGCGTCGTG
CGGTTGTTTGTTGAAGGTGGCTATGCGGTCCGCCTCAAAGTTCGGCGCGG
CACCCCGTCGTCCACGTCGGCCGCAACCTTTGGCTCAACCCGCCCCCGCA
AGAACCGATGGGGGGCCGGGGCCGGGGGCACACCTCCGGCGACGGCGGCG
GTAGTCCCTGTTGCGGCAGCAACAGAAGCAGGGGCGGCAGGTGGTCTTAC
GGTGGGTGCTGCCGGCGGAGGTCTCGGCTACAGGGGCGGTGCCGGGAACG
GCGTCGACGCCGCGTCGTCCGCGGCGGCTGCGGGGTTGGTTGCGGCGGCG
GCGGCAGCTTCGACCGGCGAGAAGGCGACCGGCGCGGATGGCGGCAGGTC
GGGCAAGCGCAGCCGTGGTTTCAGCGAGGGAGGTAGGTCATTGTTGTTGT
CGGCGTGGTCGTAGTCGTTCTTGTTGTTGTTCTTGTTGTATCGTCGTGAA
AGGTATGGTGTTGGTGCTGTTGGTGCTGGTGTCATGTCCGTTCTTCCGCA
CCACCTGCAGCGTAGGACCCGGCGAACTGGCACGCTGCCGTCATCGTGTT
CATACTTCGTCACACAGCAGACTACTATGAGGTCCTCATTTTTTTTCGCC
CTTCGCCAATGACAAGTGCCAAACCGTCTGGCAGCTACACCGCCCCCGAC
CCATCGGGTCCACTTGTGGGATCGGCATTGTTTCCGTTCGTTCGCTTGGT
ATGCGTGCCATGTGAATCGAGGACCTTGCCAAGGTTGTTTGGTTGTTGAT
GGGTTGCGTCTGTTTCGCCATCCCGTACCAAAGCGTAGTTCATCGGCCGA
GCGAATAGCTCCGAAAATTGACCCCCCCCACTCCCCCGCCCTTTCGCGGC
CACGCCCCCGACCCACCGTAGAGTCGGACAGAGCTGCACGCGCGGCGAAG
ACACTCGGCGGCACTCCCTCCGCCCGCGGCCTCGCCCTGCCGGAGACCAT
GGACGCCGCTCAGGAGGAGCAGCTCCGGCAGCAGAAGGAGATGCAGCGAC
TGGAGGAGCGGGTGAGGGAGGCGGCGGCCCGCCAGGCCATGCCCGGGGCG
GTGCCGGCGAAGGAGGGGGAAGGCGAGCGGCGCATGCGGGAGCTGTACGA
GGAGAGGCTGAGGGAGTACGGGGAGCTCGCTGCGGTGGAGGACGAGAACG
GGGACGCGGACAGGTCTGGATTTGTGGGGGGCGGGTTGGGGCGACAGCCA
TTTTTTCCGATTGATTTGGCCGATGTCAGTGTGTATTCAGGCGTGCGTGG
GGTTGTTGGTGCTGGCATGGACCGCACGTGCGCGTGTGTTTGTGTTTGTT
ATCGTTGGTTATGTCAATCGCTCTAGCCGGATAGCTATTTTTTTGACGTA
GTGTGTTTGTGTTTGTTGTCATTGGTTATGTCAATCGCTCTAGCCGGATA
GCTATTTTTTTTACGTAGTTGTTCCCAGCGGGCAAGAGCAAGAGCGCTTC
CACCCCTCTTTCGTGTGGGTGTGTTGTCCAGAATGGTGCACTTGTTTGCG
GCGTTGCGTGCGTCTGTTTGTCGCGCTACCCTACCCGAGCTGATGAAACA
TCCGTCCTGCCAGTTTTGCCATACAGCCTAGCGGGCGAAAAACGAAGAAG
ACTGTCAAAGATCCTCCTTTCGTTTTCTGACGCACCCACGCGGTAATGCT
GTTGTGAAAACAACTTAATCATCGGACGGGGCACCGCCGGATGCCAACAC
GGCCGATTTCCTTGAGCAGCCTTCTCCAGCTTATGATCCCCATGGTCGGA
GCTCCTGGTGTTCTTGTTCGAGGGATAGGGTTGCCCTTTCTGTTTCCGCT
GTTTTCCCCTCATCGATGGATTGCTTTCGATTTTCTCACCACAAGCGACC
TCGAATCACCATTACCAATCAGGGACACCGTCGAGGATGCGGAAGCCACA
GGGGGGGTCATCGACGGGGGCACGTGGGAGCACCGCAAGCGGGCCAAGGA
GATGCTCAAGACGGCGGAGTCTGCGCTCAGCGTCACTCTGCAGGCTAAGG
GAGCTCATCACCTGGGGCAGTACCTCCCGAAAGAGGTGATCTTAATCAGT
CGGACCGGCCCCGGTCACCGGACTCTGTAATAGTCTCGAACATACCAGGT
CAATACCATCGAATGGCTACTGCATAACCTCCGACAATCCGGAATACCGC
TTCCTCTTCATAACTGACCTGGCACGAACATCCTTTTGGTTGGTCCTCAC
GTATCTGACGTCAACCGAACAGCCCTTTGATTGCCCCCTCATGCCAACAG
TGCCAGGAGGTAAGAACCCCCCTTTTAAAGTAGTGACTCTCTTTCGACAA
AAGCAATGTCTTTGCGGAGTTTTCTTTTAGCTAGGGCGTGTAAGGGTTGA
TAATGGTGGAACGTGCGAACGTGGGCCGAGCCGTGTGTTGATAATTTCGC
AGGACTCGTCGAGGATGCCATATTGACCTTTGACAGCAGCGGTCTCTTTC
CCACCCTCATTGGCCTCTGCAAATTTCCTCATGTTCTTGTCGCCGACGCC
GATTTGATGTTGATCCGATAGTCTCGCATCCCAAATTACCCTGCTTGTTC
ATGTGGTGGCTATTATTTAATTGTTGAAGTTATTGTTGTTGCCCTTGCCT
AGCTGGACCCCAGATCTAGGCGACCCTCTTCAAGTAGAGCTTGACATCCC
CCGCAGTCCTGGAGCGATTTTCGACGCTTCTCGGATCATTATCGTTTACC
ACACGCGCAGGAGCTGGATCGCTTCCTGAAGAAGTCGGACAAGGCGGTGA
AGGGCGAGGAGGTCGAAGCCGAGGAGGACTTTGAGAAGAACAAGCTCGCG
GAGGACAACATCGGCTTCCAGATGCTCAAGAAGAAGGGGTGGACGGAGGG
GAAGGGCCTCGGCAAGGAGGGGGAGGGAGCGGCTGCCCCGGTGAACATGG
CGGCGGGGGCTGGAGACGGGGCCGGGGTTGGGGTGAAGGAGACGCACGAG
GTGGCCGAGGGGGACAACGAGTTCGAGCAGTACCGCAAGAGGATGATGCT
GGCGTACCGCTTCCGCCCGAACCCACTCAACAATCCCCGGAGATCTTACT
ACTGAGAGAGGGGATACGTTTGTGTGTGGGGATGTGCTCCACAACCCCCG
GAGAGTTTACTGCTGGGAGGGATACGGGGGGAGGCGGGGAATCCTCCATA
TCCACCGGAGATCTCACACTGAGGCAACGTGTGGAACGGGAAGTATTTGA
GAGTGGGTCTTGATTTGGAGAGAGTAGGGGCGGGGGGGACGAGGGCGAGG
GTTGTGGTCGGCTGTGGGGATAATTCTTTCGAGGAGGGTATTGGAAGCCT
GCGCGTGGAGAGCGAGTTCTTCGCATTTGGCACCCCCCTCGTCATACCTC
CATGGCGACGGGACGGTACTTGCTCTCGAAAGGGAGGCACGATCGATGGT
CAAGGGAGAACTCTCTTCTCCCTTCGTGTCATGGGGGTGCGCTTGGCCCA
TTCTGTGCTTAGGCTGGTTCCAGTGTTCGGTTTATCATTGCTCCCGGGCA
ATGTATTGATTTGAGTTTGAAGGTAATTAGCCTCTGGGATAAGGAATACT
GGCTTTATGCCGGAGCTGCGGACAGTTTTCACAAAGTGATGAAATGGGTG
GCTGTTTTTGCAAGGGCCTGGGGTTTGTTCAAAACAGATCTAGAGATGCT
TGTGGATGACAGGTGTAGGGTCCCTCATAATATTCGAACACACATGCTAA
CCATTGGAGCCTCGCAGGGTCCCCACCCCACCCCCGATACCCTGCGGATC
TTCACAC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig68:387454..399960- >mRNA_P-fluviatile_contig68.13340.1 ID=mRNA_P-fluviatile_contig68.13340.1|Name=mRNA_P-fluviatile_contig68.13340.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5076bp|location=Sequence derived from alignment at P-fluviatile_contig68:387454..399960- (Porterinema fluviatile SAG_2381) ATGCTAGTAAATGGAGAGCCACCTCCACCCCCGCCCCGTGGCCCTGGGTC AGAGGCTTCCAGCCCACCCGCTCGAGCTGCGTTACTCCCTACGCCAGGCA CAGCGGCTACGTCGTCGGTGCCTGGTGATCCACAGCAGAGGCCAGGAGTA ACCCCCGGCGCACCTGGTGCTCTAGGCCCTTCGTTCTTGTCCACCCCACC AGTTGCGGGCGCGGGAAAAGTGATGAACTCTCTTTTCGCTCCCGAACAGG ATAATCCGTCCGGTGCGCCTCCGCCGCCGCCAAGGCGCGCGGGAGAGGGA GGAGGATCGGCACCCCCGCCGCCGCCAAGGATGCTGGTGCGGCCAGCAGC CGACAACGGTGCGCCGGGTGAAGGTGCTGTTATCGGTATCGGCGTGCCTC CTCCTCCGCCTCCTAGGAAGCAGTCTTCTGGACTCCCTATGGATGGATCT GGACCAGATGCTAGTAAATGGAGAGCCACCTCCACCCCCGCCCCGTGGCC CTGGGTCAGAGGCTTCCAGCCCACCCGCTCGAGCTGCGTTACTCCCTACG CCAGGCACAGCGGCTACGTCGTCGGTGCCTGGTGATCCACAGCAGAGGCC AGGAGTAACCCCCGGCGCACCTGGTGCTCTAGGCCCTTCGTTCTTGTCCA CCCCACCAGTTGCGGGCGCGGGAAAAGTGATGAACTCTCTTTTCGCTCCC GAACAGGATAATCCGTCCGGTGCGCCTCCGCCGCCGCCAAGGCGCGCGGG AGAGGGAGGAGGATCGGCACCCCCGCCGCCGCCAAGGATGCTGGTGCGGC CAGCAGCCGACAACGGTGCGCCGGGTGAAGGTGCTGTTATCGGTATCGGC GTGCCTCCTCCTCCGCCTCCTAGGAAGCAGTCTTCTGGACTCCCTATGGA TGGATCTGGACCAGGAGGGGGGCGGGATTCAGGGCGCACCTCGCCGAGGC AGCAGCATTCCCCCTTCCTCCGCCCGCGCAGTCCGCGCGGCCCCCTCGGG CCCCCCGGCGCACCCCACGGCCCCCTCGGCCCACCTCCAGACCGACCTTC GATGGGACCATACCACAGAAACGCCCCCCCGCCGCATTCCGGCAACAGGG ACTCGAGAGGACCTCCGCCGCCTGGTATGCCCCCGTTCGGGGCCCAGCCA ATGGTGGGAGGACGAGGAGGGGGTAGAGGACCGCCGTCGCCGCGGCACGG CGCAAACAATATGGGGCCCGGGGGGTGGGAGCCGGGGCCGGGACCGGGTG GAAAAAACATGGCCCCCGGAAGGGGTGGAAGCATGGGAGGGCGCGGCGGC GGGTCGCGTGGAAACTTCCCTCCCACGATGGAGCCGGGTAGCAGAGGAGG AGGGGACGGCGGCTTAGGAGGGAGCGGCGGCGGAGGTGGGAGGCGGGCGG GATCGCCGCAATCGGGAATGCCCCCACCGCGTCCCGGCTCAGGTGTGTGT AGGTCATTTCTCGCCTGAGGGGGGCGGGATTCAGGGCGCACCTCGCCGAG GCAGCAGCATTCCCCCTTCCTCCGCCCGCGCAGTCCGCGCGGCCCCCTCG GGCCCCCCGGCGCACCCCACGGCCCCCTCGGCCCACCTCCAGACCGACCT TCGATGGGACCATACCACAGAAACGCCCCCCCGCCGCATTCCGGCAACAG GGACTCGAGAGGACCTCCGCCGCCTGGTATGCCCCCGTTCGGGGCCCAGC CAATGGTGGGAGGACGAGGAGGGGGTAGAGGACCGCCGTCGCCGCGGCAC GGCGCAAACAATATGGGGCCCGGGGGGTGGGAGCCGGGGCCGGGACCGGG TGGAAAAAACATGGCCCCCGGAAGGGGTGGAAGCATGGGAGGGCGCGGCG GCGGGTCGCGTGGAAACTTCCCTCCCACGATGGAGCCGGGTAGCAGAGGA GGAGGGGACGGCGGCTTAGGAGGGAGCGGCGGCGGAGGTGGGAGGCGGGC GGGATCGCCGCAATCGGGAATGCCCCCACCGCGTCCCGGCTCAGGTGTGT GTAGGTCATTTCTCGCCTCCGGTCCGCCTCACCCGCCTGGTCCGCCACCG ACCGCGCCTGGTGCAGAAGAAGCAGGACAACGGCCTTGGTTCCCCTCCGC TTTGGGAGCGCTAGCGGCAGAATCACCGCACGGGAACAACCCTCCGCCGC GACCCCCCGGTCCTCCAGTACCCCCTCCCATGGGCTCACCCCCCGCGCCG CCCGGAGCCCCGCCGCCGACCCCGCCGGCGCCGCCGGTTCCGCCGGCGCT TCCCACGCTGCCTCCGCCGATACTCGCACGGCCCCCTCTGTTGCCGCCGC CTCCGCCTCCCCTCCCACCCGGGATGAGCGCGCGGTTGCCGCCGCCGCCA CCGCCGCCGCCCGGTGCGCCGCCGCTGCCACCCGGTCCGCCGCCGGCCAT GCCGGTGTTCGCCGACGACGGAAACTTCTTGGCCAAGATGCTCAAGCCGG TCCGCCTCACCCGCCTGGTCCGCCACCGACCGCGCCTGGTGCAGAAGAAG CAGGACAACGGCCTTGGTTCCCCTCCGCTTTGGGAGCGCTAGCGGCAGAA TCACCGCACGGGAACAACCCTCCGCCGCGACCCCCCGGTCCTCCAGTACC CCCTCCCATGGGCTCACCCCCCGCGCCGCCCGGAGCCCCGCCGCCGACCC CGCCGGCGCCGCCGGTTCCGCCGGCGCTTCCCACGCTGCCTCCGCCGATA CTCGCACGGCCCCCTCTGTTGCCGCCGCCTCCGCCTCCCCTCCCACCCGG GATGAGCGCGCGGTTGCCGCCGCCGCCACCGCCGCCGCCCGGTGCGCCGC CGCTGCCACCCGGTCCGCCGCCGGCCATGCCGGTGTTCGCCGACGACGGA AACTTCTTGGCCAAGATGCTCAAGGAGCAAGAGGAGGAAGAGCGCAAAAA GAAGCTGCGGCAGGCGGAGGAGGACAGGAAAAAGGCGGAGGAGGAAGAGA AGCTCGAGAAGGAACGCGTGGAGCAAGAGGAGGAAGAGCGCAAAAAGAAG CTGCGGCAGGCGGAGGAGGACAGGAAAAAGGCGGAGGAGGAAGAGAAGCT CGAGAAGGAACGCGTGGCTCACGCCAAGAGGGTTGCCGCGGAAAACAAGC GCACCAAGAGGTTCGCGCTCGGAGGAGGGTTCGGCGGCGGCCGGGCGAGG GCGGCACGCCCCAAGATGGGTAACATCCGGGGGAAGGTGATCAAGGCCTT CGTAGCCGACAGCGATGATGATGAGAGCGAGGAGGCTCACGCCAAGAGGG TTGCCGCGGAAAACAAGCGCACCAAGAGGTTCGCGCTCGGAGGAGGGTTC GGCGGCGGCCGGGCGAGGGCGGCACGCCCCAAGATGGGTAACATCCGGGG GAAGGTGATCAAGGCCTTCGTAGCCGACAGCGATGATGATGAGAGCGAGG AGGAGGACGGCTCGAAGGATGCTTCCGCTAAGGCCGATGGATCGTCGGTT TCGGCCTCAGCTGCATCGACGGCACTCAACGGCGGCAGCTCCGTCGGTGG AGGCGCCGGCGGCACCGCATCATCGGCAGGAGGAAGCGAGGCCGCTTCCT CTGCCTCCGGGGCTGGGCAGCTGGGAGTCGGGCTCGGGGCCGCTGTGGCG TTGTCCCAGGCGTCTGGCGGCGGGTCGGAGCTGGACGAGGAGACGAAGGT CATGATCCGGCAGACGGCGGAGTGGTTCCACGCAAACCCGGACAAGAGCA AGGAGGACGGCTCGAAGGATGCTTCCGCTAAGGCCGATGGATCGTCGGTT TCGGCCTCAGCTGCATCGACGGCACTCAACGGCGGCAGCTCCGTCGGTGG AGGCGCCGGCGGCACCGCATCATCGGCAGGAGGAAGCGAGGCCGCTTCCT CTGCCTCCGGGGCTGGGCAGCTGGGAGTCGGGCTCGGGGCCGCTGTGGCG TTGTCCCAGGCGTCTGGCGGCGGGTCGGAGCTGGACGAGGAGACGAAGGT CATGATCCGGCAGACGGCGGAGTGGTTCCACGCAAACCCGGACAAGAGCA AGGTGGTGATGGAGAAGAGCCGAGGAAACTCGCAGTTCAAGTTCTTGTTC GACGCGTCTTCGCCTGGCGGTCGCTTTTACCGACAGGTGGTGATGGAGAA GAGCCGAGGAAACTCGCAGTTCAAGTTCTTGTTCGACGCGTCTTCGCCTG GCGGTCGCTTTTACCGACAGGTTCTTGAGGAGATCAAGACCGAGGAGGAG GTGAAGCGGGTCTGCAGCGGGTTCGGCGAGGCTAACGCGTCGGGCTATGG CCCCGCCCCGCAGGACTCCTCGAACATCTACGGCCCCGGTGCGGGACTCG CTGCCGCCGCCGCGAGAAGTGCCGGCGGCGGCGGCGGCGGGGACACCGCG CTGGGGGGGGCGACGGGGGCCGGCGGCGGCCAGTCGTGGTCCAACCTCGG CGCGGGAGGCGGCGCGAGGGGAGGTGACGGCAAAGCGGCACCGGGTGGTA ATGCGGCGCAGATTGTGGCTCAGATCTCCGCACAGGTTCTTGAGGAGATC AAGACCGAGGAGGAGGTGAAGCGGGTCTGCAGCGGGTTCGGCGAGGCTAA CGCGTCGGGCTATGGCCCCGCCCCGCAGGACTCCTCGAACATCTACGGCC CCGGTGCGGGACTCGCTGCCGCCGCCGCGAGAAGTGCCGGCGGCGGCGGC GGCGGGGACACCGCGCTGGGGGGGGCGACGGGGGCCGGCGGCGGCCAGTC GTGGTCCAACCTCGGCGCGGGAGGCGGCGCGAGGGGAGGTGACGGCAAAG CGGCACCGGGTGGTAATGCGGCGCAGATTGTGGCTCAGATCTCCGCACAG GTGGCTATGCGGTCCGCCTCAAAGTTCGGCGCGGCACCCCGTCGTCCACG TCGGCCGCAACCTTTGGCTCAACCCGCCCCCGCAAGAACCGATGGGGGGC CGGGGCCGGGGGCACACCTCCGGCGACGGCGGCGGTAGGTGGCTATGCGG TCCGCCTCAAAGTTCGGCGCGGCACCCCGTCGTCCACGTCGGCCGCAACC TTTGGCTCAACCCGCCCCCGCAAGAACCGATGGGGGGCCGGGGCCGGGGG CACACCTCCGGCGACGGCGGCGGTAG back to top
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